P io i iza ion ool o IAS managemen 69
A concep ual amewo k o p io i iza ion
o in asi e alien species o managemen
acco ding o hei impac
Sab ina Kumschick1, S en Bache 2, Wayne Dawson3, Jaakko Heikkilä4,
AgnieszkaSendek5, The ese Pluess2, Tama a B. Robinson1, Ingol Kühn5
1 Cen e o In asion Biology, Depa men o Bo any and Zoology, S ellenbosch Uni e si y, Ma ieland,
7602, Sou h A ica 2Uni e si y o F ibou g, Depa men o Biology, Ecology & E olu ion Uni , Ch. du
Musée 10, 1700 F ibou g, Swi ze land 3Ecology, Depa men o Biology, Uni e si ä ss asse 10, Kons anz,
D 78464, Ge many 4MTT Ag i ood Resea ch Finland, Economic Resea ch, La oka anonkaa i 9, 00790
Helsinki, Finland 5UFZ, Helmhol z Cen e o En i onmen al Resea ch – UFZ, Dep . Communi y Eco-
logy, Theodo -Liese -S . 4, 06120 Halle, Ge many
Co esponding au ho : Sab ina Kumschick ([email p o ec ed])
Academic edi o : U. S a inge |Recei ed 7 Decembe 2012|Accep ed 11 Decembe 2012|Published 14 Decembe 2012
Ci a ion: Kumschick S, Bache S, Dawson W, Heikkilä J, Sendek A, Pluess T, Robinson TB, Kühn I (2012) A concep ual
amewo k o p io i iza ion o in asi e alien species o managemen acco ding o hei impac . NeoBio a 15: 69–100.
doi: 10.3897/neobio a.15.3323
Abs ac
The numbe o in asi e alien species is inc easing and so a e he impac s hese species cause o he en i-
onmen and economies. Ne e heless, esou ces o managemen a e limi ed, which makes p io i iza ion
una oidable. We p esen a p io i iza ion amewo k which can be use ul o decision make s as i includes
bo h a scien i ic impac assessmen and he e alua ion o impac impo ance by a ec ed s akeholde s. The
amewo k is di ided in o i e s eps, namely 1) s akeholde selec ion and weigh ing o s akeholde im-
po ance by he decision make , 2) ac ual desc ip ion and sco ing o changes by scien is s, 3) e alua ion
o he impo ance o impac ca ego ies by s akeholde s, 4) calcula ion o weigh ed impac ca ego ies and
5) calcula ion o inal impac sco e and decision making. The amewo k could be used a di e en scales
and by di e en au ho i ies. Fu he mo e, i would make he decision making p ocess anspa en and
e aceable o all s akeholde s and he gene al public.
Keywo ds
s akeholde , decision make , exo ic, gene ic sco ing sys em, impac , alue
Copy igh Sab ina Kumschick e al. This is an open access a icle dis ibu ed unde he e ms o he C ea i e Commons A ibu ion License 3.0
(CC-BY), which pe mi s un es ic ed use, dis ibu ion, and ep oduc ion in any medium, p o ided he o iginal au ho and sou ce a e c edi ed.
NeoBio a 15: 69–100 (2012)
doi: 10.3897/neobio a.15.3323
www.penso .ne /jou nals/neobio a
Re iew AR iCle
Ad ancing esea ch on alien species and biological in asions
A pee - e iewed open-access jou nal
NeoBio a
Sab ina Kumschick e al. / NeoBio a 15: 69–100 (2012)
70
in oduc ion
Impac s o in asi e alien species (IAS) a ec di e en ecep o en i onmen s, and a e
o en di ided in o en i onmen al and socio-economic impac s. Some o hese impac s
can esul in subs an ial mone a y cos s and/o al e a ions o en i e ecosys ems and
social sys ems (O’Dowd e al. 2003, Pimen el e al. 2005, Rease e al. 2007, Vilà e
al. 2010). A an in e na ional le el he ecological impac s o IAS a e add essed by he
Con en ion on Biological Di e si y (CBD 1992). Th ough his con en ion he need
o p io i iza ion and managemen o p io i y species has been highligh ed in he S a-
egic Plan o Biodi e si y 2011-2020 (COP 10 2010), al hough no guidance on how
o achie e his ideal is p o ided.
The e has been ecogni ion ha socie ies need o mi iga e nega i e impac s o
IAS, i.e. ind app op ia e means o manage IAS in a way ha hei impac s a e a leas
minimized, e.g. by e adica ion, educ ion below a speci ic h eshold, o con ainmen .
Howe e , esou ces o manage IAS a e limi ed and wi h inc easing globaliza ion, he
in lux o po en ially ha m ul o ganisms will likely con inue o inc ease (Pe ings e
al. 2010, Essl e al. 2011). The e a e wo app oaches o his p oblem. Fi s ly, o limi
new alien species om en e ing an a ea/coun y, o which pu pose bo de con ol
isk assessmen s ha e been de eloped (e.g., Pheloung e al. 1999, Bom o d 2008,
see Hulme 2012 and Leung e al. 2012 o e iews). Secondly, alien species ha
escape bo de con ols (Bacon e al. 2012) o ha e ne e been subjec ed o bo de
con ol isk assessmen , and which cause high impac mus be managed in hei new
anges (see abo e). Hence, a sys em is needed ha acili a es he op imal alloca ion
o limi ed esou ces o manage hose IAS ha a e mos ha m ul in a gi en a ea. Such
a sys em would ideally in eg a e he se e i y o e ec s on he en i onmen , as well
as on he economy and he socie y in ques ion, allowing decision make s o p io -
i ize ce ain high impac species o managemen . Howe e , also cos -e ec i eness o
managemen needs o be aken in o accoun .
Alien species, howe e , do no ha e only nega i e e ec s. The majo i y o he alien
plan s in Eu ope we e delibe a ely in oduced, e.g. as o namen al, ho icul u al, es o-
a ion, ag icul u al o o es y species (Hoppe 2007, Lambdon e al. 2008, Pyšek e al.
2009) wi h hei espec i e social, economic and en i onmen al bene i s. Managemen
o such species, which a e de imen al in some aspec s (e.g. o biodi e si y) and ben-
e icial in o he s (e.g. o es y), can esul in con lic s among in ol ed s akeholde s. Fo
example, he in oduc ion o Sou h A ica o alien Acacia species which subsequen ly
became in asi e had di e en ial e ec s on local communi ies. On he one hand, com-
muni ies su e ed om wa e sca ci y due o inc eased e apo anspi a ion by he aca-
cias. On he o he hand, hey bene i ed om uel wood and building imbe (De Wi
e al. 2001). Such si ua ions ha e led o he ecogni ion o a need o a amewo k
o documen he di e en consequences o an IAS o di e en g oups o s akehold-
e s (S oll-Kleemann and Welp 2006, Binimelis e al. 2007, Kaple e al. 2012) and
ecen ly a ew a emp s ha e been made o de elop applica ions which inco po a e
P io i iza ion ool o IAS managemen 71
s akeholde s (Cook and P oc o 2007, Hu ley e al. 2010, Liu e al. 2011, De Lange
e al. 2012, Fo sy h e al. 2012).
Pa ke e al. (1999) de eloped a amewo k o assess he ecological e ec o
IAS, a guing ha he o al e ec o an in ade includes h ee undamen al dimen-
sions: ange, abundance, and he pe -capi a o pe -biomass e ec o he in ade , i.e.
he magni ude o ecological change i causes. Since hen p og ess has been made
in sco ing he o e all nega i e e ec s o alien species (e.g., Nen wig e al. 2010,
Kumschick and Nen wig 2010, Pluess 2011). A e y de ailed assessmen scheme o
impac s o gene ically modi ied o ganisms was p esen ed by Kowa ik e al. (2008)
which can easily be adap ed o in asi e species. Howe e , ew o hese impac
sco ing app oaches explici ly add essed po en ially compe ing in e es s o s ake-
holde s (i.e. a ious ecological, economic o social in e es s) wi hin he con ex o
managemen o IAS. Fu he mo e, hese s udies igno e po en ial posi i e e ec s o
IAS, which migh be c ucial o some species and s akeholde s (see e.g., Schlaep e
e al. 2011 o a e iew). These poin s a e impo an because biological in asions
ep esen a complex socie al issue o wo easons. Fi s , he scien i ic knowledge
abou biological in asions and he ou come o di e en managemen op ions a e
highly unce ain and second, bo h con lic s o in e es s and alues a e p ominen
in a p oblem-sol ing con ex such as he managemen o IAS (Kue e and Hado n
2008). Thus, as in any en i onmen al decision making p ocess, IAS managemen
has o minimize con lic s cha ac e ized by ecological, economic and social alue
judgmen s o di e en s akeholde s (Liu e al. 2010, 2011). Fu he mo e, i all
ypes o impac s o IAS a e o be assessed (i.e. ecological and socio-economic im-
pac s), hen he di e en scien i ic disciplines and associa ed alue sys ems equi e
a common cu ency wi h which o measu e impac . Ano he laye o complexi y is
added by he ac ha di e en sec ions o adminis a ion and s akeholde g oups
wi h di e ing agendas need o be in eg a ed, since plan s, animals and human
heal h a e in he esponsibili y o di e en agencies and/o minis ies (e.g., IPPC -
In e na ional Plan P o ec ion Con en ion, OIE - Wo ld O ganiza ion o Animal
Heal h, WHO - Wo ld Heal h O ganiza ion).
A p esen , se e al s udies ha e p oposed p io i iza ion me hods o he man-
agemen o weeds (e.g., Skinne e al. 2000, Vi ue e al. 2001, Robe son e al.
2003, Tassin e al. 2006, Randall e al. 2008, B unel e al. 2010). Howe e , only ew
schemes conside ed po en ial con lic s o in e es when e alua ing which weed species
o p io i ize o con ol i s , mainly in Sou h A ica (Robe son e al. 2003, Fo sy h
e al. 2012, De Lange e al. 2012). O he s udies ha speci ically ackled he com-
plexi ies o con lic ing in e es s and alues in IAS managemen ha e usually ocused
on pa icula ou b eak si ua ions o a single species (Magui e 2004, Liu e al. 2010,
2012). Based on a pa icipa o y app oach in Wes e n Aus alia, he p io i iza ion
by an assessmen commi ee di e ed om cu en esou ce alloca ions in Wes e n
Aus alia (Cook and P oc o 2007). A simila app oach was aken by Rou a-Pascual
e al. (2010) o Sou h A ica. Howe e , such a po en ially ime-consuming and e-
Sab ina Kumschick e al. / NeoBio a 15: 69–100 (2012)
72
sou ce-demanding app oach migh no always be possible. Hence, decision make s
and especially go e nmen al bodies a e s ill in need o a gene ic decision making aid
ha acili a es he iden i ica ion o p io i y species whils minimizing o econciling
po en ial con lic s o in e es .
The basic p oblem wi h many o he sys ems o da e is a undamen al one. De-
cisions made o IAS managemen a e hea ily in luenced by judgemen s which a e
p edominan ly based on inpu s om scien is s (Wilhe e 2008). In gene al, he ole
unde aken by scien is s in decision making alls along a g adien (Lach e al. 2003).
A one end o he con inuum, scien is s may simply epo esul s ha o he s use o
make decisions. Al e na i ely, hey may in e p e hese esul s and wo k wi h deci-
sion make s o in eg a e hese esul s in o he decision making p ocess. A he o he
end o he con inuum, scien is s may be ac i ely in ol ed in decision making by
ad oca ing o a speci ic decision o in he ex eme, making he decision hemsel es.
While adi ionally scien is s la gely shied away om ac i e in ol emen in decision
making (Lach e al. 2003), ecen yea s ha e seen inc easing ad ocacy (Ma is 2006,
Sco e al. 2007). This has esul ed in a call o science inpu s in o decision making
o be suppo i e o he p ocess bu dispassiona e owa ds policy ou comes (Lackey
2007), ecognising ha science is bu one i al elemen ha needs o be conside ed
in decision making. Agains his backg ound we a gue ha he p ocess o objec i ely
desc ibing wi h scien i ic me hods changes associa ed wi h an IAS has o be explici ly
sepa a ed om he p oxima e subjec i e socie al e alua ion o impac , which is based
on alues. Fo he ac ual decision making o managemen , howe e , ac s (e ec s
on en i onmen and socio-economy) need o be connec ed o alues (judgemen o
in ol ed s akeholde s).
He e, we p opose a comp ehensi e amewo k which aims o explici ly sepa-
a e he scien i ic desc ip ion o changes caused by IAS om he alue sys ems o
a ec ed s akeholde s who may ha e di e ing in e es s. Fu he mo e, i add esses
bo h nega i e and posi i e e ec s o IAS, since posi i e e ec s a e o en neglec ed
in pu ely ecological impac s udies (Goodenough 2010, Da is e al. 2011, bu see
Pyšek e al. 2012 o a global e iew).
F amewo k o impac e alua ion o iAS
The amewo k sugges ed he e is di ided in o i e s eps. The di e en s eps a e sho ly
in oduced in his sec ion. We hen p esen mo e de ails abou he sco ings and alues
in he ollowing sec ions and in Figu es 1 and 2.
S ep 1: S akeholde selec ion and weigh ing o s akeholde impo ance. A call
o s akeholde pa icipa ion is launched and hey a e encou aged o claim hei in-
e es . The s akeholde g oup is o med such ha i is su icien ly ep esen a i e and
P io i iza ion ool o IAS managemen 73
app op ia e o he ask a hand. The pa icipa ing s akeholde s a e hen ca ego ized
acco ding o hei impo ance in ela ion o he issue ha is being e alua ed. This
p ocess p oduces S akeholde Weigh s (SW), and should be conduc ed in a ans-
pa en and logical way.
S ep 2: Desc ip ion and sco ing o changes due o IAS. Fo his s ep we p opose
a sco ing sys em, based on wo main impac classes (ecological, socio-economic) each
wi h se e al ca ego ies (e.g., ag icul u e, heal h, in as uc u e, he bi o y, hyb idiza-
ion). Nega i e and posi i e changes a e sepa a ely e alua ed o each IAS. The ou -
come o his s ep is he ea e e e ed o as Change Assessmen Sco e (CAS).
S ep 3: Valuing he ela i e impo ance o impac ca ego ies by s akeholde s. A e
iden i ying a ec ed s akeholde s in s ep 1, each s akeholde alues he ela i e impo -
ance o all impac ca ego ies. Nega i e and posi i e ca ego ies a e alued sepa a ely.
When aluing he ca ego ies, he s akeholde s do no know he species assessed in s ep 2
and hei change assessmen sco es. This is called S akeholde Value Assessmen (SVA).
A e selec ion o s akeholde s (s ep 1), he desc ip ion o changes (s ep 2) and he
assessmen o s akeholde weigh s (s ep 3) can be conduc ed a he same ime as one
does no depend on he ou come o he o he . The ollowing s eps in u n can only be
pe o med i he ou comes o he o me s eps a e known.
Figu e 1. Schema ic o e iew o he concep ual amewo k o assess change in di e en impac ca ego-
ies o each species, cap u e s akeholde s’ in e es s and weigh s akeholde s and calcula e a inal impac
sco e o each species, see chap e “ amewo k o impac e alua ion” o IAS o a b ie and he ollowing
chap e s o de ailed explana ion.
Sab ina Kumschick e al. / NeoBio a 15: 69–100 (2012)
74
S ep 4: Calcula ing weigh ed impac ca ego ies. This is done by combining he
ou comes o s ep 1 and s ep 3, which p oduces Weigh ed Impac Ca ego ies (WIC).
S ep 5: Final impac sco es. The Final Impac Sco es (FIS) o each species a e
calcula ed by combining he CAS (s ep 2) wi h WIC (s ep 4).
In he ollowing sec ions, he i e s eps a e desc ibed in de ail, and in he inal pa
o he pape he use ulness o he scheme o di e en po en ial end-use s and ad an-
ages and po en ial sho comings a e discussed.
Figu e 2. Fic i ious example on how o calcula e he di e en alues o he p io i iza ion amewo k. Fo
b e i y, we limi he numbe o ca ego ies om he scien i ic impac assessmen in S ep 2 o he ame-
wo k o 3 (ou o 24). Species 2 has he highes social Change Assessmen Sco e (CAS), whils species 3
has he highes CAS o ecosys em changes. The decision make gi es s akeholde Y he g ea es weigh ing.
In he S akeholde Value Assessmen (SVA), s akeholde X gi es he g ea es alue o ecosys em, whils Y
alues he social ca ego y he highes , and s akeholde Z alues ag icul u e mos . Mul iplying hese alues
by he s akeholde weigh s and summing he p oduc s gi es Weigh ed Impac Ca ego ies (WIC), and
mul iplying hese alues by espec i e ca ego y CAS alues gi es he inal o e all impac sco es pe species.
No e ha WIC alues o posi i e change need o be in e sed o nega i e alues upon calcula ion o inal
impac sco es pe ca ego y and o e all.
P io i iza ion ool o IAS managemen 75
S ep 1: S akeholde selec ion and weigh ing o s akeholde impo ance
S akeholde s play a cen al ole in he p esen ed scheme, as hei opinions a e c ucial
o e alua ing he subjec i e impac ca ego ies h ough o mal and s uc u ed analysis.
The s akeholde p ocess needs o be ca e ully planned, s uc u ed and conduc ed, ac-
coun ing o he aim and needs o he p oblem a hand (Renn and Schweize 2009).
The e a e h ee main hings o conside : a) who should pa icipa e; b) wha is he o m
o he pa icipa o y p ocess; and c) whose opinion coun s.
Who should pa icipa e?
A s akeholde is – pu simply – someone who can a ec o is a ec ed by he issue a s ake
(F eeman 1984, ci ed in Mi chell e al. 1997). The e a e se e al me hods a ailable ha one
could use o come up wi h a lis o s akeholde s (see, e.g. P e y 1995, Reed e al. 2009).
Fo ins ance, an o en-applied me hod is he so called ‘snowball echnique’ which in ol es
consul ing e e y s akeholde as long as no new ac o s a e indica ed. How ep esen a i e he
s akeholde g oup should be depends on he aim o he p ocess (e.g. Rowe and F ewe 2005,
Weble and Tule 2006, Reed 2008, Renn and Schweize 2009, Wesselink e al. 2011). Fo
ins ance, he aim o he s akeholde p ocess may be o a oid missing in o ma ion and
pe spec i es, o y o ind win-win si ua ions o compensa ions om winne s o lose s, o
ep esen and discuss all ele an a gumen s, o ensu e ha less-p i ileged g oups a e gi en
he oppo uni y o ha e hei oices hea d, o o enligh en policy p ocesses by illus a ing
he di e si y o claims, opinions and alues (Renn and Schweize 2009). We sugges ha
a leas all hose who a e po en ially a ec ed by he species should ha e a possibili y o
pa icipa e o ha e hei oice hea d h ough some o he pa icipan (e.g. an o ganiza ion).
In p ac ice, s akeholde s would consis o , o ins ance, ag icul u al and sil icul u al p o-
duce s, en i onmen al o ganiza ions, ou is indus y, ci y/ own ep esen a i es, di e en
ou doo associa ions (e.g. hun e s, bi d-wa che s, ec ea ionis s), and so o h.
able 1. P io i izing scheme in i e s eps, desc ibing he ac ion aken a each s ep, iden i ying he ac o
o each s ep and de ining he ou pu o each s ep. *) can be pe o med simul aneously.
S ep Ac ion Ac o Ou pu
1)
Decision make chooses he s akeholde s and
decides on he o m and execu ion o he
weigh ing p ocess
Decision make SW = S akeholde
Weigh s
2*) Assessmen o change: he change a species incu s
o each ca ego y om App. A is sco ed Scien is s CAS = Change
Assessmen Sco e
3*)
S akeholde s alue each ca ego y om App. A,
ega dless o he species and change a species
incu ed
S akeholde s SVA = S akeholde
Value Assessmen
4) Calcula ion o weigh ed impac s by combining
SVA × SW
Decision make (o
scien is s o consul an )
WIC = Weigh ed
Impac Ca ego ies
5) Calcula ion o inal impac sco e
WIC × CAS
Decision make (o
scien is s o consul an )
FIS = Final Impac
Sco e
Sab ina Kumschick e al. / NeoBio a 15: 69–100 (2012)
76
Wha is he o m o he pa icipa o y p ocess?
One main issue ega ding he s akeholde p ocess is he o m o opinion- o ming: is
he p ocess aiming a a consensus h ough delibe a ion, o a e he s akeholde s jus
asked o hei indi idual opinion? I a consensus is sough o , he esul o he p ocess
in ou case would be a single se o weigh s (see s ep 3) ha could di ec ly be used o
weigh he species impac s ( esul ing om s ep 2). I each s akeholde is allowed o ha e
hei own weigh s, hen hese need o be agg ega ed in some way unless he analysis
is o be conduc ed sepa a ely o each s akeholde . A simple way is o a e age all he
weigh s, in which case each s akeholde s’ opinion is alued equally. Howe e , i he
decision make wishes o weigh he s akeholde opinions, speci ic weigh s o each
s akeholde need o be p oduced.
Whose opinion coun s?
The e a e bo h e hical and p agma ic easons why he decision make should a end
mo e closely o some s akeholde s han o he s (Col e e al. 1999). These include ai
ea men o hose who a e mo e a ec ed by he decision, and ha some s akeholde s
jus ha e a g ea e likelihood han o he s o a ec ing (and being a ec ed by) he issue
a s ake. The e a e heo ies ha a emp o explain, o en in business con ex , which
s akeholde s a e being paid mo e a en ion o (Reed e al. 2009). One such heo y is
he heo y o s akeholde salience (Mi chell e al. 1997), acco ding o which s ake-
holde s can be ca ego ized using h ee a ibu es: powe ( o a ec he decision make ),
legi imacy ( o he issue a s ake), and u gency (o hei claims). The mo e o hese h ee
p ope ies a s akeholde has, he highe is hei salience and hence hei impo ance in
he eyes o he decision make .
Ca ego iza ion p o ides he decision make wi h he possibili y o in luence he
p io i iza ion p ocedu e by weigh ing each o he pa icipa ing s akeholde s. As his
may be conside ed as a sou ce o bias, i should be anspa en and ideally based on
objec i e and eliable analysis o s akeholde s’ a ibu es (Ma k and Sho land 1985,
Musho e and Vogel 2005). Fo ins ance, Col e e al. (1999) sugges se en c i e ia by
which o de ine he mos impo an s akeholde s in he case o o es managemen ,
sco e hem a a scale 1-3 o each c i e ion and ob ain a weigh o each s akeholde by
a e aging o e he c i e ia. Al e na i ely he e exis o ins ance pai wise compa ison
me hods (G a akos e al. 2010) ha may be used o p oduce he equi ed weigh s.
Weigh ing is no a s aigh o wa d p ocess, especially when nume ous a ibu es
o he s akeholde s a e aken in o conside a ion, and when s akeholde s’ ex e nal en-
i onmen and in e ac ions a e complex (de Reynie e al. 2010, Aal onen 2011). The
decision make unde aking he ca ego iza ion (“ op-down app oach”) is by no means
he only way o a ibu ing a weigh o s akeholde s. The e a e also me hods h ough
which he s akeholde s hemsel es come up wi h a anking o de o hei impo ance
(see, o ins ance, P e y 1995, Mi chell e al. 1997, Reed 2008, Reed e al. 2009).
P io i iza ion ool o IAS managemen 77
Reed (2008) p o ides bes p ac ices o he s akeholde p ocess, including o in-
s ance emphasis on empowe men and equi y, ep esen a ion and analysis o ele an
s akeholde s, need o clea objec i es o he p ocess, choosing me hods depending on
he con ex , and in eg a ion o scien i ic and local knowledge. Ou amewo k equi es
he e alua ion and ca ego iza ion o s akeholde impo ance. Howe e , as o wha he
p ecise o ma o he s akeholde p ocess should be, we do no speci y he e o easons
o space. P ac ical examples in he con ex o in asi e alien species can be ound in
Cook and P oc o (2007), Hu ley e al. (2010), Sku ka Da in e al. (2011) and De
Lange e al. (2012). The desi ed ou come none heless is clea : he p ocess should p o-
duce a se o weigh s o he di e en impac ca ego ies ha would b oadly e lec he
alues p esen in he socie y.
S ep 2: Desc ip ion and sco ing o changes
The second s ep o he decision making p ocess aims a eco ding all changes an IAS
causes in he in oduced ange. An impac o change in his case is de ined as any de i-
a ion om he s a e o a sys em be o e he in asion happened. In o de o make com-
pa ison be ween species, di e en loca ions and di e en measu emen s o impac , we
sugges he use o a gene ic sco ing sys em (e.g., Nen wig e al. 2010, Kumschick and
Nen wig 2010). Ne e heless, sco ing sys ems and o he p io i iza ion ools sugges ed
so a o en only ocus on unwan ed changes and a ely ake in o accoun possible
welcome changes which migh esul om species in oduc ions, as e.g. inc easing
popula ion densi ies o h ea ened na i e species (Schlaep e e al. 2011) o economic
bene i s (Leung e al. 2012). Fo a balanced iew, howe e , posi i e e ec s should no
longe be neglec ed o e en igno ed, as many s akeholde s p o i om such IAS. When
a decision is needed on how o deal wi h an IAS, all possible s akeholde in e es s need
o be accoun ed o o ensu e wide accep ance and suppo o he decision (Mye s e
al. 2000, Ga dene e al. 2010; see s ep 1 o mo e de ails). Howe e , whe he changes
a e pe cei ed as “posi i e” o “nega i e” depends on he alue sys em o he s akehold-
e s conce ned (Simbe lo e al. 2012). Fo example, he in asion o he weed Pa e -
son’s Cu se (Echium plan agineum) in Aus alia was pe cei ed as de imen al by anch-
e s because he plan is oxic o li es ock, bu beekeepe s p o i ed om i s p oli e ous
honey p oduc ion (Ha is 1988). In he ollowing desc ip ion o impac (changes),
we con inue o use he e ms “posi i e” and “nega i e”, bu aim o de ine hem in an
objec i e, alue- ee way by desc ibing he di ec ion o change ela i e o p e-in asion
s a e o he sys em.
Based on p e iously published sco ing sys ems (e.g., Nen wig e al. 2010, Kum-
schick and Nen wig 2010, Kumschick e al. 2011, Pluess 2011, Kumschick e al.
2012), we de e mined a wide ange o changes IAS could cause in he in oduced
a ea (Appendix A). The sco ing sys em consis s o wo main classes o changes, socio-
economic and en i onmen al, and each class has 6 ca ego ies. The ca ego ies o en-
i onmen al changes a e hyb idiza ion, compe i ion, ansmission o diseases o wild-
Sab ina Kumschick e al. / NeoBio a 15: 69–100 (2012)
84
applied and es ed, and we encou age he use o his amewo k o es whe he o
no i can wo k in p ac ice as a use ul p io i iza ion and decision making ool in
in asi e species managemen .
Acknowledgemen s
We hank he e iewe s o help ul commen s on an ea lie e sion o he manusc ip ,
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Appendix A
De ini ions o change assessmen (impac ) sco es o IAS. E ec s we e di ided in o wo
main classes wi h six ca ego ies each.
1. En i onmen al impac
1.1.1 He bi o y/ oxici y nega i e
0 No impac known o de ec able.
1 Ve y low le el o he bi o y (animals) o oxici y (plan s o animals) on a
leas one na i e species, no majo damage epo ed.
2 He bi o y o oxici y a ec ing se e al na i e species, wi hou la ge impac
on a ec ed species o decline o hei popula ions.
3 He bi o y o oxici y a ec ing se e al na i e species, a leas one na i e
species declining.
4 He bi o y o oxici y a ec ing many na i e species, se e al declining in
popula ion size, eco ded communi y change e e sible.
5 He bi o y o oxici y a ec ing na i e species lis ed as ulne able, endan-
ge ed o c i ically endange ed by IUCN, decline o hese species, eplace-
men o e en ex inc ion o species, eco ded communi y change i e e sible.
1.1.2 He bi o y/ oxici y posi i e
0 No impac known o de ec able.
+1 Ve y low le el o he bi o y o oxici y a ec ing a leas one species deg ad-
ing he ecosys em, no impac on pe o mance o a ec ed species eco ded.
+2 He bi o y o oxici y a ec ing one o se e al species deg ading he ecosys-
em, wi hou la ge impac on a ec ed species o decline o hei popula ions.
+3 He bi o y o oxici y a ec ing one o se e al species deg ading he ecosys-
em, a leas one species declining, some/ i s indica ions ha he ecosys-
em changes owa ds i s his o ical unc ional s a e.
P io i iza ion ool o IAS managemen 91
+4 He bi o y o oxici y a ec ing one o many species deg ading he ecosys-
em, declining in popula ion size, s ong indica ions ha he ecosys em
changes owa ds i s his o ical unc ional s a e.
+5 Comple e e-es ablishmen o unc ional s a e o his o ical ecosys em ha
was deg aded be o e in asion o alien species.
1.2.1 Compe i ion nega i e
0 No impac known o de ec able.
1 Fo animals, e y low le el o compe i ion wi h a leas one na i e species,
exploi a ion compe i ion; o plan s, low abundance, na i e species ich-
ness no declining.
2 Fo animals, compe i ion wi h se e al na i e species by exploi a ion com-
pe i ion, wi hou la ge impac on a ec ed species o decline o hei popu-
la ions; o plan s, mode a e abundance, dec ease in na i e species abun-
dance bu no ichness.
3 Fo animals, compe i ion wi h se e al species, in e e ence compe i ion, a
leas one na i e species declining; o plan s, high abundance, dec ease in
na i e abundance, a leas one na i e species los .
4 Fo animals, compe i ion wi h many na i e species, se e al declining in
popula ion size, compe i ion o ood and/o space, beha iou al changes in
ou -compe ed species; o plan s, high abundance, s ong decline in bo h
abundance and ichness o na i e species, na i e species s ill able o ec ui .
5 Fo animals, compe es wi h species lis ed as ulne able, endange ed o
c i ically endange ed by IUCN, decline o hese species, eplacemen o
e en ex inc ion o species; o plan s, mono-dominan /nea mono-domi-
nan , wi h no o e y ew na i e species emaining; limi ing na i e species
ec ui men op ions.
1.2.2 Compe i ion posi i e
0 No impac known o de ec able.
+1 Fo animals, e y low le el o compe i ion wi h a leas one na i e species
deg ading he ecosys em, exploi a ion compe i ion, no impac on pe o -
mance o a ec ed species eco ded; o plan s, no loss in abundance o
ichness o na i e species.
+2 Fo animals, compe i ion wi h one o se e al na i e species deg ading he
ecosys em by exploi a ion compe i ion, wi hou la ge impac on a ec ed
species o decline o hei popula ions; o plan s, small inc ease in abun-
dance o na i e species, no inc ease in species ichness.
+3 Fo animals, compe i ion wi h one o se e al species deg ading he ecosys em,
in e e ence compe i ion, a leas one species declining, some indica ions ha
he ecosys em changes owa ds i s his o ical unc ional s a e; o plan s, in-
c ease in abundance o na i e species, small inc ease in species di e si y.
Sab ina Kumschick e al. / NeoBio a 15: 69–100 (2012)
92
+4 Fo animals, compe i ion wi h one o many species deg ading he ecosys-
em, declining in popula ion size, s ong indica ions ha he ecosys em
changes owa ds i s his o ical unc ional s a e; o plan s, inc ease in abun-
dance o na i e species and in species di e si y.
+5 Fo animals, comple ely e-es ablish unc ional s a e o his o ical ecosys-
em ha was deg aded be o e in asion o alien species; o plan s, inc ease
in abundance o na i e species and in species di e si y, including h ea -
ened na i e species.
1.3.1 P eda ion nega i e (no ele an o plan s)
0 No impac known o de ec able.
1 P eda ion known bu negligible, no decline o na i e species.
2 P eda ion on se e al abundan species, wi hou la ge impac on a ec ed
species o decline o hei popula ions.
3 Decline o one o se e al na i e species ecognized, mino change in ood
web s uc u e epo ed.
4 Decline o many species, indi ec impac by mesop eda o elease, clea
changes in he ood web.
5 P eys also on endemic o species lis ed as ulne able, endange ed o c i i-
cally endange ed by IUCN, local ex inc ion.
1.3.2 P eda ion posi i e (no ele an o plan s)
0 No impac known o de ec able.
+1 P eda ion on species deg ading he ecosys em known bu negligible, no
decline o species.
+2 P eda ion on one o se e al species deg ading he ecosys em, wi hou la ge
impac on a ec ed species o decline o hei popula ions.
+3 Decline o one o se e al na i e species deg ading he ecosys em ecog-
nized, mino change in ood web s uc u e epo ed, some indica ions ha
he ecosys em changes owa ds i s his o ical unc ional s a e.
+4 Decline o one o many species deg ading he ecosys em, clea changes in
he ood web, s ong indica ions ha he ecosys em changes owa ds i s
his o ical unc ional s a e.
+5 Comple ely e-es ablish unc ional s a e o his o ical ecosys em ha was
deg aded be o e in asion o alien species.
1.4.1 T ansmission o diseases o wildli e nega i e
0 No impac known o de ec able.
1 Hos (plan o animal) o non-speci ic pa asi es, occasional ansmission
o mo e o less ha mless diseases o one na i e species. No popula ion
decline in na i e species. I a plan , species is no a b eeding g ound o
wildli e disease ec o s.
P io i iza ion ool o IAS managemen 93
2 Occasional ansmission o mo e o less ha mless diseases, se e al na i e
species a ec ed. No o only mino popula ion decline in na i e species. I
a plan , species may be a b eeding g ound o wildli e disease ec o s, bu
no mo e so han na i e plan species.
3 Many na i e species a ec ed, equen ansmission o mo e o less ha m-
less diseases o ha m ul diseases ansmi ed o one na i e species. Mino
popula ion decline in na i e species. I a plan , may be a mo e signi ican
b eeding g ound o wildli e disease ec o s han na i e plan species.
4 T ansmi s ha m ul diseases o se e al na i e species o mo e o less ha m-
less diseases o endemic o species lis ed as ulne able, endange ed o c i i-
cally endange ed by IUCN. Mode a e popula ion decline in na i e species.
I a plan , a majo b eeding g ound o wildli e disease ec o s, ou b eaks
due o species p esence unce ain.
5 T ansmi s ha m ul diseases o many species and/o species lis ed as ulne -
able, endange ed o c i ically endange ed by IUCN by di ec ansmission,
decline o hese species o ex inc ion. I a plan , a majo b eeding g ound
o wildli e disease, ou b eaks due o species p esence ce ain.
1.4.2 T ansmission o diseases o wildli e posi i e
0 No impac known o de ec able.
+1 Occasional ansmission o mo e o less ha mless diseases o one species
deg ading he ecosys em; no popula ion decline in species. Po en ial posi-
i e e ec on heal h o wildli e (di ec : e.g. po en ial medicinal species;
indi ec : e.g. an agonis o a heal h h ea ), bu no ye epo ed.
+2 Occasional ansmission o mo e o less ha mless diseases, one o se e al
species deg ading he ecosys em a ec ed. No o only mino popula ion
decline in species. Occasional, small posi i e e ec on heal h o wildli e.
+3 One o many species deg ading he ecosys em a ec ed, equen ansmis-
sion o mo e o less ha mless diseases o ha m ul diseases ansmi ed o
one species deg ading he ecosys em. Mino popula ion decline in spe-
cies, some indica ions ha he ecosys em changes owa ds i s his o ical
unc ional s a e. Regula ly small posi i e e ec on heal h o wildli e, o
occasional, la ge posi i e e ec on heal h o wildli e.
+4 T ansmi s ha m ul diseases o one o se e al species deg ading he ecosys-
em. Mode a e popula ion decline in species, s ong indica ions ha he
ecosys em changes owa ds i s his o ical unc ional s a e. Regula ly leading
o la ge posi i e e ec on heal h o wildli e.
+5 Comple ely e-es ablish unc ional s a e o his o ical ecosys em ha was
deg aded be o e in asion o alien species. Massi e posi i e e ec on heal h
o wildli e caused by species.
Sab ina Kumschick e al. / NeoBio a 15: 69–100 (2012)
100
2.6.2 On human social li e posi i e
0 No impac known o de ec able.
+1 Biological ai s and li e-s yle sugges po en ial posi i e e ec o ec ea-
ional o esidence a eas (e.g. cha isma ic o deco a i e species, species ame-
lio a ing he en i onmen by p o iding e.g. shade, o ha ing edible pa s,
o species po en ially used o angling o hun ing), bu no epo ed so a .
+2 Occasional small posi i e e ec o ec ea ional o esidence a eas, only
small pe cen age o human popula ion a ec ed.
+3 Regula small posi i e e ec o ec ea ional o esidence a eas, o occa-
sional la ge posi i e e ec o ec ea ional o esidence a eas.
+4 Regula la ge posi i e e ec o ec ea ional o esidence a eas. Rec ea-
ional alue o a habi a o a landscape s ongly inc eased.
+5 Massi e posi i e e ec o ec ea ional o esidence a eas. Massi e gain o
ec ea ional alue o a habi a o a landscape.