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Genome-Scale Data Call for a Taxonomic Rearrangement of Geodermatophilaceae.

Abstract

Geodermatophilaceae (order Geodermatophilales, class Actinobacteria) form a comparatively isolated family within the phylum Actinobacteria and harbor many strains adapted to extreme ecological niches and tolerant against reactive oxygen species. Clarifying the evolutionary history of Geodermatophilaceae was so far mainly hampered by the insufficient resolution of the main phylogenetic marker in use, the 16S rRNA gene. In conjunction with the taxonomic characterisation of a motile and aerobic strain, designated YIM M13156T and phylogenetically located within the family, we here carried out a phylogenetic analysis of the genome sequences now available for the type strains of Geodermatophilaceae and re-analyzed the previously assembled phenotypic data. The results indicated that the largest genus, Geodermatophilus, is not monophyletic, hence the arrangement of the genera of Geodermatophilaceae must be reconsidered. Taxonomic markers such as polar lipids and fatty-acids profile, cellular features and temperature ranges are indeed heterogeneous within Geodermatophilus. In contrast to previous studies, we also address which of these features can be interpreted as apomorphies of which taxon, according to the principles of phylogenetic systematics. We thus propose a novel genus, Klenkia, with the type species Klenkia marina sp. nov. and harboring four species formerly assigned to Geodermatophilus, G. brasiliensis, G. soli, G. taihuensis, and G. terrae. Emended descriptions of all species of Geodermatophilaceae are provided for which type-strain genome sequences are publicly available. Our study again demonstrates that the principles of phylogenetic systematics can and should guide the interpretation of both genomic and phenotypic data.

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Genome-Scale Data Call for a Taxonomic Rearrangement of Geodermatophilaceae.

Author: Montero-Calasanz, Maria Del Carmen,Meier-Kolthoff, Jan P,Zhang, Dao-Feng,Yaramis, Adnan,Rohde, M,Woyke, Tanja,Kyrpides, Nikos C,Schumann, Peter,Li, Wen-Jun,Göker, Markus
Year: 2017
DOI: 10.3389/fmicb.2017.02501
Source: https://repository.helmholtz-hzi.de/bitstream/10033/621250/1/Montero-Casalanz%20et%20al.pdf
micb-08-02501 Decembe 16, 2017 Time: 17:4 # 1
ORIGINAL RESEARCH
published: 19 Decembe 2017
doi: 10.3389/ micb.2017.02501
Edi ed by:
Jesus L. Romalde,
Uni e sidade de San iago
de Compos ela, Spain
Re iewed by:
Hai ham Sghaie ,
Cen e Na ional des Sciences e
Technologies Nucléai es, Tunisia
Tomoo Sawabe,
Hokkaido Uni e si y, Japan
*Co espondence:
Ma ia del Ca men Mon e o-Calasanz
[email p o ec ed]
Wen-Jun Li
[email p o ec ed]
Ma kus Göke
[email p o ec ed]
Special y sec ion:
This a icle was submi ed o
E olu iona y and Genomic
Mic obiology,
a sec ion o he jou nal
F on ie s in Mic obiology
Recei ed: 08 Augus 2017
Accep ed: 01 Decembe 2017
Published: 19 Decembe 2017
Ci a ion:
Mon e o-Calasanz MC,
Meie -Kol ho JP, Zhang D-F,
Ya amis A, Rohde M, Woyke T,
Ky pides NC, Schumann P, Li W-J
and Göke M (2017) Genome-Scale
Da a Call o a Taxonomic
Rea angemen
o Geode ma ophilaceae.
F on . Mic obiol. 8:2501.
doi: 10.3389/ micb.2017.02501
Genome-Scale Da a Call o a
Taxonomic Rea angemen o
Geode ma ophilaceae
Ma ia del Ca men Mon e o-Calasanz1,2*, Jan P. Meie -Kol ho 2, Dao-Feng Zhang3,
Adnan Ya amis1,4, Man ed Rohde5, Tanja Woyke6, Nikos C. Ky pides6,
Pe e Schumann2, Wen-Jun Li3*and Ma kus Göke 2*
1School o Biology, Newcas le Uni e si y, Newcas le upon Tyne, Uni ed Kingdom, 2Leibniz Ins i u e, Ge man Collec ion o
Mic oo ganisms and Cell Cul u es, B aunschweig, Ge many, 3S a e Key Labo a o y o Biocon ol and Guangdong P o incial
Key Labo a o y o Plan Resou ces, School o Li e Sciences, Sun Ya -sen Uni e si y, Guangzhou, China, 4Depa men o
Bio echnology, Middle Eas Technical Uni e si y, Anka a, Tu key, 5Cen al Facili y o Mic oscopy, Helmhol z Cen e o
In ec ion Resea ch, B aunschweig, Ge many, 6Depa men o Ene gy, Join Genome Ins i u e, Walnu C eek, CA,
Uni ed S a es
Geode ma ophilaceae (o de Geode ma ophilales, class Ac inobac e ia) o m a
compa a i ely isola ed amily wi hin he phylum Ac inobac e ia and ha bo many s ains
adap ed o ex eme ecological niches and ole an agains eac i e oxygen species.
Cla i ying he e olu iona y his o y o Geode ma ophilaceae was so a mainly hampe ed
by he insu icien esolu ion o he main phylogene ic ma ke in use, he 16S RNA
gene. In conjunc ion wi h he axonomic cha ac e isa ion o a mo ile and ae obic
s ain, designa ed YIM M13156Tand phylogene ically loca ed wi hin he amily, we
he e ca ied ou a phylogene ic analysis o he genome sequences now a ailable o
he ype s ains o Geode ma ophilaceae and e-analyzed he p e iously assembled
pheno ypic da a. The esul s indica ed ha he la ges genus, Geode ma ophilus, is
no monophyle ic, hence he a angemen o he gene a o Geode ma ophilaceae mus
be econside ed. Taxonomic ma ke s such as pola lipids and a y-acids p o ile, cellula
ea u es and empe a u e anges a e indeed he e ogeneous wi hin Geode ma ophilus.
In con as o p e ious s udies, we also add ess which o hese ea u es can be
in e p e ed as apomo phies o which axon, acco ding o he p inciples o phylogene ic
sys ema ics. We hus p opose a no el genus, Klenkia, wi h he ype species Klenkia
ma ina sp. no . and ha bo ing ou species o me ly assigned o Geode ma ophilus, G.
b asiliensis, G. soli, G. aihuensis, and G. e ae. Emended desc ip ions o all species
o Geode ma ophilaceae a e p o ided o which ype-s ain genome sequences a e
publicly a ailable. Ou s udy again demons a es ha he p inciples o phylogene ic
sys ema ics can and should guide he in e p e a ion o bo h genomic and pheno ypic
da a.
Keywo ds: Klenkia, Geode ma ophilus,Modes obac e , Blas ococcus, GBDP, GGDC, phylogene ic sys ema ics,
polyphasic axonomy
INTRODUCTION
The o de Geode ma ophilales (Sen e al., 2014) comp ises he sole amily Geode ma ophilaceae,
which was ini ially p oposed by No mand e al. (1996), al hough no ype genus was designa ed
a ha ime, con i med la e by S ackeb and e al. (1997), o mally desc ibed by No mand
(2006) and la e emended by Zhi e al. (2009). The amily accommoda es he gene a Blas ococcus
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(Ah ens and Moll, 1970;Ske man e al., 1980;Hezb i e al.,
2016b), Modes obac e (Me s e al., 2000) and he ype genus
Geode ma ophilus (Luedemann, 1968;Ske man e al., 1980).
Geode ma ophilus was his o ically poo ly s udied due o
di icul ies in cul u ing no el isola es (U zì e al., 2004).
O e coming hose echnical di icul ies, he numbe o alidly
named species wi hin he genus d ama ically inc eased om a
single species, G. obscu us, in 2011 o wen y-one species a he
ime o w i ing (Pa e, 2014). The numbe o Geode ma ophilus
isola es is expec ed o con inue o aise in coming yea s, as
indica ed by me agenomics s udies ca ied ou in a id and hype -
a id habi a s (Neilson e al., 2012;Giongo e al., 2013). Species
belonging o he genus a e indeed mainly isola ed om a id
soils and cha ac e ized by ole ance agains oxida i e s ess (G a i
e al., 2012;Mon e o-Calasanz e al., 2013a, 2014b, 2015;Hezb i
e al., 2015a, 2016a) al hough some isola es om hizosphe ic
soils and lake sedimen s ha e also been classi ied wi hin he
genus.
In he pos -genomic e a, he in eg a ion o genomic
in o ma ion in mic obial sys ema ics (Klenk and Göke ,
2010) in addi ion o physiological and chemo axonomic
pa ame e s as axonomic c i e ia is s ongly sugges ed o
classi ying p oka yo es (Ramasamy e al., 2014). This pa icula ly
holds in g oups such as Geode ma ophilaceae, which a e
only incomple ely esol ed in phylogenies in e ed om he
mos commonly applied ma ke gene, he 16S RNA gene.
Ne e heless, excep o he genome sequences gene a ed wi hin
ou p ojec only he genome (I ano a e al., 2010) and p o eome
sequence o G. obscu us (Sghaie e al., 2016) we e publicly
a ailable.
Based on phylogenies in e ed om genome-scale da a and on
a e-in e p e a ion o he a ailable pheno ypic e idence acco ding
o he p inciples o phylogene ic sys ema ics (Hennig, 1965;
Wiley and Liebe man, 2011), his s udy in oduces he new genus
Klenkia in o Geode ma ophilaceae, whose ype species is Klenkia
ma ina sp. no . Acco dingly, we also p opose he eclassi ica ion
o G. b asiliensis as Klenkia b asiliensis comb. no ., G. soli as
K. soli comb. no ., G. aihuensis as K. aihuensis comb. no . and
G. e ae as K. e ae comb. no ., as well as emended desc ip ions
wi hin Geode ma ophilus.
MATERIALS AND METHODS
Isola ion
S ain YIM M13156Twas isola ed om a sample collec ed om
he Sou h China Sea (119◦31.949E, 18◦2.114 N), and was
ob ained using he se ial dilu ion echnique. Sedimen sample
(1 g) was added o 9 ml s e ile dis illed wa e and mixed by
o exing. A 10- old dilu ion o his soil suspension was p epa ed
in s e ilized dis illed wa e , and 0.1 ml was sp ead on Fucose-
p oline aga medium [ ucose 5 g; p oline 1 g; (NH4)2SO41 g;
NaCl 1 g;CaCl22 g; K2HPO41 g; B-Vi amin ace (0.5 mg
each o hiamine-HCl (B1), ibo la in, Niacin, py idoxin, Ca-
pan o hena e, inosi ol, p-aminobenzoic acid, and 0.25 mg o
bio in); sea sal 30 g; aga 20 g; pH 7.2; dis illed wa e 1 li e ].
The pla e was hen incuba ed a 28◦C o 30 days.
Pheno ypic Analysis
Mo phological and Physiological Tes s
Mo phological cha ac e is ics o s ain YIM M13156Twe e
de e mined on GYM S ep omyces medium a 28◦C. Colony
ea u es we e obse ed a 4 and 15 days unde a s e eo
mic oscope acco ding o Pelcza (1957). Exponen ially g owing
bac e ial cul u es we e obse ed wi h an op ical mic oscope
(Zeiss AxioScope A1) wi h a 1000- old magni ica ion and
phase-con as illumina ion. G am eac ion was pe o med
using he KOH es desc ibed by G ege sen (1978). Oxidase
ac i i y was analyzed using il e -pape disks (Sa o ius g ade
388) imp egna ed wi h 1% solu ion o N,N,N0,N0- e ame hyl-p-
phenylenediamine (Sigma–Ald ich); a posi i e es was de ined
by he de elopmen o a blue-pu ple colo a e applying biomass
o he il e pape . Ca alase ac i i y was de e mined based
on o ma ion o bubbles ollowing he addi ion o 1 d op o
3% H2O2. G ow h a es we e de e mined on pla es o GYM
S ep omyces medium o empe a u es om 10◦C o 50◦C a 5◦C
inc emen s and o pH alues om 4.0 o 12.5 (in inc emen s
o 0.5 pH uni s) on modi ied ISP2 medium by adding NaOH
o HCl, espec i ely, since he use o a bu e sys em inhibi ed
g ow h o he s ain. The oxida ion o ca bon compounds was
es ed a 28◦C using GEN III Mic opla es in an Omnilog de ice
(BIOLOG Inc., Haywa d, CA, Uni ed S a es) in compa ison wi h
he e e ence s ains G. b asiliensis DSM 44526T,G. soli DSM
45843T,G. aihuensis DSM 45962T,G. e ae DSM 45844Tin
pa allel assays. The GEN III Mic opla es we e inocula ed wi h
cells suspended in a iscous inocula ing luid (IF C) p o ided
by he manu ac u e a a cell densi y o 94% T o G. b asiliensis
DSM 44526T, 83% T o G. soli DSM 45843Tand G. e ae DSM
45844Tand 90% T o G. aihuensis DSM 45962Tand o he
s ain YIM M13156T. Respi a ion a es we e measu ed yielding
a o al unning ime o 5 days in Pheno ype Mic oa ay mode.
Each s ain was s udied in wo independen echnical eplica es.
Da a we e expo ed and analyzed using he opm .1.0.6 package
(Vaas e al., 2012, 2013) o he Rs a is ical en i onmen (R Co e
Team, 2017). Reac ions wi h a dis inc beha io be ween he wo
eplica es we e ega ded as ambiguous.
Chemo axonomic Tes s
Whole-cell amino acids and suga s we e p epa ed acco ding
o Leche alie and Leche alie (1970), ollowed by hin-laye
ch oma og aphy (TLC) analysis (S aneck and Robe s, 1974).
Pola lipids we e ex ac ed, sepa a ed by wo-dimensional TLC
and iden i ied acco ding o p ocedu es ou lined by Minni
e al. (1984) wi h modi ica ions p oposed by K oppens ed and
Good ellow (2006). Fo iden i ica ion he p esumed OH-PE
spo s we e manually sc aped o om uns ained TLC pla es,
ex ac ed wi h me hanol and e apo a ed o d yness. The ex ac s
we e hen dissol ed in Reagen 3 ( a y acid ex ac ion) and
analyzed by MIDI Sys em. Menaquinones (MK) we e ex ac ed
om eeze-d ied cell ma e ial using me hanol as desc ibed
by Collins (1985) and analyzed by high-pe o mance liquid
ch oma og aphy (HPLC) (K oppens ed , 1982). The ex ac ion
and analysis o cellula a y acids was ca ied ou in wo
independen epe i ions om biomass g own on GYM aga pla es
held a 28◦C o 4 days and ha es ed always om he same
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sec o ( he las quad an s eak). Analysis was conduc ed using
he Mic obial Iden i ica ion Sys em (MIDI) She lock Ve sion
4.5 (me hod TSBA40, ACTIN6 da abase) as desc ibed by Sasse
(1990). The anno a ion o he a y acids in he ACTIN6 peak
naming able is consis en wi h IUPAC nomencla u e. Fa y-acid
pa e ns we e isualized as a hea map using he lipid ex ension
o he opm package (Vaas e al., 2013) and clus e ed using he
p clus .1.2.2 package (Suzuki and Shimodai a, 2006) o he R
s a is ical en i onmen . Quan i a i e analysis o he a y acids
used logi - ans o med pe cen ages h oughou (a e se ing ze o
alues o he lowes non-ze o numbe ) because p opo ion da a
a e expec ed o a y s onge a ound 50% han close o 0 o 100%
(C awley, 2007). All chemo axonomic analyses we e conduc ed
unde s anda dized condi ions o s ain YIM M13156Tand he
ype s ains lis ed abo e.
Excep o he sepa a ely s o ed MIDI measu emen s, all
pheno ypic cha ac e s we e collec ed in a s anda dized abula
o ma ha cons i u es Supplemen a y Table S1. Cus om sc ip s
de eloped a DSMZ allow o ex ac ing such da a in ways
sui able o subsequen phylogene ic o o he analysis. Fo
de e mining ea u es speci ic o p ede e mined g oups o
in e es , such as new axa sugges ed by phylogene ic analysis, he
andomFo es unc ion om he eponymous Rpackage . 4.6-12
(B eiman, 2001) was applied in classi ica ion mode unde de aul
se ings excep o inc eased alues o n ee (50,000) and m y
(hal he numbe o analyzed ea u es).
Sequence Analysis
Fo 16S RNA gene sequencing, genomic DNA ex ac ion, PCR-
media ed ampli ica ion o he 16S RNA gene and pu i ica ion
o he PCR p oduc was ca ied ou as desc ibed by Rainey
e al. (1996). Fo genome sequencing, he s ain YIM M13156T
and six een species wi h alidly published Geode ma ophilus
names we e cul i a ed in GYM S ep omyces b o h a 28◦C. The
p ojec in o ma ion is a ailable h ough he Genomes Online
Da abase (Mukhe jee e al., 2017). The d a genomes we e
gene a ed a he DOE Join Genome Ins i u e (JGI) as pa o
Genomic Encyclopedia o A chaeal and Bac e ial Type S ains,
Phase II (KMG-II): om indi idual species o whole gene a
(Ky pides e al., 2014) ollowing he same p o ocol as in Nouioui
e al. (2017). All genomes we e anno a ed using he DOE-JGI
anno a ion pipeline (Hun emann e al., 2015;Chen e al., 2016)
and eleased h ough he In eg a ed Mic obial Genomes sys em
(Chen e al., 2017).
Phylogene ic analysis o he 16S RNA gene sequences om
he ype s ains o all species wi h e ec i ely published names
in Geode ma ophilaceae, as well as he genome-sequenced
s ains C yp ospo angium a um DSM 44712Tand Spo ich hya
polymo pha DSM 43042T o use as ou g oup, was conduc ed as
p e iously desc ibed (Göke e al., 2011;Mon e o-Calasanz e al.,
2014b). Pai wise 16S RNA gene simila i ies we e calcula ed as
ecommended by Meie -Kol ho e al. (2013b) o de e mine
s ains wi h ≥99.0% simila i y, be ween which (digi al)
DNA:DNA hyb idiza ion expe imen s should be conduc ed.
Genome-scale phylogenies we e in e ed om he a ailable
Geode ma ophilaceae (and ou g oup) whole p o eome sequences
using he high- h oughpu e sion (Meie -Kol ho e al., 2014a)
o he genome BLAST Dis ance Phylogeny (GBDP) app oach
(Auch e al., 2010) in conjunc ion wi h Fas ME (Le o e al.,
2015) as desc ibed ea lie (Hahnke e al., 2016). An addi ional
Fas ME ee was in e ed wi hou he wo ou g oup genomes
o de ec po en ial long-b anch a ac ion o he ou g oup, a
p ocess called long-b anch ex ac ion (Siddall and Whi ing,
1999). Addi ionally, he alidi y o he oo ing was es ed by
e-es ima ing he oo (Simon e al., 2017) using leas -squa es
da ing (To e al., 2015). The GBDP ee es ic ed o he well-
suppo ed b anches (≥95% pseudo-boo s ap suppo ) was used
as a backbone cons ain in a u he 16S RNA gene analysis o
in eg a e in o ma ion om genome-scale da a (Hahnke e al.,
2016). Digi al DNA:DNA hyb idisa ions we e conduc ed using
he ecommended se ings o he Genome-To-Genome Dis ance
Calcula o (GGDC) e sion 2.1 (Meie -Kol ho e al., 2013a).
The G+C con en was calcula ed om he genome sequences as
desc ibed by Meie -Kol ho e al. (2014b).
RESULTS
Sequence Analysis
The phylogene ic ee based on he whole p o eomes o he
sequenced ype s ains placed, wi h maximum suppo , he
g oup o med by he s ain YIM M13156T,G. b asiliensis
DSM 44526T,G. soli DSM 45843Tand G. aihuensis DSM
45962Tas a sis e -g oup o all o he Geode ma ophilaceae
gene a (Figu e 1). Hence Geode ma ophilus is ob iously non-
monophyle ic acco ding o his ee, as Modes obac e as well
as Blas ococcus appea ed as mo e closely ela ed o co e
Geode ma ophilus (including he ype species G. obscu us) han
he ou de ia ing Geode ma ophilus s ains. When C. a um
and S. polymo pha we e emo ed, he esul ing un oo ed
opologically was iden ical o he (un oo ed) ing oup opology
shown in Figu e 1. Tha is, i was impossible o oo he
educed ee in a way ha made Geode ma ophilus monophyle ic,
indica ing ha he non-monophyly o Geode ma ophilus was no
caused by a long-b anch a ac ion a i ac . Leas -squa es da ing
con i med he oo ing in bo h he ull and he educed ee.
As expec ed, he uncons ained phylogene ic ee based on 16S
RNA gene sequences was no well esol ed a i s backbone
bu when applying he cons ain de i ed om he GBDP
ee, Modes obac e , Blas occocus and he wo dis inc g oups
o Geode ma ophilus appea ed as monophyle ic (Figu e 2);
suppo o hei monophyly was s ong excep in he case
o Blas ococcus. Mode a e o s ong suppo was ob ained o
Modes obac e and Blas occocus being mo e closely ela ed o
co e Geode ma ophilus han he g oup o med by he s ain YIM
M13156Tas well as he species G. b asiliensis, G. soli, G. aihuensis
and G. e ae.
Wi hin his clade, he 16S RNA gene sequence o s ain
YIM M13156Tshowed simila i ies ≥99.0% wi h he ype s ains
o G. soli (99.1%) and G. b asiliensis (99.0%) only; hose wi h
G. e ae (98.9%) and G. aihuensis (98.0%) we e lowe . Digi al
DNA:DNA hyb idisa ions be ween s ain YIM M13156Tand
G. soli DSM 45843Tand G. b asiliensis DSM 44526T esul ed
in 29.8 and 29.6% simila i y, espec i ely, clea ly below he 70%
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FIGURE 1 | Phylogenomic ee in e ed wi h GBDP. The ee was in e ed wi h Fas ME om GBDP dis ances calcula ed om whole p o eomes. The numbe s abo e
b anches a e GBDP pseudo-boo s ap suppo alues om 100 eplica ions. Tip colo s indica e chemo axonomic cha ac e s ha p o ide apomo phies o g oups o
in e es , genome sizes and he exac G+C con en as calcula ed om he genome sequences (see he embedded legend o de ails). B., Blas ococcus;C.,
C yp ospo angium; G., Geode ma ophilus; M., Modes obac e ; S., Spo ich hya; NA, no applicable.
FIGURE 2 | Maximum likelihood phylogene ic ee in e ed om 16S RNA gene sequences, showing he phylogene ic posi ion o he s ain YIM M13156T ela i e o
he ype s ains wi hin Geode ma ophilaceae. The b anches a e scaled in e ms o he expec ed numbe o subs i u ions pe si e (see size ba ). Suppo alues om
maximum-likelihood cons ained ( i s ), maximum-pa simony cons ained (second), maximum-likelihood uncons ained ( hi d) and maximum-pa simony
uncons ained ( ou h) boo s apping a e shown abo e he b anches i equal o o la ge han 60%.
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h eshold ecommended by Wayne e al. (1987) o con i m he
species s a us o no el s ains. Addi ional digi al DNA:DNA
hyb idisa ions we e no conduc ed, based on he obse a ion o
Meie -Kol ho e al. (2013b) ha an Ac inobac e ia-speci ic 16S
RNA h eshold o 99.0% yielded a maximum p obabili y o e o
o only 1% o ob ain DNA:DNA hyb idiza ion alues ≥70%.
The genome size ange ound in he sequenced ype s ains
a ied be ween 4.2 Mbp o he s ain YIM M13156Tand 5.9
Mbp o G. ama gosae DSM 46136T(Figu e 1). The genomic
G+C con en o s ain YIM M13156Twas 74.4%. Fo he o he
genomes i anged be ween 74.0% o G. obscu us, G. ube
and G. sabuli and 75.9% o G. nig escens (Figu e 1). Because
G+C con en alues do no di e mo e han 1% wi hin bac e ial
species (Meie -Kol ho e al., 2014b), s onge de ia ions a e due
o a i ac s in con en ionally de e mined G+C con en alues.
Hence, we acco dingly p opose o emend he species desc ip ions
o hose species o which we obse ed a de ia ion om published
G+C con en alues >1%.
Pheno ypic Analysis
Mo phology and Physiology
S ain YIM M13156Tshowed mo ile, od-shaped and G am-
posi i e cells. These obse a ions a e in line wi h hose desc ibed
by Jin e al. (2013),Qu e al. (2013), and Be azzo e al. (2014)
o G. soli and G. e ae,G. aihuensis, and G. b asiliensis,
espec i ely. In con as o hese ou species, nei he high
agg ega es o ming mul ilocula spo angia no zoospo es we e
iden i ied in YIM M13156Tcul u es (Supplemen a y Table S1).
Colonies we e pink-colo ed, con ex, ci cula and opaque wi h
a smoo h su ace and an en i e ma gin, an appea ance simila
o o he Geode ma ophilus species when cul i a ed unde he
same g ow h condi ions. Cell g ow h anged om 20 o
35◦C (op imal g ow h empe a u e 25–30◦C) and om pH
6.0 o 8.5 (op imal pH 6.5–8.0). Resul s om pheno ype
mic oa ay analysis a e shown as a hea map in he Supplemen a y
Ma e ial (Supplemen a y Figu e S1) in compa ison o he ype
s ains o he ou mos closely ela ed species. Di e ences
be ween species we e much mo e p onounced han be ween
eplica es. A summa y o selec ed pheno ypic cha ac e is ics is
p esen ed in Table 1 ( o an o e iew o pheno ypic p o iles in
Geode ma ophilus see Supplemen a y Table S1).
The andomFo es analysis indica ed ha among he
p e iously men ioned pheno ypic ea u es he cell shape well
disc imina es be ween he g oup o med by s ain YIM M13156T,
G. b asiliensis, G. soli, G. aihuensis and G. e ae, which p oduce
ods, on he one hand and co e Geode ma ophilus, which is
cha ac e ized by pleomo phic cells (and seldom cocci), on he
o he hand (Supplemen a y Figu e S2).
Chemo axonomy
Analysis o whole-cell componen s e ealed he p esence o meso-
diaminopimelic acid (Cell-wall ype III), which is consis en wi h
he o he ep esen a i es o Geode ma ophilaceae (No mand and
Benson, 2012).
S ain YIM M13156Tdisplayed p ima ily menaquinone
MK-9(H4) (52.7%), in ag eemen wi h alues epo ed o
Geode ma ophilaceae (No mand, 2006), and MK-9(H0) (39.2%).
The p esence o a signi ican amoun o MK-9(H0) was al eady
men ioned in he o iginal desc ip ions o G. b asiliensis,G. soli,
G. aihuensis, and G. e ae, bu also in o he Geode ma ophilus
species (Mon e o-Calasanz e al., 2015). In con as o he al eady
desc ibed p o iles o isop enologs o G. soli, G. aihuensis and
G. e ae, aces o MK-9(H2) (6.6, 1.5, and 2.8%, espec i ely)
we e now addi ionally iden i ied in hose ype s ains.
MK-8(H4) (5.7%) and MK-10(H4) (3.4%) we e also de ec ed in
he pa e ns o G. aihuensis DSM 45962Tand G. e ae DSM
45844T, espec i ely.
The pola lipid pa e n o s ain YIM M13156Tconsis ed
o diphospha idylglyce ol (DPG), phospha idyle hanolamine
(PE), phospha idylinosi ol (PI), glycophospha idylinosi ol
(GPI), an uniden i ied aminolipid (AL) and aces o
hyd oxyphospha idyle hanolamine (OH-PE) (Figu e 3a). I is in
acco dance wi h pa e ns ob ained o he closely ela ed species
in es iga ed in his s udy (Figu es 3b–d) and he phospholipid
pa e n e ealed by Be azzo e al. (2014) o G. b asiliensis. The
andomFo es analysis de ec ed he lack o phospha idylcholine
and he p esence o glycophospha idylinosi ol as excellen ly
p edic i e o he p ospec i e new genus, whe eas he
absence o phospha idylglyce ol was also obse ed in o he
Geode ma ophilus species (Be azzo e al., 2014;Mon e o-
Calasanz e al., 2014b, 2015;Hezb i e al., 2015a,b,c, 2016a). The
unambiguous p esence o hyd oxyphospha idyle hanolamine is
a sligh ly less ele an axonomic ma ke o he p ospec i e new
genus; among co e Geode ma ophilus i was only de ec ed in he
pola lipid p o ile o G. pul e is DSM 45839Tby Hezb i e al.
(2016a).
E en hough bo h absence o phospha idylcholine and
p esence o glycophospha idylinosi ol we e also obse ed in he
pola -lipid p o iles o some Modes obac e species (Mon e o-
Calasanz e al., in p epa a ion), he addi ional p esence o
hyd oxyphospha idyle hanolamine o ms a unique pa e n o
s ain YIM M13156Tand i s ou mos closely ela ed species. In
addi ion, based on ou esul s and he ch oma og aphic mobili y
o he pola lipid labeled as phospha idylme hyle hanolamine
in he o iginal desc ip ions o G. soli and G. e ae by
Jin e al. (2013), i is s ongly sugges ed ha i was no
co ec ly iden i ied in he o iginal wo k, since a e binding
a me hyl-g oup o phospha idyle hanolamine he esul an
componen would show a highe apola i y and he e o e a
highe mobili y on he pla e han phospha idyle hanolamine
i sel . Hyd oxyphospha idyle hanolamine is no known om he
ou g oup species C yp ospo angium a um (Tamu a e al., 1998).
Majo a y acids we e he sa u a ed b anched-chain iso-C16:0
(36.8 ±1.1%), he monounsa u a ed C17:1ω8c (13.4 ±0.4%)
and he sa u a ed b anched-chain iso-C15:0(11.5 ±0.5%)
complemen ed by iso-C16:1H (5.0 ±0.4%), C17:0(4.5 ±0.3%)
and C18:19ωc (5.0 ±0.2%) in ag eemen wi h he closes
ela ed species (Table 1; o an o e iew o a y-acid p o iles
in Geode ma ophilus see Supplemen a y Table S2). In addi ion,
he occu ence o 2-hyd oxy a y acids (mainly iso-C17:02OH)
is also wo h men ioning as i suppo s he p esence o OH-PE
obse ed in he pola lipids p o iles o s ain YIM M13156Tand
i s ou mos closely ela ed species ( o an o e iew o a y-acids
p o iles in Geode ma ophilus see Supplemen a y Table S2). The
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FIGURE 3 | Pola lipids p o ile o s ain YIM M13156T(a),G. soli DSM 45843T(b),G. aihuensis DSM 45962T(c) and G. e ae DSM 45844T(d) a e sepa a ion by
wo-dimensional TLC using he sol en s chlo o o m:me hanol:wa e (65:25:4; : : ) in he i s dimension and chlo o o m:me hanol:ace ic acid:wa e (80:12:15:4;
: : : ) in he second one. Pla es we e sp ayed wi h molybda ophospho ic acid (3.5%; Me ckTM) o de ec ion o he o al pola lipids. DPG, diphospha idylglyce ol;
PG, phospha idylglyce ol; PE, phospha idyle hanolamine; OH-PE, hyd oxyphospha idyle hanolamine; PI, phospha idylinosi ol; GPI, glycophospha idylinosi ol; GPL,
uniden i ied glycophospholipid; AL, aminolipid; L1-7, uniden i ied lipids. All da a a e om his s udy.
2-hyd oxy a y acids a e a p e- equisi e o he syn hesis o he
hyd oxyla ed pola lipid (Kämp e e al., 2010).
The clus e ing analysis o he logi - ans o med a y-acid
p o iles e ealed ha hose o YIM M13156T,G. b asiliensis,
G. soli, G. aihuensis, and G. e ae sepa a ed i s . Hence
he p o iles o he o he Geode ma ophilus species we e mo e
simila o he ones o Blas ococcus and Modes obac e (Figu e 4).
Acco dingly, he andomFo es analysis iden i ied h ee mino
componen s (iso-C17:010-me hyl, C17:03OH and iso-C16:0
10-me hyl) highly p edic i e o he g oup o med by s ain YIM
M13156T,G. b asiliensis, G. soli, G. aihuensis, and G. e ae.
The a y-acid p o iles hus e en independen ly suppo ed he
assignmen o hese i e species o a new genus (Supplemen a y
Figu es S3, S4).
Whole-cell suga analysis e ealed hamnose, ibose,
mannose, glucose and an uniden i ied suga showing a simila
ch oma og aphic mobili y han he uniden i ied suga ound in
G. no mandii DSM 45417Tby Mon e o-Calasanz e al. (2013b).
On he o he hand, G. soli DSM 45843T,G. aihuensis DSM
45962Tand G. e ae DSM 45844Tshowed he same suga p o ile
as G. b asiliensis DSM 45426T(Be azzo e al., 2014), consis ing
o ibose, mannose, glucose and galac ose (Leche alie and
Leche alie , 1970). The absence o galac ose in he p o ile o
s ain YIM M13156Tmigh di e en ia e his species om o he s
wi hin he g oup.
In o de o s anda dize he pheno ypic da a a ailable o
he genus Geode ma ophilus, analyses o pola lipids, whole-cell
suga s and menaquinones we e also ca ied ou o he species
G. obscu us DSM 43160T,G. ube DSM 45317Tand G. nig escens
DSM 45408T. The pola lipid and menaquinone p o iles o hose
species we e al eady speci ied in he Table 1 o he o iginal
desc ip ion o G. a ena ius DSM 45418Tby Mon e o-Calasanz
e al. (2012), ne e heless hey we e ne e p ope ly desc ibed
no he species emended. The h ee species showed he ypical
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TABLE 1 | Pheno ypic cha ac e is ics o s ain YIM M13156Tin compa ison o hose o he ype s ains o he mos closely ela ed Geode ma ophilus species.
Cha ac e is ics 1 2 3 4 5
Mo ili y +−+++
Oxida ion o :
S achyose − − + +/− −
α-D-Lac ose − + + +/− +
D-Melibiose − +/− + + −
N-Ace yl-D-Galac osamine −+−−−
D-Mannose +++−+
L-Rhamnose −-++−+
L-Aspa ic acid −−−−+
Quinic acid −++++
L-Lac ic acid −−+−+
Ci ic acid +−+−−
α-Ke o-Glu a ic acid +−−−+
D-Malic acid +−+−+
L-Malic acid +−+−+
Pola lipids DPG, PE, OH-PE,
PI, GPI
DPG, PE, OH-PE,
PI, GPI
DPG, PG, PE,
OH-PE, PI, GPI,
GPL
DPG, PG, PE,
OH-PE, PI, GPI
DPG, PG, PE,
OH-PE, PI, GPI
Suga s Rham, Rib, Man,
Gluc, US
Rib, Man, Gluc, Gal Rib, Man, Gluc, Gal Rib, Man, Gluc, Gal Rib, Man, Gluc, Gal
Menaquinonesa# MK-9(H4),
MK-9(H0)
MK-9(H4),
MK-9(H2),
MK-9(H0),
MK-10(H4)
MK-9(H4),
MK-9(H2),
MK-9(H0)
MK-9(H4),
MK-9(H2),
MK-9(H0),
MK-8(H4)
MK-9(H4),
MK-9(H2),
MK-9(H0),
MK-10(H4)
Fa y acidsb# iso-C16:0,
C17:1ω8c, iso-C15:0
iso-C15:0,iso-C16:0iso-C15:0,iso-C16:0,
iso-C17:0
iso-C15:0,iso-C16:0iso-C16:0,iso-C15:0,
C18:1ω9c
S ains: 1, s ain YIM M13156T; 2, G. b asiliensis DSM 44526T; 3, G. soli DSM 45843T; 4, G. aihuensis DSM 45962T; 5, G. e ae DSM 45844T. All da a a e om his s udy.
+, posi i e eac ion; −, nega i e eac ion; +/−, ambiguous; DPG, diphospha idylglyce ol; PE, phospha idyle hanolamine; PE-OH, hyd oxy-phospha idyle hanolamine; PG,
phospha idylglyce ol; PI, phospha idylinosi ol; GPL, uniden i ied glycophospholipid; APL, uniden i ied amino-phospholipid; Rham, hamnose; Rib, ibose; Man, mannose;
Gluc, glucose; US, uniden i ied suga ; MK, menaquinones; iso-, iso-b anched. aonly componen s making up ≥1% peak a ea a io a e shown; bonly componen s making
up ≥10% peak a ea a io a e shown; #, he componen s a e lis ed in dec easing o de o quan i y.
pola -lipid p o ile obse ed in Geode ma ophilus consis ing o
diphospha idylglyce ol (DPG), phospha idyle hanolamine (PE),
phospha idylcholine (PC), phospha idylinosi ol (PI) and mino
amoun s o phospha idylglyce ol (PG) (see Supplemen a y
Figu e S5). Simila o he g oup o med by G. b asiliensis
DSM 44526T,G. soli DSM 45843T, G. aihuensis DSM 45962T
and G. e ae DSM 45844T,G. ube DSM 45317Tdisplayed
glycophospha idylinosi ol (GPI) in addi ion o an uniden i ied
phospholipid (PL). The pola -lipid p o iles o G. obscu us
DSM 43160Tand G. nig escens DSM 45408Tcon e sely
e ealed he ypical uniden i ied glycolipid al eady desc ibed
o mos Geode ma ophilus species (See supplemen a y Table
S1). Rega ding he MK pa e n o G. obscu us DSM 43160T,
apa om MK-9(H4) (64.3%) al eady indica ed by Zhang e al.
(2011), MK-9(H2) (8.7%), MK-9(H0) (4.9%) and MK-8(H4)
(4.3%) we e also e ealed. Ne e heless, in con as o Zhang
e al. (2011) and in addi ion o MK-9(H4), ou s udies did no
iden i y MK-9(H0) in he p o ile o G. ube DSM 45317T. The
whole-cell suga pa e ns o G. obscu us DSM 43160T e ealed
he p esence o ibose, xylose, mannose, glucose and galac ose.
G. ube DSM 45317Tdisplayed a p o ile consis ing o ibose
and glucose. Di e en ly om Nie e al. (2012) who iden i ied
galac ose, a abinose and glucosamine as he whole-cell suga
pa e s o G. nig escens DSM 45408T, ou esul s showed a p o ile
comp ising mannose, glucose, galac ose and aces o hamnose
and ibose. These p o iles a e consis en wi h hose p e iously
desc ibed in he genus, al hough i is wo h men ioning he
absence o galac ose in he p o iles o G. ube DSM 45317T,
a ea u e sha ed, as men ioned p e iously, wi h he s ain YIM
M13156T. The p esence o xylose was al eady desc ibed o
G. saha ensis DSM 45423T(Mon e o-Calasanz e al., 2013c).
DISCUSSION
Phylogene ic analysis based on whole genome and 16S RNA
gene sequences e ealed wi h s ong suppo ha s ain YIM
M13156Tand he species G. b asiliensis DSM 44526T,G. soli DSM
45843T,G. aihuensis DSM 45962Tand G. e ae DSM 45844T
o med a sepa a e lineage wi hin Geode ma ophilaceae, hence
Geode ma ophilus is no monophyle ic. Since he main goal o
phylogene ic sys ema ics is o ob ain monophyle ic axa (Hennig,
1965;Wiley and Liebe man, 2011) axonomic consequences
a e necessa y. A lumping app oach would equi e me ging all
Geode ma ophilaceae gene a in o Geode ma ophilus, which has
p io i y, and hus he gene a ion o 13 new names (i.e., new
combina ions o Blas ococcus and Modes obac e ). In con as ,
placing he abe an Geode ma ophilus species in o a sepa a e
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Mon e o-Calasanz e al. Taxonomic Rea angemen o Geode ma ophilaceae
FIGURE 4 | Fa y-acids dend og am es ima ed om he logi - ans o med pe cen alues as measu ed wi h he MIDI sys em using he Wa d algo i hm o
agglome a i e hie a chical clus e ing and euclidean dis ances using he p clus package o he Rs a is ical en i onmen . App oxima ely unbiased (AU, le ) and
boo s apping (BP, igh ) suppo alues a e shown abo e he b anches.
genus equi e he gene a ion o only ou new names, one o he
new genus and ou new combina ions. Taxonomic conse a ism,
mos easily be measu ed as in e sely p opo ional o he numbe
o new names o be c ea ed (B eide e al., 2014), hus clea ly
a o s he spli ing solu ion. These wo a gumen s alone jus i y
he need o in oduce a new genus o Geode ma ophilaceae.
Ne e heless, he pheno ype also p o ided ich in o ma ion
on he in e ela ionships o he en isaged new genus. S ain YIM
M13156Tand i s ou neighbo ing species we e dis inguished
om o he gene a in he amily Geode ma ophilaceae
by cell mo phology, he lack o spo es, he absence o
phospha idylcholine and he ypical uniden i ied glycolipid ound
ins Geode ma ophilus, he p esence o glycophospha idylinosi ol
and hyd oxyphospha idyle hanolamine in hei pola lipids
p o iles ( o an o e iew o he cha ac e is ics ha di e en ia e
he s ain YIM M13156T,G. b asiliensis, G. soli, G. aihuensis
and G. e ae om closely ela ed Geode ma ophilaceae gene a
see Supplemen a y Table S1 and andomFo es p edic ions
Supplemen a y Figu e S2) and he occu ence o iso-C17:02OH
and o he mino compounds (Supplemen a y Figu e S4 and
Supplemen a y Table S2) in hei a y-acids pa e ns.
Howe e , in phylogene ic sys ema ics diagnos ic ea u es o a
g oup a e insu icien o es ablish i as a axon because when hese
ea u es we e plesiomo phic (ances al) ins ead o apomo phic
(de i ed) hen hey could well diagnose a pa aphyle ic g oup
(Hennig, 1965;Wiley and Liebe man, 2011); ep iles a e a
classical example. Fo his eason, we s udied he dis ibu ion
o he abo e lis ed ea u es among Geode ma ophilaceae
and he ou g oup species C yp ospo angium a um (Tamu a
e al., 1998) and Spo ich hya polymo pha (Supplemen a y
Figu e S4 and Supplemen a y Table S2) o de e mining wi h
maximum-pa simony econs uc ions which cha ac e s a e
was apomo phic o which g oup (Figu e 1). Acco dingly,
p esence o hyd oxyphospha idyle hanolamine, iso-C17:0
10-me hyl, C17:03OH and iso-C16:010-me hyl appea ed as
synapomo phies o YIM M13156Tand i s ou neighbo ing
species; p esence o glycophospha idylinosi ol appea ed as
au apomo phy o Geode ma ophilaceae; seconda y absence o
glycophospha idylinosi ol and p esence o phospha idylcholine
as synapomo phy o co e Geode ma ophilus and Blas ococcus;
and p esence o he uniden i ied glycolipid as au opomo phies
o co e Geode ma ophilus. Hyd oxyphospha idyle hanolamine
is p esen in G. pul e is, oo, bu was gained independen ly;
he uniden i ied glycolipid is missing in G. ube bu was
seconda ily los (Figu e 1). The s a us o cell mo phology and
spo e o ma ion was unclea due o missing da a (Supplemen a y
Table S1) bu he al eady assembled e idence clea ly suppo s he
en isaged eclassi ica ion.
The cu en ly s ill domina ing p ac ice o polyphasic
axonomy (Vandamme e al., 1996) in mic obial sys ema ics
has inc easingly been called in o ques ion in ecen yea s
(Su cli e e al., 2012;Vandamme and Pee e s, 2014;Su cli e,
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Mon e o-Calasanz e al. Taxonomic Rea angemen o Geode ma ophilaceae
2015;Thompson e al., 2015). C i ics mainly emphasize ha
mo e genomic in o ma ion should be inco po a ed and ha
some o he nowadays ou inely conduc ed pheno ypic es s
migh ac ually be unnecessa y. I was also ob ious in he p esen
s udy ha genome-scale da a yielded high esolu ion (Figu e 1),
which ia a backbone cons ain (Hahnke e al., 2016) could
also in o m a mo e comp ehensi ely sampled 16S RNA gene
analysis (Figu e 2).
Whe eas phylogenomics is expec ed o yield mo e s ongly
esol ed ees, hese migh in heo y also yield mo e con lic
be ween dis inc analyses (Je oy e al., 2006;Klenk and Göke ,
2010). Ho izon al gene ans e is a known cause o opological
con lic be ween analyses o single genes ha has e en been be
used o a gue agains hie a chical classi ica ion (Bap es e and
Bouche , 2009;Klenk and Göke , 2010). Howe e , he inc ease
o suppo in phylogenomic analyses a e adding genes up o
i ually all a ailable genes indica es a s ong hie a chical signal
(B eide e al., 2014), whe eas he selec ion o p e-de ined se
o ew genes does no yield genome-scale da a and elies on
a p io i assump ions abou he ela i e sui abili y o genes o
analysis (Lienau and DeSalle, 2009;Klenk and Göke , 2010).
Me hods such as GBDP, which in e ees a he di ec ly om
comple e genomes, a e mo e p omising o ob aining a uly
genome-based classi ica ion, bu con lic be ween single genes
aises he ques ion o how o no o e es ima e phylogene ic
con idence (Taylo and Piel, 2004). This issue can ha dly be
o e es ima ed because in phylogene ic sys ema ics axa mus
be as well suppo ed as monophyle ic as possible (Vences
e al., 2013), which ules ou all phylogenomic me hods ha
do no e en yield s a is ical suppo alues. Ins ead o s anda d
boo s apping, he pa i ion boo s ap, which esamples en i e
genes, is supposed o educe con lic and p o ide mo e eliable
suppo alues (Siddall, 2010;Simon e al., 2017). Wi hin
he GBDP pseudo-boo s apping amewo k, he g eedy-wi h-
imming algo i hm (Meie -Kol ho e al., 2014a) as applied in
he p esen s udy is he equi alen o he pa i ion boo s ap
(Hahnke e al., 2016).
P ope ly analyzed genome-scale da a hus add ess he cu en
sho coming o polyphasic axonomy ha i s s a ing poin is an
o en poo ly esol ed 16S RNA gene ee. A e choosing axon
bounda ies om such a ee, he polyphasic app oach would hen
p oceed wi h de e mining diagnos ic ea u es o he new axa.
Tools such as andomFo es as used he e can assis in he ask
o selec ea u es p edic i e o a ce ain g oup o in e es om
la ge numbe s o cha ac e s.
Howe e , a mo e se ious p oblem wi h he cu en ly
domina ing polyphasic app oach is ha such diagnos ic
ea u es canno p o ide independen e idence o axon
bounda ies when hese bounda ies we e al eady used o
choose he ea u es. Independen e idence can ins ead be
ob ained by de ec ing he same g oups independen ly when
analyzing he addi ional ea u es (Figu e 3). Mo eo e , in
phylogene ic sys ema ics diagnos ic ea u es a e insu icien
o jus i ying a axon because axa mus be monophyle ic,
whe eas diagnos ic cha ac e s a es can be plesiomo phic
and hus diagnose a pa aphyle ic g oup (Hennig, 1965;
Wiley and Liebe man, 2011). To he bes o ou knowledge,
publica ions applying polyphasic axonomy ha dly e e add ess
hese wo issues, e en hough phylogene ic sys ema ics is he
app op ia e pa adigm o mic obial axonomy, oo (Klenk
and Göke , 2010). Ou g oup and ing oup compa isons migh
some imes be di icul because o incomple e cha ac e sampling
bu in he p esen s udy succeeded in de e mining ha
some cha ac e s a es we e apomo phies o he en isaged
new axa. We hus belie e ha mic obial axonomy would
no only bene i om inco po a ing genomic in o ma ion
bu also om adhe ing o he p inciples o phylogene ic
sys ema ics.
Taxonomic Consequences
Based on pheno ypic and geno ypic da a p esen ed, we p opose
ha s ain YIM M13156T ep esen s a no el species o a new
genus o Geode ma ophilaceae, o which he name Klenkia
ma ina gen. no ., sp. no . is p oposed. In addi ion we p opose
he eclassi ica ion o Geode ma ophilus b asiliensis as Klenkia
b asiliensis comb. no ., Geode ma ophilus soli as Klenkia soli
comb. no ., Geode ma ophilus aihuensis as Klenkia aihuensis
comb. no . and Geode ma ophilus e ae as Klenkia e ae comb.
no . The emenda ion o he genus Geode ma ophilus and
he species G. a icanus, G. ama gosae, G. aquaeduc us, G.
dic yospo us, G. nig escens, G. no mandii, G. obscu us, G.
poikilo ophus, G. pul e is, G. ube , G. sabuli, G. saha ensis, G.
sicca us, and G. ellu is a e also p oposed in his s udy.
Desc ip ion o Klenkia gen. no .
Klen’ki.a (N. L. em. n. Klenkia, named in hono o Hans-Pe e
Klenk, P o esso a Newcas le Uni e si y (Uni ed Kingdom) in
ecogni ion o his con ibu ions o bac e ial sys ema ics including
he p omo ion o s udies in Geode ma ophilaceae).
Cells a e mo ile, od-shaped and G am- eac ion-posi i e. The
pep idoglycan in he cell-wall con ains meso-diaminopimelic
acid. The p edominan menaquinones a e MK-9(H4) and
MK-9(H0)bu MK-9(H2), MK-8(H4) and MK-10(H4) may
also be p esen in mino amoun s. The basic pola -lipids p o ile
includes diphospha idylglyce ol, phospha idyle hanolamine,
hyd oxyphospha idyle hanolamine, phospha idylinosi ol
and glycophosphoinosi ol. In some species an uniden i ied
glycophospholipid may be p esen . Phospha idylcholine is
absen . Majo cellula a y acids a e iso-C16:0and iso-C15:0. The
basic whole-cell suga pa e n includes ibose, mannose and
glucose. The p esence o galac ose is equen . Rhamnose may
occu in some species. The genomic G+C con en is 74.0–75.0%.
The ype species o Klenkia is Klenkia ma ina, sp. no .
Desc ip ion o Klenkia ma ina sp. no .
K. ma. i’na. (L. em. adj. ma ina, o he sea, ma ine).
Colonies a e pink-colo ed, con ex, ci cula and opaque wi h
a smoo h su ace and an en i e ma gin. Cells a e mo ile, od-
shaped and G am- eac ion-posi i e. Acco ding o he BIOLOG
Sys em: dex in, D-mal ose, D- ehalose, D-cellobiose, suc ose,
u anose, β-me hyl-D-glucoside, N-ace yl-D-glucosamine,
D-glucose, D-mannose, D- uc ose, D-galac ose, inosine,
D-manni ol, glyce ol, L-alanine, L-glu amic acid, L-py oglu amic
acid, pec in, me hyl py u a e, ci ic acid, α-ke o-glu a ic acid,
F on ie s in Mic obiology | www. on ie sin.o g 9Decembe 2017 | Volume 8 | A icle 2501