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Fatty acid composition of the Caprellidea (Crustacea: Amphipoda) from the Strait of Gibraltar

Abstract

The total fatty acid composition of nine species of caprellidean amphipods collected from the Strait of Gibraltar was investigated. All caprellids were characterised by high levels of polyunsaturated fatty acids, mainly eicosapentaenoic acid, 20:5(n-3), and docosahexaenoic acid, 22:6(n-3); other major fatty acids were the saturate palmitic acid, 16:0, and the monounsaturate oleic acid, 18:1(n-9). In spite of this general uniformity, univariate and multivariate analysis showed that Caprella acanthifera and C. grandimana differed from the remaining species ( C. danilevskii , C. equilibra , C. liparotensis , C. penantis , C. santosrosai , Phtisica marina and Pseudoprotella phasma ). These two species ( C. acanthifera and C. grandi- mana ) showed higher concentrations of 18:1(n-7) and 20:4(n-6) and lower percentages of 22:6(n-3). These results, together with higher values of the biomarker ratio 20:5(n-3)/22:6(n-3) and a lower ratio 18:1(n-9)/18:1(n-7), suggested a greater contribution of diatoms and macroalgae in the diet of C. acanthifera and C. grandimana and a lesser contribution of flagellates than in the remaining species. The cluster classification of the caprellid specimens from the Strait of Gibraltar based on the fatty acid composition was in agreement with the Cluster output from data of feeding behaviour. Sex-related changes in the fatty acid composition were also explored in C. acanthifera , C. danilevskii and C. penantis ; the percentage of 18:0, 20:4(n-6), and 20:5(n-3) was significantly higher in males, whereas 16:1(n-7) was higher in females. The intraspecific diferences of fatty acids in different environmental conditions seem to indicate that the consumption of diatoms in contrast to flagellates increases with the degree of eutrophication.

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Fatty acid composition of the Caprellidea (Crustacea: Amphipoda) from the Strait of Gibraltar

Author: Guerra García, José Manuel; Martínez Pita, Inés; Pita Calandre, María Luisa
Publisher: Consejo Superior de Investigaciones, Instituto de Ciencias del Mar
Year: 2004
DOI: 10.3989/scimar.2004.68n4501
Source: https://idus.us.es/bitstreams/11b849ba-77b7-4a5d-84d2-087512a194f4/download
FATTY ACIDS OF THE CAPRELLIDEA (CRUSTACEA: AMPHIPODA) 501
SCI. MAR., 68 (4): 501-510 SCIENTIA MARINA 2004
Fa y acid composi ion o he Cap ellidea (C us acea:
Amphipoda) om he S ai o Gib al a *
JOSÉ MANUEL GUERRA-GARCÍA1, INÉS MARTÍNEZ-PITA1and MARÍA LUISA PITA2
1 Labo a o io de Biología Ma ina, Depa amen o de Fisiología y Zoología, Facul ad de Biología, Uni e sidad de Se illa,
A da Reina Me cedes 6, 41012 Se illla, Spain. E-mail: [email p o ec ed]
2 Depa amen o de Bioquímica Médica y Biología Molecula , Facul ad de Medicina, Uni e sidad de Se illa,
A da. Sánchez-Pizjuán 4, 41009 Se illa, Spain.
SUMMARY: The o al a y acid composi ion o nine species o cap ellidean amphipods collec ed om he S ai o Gib al-
a was in es iga ed. All cap ellids we e cha ac e ised by high le els o polyunsa u a ed a y acids, mainly eicosapen aenoic
acid, 20:5(n-3), and docosahexaenoic acid, 22:6(n-3); o he majo a y acids we e he sa u a e palmi ic acid, 16:0, and he
monounsa u a e oleic acid, 18:1(n-9). In spi e o his gene al uni o mi y, uni a ia e and mul i a ia e analysis showed ha
Cap ella acan hi e a and C. g andimana di e ed om he emaining species (C. danile skii, C. equilib a, C. lipa o ensis,
C. penan is, C. san os osai, Ph isica ma ina and Pseudop o ella phasma). These wo species (C. acan hi e a and C. g andi-
mana) showed highe concen a ions o 18:1(n-7) and 20:4(n-6) and lowe pe cen ages o 22:6(n-3). These esul s, oge h-
e wi h highe alues o he bioma ke a io 20:5(n-3)/22:6(n-3) and a lowe a io 18:1(n-9)/18:1(n-7), sugges ed a g ea e
con ibu ion o dia oms and mac oalgae in he die o C. acan hi e a and C. g andimana and a lesse con ibu ion o lagel-
la es han in he emaining species. The clus e classi ica ion o he cap ellid specimens om he S ai o Gib al a based
on he a y acid composi ion was in ag eemen wi h he Clus e ou pu om da a o eeding beha iou . Sex- ela ed changes
in he a y acid composi ion we e also explo ed in C. acan hi e a, C. danile skii and C. penan is; he pe cen age o 18:0,
20:4(n-6), and 20:5(n-3) was signi ican ly highe in males, whe eas 16:1(n-7) was highe in emales. The in aspeci ic di -
e ences o a y acids in di e en en i onmen al condi ions seem o indica e ha he consump ion o dia oms in con as o
lagella es inc eases wi h he deg ee o eu ophica ion.
Key wo ds: a y acids, Amphipoda, Cap ellidea, S ai o Gib al a .
RESUMEN: COMPOSICIÓN DE ÁCIDOS GRASOS DE LOS CAPRÉLIDOS (CRUSTACEA: AMPHIPODA) DEL ESTRECHO DE GIBRALTAR.
– Se es udió la composición de ácidos g asos de nue e especies de an ípodos cap élidos ecolec ados en el Es echo de
Gib al a . Todos los cap élidos se ca ac e iza on po p esen a ni eles ele ados de ácidos g asos poliinsa u ados, p incipal-
men e eicosapen aenoico, 20:5(n-3), y docosahexaenoico, 22:6(n-3); o os ácidos g asos impo an es ue on el sa u ado
ácido palmí ico, 16:0, y el monoinsa u ado ácido oleico, 18:1(n-9). A pesa de es e pa ón gene al, los análisis uni a ian es
y mul i a ian es mos a on que, a endiendo a la composición de ácidos g asos, Cap ella acan hi e a y C. g andimana se
di e encia on signi ica i amen e de las especies es an es (C. danile skii, C. equilib a, C. lipa o ensis, C. penan is, C. san-
os osai, Ph isica ma ina y Pseudop o ella phasma). Es as dos especies (C. acan hi e a y C. g andimana) mos a on po -
cen ajes más al os de 18:1(n-7) y 20:4(n-6) y más bajos de 22:6(n-3). Es os esul ados, jun o con alo es más al os del bio-
ma cado 20:5(n-3)/22:6(n-3) y más bajos del 18:1(n-9)/18:1(n-7) sugie en una mayo con ibución de dia omeas y mac o-
algas en la die a de C. acan hi e a y C. g andimana y una meno con ibución de lagelados. El dend og ama de clasi ica-
ción de los cap élidos del Es echo de Gib al a basado en la composición de ácidos g asos ue simila al ob enido a pa i
de los da os de compo amien o alimen icio de las especies. Los cambios en la composición de ácidos g asos con espec o
al sexo ue on explo ados en C. acan hi e a, C. danile skii y C. penan is; el po cen aje de 18:00, 20:4(n-6), y 20:5(n-3) ue
signi ica i amen e supe io en machos, mien as que el de 16:1(n-7) ue supe io en las hemb as. Las di e encias in aespe-
cí icas en la composición de ácidos g asos en di e en es condiciones ambien ales pa ecen indica que el consumo de dia o-
meas en e al de dino lagelados se inc emen a al aumen a el g ado de eu o ización.
Palab as cla e: ácidos g asos, Amphipoda, Cap ellidea, Es echo de Gib al a .
*Recei ed Oc obe 1, 2003. Accep ed Ap il 29, 2004.
sm68n41877 7/12/04 11:30 Página 501
INTRODUCTION
Cap ellidean amphipods a e small c us aceans
which inhabi many li o al zones. They a e com-
mon and di e se on e ec hyd ozoans and b y-
ozoans, and on plan subs a a such as mac oalgae
and seag asses (McCain, 1968). They eed on sus-
pended ma e ials, p ey on o he o ganisms o g aze
on epibio ic auna and lo a (Caine, 1974). Locally,
cap ellids a e impo an p eys o many coas al ish
species (Caine, 1989, 1991) and can be use ul as
bioindica o s o wa e quali y (Gue a-Ga cía and
Ga cía-Gómez, 2001).
The S ai o Gib al a is an in e es ing zoogeo-
g aphical a ea, especially om he poin o iew o
he in e change o species be ween he A lan ic and
he Medi e anean, and he Eu opean and A ican
aunas. Recen ly, he Ma ine Biology Labo a o y o
he Uni e si y o Se ille has been conduc ing
esea ch p og ammes ocusing on axonomy, ecolo-
gy and beha iou o he cap ellid communi ies o
he S ai o Gib al a (Gue a-Ga cía, 2001a; Gue -
a-Ga cía and Ga cía-Gómez, 2001; Gue a-Ga cía
and Takeuchi, 2002; Gue a-Ga cía e al., 2002).
The a y acid composi ion o ma ine amphipods
is known o be ela ed o wa e empe a u e and
eeding modes (Kawashima e al., 1999; G ae e e
al., 2001) and a a y acid app oach can be use ul o
explo e habi a p e e ences and eeding s a egies.
Howe e , he e is a lack o s udies dealing wi h he
a y acid composi ion in he Cap ellidea. Da a o
a y acids ha e been eco ded only in i e cap ellid
species be o e his s udy, all o hem collec ed om
Japanese wa e s (Kawashima e al., 1999): an
uniden i ied cap ellid species and ou o he species
(C. acan hogas e , C. danile skii, Cap ella mu ica
and C. penan is) inhabi ing O suchi and Mu su Bays
in no he n Japan.
The objec i e o his pape is o analyse he a y
acid composi ion o a ious cap ellid species om
he S ai o Gib al a and o explo e he sex- ela ed
changes and he in aspeci ic a ia ions in a y
acids depending on he en i onmen al condi ions.
These aspec s had no been s udied in Cap ellidea
be o e his s udy.
MATERIAL AND METHODS
S udy a ea
The S ai o Gib al a is si ua ed on he bo de o
he Medi e anean Sea and he A lan ic Ocean.
Th ee a eas o di e en en i onmen al cha ac e is-
ics we e selec ed o sampling he cap ellids: El
Po il and Ta i a island in sou he n Spain, and Ceu a
in no h A ica (Fig. 1). El Po il is loca ed in he
es ua y a ea o he i e Pied as. The place is subjec
o impo an luc ua ions in salini y and empe a u e
and ecei es a conside able o ganic en ichmen due
o he i e in luence. A e age wa e empe a u es in
summe a e close o 25ºC (Gue a-Ga cía e al.,
2000a). In con as , Ta i a island, as a pa o a Na -
u al Pa k, is a e y well p o ec ed a ea cha ac e ised
by clean and coole wa e s (mean alues o abou
17ºC in summe ) and highly biodi e se ma ine ben-
hic communi ies (Gue a-Ga cía and Ga cía-
Gómez, 2000; Gue a-Ga cía e al., 2000b). Ceu a is
loca ed on he no h A ican side o he S ai o
Gib al a and he wa e empe a u e in summe is
502 J.M. GUERRA-GARCÍA e al.
FIG. 1. – Map o he S ai o Gib al a showing he sampling locali ies: El Po il, Ta i a and Ceu a.
sm68n41877 7/12/04 11:30 Página 502
abou 19-20ºC (Gue a-Ga cía, 2001b). The deg ee
o human in luence in he li o al a ea o Ceu a is
in e media e be ween he Ta i a island (no an h o-
pogenic in luence) and El Po il (a high le el o
an h opogenic in luence). The e o e, in selec ing
hese h ee a eas, a ange o condi ions is encom-
passed o check in aspeci ic a iabili y in he a y
acid composi ion.
Sample collec ion
Nine species o cap ellid amphipods we e sam-
pled o he s udy (Table 1). The specimens we e
collec ed by hand in in e idal a eas and using
sno kelling and scuba di ing in in ali o al zones.
Immedia ely a e sampling, he indi iduals we e
so ed in o species and s o ed a –80 ºC o la e
analysis.
Fa y acid analysis
Samples o he di e en species o cap ellids
(25-30 mg) we e homogenised wi h 0.9% NaCl.
Fa y acid me hyl es e s we e p epa ed by a di ec
anses e i ica ion eac ion acco ding o Lepage and
Roy (1987): 2 ml o me hanol-benzene 4:1 ( / ) was
added o 0.2 ml o homogena e and hen, while s i -
ing, 0.2 ml o ace yl chlo ide was slowly added.
Tubes we e igh ly closed and main ained a 100ºC
o 1 h. A e cooling, 5 ml o 6% K2CO3solu ion
was added. The ubes we e hen shaken and cen-
i uged and an aliquo o he benzene uppe phase
was injec ed in o he ch oma og aph o a y acid
analysis.
Analysis o a y acid me hyl es e s was pe -
o med by gas-liquid ch oma og aphy using a
Hewle Packa d 5890 gas ch oma og aph equipped
wi h a 30 m long x 0.25 mm in e nal diame e TR-
WAX used silica capilla y column (Teknok oma,
Ba celona, Spain). Peaks we e iden i ied by com-
pa ison wi h known s anda ds (Supelco, Belle on e,
PA, USA), and he esul s we e epo ed as a ea pe -
cen ages.
Bioma ke a ios
Based on he a y-acid composi ion, a a ie y o
bioma ke s and a ios we e de e mined o ob ain
in o ma ion on die a y composi ion, ophic le el and
eeding beha iou . The o al pe cen age o polyunsa -
u a ed (PUFA) and sa u a ed (SFA) we e calcula ed.
The a io 18:1(n-9)/18:1(n-7) has been p oposed as a
ela i e measu e o ca ni o ous die in ma ine in e -
eb a es (Falk-Pe e sen e al., 2000; Auel e al.,
2002). In addi ion, he a ios 16:1(n-7)/16:0 and
20:5(n-3)/22:6(n-3) we e assessed, which allows di -
e en ia ion be ween a dia om- o lagella e-based
die (Nelson e al., 2001; Auel e al., 2002).
FATTY ACIDS OF THE CAPRELLIDEA (CRUSTACEA: AMPHIPODA) 503
Table 1. Cap ellids om he S ai o Gib al a used o he s udy. De ails o locali y, da a, dep h and subs a a a e gi en. [n=numbe o
samples; each sample con ains a numbe o specimens enough o chemical analysis (25-30 mg)]
Species Locali y Da e Dep h Subs a a
Cap ella acan hi e a Leach, 1814 Ta i a (n=9) May, 2002 In e idal Co allina elonga a, Gelidium pusillum,
Halop e is scopa ia
Ceu a (n=2) Augus , 2002 5 m Cys osei a ama isci olia
Cap ella danile skii Cze nia skii, 1868 Ceu a (n=33) Augus , 2002 In e idal Cys osei a ama isci olia, C. usneoides
Cap ella equilib a Say, 1818 El Po il (n=1) Ap il, 2002 In e idal Bugula ne i ina
Cap ella g andimana Maye , 1882 Ta i a (n=2) May, 2002 In e idal Co allina elonga a, Gelidium pusillum,
Halop e is scopa ia
Cap ella lipa o ensis Halle , 1879 Ceu a (n=2) Augus , 2002 5 m Cys osei a ama isci olia
Cap ella penan is Leach, 1814 Ta i a (n=3) May, 2002 In e idal Gelidium sesquipedale
Ceu a (n=4) Augus , 2002 In e idal Cys osei a ama isci olia, C. usneoides
El Po il (n=1) Ap il, 2002 In e idal Bugula ne i ina, Cys osei a sp.
Cap ella san os osai Sánchez-Moyano, Ceu a (n=3) Augus , 2002 5-10 m Sphae ococcus co onopi olius
Jiménez-Ma ín & Ga cía-Gómez, 1995
Ph isica ma ina Slabbe , 1769 Ceu a (n=3) Augus , 2002 5-30 m Cys osei a ama isci olia, Halop e is
scopa ia, Gymnangium sp.
Pseudop o ella phasma (Mon agu, 1804) Ceu a (n=2) Augus , 2002 25-30 m Gymnangium sp
El Po il (n=2) Ap il, 2002 In e idal Bugula ne i ina, Cys osei a sp.
sm68n41877 7/12/04 11:30 Página 503
S a is ical analysis
The possible di e ences in he a y acid compo-
si ion be ween species, oge he wi h he in aspeci -
ic di e ences be ween sexes and sample si es, we e
es ed. The da a was e i y o no mali y using he
Kolmogo o -Smi no es and Le ene’s es was
used o check he homogenei y o a iances. P o id-
ed ha he e was no no mali y and/o homogenei y
o a iances, he non-pa ame ic K uskal-Wallis es
was used. The a ini ies be ween species based on
he a y acid composi ion we e es ablished h ough
Clus e analysis using he UPGMA me hod
(unweigh ed Pai G oup Me hod using a i hme ic
A e ages) (Snea h and Sokal, 1973). An MDS (non-
me ic Mul idimensional Scaling) analysis was also
conduc ed and he K uskal s ess coe icien was
calcula ed o es he o dina ion (K uskal and Wish,
1978). The P ime compu e package .5 (Cla ke
and Go ley, 2001) and he p og am PC-ORD (PC-
O dina ion) . 3.05 (McCune and Me o d, 1997)
we e used o mul i a ia e analyses. Fo uni a ia e
analyses he BMDP (BioMedical Da a P og ams)
was used (Dixon, 1983).
RESULTS
A de ailed desc ip ion o mean alues o a y
acid pe cen ages oge he wi h he bioma ke a ios
is gi en in Table 2 and Figu es 2 and 3. A leas 29
a y acids wi h a numbe o ca bon a oms om 14
o 22 we e p esen in he s udied cap ellid species.
Unsa u a ed acids we e he majo a y acids,
accoun ing o 69-75% o o al a y acids. Polyun-
sa u a ed a y acids (PUFA) we e he dominan
unsa u a ed a y acids, making up 50% o he o al
a y acids. Eicosapen aenoic acid (20:5(n-3)) and
docosahexaenoic acid (22:6(n-3)) we e he wo
majo PUFA; o he majo a y acids ound in all
cap ellid species we e palmi ic acid (16:0) and oleic
acid (18:1(n-9)).
In gene al, he a y acid composi ion was simila
in all species (Table 2). Howe e , he pe cen age o
504 J.M. GUERRA-GARCÍA e al.
TABLE 2. – Pe cen age o a y acid composi ion in he Cap ellidea om he S ai o Gib al a .
Cap ella Cap ella Cap ella Cap ella Cap ella Cap ella Cap ella Ph isica Pseudop o ella
acan hi e a g andim. danile skii equilib a lipa o . penan is san os osai ma ina phasma
14:0 1.62 1.52 2.21 2.56 2.79 1.86 3.21 2.62 3.26
15:0 0.68 0.66 0.29 0.61 0.53 0.40 0.62 0.65 1.11
16:0 17.88 17.59 23.10 18.13 18.75 19.23 18.09 16.14 19.77
16:1(n-7) 5.48 5.06 5.16 9.94 8.72 5.68 9.01 8.88 7.08
16:2(n-4) 1.36 1.91 0.70 2.15 1.00 1.61 0.78 3.01 1.40
17:0 0.99 1.16 0.45 1.20 0.84 0.82 0.98 1.00 1.32
18:0 3.80 3.53 3.31 4.56 4.10 4.16 4.81 4.94 5.08
18:1(n-9) 11.07 10.99 13.57 11.44 10.75 13.73 10.73 13.17 11.03
18:1(n-7) 6.70 7.23 1.96 3.00 1.88 2.19 2.43 2.09 2.61
18:1(n-5) 0.80 1.12 0.42 1.33 0.79 1.14 0.65 2.33 0.90
18:2(n-6) 1.79 1.47 4.22 2.07 1.74 2.63 1.85 1.80 1.59
18:3(n-6) 0.56 0.36 0.40 0.31 0.32 0.42 0.35 0.35 0.35
18:3(n-3) 1.52 1.18 0.90 0.95 0.82 0.55 0.83 1.02 1.51
20:1(n-9) 0.91 0.52 1.05 0.52 1.28 1.12 1.18 1.37 1.30
20:1(n-7) 0.74 0.46 0.26 0.46 0.23 0.29 0.23 0.22 0.38
20:2(n-6) 0.52 0.42 0.81 0.42 0.73 0.87 0.75 0.73 0.71
20:3(n-6) 0.49 0.31 0.13 0.31 0.19 0.11 0.20 0.15 0.13
20:4(n-6) 10.00 10.25 2.87 2.33 3.59 3.89 3.38 2.42 2.79
20:3(n-3) 0.58 0.36 0.25 0.43 0.40 0.26 0.43 0.36 0.40
20:4(n-3) 0.25 0.20 0.68 0.49 0.46 0.34 0.44 0.51 0.46
20:5(n-3) 20.57 21.45 15.19 17.04 18.84 16.40 19.39 15.18 12.80
21:5(n-3) 0.24 0.16 0.43 0.32 0.48 0.29 0.45 0.39 0.33
22:0 0.39 0.38 0.26 0.29 0.34 0.31 0.42 0.41 0.23
22:1(n-9) 0.26 0.25 0.18 0.23 0.33 0.21 0.35 0.28 0.16
22:2(n-6) 0.53 0.55 0.51 0.92 0.66 0.55 0.50 0.45 0.80
22:4(n-6) 0.96 1.20 0.19 0.34 0.36 0.28 0.29 0.33 0.48
22:5(n-6) 0.80 0.51 0.25 0.47 0.62 0.47 0.70 0.49 1.00
22:5(n-3) 0.71 1.47 0.44 1.07 0.78 0.70 0.75 0.68 0.99
22:6(n-3) 7.78 7.72 19.87 15.31 17.70 19.47 16.18 18.02 20.00
To al sa u a es 25.37 24.84 29.61 27.00 27.35 26.79 28.14 25.77 30.78
Sum monounsa u a es 25.97 25.63 22.60 26.92 23.97 24.37 24.58 28.34 23.46
Sum polyunsa u a es 48.66 49.53 47.85 46.08 48.68 48.85 47.29 45.89 45.76
To al unsa u a es 74.63 75.16 70.45 73.00 72.65 73.21 71.86 74.23 69.22
Sa u a es/Unsa u a es 0.34 0.33 0.42 0.36 0.38 0.37 0.39 0.35 0.44
sm68n41877 7/12/04 11:30 Página 504
FATTY ACIDS OF THE CAPRELLIDEA (CRUSTACEA: AMPHIPODA) 505
FIG. 2. – Mean alues and s anda d de ia ions o he pe cen age o he dominan a y-acids measu ed in he s udied cap ellid species. Ca:
Cap ella acan hi e a; Cd: C. danile skii; Ce: C. equilib a; Cg: C. g andimana; Cl: C. lipa o ensis; Cp: C. penan is; Cs: C. san os osai; Pm:
Ph isica ma ina; Pp: Pseudop o ella phasma. Signi ican di e ences we e ound in C. acan hi e a and C. g andimana wi h espec o he
o he se en species o 18:1(n-7), 20:4(n-6), 22:6(n-3) (*, p<0.05).
sm68n41877 7/12/04 11:30 Página 505

506 J.M. GUERRA-GARCÍA e al.
FIG. 3. – Mean alues and s anda d de ia ions o he bioma ke a ios measu ed in he s udied cap ellid species. Ca: Cap ella acan hi e a;
Cd: C. danile skii; Ce: C. equilib a; Cg: C. g andimana; Cl: C. lipa o ensis; Cp: C. penan is; Cs: C. san os osai; Pm: Ph isica ma ina; Pp:
Pseudop o ella phasma. Signi ican di e ences we e ound in C. acan hi e a and C. g andimana wi h espec o he o he se en species o
18:1(n-9)/18:1(n-7) and 20:5(n-3)/22:6(n-3) (*, p<0.05).
FIG. 4. – MDS o dina ion o he cap ellid species acco ding o he a y acid composi ion. Do ed lines ci cles indica e he g oups ob ained
wi h he Clus e analysis (Fig. 5). Scale ba s: 1 mm.
sm68n41877 7/12/04 11:30 Página 506
he a y acids 18:1(n-7) and 20:4(n-6) we e signi i-
can ly highe in C. acan hi e a and C. g andimana
han in he emaining species (K uskal-Wallis es ,
p<0.05). Signi ican di e ences we e also ob ained
o he pe cen age o 22:6(n-3), which was lowe in
C. acan hi e a and C. g andimana (Fig. 2).
The bioma ke a io 18:1(n-9)/18:1(n-7) was sig-
ni ican ly lowe in C. acan hi e a and C. g andi-
mana han in o he species, whe eas he a io
20:5(n-3)/22:6(n-3) was highe (K uskal-Wallis es ,
p<0.05) (Fig. 3)
When he a y-acid ma ix was used in he mul-
i a ia e analyses o explo e he simila i y be ween
species, he pa e n ob ained wi h he uni a ia e
analysis was con i med (Fig. 4 and 5). Cap ella
acan hi e a and C. g andimana we e clea ly sepa-
FATTY ACIDS OF THE CAPRELLIDEA (CRUSTACEA: AMPHIPODA) 507
FIG. 5. – Dend og am o simila i y be ween he cap ellid species, p oduced om pe cen age da a o a y acids.
FIG. 6. – Pe cen age o ou selec ed a y acids in males and emales o Cap ella acan hi e a, C. danile skii and C. penan is. The alues a e
exp essed as mean and s anda d de ia ion (numbe o pools, n=3-4). Signi ican di e ences in he ou a y acids be ween males and emales
we e ob ained (*p<0.05, **p<0.01).
sm68n41877 7/12/04 11:31 Página 507
a ed om he emaining species in bo h he MDS
o dina ion ou pu (Fig. 4) and he dend og am (Fig.
5). The Clus e analysis based on he Euclidean dis-
ance showed ha wo species g oups can be di e -
en ia ed (Fig. 5). The i s includes C. acan hi e a
and C. g andimana, cha ac e ised by highe con-
en s o 18:1(n-7) and 20:4(n-6) and lowe con en s
o 22:6(n-3). The second g oup can be spli in o wo
subg oups: he species C. penan is and C.
danile skii in one subg oup, and C. equilib a, C.
san os osai, C. lipa o ensis, Ph isica ma ina and
Pseudop o ella phasma in he o he subg oup; he
i s subg oup was cha ac e ised by sligh ly highe
concen a ions o 16:0 and 18:2(n-6) han he second
subg oup.
Sex- ela ed in luence on a y acid composi ion
Wi h espec o he in aspeci ic a ia ion be ween
males and emales, da a we e only a ailable o he
species C. acan hi e a, C. danile skii and C. penan-
is. Signi ican di e ences we e ound o he h ee
species be ween males and emales in he pe cen -
age o 16:1(n-7), 18:0, 20:4(n-6) and 20:5(n-3). The
amoun o 16:1(n-7) was signi ican ly highe in
emales whe eas he 18:0, 20:4(n-6) and 20:5(n-3)
pe cen ages we e signi ican ly highe in males
(K uskal-Wallis es , p<0.05) (Fig. 6).
In aspeci ic a ia ion o a y acids
Only he species Cap ella penan is was collec ed
in he h ee s udy a eas (Ta i a, Ceu a, El Po il).
Cap ella acan hi e a was ound in Ta i a and Ceu a
bu no in El Po il, and Pseudop o ella phasma was
collec ed om Ceu a and El Po il bu specimens
om Ta i a we e no a ailable o his s udy. The e
was a common pa e n o a ia ion in wo o he
majo a y acids, 16:1(n-7) and 22:6(n-3), o he
h ee cap ellid species (Fig. 7). I we conside a
g owing g adien o eu ophica ion om Ta i a o El
Po il, an inc ease in he pe cen age o 16:1(n-7) and
a dec ease in 22:6(n-3) could be obse ed.
DISCUSSION
In he p esen s udy he o al a y acids o he
cap ellid specimens we e analysed. Some p e ious
s udies (e.g. Kawashima e al. 1999) di e en ia ed
he a y acids o phospholipids om he a y acids
o iacylglyce ols. Howe e , G ae e e al. (2001)
showed ha he di e ences be ween he a y acid
composi ion o phospholipids as s uc u al compo-
nen s o memb anes and iacylglyce ols as s o age
lipids a e small. These au ho s p oposed ha u u e
s udies o ben hic amphipods should be done wi h
analysis o he o al lipid a y acid composi ion.
Fou majo a y acids cha ac e ised he a y
acid p o ile o he s udied cap ellid species, namely
16:0, 18:1(n-9), 20:5(n-3) and 22:6(n-3). These
we e also he mos abundan a y acids desc ibed in
a ious species o he wo o he amphipods g oups,
gamma ids and hype ids (Cla ke e al., 1985;
Phlege e al., 2000; Sco e al., 2001; Nelson e al.,
2001; Auel e al., 2002; Co eia e al. 2003)
508 J.M. GUERRA-GARCÍA e al.
FIG. 7. – Compa ison o he pe cen age o 16:1(n-7) and 22:6(n-3) along an inc easing g adien o eu ophica ion om Ta i a (unpollu ed
a ea) and El Po il (eu ophic a ea) in he cap ellids Cap ella acan hi e a, C. penan is and Pseudop o ella phasma. A ows indica e ha he
species was no collec ed om ha a ea. The alues a e exp essed as mean and s anda d de ia ion.
sm68n41877 7/12/04 11:31 Página 508
al hough in some species high le els o 16:1(n-7)
(G ae e, 2001) o 20:1(n-9) (Auel, 2002) ha e also
been ound.
The a y acid composi ion o cap ellids has only
been p e iously epo ed in a s udy ca ied ou by
Kawashima e al. (1999) in no he n Japan. Cap el-
lids om he S ai o Gib al a showed a a y acid
composi ion simila o ha desc ibed o he Japan-
ese cap ellids, excep o 18:1(n-9) and 20:5(n-3),
which showed lowe alues in he species collec ed
in he S ai o Gib al a . These di e ences may be
ela ed o di e ences in wa e empe a u e, as i has
been epo ed ha he amoun o 20:5(n-3) inc eas-
es when wa e empe a u e dec eases (Kawashima e
al., 1999). In he p esen s udy he pe cen age o
20:5(n-3) measu ed in he cap ellid species om
Ta i a (cha ac e ised by colde wa e s, 17 ºC in sum-
me ) anged om 18 o 22%, whe eas in he species
om El Po il (cha ac e ised by wa me wa e s, 25
ºC in summe ) anged om 11 o 17%. These anges
seem o suppo he in luence o he empe a u e on
a y acid composi ion, al hough he numbe o
specimens om El Po il is small, so he da a mus
be aken cau iously. In addi ion o he empe a u e,
he ype o die could also be in ol ed in hese a i-
a ions, as discussed la e .
The p esen s udy shows ha he a y acid com-
posi ion o he species Cap ella acan hi e a and C.
g andimana di e ed om ha o he o he se en
species. These wo species we e cha ac e ised by
signi ican highe pe cen ages o 18:1(n-7) and
20:4(n-6) and lowe alues o 22:6(n-3). These di -
e ences we e also e lec ed in some bioma ke
a ios. Cap ella acan hi e a and C. g andimana
showed highe alues o he a io 20:5(n-3)/22:6(n-
3) and lowe alues o he a io 18:1(n-9)/18:1(n-7).
Among he speci ic lipid componen s sugges ed o
use as ophic bioma ke s, high le els o he a y
acids 16:1(n-7), 18:1(n-7), 20:5(n-3) a e conside ed
o be an indica o o a dia om-based die (G ae e e
al., 2001; Nelson e al., 2001; Auel e al., 2002). In
con as , lagella es usually con ain high concen a-
ions o 22:6(n-3) (Sa gen e al., 1987; G ae e e
al., 1994; Sco e al., 2000), whe eas 20:4(n-6)
o igina es om mac oalgae and is inco po a ed
unmodi ied in he lipids o he amphipod (G ae e e
al., 2001). The a y acid 18:1(n-9) is conside ed o
be an indica o o a mo e ca ni o ous die (Nelson e
al., 2001) and has been associa ed wi h nec ophage
species (G ae e e al., 2001). The e o e, he combi-
na ion o a highe 20:5(n-3)/22:6(n-3) a io, a lowe
18:1(n-9)/18:1(n-7) a io and highe pe cen ages o
20:4(n-6) sugges s ha he e is a g ea e con ibu-
ion o dia oms and mac oalgae in he die o C.
acan hi e a and C. g andimana han in ha o he
emaining species. The a y acid 20:1(n-9) is also
conside ed o be an indica o o ca ni o ous die a y
inpu (Hopkins e al., 1993; Vi ue e al., 2000; Sco
e al., 2001) and in some species o a c ic hype ids
(Auel e al., 2002) high le els o 20:1(n-9) ha e
been epo ed. In his s udy, he pe cen age o
20:1(n-9) ound in he s udied cap ellids was e y
low (0.52-1.05%), which indica es ha he copepod
con ibu ion o he die o hese species is e y low
o inexis en .
The dend og am ob ained in he p esen s udy
based on he a y acid composi ion (Fig. 5) is in
ag eemen wi h he dend og am ep esen ed by
Gue a-Ga cía e al. (2002) based on he clinging
beha iou associa ed wi h eeding s a egies. The
species C.danile skii and C. penan is spend mos o
hei ime in a “pa allel” pos u e on he subs a e,
eeding mainly by sc aping, and bo h species a e
g ouped oge he in he eeding clus e (Gue a-Ga -
cía e al., 2002). Simila ly, Ph isica ma ina, Pseudo-
p o ella phasma, C. equilib a and C. san os osai a e
in he same g oup because hey ha e a simila eed-
ing beha iou , il e ing and p eda ing in an
“up igh ” posi ion. In he a y-acid clus e ou pu ,
hese species a e also e y close based on simila
pe cen ages o a y acids. The e o e, i seems ha
a y acid composi ion is signi ican ly ela ed o
eeding modes in cap ellids.
Al hough he a ailable da a o di e en ia ing
he a y acid composi ion in males and emales a e
sca ce, se e al clea pa e ns we e ob ained o h ee
o he nine s udied species. The pe cen age o 18:0,
20:4(n-6), and 20:5(n-3) was signi ican ly highe in
males o he h ee compa ed species (C. acan hi e a,
C. danile skii and C. penan is), whe eas 16:1(n-7)
was highe in emales. Simila pa e ns (excep o
18:0) ha e been epo ed ecen ly o he gam-
ma idean amphipod Gamma us lacus a (Co eia e
al., 2003). These di e ences in a y acid composi-
ion could e lec sligh di e ences in eeding s a e-
gies, such as he g ea e consump ion o dia oms by
he emales, maybe due o ep oduc i e pu poses.
Co eia e al. (2003) also ound age- ela ed changes
in he a y acid composi ion in Gamma us lacus a.
The pe cen age o 16:1(n-7) dec eased wi h age,
while 18:1(n-9), 20:1(n-9) and 20:1(n-11) inc eased
in adul specimens, al hough he age- ela ed changes
seem o be ela ed o he pe oxida ion s a us o he
animals in gamma ids (Co eia e al., 2003). Fu he
FATTY ACIDS OF THE CAPRELLIDEA (CRUSTACEA: AMPHIPODA) 509
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