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Trophic categorization in the Rias Baixas (NW Spain): Nutrients in water and in macroalgae

Abstract

Marine eutrophication caused by an excess supply of nutrients is a serious problem in many coastal areas throughout the world. In the present study we used the capacity of macroalgae (Ulva and Enteromorpha) to integrate the nutrient regime of a water body in order to examine the trophic categorization in the embayments studied. We found that the trophic categorization established based on nutrient levels in macroalgae differed from that established based on concentrations in the water. The waters of the innermost areas of the inlets were the most nutrient enriched; the algae appeared to be more affected by specific local conditions and did not display the gradient of decreasing nutrient concentrations from inner to outer areas that was observed in the water samples. The lack of correspondence between nutrients in the water and in the algae in the present study may have been due to the heterogeneous nutrient conditions found in coastal areas, so that the inter- tidal algae did not adequately reflect the nutrient levels of the inner zones of the embayments under study.

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Trophic categorization in the Rias Baixas (NW Spain): Nutrients in water and in macroalgae

Author: Villares Pazos, Rubén; Carballeira Ocaña, Alejo
Publisher: Consejo Superior de Investigaciones Científicas (CSIC)
Year: 2006
DOI: 10.3989/scimar.2006.70n189
Source: https://minerva.usc.es/bitstreams/a794853b-218a-4137-a1f3-4160e59dbbf6/download
INTRODUCTION
Ma ine coas al eu ophica ion has been ecog-
nised as an eme ging p oblem (Nixon, 1990, 1995;
Sme acek e al., 1991; Goldbe g, 1995; Wu, 1999),
on a wo ldwide scale (Mo and and B iand, 1996). I
is mainly caused by an inc ease in ni ogen and
phospho us a ailabili y in li o al ecosys ems
(Ca pen e e al., 1998). This en ichmen o nu i-
en s causes p oli e a ion o phy oplank on and
oppo unis ic mac oalgae such as Ul a,
En e omo pha, Chae omo pha and Cladopho a
(Ra en and Taylo , 2003; Cu iel e al., 2004), which
leads o he disappea ance o pe ennial mac oalgae
(Dua e, 1995; Pede sen, 1995), and seag asses
(Dua e, 1995; Ha lin, 1995; Sho and Bu dick,
TROPHIC CATEGORIZATION IN THE RÍAS BAIXAS 89
SCI. MAR., 70 (1): 89-97 SCIENTIA MARINA 2006
T ophic ca ego iza ion in he Rías Baixas (NW Spain):
nu ien s in wa e and in mac oalgae*
RUBÉN VILLARES1 and ALEJO CARBALLEIRA2
1 Ecología, Escuela Poli écnica Supe io , Uni e sidad de San iago de Compos ela, 27002 Lugo, Spain.
E-mail: [email p o ec ed]
2 Ecología, Facul ad de Biología, Uni e sidad de San iago de Compos ela, 15706 San iago de Compos ela, Spain.
SUMMARY: Ma ine eu ophica ion caused by an excess supply o nu ien s is a se ious p oblem in many coas al a eas
h oughou he wo ld. In he p esen s udy we used he capaci y o mac oalgae (Ul a and En e omo pha) o in eg a e he
nu ien egime o a wa e body in o de o examine he ophic ca ego iza ion in he embaymen s s udied. We ound ha he
ophic ca ego iza ion es ablished based on nu ien le els in mac oalgae di e ed om ha es ablished based on concen a-
ions in he wa e . The wa e s o he inne mos a eas o he inle s we e he mos nu ien en iched; he algae appea ed o be
mo e a ec ed by speci ic local condi ions and did no display he g adien o dec easing nu ien concen a ions om inne
o ou e a eas ha was obse ed in he wa e samples. The lack o co espondence be ween nu ien s in he wa e and in he
algae in he p esen s udy may ha e been due o he he e ogeneous nu ien condi ions ound in coas al a eas, so ha he in e -
idal algae did no adequa ely e lec he nu ien le els o he inne zones o he embaymen s unde s udy.
Key wo ds: En e omo pha,Ul a, eu ophica ion, nu ien s, Rias Baixas, Spain.
RESUMEN: SECTORIZACIÓN TRÓFICA EN LAS RÍAS BAIXAS (NW ESPAÑA): NUTRIENTES EN AGUA Y EN MACROALGAS. – La eu o-
ización ma ina, o iginada po un excesi o apo e de nu ien es, es á conside ada ac ualmen e como un g a e p oblema en
nume osas á eas cos e as de odo el mundo. En es e es udio empleamos la capacidad de las mac oalgas (Ul a y
En e omo pha) de in eg a el égimen nu i i o de un cue po de agua pa a ealiza una sec o ización ó ica de las bahías
es udiadas. Los esul ados de la sec o ización ó ica en unción de las mac oalgas ue on di e en es a la es ablecida en un-
ción de las concen aciones de nu ien es en agua. Las zonas más in e nas de las ías ue on las más en iquecidas en cuan o
a nu ien es en agua, pa eciendo es a las algas más a ec adas po condiciones locales especí icas, és as no siguen el g adien e
de concen ación del in e io al ex e io que se obse aba en el agua. La al a de co espondencia en e los nu ien es en agua
y algas en es e es udio puede se debido a la g an he e ogeneidad en las condiciones nu i i as que encon amos en á eas cos-
e as, de o ma que las mues as de algas in e ma eales no hayan e lejado adecuadamen e los ni eles de nu ien es del in e-
io de las masas de agua es udiadas.
Palab as cla e: En e omo pha, Ul a, eu o ización, nu ien es, Rías Baixas, España.
*Recei ed Janua y 1, 2005. Accep ed June 6, 2005.
sm70n1089-2041 1/3/06 16:28 Página 89
1996; Sho and Wyllie-Eche e ia, 1996), he eby
a ec ing associa ed animal communi ies. The disap-
pea ance o seag asses o en causes emobiliza ion
o unde lying sedimen s p e iously ixed by he
plan s’ oo s, p oducing g ea e u bidi y in he
wa e (Walke and McComb, 1992). Eu ophica ion
leads o changes in mac ozooben hic communi ies
(E e e , 1994; Pihl e al., 1995; P ena, 1995; Nei a
and Rackemann, 1996; No kko and Bonsdo ,
1996; Ryba czyk e al., 1996), and ish communi ies
(Rosenbe g, 1985; Hansson and Ruds am, 1990;
Pihl e al., 1995). In ce ain coas al a eas, eu ophi-
ca ion is also a se ious p oblem o he ou is sec o
(Rosenbe g, 1985; Pi iou and Ménesguen, 1992;
Mo and and B iand, 1996).
Se e al au ho s ha e pos ula ed he idea o using
he concen a ions o nu ien s in mac oalgae as
indica o s o hei a ailabili y in he en i onmen ,
ins ead o adi ional wa e analyses (Ho, 1987;
Wheele and Bjö nsa e , 1992; Fong e al., 1994,
1998; Lyngby and Mo ensen, 1994; Ho ocks e al.,
1995; Lyngby e al., 1999). The le els o nu ien s in
coas al wa e s a e highly a iable. T ansien peaks
o nu ien s caused by sewage e luen s, ainwa e ,
e c., a e common in hese a eas, and a e di icul o
de ec by pe iodic wa e analysis; e en i hey a e
iden i ied, i is di icul o de e mine hei e ec on
p ima y p oduc ion. Mac oalgae in eg a e he nu i-
en egime o e a ce ain ime pe iod and he e o e
may be sui able o e alua ing he ophic condi ions
o he a eas om which hey a e collec ed wi h less
sampling e o han wi h o he adi ionally used
me hods.
The main aim o he p esen s udy was o use he
capaci y o mac oalgae o in eg a e he nu ien
egime o a wa e body in o de o ca y ou ophic
ca ego iza ion o he s udy a ea, based on he nu i-
en le els in in e idal samples o wo gene a o
mac oalgae (Ul a and En e omo pha) which p oli -
e a e in eu ophic a eas. We also compa ed he
esul s o his me hod o ca ego iza ion wi h hose o
ca ego iza ion based on he nu ien le els in wa e
ound in a mo e in ensi e su ey ca ied ou in inne
a eas o he embaymen s unde s udy.
MATERIALS AND METHODS
Sampling
The s udy was ca ied ou in ou coas al embay-
men s known collec i ely as he Rías Baixas
(Galicia, NW Spain). The posi i e es ua ine ci cula-
ion, which concen a es nu ien s (F aga and
Ma gale , 1979), along wi h he pe iodic upwelling
e en s ha ake place in sp ing and summe
(Ál a ez-Salgado e al., 1993), combine o make
hese embaymen s e y p oduc i e sys ems (Teno e
e al., 1982; P ego, 2002).
Samples o mac oalgae we e collec ed om
in e idal a eas a low ide. Mos o he onds we e
en a i ely iden i ied as Ul a igida and
En e omo pha in es inalis. Howe e , we decided
no o iden i y he algae o species le el because o
he complica ions in ol ed in he axonomy o hese
gene a, in which polymo phism is common
(P o asoli and Pin ne , 1980). Mal a e al. (1999)
ha e shown ha Ul a specimens a e o en assigned
o di e en species when hey a e in ac di e en
mo pho ypes o one species. Recen ly, Hayden e al.
(2003) sugges ed ha Ul a and En e omo pha
should no be ecognized as sepa a e gene a (see
also www.algaebase.o g).
Algal samples we e collec ed mon hly om 22
sampling si es (Fig. 1) be ween Ma ch 1994 and
Feb ua y 1995. Sampling o En e omo pha was
in e up ed in Sep embe 1994 because he alga had
s opped g owing a many si es. A each sampling
si e we collec ed a leas 75 onds o Ul a and sam-
ples om a leas 30 ma s o En e omo pha along a
ansec o 100m pa allel o he coas . A i e selec -
ed si es (A2, A8, P2, P5 and V4) o nigh ly sam-
pling was ca ied ou be ween Ap il and No embe
1994. Algae we e s o ed in mesh bags and ans-
po ed a 4ºC o he labo a o y.
The da a on nu ien concen a ions in wa e
we e p o ided by he ‘Cen o de Con ol da
Calidade do Medio Ma iño’, un unde he auspices
o he Galician au onomous go e nmen (Xun a de
Galicia). The wa e sampling si es a e shown in
Figu e 1. Sampling was ca ied ou weekly a 3
dep hs (0-5, 5-10, 10-15m). The da a used he e a e
means o hese 3 alues, and can be conside ed as
ep esen a i e o he su ace wa e laye o he ías
(Ál a ez-Salgado e al., 1996).
Chemical analyses
In he labo a o y, algae we e washed ca e ully
wi h dis illed wa e , d ied a 50±1ºC un il cons an
weigh , c ushed using a mo a and pes le and s o ed
in plas ic bags.
The alues o he le els o issue ni ogen we e
measu ed wi h a LECO CHN 1000 elemen al
90 R. VILLARES and A. CARBALLEIRA
sm70n1089-2041 1/3/06 16:28 Página 90
analyse , using EDTA as a s anda d. Fo phospho us
analysis, samples we e combus ed in a mu le u -
nace a 550±5ºC o 3 hou s and hen diges ed in 2.5
ml o 2N HCl on a ho pla e a 200±2ºC o 15 min-
u es. The ex ac s we e il e ed using acid washed
il e s and he samples hen made up o 50 ml wi h
dis illed wa e (Chapman and P a , 1981).
Phospha e in he ex ac s was de e mined using he
anadomolybdophospho ic acid colo ime ic
me hod, which is he mos sui able o he ange o
concen a ions in ol ed he e (APHA, AWWA,
WEF, 1995). Ce i ied e e ence plan ma e ial,
BCR (Communi y Bu eau o Re e ence) nº 129 (hay
powde ), was analysed along wi h he samples o
es he e iciency o he me hod.
S a is ical analysis
P io o analysis o a iance (ANOVA), wa e
samples we e balanced (by making n equal in he
di e en g oups) o make he es mo e obus .
When he e was a missing alue o a compound, all
o he alues co esponding o ha compound we e
omi ed o ha week o sampling and o all sam-
pling poin s in he same embaymen . The loss o
in o ma ion caused by his p ocedu e was negligible
as he e we e e y ew missing alues ela i e o he
o al numbe o da a co esponding o nu ien s in
he wa e . The no mali y o he dis ibu ion was es -
ed o each g oup by he Kolmogo o -Smi no es ,
Lillie o s es and by examining equency his-
og ams. The homogenei y o he a iances was e -
i ied using Le ene’s es . Ma hema ical ans o ma-
ion o da a was ca ied ou whe e necessa y o
ob ain a no mal dis ibu ion and homogeneous a i-
ances. Samples we e conside ed signi ican ly di e -
en a p <0.05. Whe e signi ican di e ences we e
de ec ed by ANOVA, he Tukey-HSD (hones ly sig-
ni ican di e ence) es was applied o es ablish
homogeneous g oups (Za , 1984; Day and Quinn,
1989; Sokal and Rohl , 1995).
Clus e analyses we e ca ied ou by he a e age
linkage be ween g oups me hod, which uses he
in o ma ion om all pai s o dis ances by applying
he squa ed Euclidean dis ance, he mos commonly
used measu e o dis ance. To a oid a iables wi h
high igu es ha ing g ea e emphasis in he inal
esul , da a we e s anda dized by ans o ming hem
o z sco es by sub ac ing he mean alue om each
indi idual alue and di iding i by he s anda d
de ia ion co esponding o he en i e se o alues.
RESULTS AND DISCUSSION
Tempo al a ia ions in nu ien s
The changes in mon hly mean concen a ions o
nu ien s in he wa e and in he algae a e shown in
Fig. 2. Compa ison o he con ibu ion o each o he
N compounds o he o al dissol ed ino ganic N,
e eals ha ni a es comp ised he main o m o ino -
ganic ni ogen, pa icula ly in win e . The e we e wo
peaks in ammonium le els, one in June, when he
mean le els we e almos equal o hose o ni a es,
and ano he highe one in No embe . The wo maxi-
mal alues we e p obably associa ed wi h he ini ial
s age o decomposi ion o he o ganic ni ogen; in he
s udy a ea he e a e usually wo peaks in p ima y p o-
duc ion, a he end o sp ing and a he end o summe
(Noguei a e al., 1997; Villa es and Ca ballei a,
2003). Ni i es and ni a es ollowed simila pa e ns
wi h minimum alues in summe and maximum al-
TROPHIC CATEGORIZATION IN THE RÍAS BAIXAS 91
FIG. 1. – Loca ion o sampling si es. Mac oalgal sampling si es a e
indica ed by capi al le e s. Wa e sampling si es (o he “Cen o de
Con ol da Calidade do Medio Ma iño”-Xun a de Galicia) a e
indica ed wi h lowe case le e s.
sm70n1089-2041 1/3/06 16:28 Página 91
ues in win e , al hough he highes concen a ion o
ni i e was ound in Decembe and ni a e le els con-
inued o ise un il Feb ua y. In gene al, phospha e
le els did no show as clea a seasonal end as he N
compounds; lowes mean alues we e ound in sp ing
and summe , and highes alues in au umn and win-
e . The N:P a io was lowe han he Red ield a io
(N:P = 16) om Ma ch o Oc obe , and highe in
au umn and win e .
The inc ease in nu ien s in he wa e in win e
may ha e been due o an inc ease in lu ial inpu s and
a dec ease in p ima y p oduc ion, al hough he peaks
in N compounds appea ed o co espond o he deg a-
da ion o o ganic ma e syn hesized in summe , wi h
an ammonium peak in No embe , ollowed by peaks
o ni i e and ni a e in Decembe and Feb ua y
espec i ely. Simila esul s we e ob ained by
Noguei a e al. (1997) o he Ría de Vigo.
Tissue le els o N ollowed a simila pa e n in
bo h algae: hey we e lowes in summe , sligh ly
highe in sp ing and highes in win e . Tissue P also
ollowed a simila pa e n in bo h Ul a and
En e omo pha, he lowes issue le els o his nu i-
en we e ound in sp ing and summe hen inc eased
g adually h oughou au umn and win e . The e
we e wo peaks in he N:P a io in algae, in May and
in Oc obe -No embe , and minimum alues we e
obse ed in summe . Tempo al changes in issue
nu ien s we e simila o hose epo ed in mos
o he s udies o his ype, wi h high concen a ions
in win e and low concen a ions in summe
(Pede sen and Bo um, 1996; Mal a and Ve schuu e,
1997; De Casabianca and Posada, 1998; Lyngby e
al., 1999).
The e was a pa allel a ia ion in ino ganic nu i-
en s in he wa e and issue nu ien s in Ul a, which
was e lec ed in he good co ela ions be ween hem
(Table 1). Fo En e omo pha he co ela ions we e
no as high, and we e only signi ican wi h ni a es
and dissol ed ino ganic ni ogen (DIN). The nu i-
92 R. VILLARES and A. CARBALLEIRA
FIG. 2. – Tempo al changes in he nu ien concen a ions in he wa e and in mac oalgae. Values a e mon hly means om all he sampling
si es. E o ba s ep esen he s anda d e o , hese a e no shown o nu ien s in he wa e because in mos cases hey we e no la ge enough
o be dis inguished om he symbol ( iangle).
TABLE 1. – Spea man’s co ela ion coe icien s and le els o signi icance be ween mon hly a i hme ic means o nu ien s in wa e and in
mac oalgae. n = 12 o Ul a, n = 7 o En e omo pha. * Signi ican a p<0.05, ** Signi ican a p<0.01, *** Signi ican a p<0.001, n.s. = no
signi ican .
Ammonium Ni i e Ni a e DIN Phospha e N:P
N Ul a 0.587* 0.811** 0.888*** 0.916***
N En e omo pha 0.536 n.s. 0.607 n.s. 0.786* 0.821*
P Ul a 0.713**
P En e omo pha 0.536 n.s.
N:P Ul a 0.231 n.s.
N:P En e omo pha 0.607 n.s.
sm70n1089-2041 1/3/06 16:28 Página 92
en le els in he wa e we e hus appa en ly be e
e lec ed by Ul a han by En e omo pha, wi h he
addi ional ad an age ha he o me is p esen
h oughou he en i e yea .
T ophic ca ego iza ion in he ías
The da a on nu ien s in he wa e was analysed
using a one-way ANOVA o ind i he e we e sig-
ni ican di e ences be ween he sampling si es wi h-
in each ía (Table 2). Whe e his occu ed homoge-
neous g oups we e es ablished using he Tukey-
HSD mul iple compa isons es (Table 3). The e
we e no signi ican di e ences o ni a e o N:P in
any o he ías, in con as o he indings o ammo-
nium and phospha e. The g oups es ablished o he
inne mos pa o he ías always ep esen ed he
mos nu ien en iched a eas (Table 3). In he o he
TROPHIC CATEGORIZATION IN THE RÍAS BAIXAS 93
TABLE 2. – One way ANOVA o he concen a ions o nu ien s in he wa e o each ía. The deg ees o eedom a e shown in b acke s.
P epa ed using da a p o ided by he ‘Cen o de Con ol da Calidade do Medio Ma iño’ (Xun a de Galicia). * - Signi ican a p<0.05,
** - Signi ican a p<0.01, *** - Signi ican a p<0.001, n.s. = no signi ican .
Mu os A ousa Pon e ed a Vigo
Ammonium F 2.701* (5, 270) 5.940*** (9, 430) 6.326*** (5, 264) 19.47*** (5, 300)
Ni i e F 0.500 n.s. (5, 276) 0.903 n.s. (9, 460) 2.193 n.s. (5, 264) 6.776*** (5, 300)
Ni a e F 1.944 n.s. (5, 270) 0.546 n.s. (9, 450) 0.536 n.s. (5, 246) 1.688 n.s. (5, 294)
DIN F 2.315* (5, 264) 1.359 n.s. (9, 430) 2.275* (5, 228) 7.249*** (5, 294)
Phospha e F 3.538** (5, 276) 8.649*** (9, 460) 10.64*** (5, 282) 41.30*** (5, 300)
N:P F 0.606 n.s. (5, 264) 0.298 n.s. (9, 430) 0.339 n.s. (5, 228) 0.923 n.s. (5.294)
TABLE 3. – G oups es ablished using he Tukey-HSD mul iple compa isons es o nu ien s in he wa e in each ía. The si es a e o de ed by
inc easing he mean concen a ion o he co esponding nu ien . Sampling si es wi h he same g ouping numbe we e no signi ican ly di -
e en . In cases whe e no g oups appea , no signi ican di e ences we e ound. P epa ed using da a p o ided by he ‘Cen o de Con ol da
Calidade do Medio Ma iño’ (Xun a de Galicia).
MUROS
Ammonium DIN Phospha e
m5 1 - - - m5 1 - - - m5 1 - - -
m4 1 2 - - m1 1 2 - - m4 1 2 - -
m1 1 2 - - m4 1 2 - - m1 1 2 - -
m2 1 2 - - m2 1 2 - - m6 1 2 - -
m6 1 2 - - m6 1 2 - - m2 1 2 - -
m3 - 2 - - m3 - 2 - - m3 - 2 - -
AROUSA
Ammonium Phospha e
a0 1 - - - a0 1 - - -
a8 1 2 - - a9 1 2 - -
a9 1 2 3 a8 1 2 3 -
a4 1 2 3 4 a2 1 2 3 4
a7 1 2 3 4 a4 1 2 3 4
a1 1 2 3 4 a1 - 2 3 4
a5 - 2 3 4 a7 - - 3 4
a2 - - 3 4 a5 - - - 4
a6 - - - 4 a3 - - - 4
a3 - - - 4 a6 - - - 4
PONTEVEDRA
Ammonium Phospha e
p4 1 - - p5 1 -
p5 1 - - p2 1 -
p2 1 - - p4 1 -
p1 1 2 - p1 1 -
p3 - 2 3 p6 - 2
p6 - - 3 p3 - 2
VIGO
Ammonium Ni i e DIN Phospha e
6 1 - - 6 1 - - 6 1 - - - 6 1 -
5 1 - - 5 1 2 - 5 1 2 - - 5 1 -
1 1 - 1 1 2 - 1 1 2 3 - 1 1 -
2 - 2 - 2 - 2 3 2 - 2 3 4 2 - 2
3 - 2 - 3 - - 3 3 - - 3 4 3 - 2
4 - 2 - 4 - - 3 4 - - - 4 4 - 2
sm70n1089-2041 1/3/06 16:28 Página 93

g oups, he nu ien concen a ion in he wa e
dec eased owa ds he mou h o he ía. This was o
be expec ed as he inne mos pa o he ía is he
mos hea ily in luenced by nu ien inpu s due o he
upwelling e en s which gene ally occu in he cen-
al and inne zones o he ías (O o, 1975; Teno e
and González, 1975; P ego and F aga, 1992), and
also because o lu ial inpu s.
Clus e analysis was used o examine he mean
le els o ni i e, ni a e, ammonium and phospha e a
each sampling si e wi h he aim o de ec ing homo-
geneous g oups. The dend og am (Fig. 3) shows a
clea dis inc ion be ween wo g oups in he ías o
Mu os, Pon e ed a and Vigo, wi h he inne g oup
always being he mos nu ien -en iched. In he
ou e g oup in he Ría de A ousa ano he wo sub-
g oups can be dis inguished, wi h he g oup co e-
sponding o he si es closes o he open sea being
he poo es in nu ien s. Clus e analysis was also
ca ied ou conside ing phospha e and DIN, i.e.
ni i e+ni a e+ammonium, hus a oiding N com-
pounds ha ing g ea e emphasis. The esul s we e
almos iden ical o he p e ious ones.
T ophic ca ego iza ion in he ías was also ca -
ied ou wi h algal da a, using he same p ocedu e
as be o e. Fo Ul a, signi ican di e ences in le -
els o N and P in he Ría de A ousa and in he N:P
a io in he ías o Pon e ed a and Vigo we e
de ec ed by one-way ANOVA (Table 4); he g oups
sepa a ed using he Tukey-HSD es a e shown in
Table 5. Fo En e omo pha, signi ican di e ences
in concen a ions o N and P a di e en si es in he
Ría de A ousa, in he le els o P in he Ría de Vigo
and N:P in he Ría de Mu os we e de ec ed by one
way ANOVA. Clus e analysis was also used o
g oup he si es acco ding o he le els o N and P
in Ul a and En e omo pha (Fig. 4). The ca ego-
iza ion based on algal da a di e ed om ha
based on wa e da a. The g oups es ablished o
algae did no ollow a g adien om he inne o he
94 R. VILLARES and A. CARBALLEIRA
FIG. 3. – Dend og am o he ía by ía clus e analysis o he mean
concen a ions o each si e, o ni i e, ni a e, ammonium and phos-
pha e. The a e age linkage be ween g oups me hod was used wi h
he squa ed Euclidean dis ance. Scale in ela i e uni s.
TABLE 4. – One way ANOVA o he concen a ions o N, P and N:P in Ul a and En e omo pha o each ía. The deg ees o eedom a e
shown in b acke s. * - Signi ican a p<0.05, ** - Signi ican a p<0.01, *** - Signi ican a p<0.001, n.s. = no signi ican .
Mu os A ousa Pon e ed a Vigo
Ul a N F 0.451 n.s. (3, 28) 2.746* (7, 72) 0.401 n.s. (4, 40) 0.742 n.s. (4, 50)
Ul a P F 0.178 n.s. (3, 28) 2.477* (7, 72) 1.873 n.s. (4, 40) 1.892 n.s. (4, 50)
Ul a N:P F 0.537 n.s. (3, 28) 1.232 n.s. (7, 72) 3.599* (4, 40) 4.275** (4, 50)
En e omo pha N F 1.624 n.s. (3, 20) 3.984** (7, 24) 1.098 n.s. (4, 25) 1.412 n.s. (4, 20)
En e omo pha P F 2.463 n.s. (3, 20) 6.847*** (7, 24) 0.715 n.s. (4, 25) 4.246* (4, 20)
En e omo pha N:P F 3.332* (3, 20) 0.221 n.s. (7, 24) 1.544 n.s. (4, 25) 1.051 n.s. (4, 20)
TABLE 5. – G oups es ablished o nu ien s in Ul a and
En e omo pha o each ía, using he Tukey-HSD mul iple compa -
isons es . The si es a e o de ed by inc easing mean concen a ion
o he co esponding nu ien . Sampling si es wi h he same g oup-
ing numbe we e no signi ican ly di e en . In cases whe e no
g oups appea , no signi ican di e ences we e ound.
Ul a AROUSA VIGO
N P N:P
A8 1 A8 1 V1 1
A6 1 2 A6 1 2 V4 1 2
A4 1 2 A5 1 2 V2 1 2
A5 1 2 A4 1 2 V5 1 2
A2 1 2 A2 1 2 V3 2
A3 2 A3 1 2
A1 2 A1 1 2
A7 2 A7 2
En e omo pha
MUROS AROUSA VIGO
N:P N P P
M1 1 A5 1 A5 1 V4 1
M3 1 2 A6 1 A6 1 2 V3 1 2
M2 1 2 A7 1 2 A7 1 2 3 V2 1 2
M4 2 A4 1 2 A3 1 2 3 V1 1 2
A3 1 2 A4 1 2 3 V5 2
A2 1 2 A2 2 3
A1 2 A1 3
A8 2 A8 3
sm70n1089-2041 1/3/06 16:28 Página 94
ou e a eas o he ías as did he g adien s es ab-
lished using he wa e samples.
One possible explana ion o his misma ch
be ween nu ien s in he wa e and in mac oalgae
may be ha he di e en physiological condi ions o
he algae h oughou he yea may a ec hei use as
indica o s o he nu ien s a us o wa e . A ce ain
imes o yea , mac oalgae may ake up nu ien s
om he wa e and use hem di ec ly o g ow h
wi hou accumula ing hem. Acco ding o Fong e
al. (1994), a ela ionship be ween nu ien s in he
wa e and in mac oalgae will only be ound when
nu ien s a e no limi ing, and can hus be accumu-
la ed. Fong e al. (1998) poin ed ou he use ulness
o En e omo pha in es inalis as an indica o o
nu ien en ichmen in coas al wa e s, al hough hey
sugges ed ha his indica o would possibly only be
accu a e when nu ien supplies we e high.
The mean concen a ions o nu ien s in he
wa e canno be conside ed low in ela ion o hose
epo ed in o he s udies ha demons a e he use-
ulness o mac oalgae as indica o s o he nu ien
s a us o he wa e in which hey a e ound (Ho,
1987; Lyngby and Mo ensen, 1994; Ho ocks e al.,
1995; Lyngby e al., 1999). Despi e his, he p e i-
ous app oach in ol ing using ANOVA, pos -hoc
analysis and clus e analysis was epea ed o Ul a,
al hough only conside ing hose mon hs in which
he concen a ions in he samples we e highe han
he c i ical issue concen a ions o N and P. The
c i ical concen a ion ep esen s he minimum con-
cen a ion o a nu ien in plan issue ha is needed
o suppo maximum g ow h a es. Villa es and
Ca ballei a (2004) calcula ed he c i ical concen a-
ions o issue N and P o Ul a in he s udy egion
(24.5 mg g-1 and 0.810 mg g-1 espec i ely); he c i -
ical concen a ions o En e omo pha in he ci ed
s udy could no be calcula ed. Only hose algae in
which he nu ien le els al eady allow maximal
g ow h we e he e o e aken in o accoun , which
acco ding o Fong e al. (1994) a e he mos sui able
o e lec ing he nu ien s a us o he wa e . The
elimina ed samples co esponded abo e all o he
summe mon hs, and o a lesse ex en , o sp ing.
The samples co esponding o he same pe iods o
ime o each nu ien in he wa e in each ía we e
also omi ed. The new classi ica ion in e ms o
nu ien s in he wa e was simila o he o iginal
classi ica ion, i.e. wi h dec easing concen a ions
always om he inne o he ou e a ea o each ía.
The classi ica ion based on he nu ien s in Ul a did
no a y much om ha obse ed p e iously wi h
he annual da a, and hus di e ed om ha o he
wa e . In conclusion, he di e en physiological
condi ions ha may be ound in Ul a h oughou he
yea do no appea o explain, a leas o ally, he di -
e en esul s o wa e and algae; pe haps using
annual a e age alues minimized any in e e ence
associa ed wi h he seasonal changes in algal physi-
ology. Ho (1987) ound highly signi ican co ela-
ions be ween he mean annual concen a ions (cal-
cula ed om mon hly da a) o nu ien s in he wa e
and in Ul a lac uca.
In gene al, he sampling poin s wi h he highes
le els o nu ien s in algae we e hose si ua ed close
o small illages ( he a eas close o la ge ci ies we e
TROPHIC CATEGORIZATION IN THE RÍAS BAIXAS 95
FIG. 4. – Dend og am o ía by ía clus e analysis o he mean con-
cen a ions o N and P in Ul a and in En e omo pha. The a e age
linkage be ween g oups me hod was used wi h he squa ed
Euclidean dis ance. Scale in ela i e uni s.
sm70n1089-2041 1/3/06 16:28 Página 95
discoun ed when he sampling poin s whe e selec -
ed). The nu ien s o igina ing om hese illages
may ha e caused an inc ease in he nu ien le els in
he wa e , al hough only locally, he eby a ec ing
he nu ien le els in ou algal samples bu no he
mean le els in he wa e in he ias.
The N:P a io in he algae s udied may be con-
side ed high (median alues o 65:1 o Ul a and
68:1 o En e omo pha, bo h a omic a ios) in com-
pa ison wi h he alues co esponding o he wa e
(median 12:1). Mac oalgae usually show alues
highe han he Red ield a io (Dua e, 1992),
al hough he p esen alues a e highe han he a e -
age alue epo ed by his au ho o seaweeds
(49:1). Villa es and Ca ballei a (2003) sugges ed he
e en ion o P by sedimen as a possible explana ion
o he low le els o his nu ien in in e idal algae
in he s udy a ea. I is hus possible ha in he in e -
idal zone, whe e sedimen s may ha e g ea e
impo ance in he nu ien cycles due o he high
a io be ween he su ace a ea o sedimen and he
olume o wa e , he seques a ion o phospha es
om he wa e by sedimen s would make he local
le els o P in he wa e ela i ely low.
In conclusion, i is possible ha he local le els
o nu ien s in he wa e a he algal sampling poin s
we e di e en om hose ound a he wa e sam-
pling poin s. I appea s ha because o he high he -
e ogenei y in he le els o nu ien s in coas al
wa e s, in e idal mac oalgae may no be sui able o
indica ing he nu ien s a us o la ge wa e bodies.
CONCLUSIONS
In gene al, he highes alues o bo h issue nu i-
en concen a ions and dissol ed ino ganic nu ien s
we e ound in win e and he lowes alues ound in
summe ; a si ua ion ha may be conside ed no mal
a in e media e la i udes. The mon hly mean le els
o nu ien s in Ul a ollowed a seasonal pa e n ha
appa en ly e lec ed he nu ien le els in he wa e
be e han he pa e n co esponding o
En e omo pha.
The ca ego iza ion based on he nu ien le els in
he wa e always showed ha he inne a eas o he
ías we e he mos nu ien en iched; his can be
explained by lu ial inpu s and upwelling e en s,
which a e pa icula ly ele an in his zone. The ca -
ego iza ion based on algal da a di e ed om ha
based on wa e da a. The mos en iched sec o s,
based on algal issue nu ien s, we e gene ally hose
close o small illages. E en small supplies o nu i-
en s o e es ial o igin may cause, on a local scale,
la ge a iabili y in he ophic condi ions in he a ea
immedia ely adjacen o he coas , which oge he
wi h he impo ance o sedimen in he nu ien
cycles in he shallowes zones may imply g ea he -
e ogenei y in he nu ien condi ions in he s udy
a ea. In e idal algae may pe haps adequa ely e lec
local nu ien condi ions, bu hey may no be ep e-
sen a i e o he nu ien s a us o la ge wa e bodies,
as in he case o he embaymen s unde s udy.
ACKNOWLEDGEMENTS
We hank he “Cen o de Con ol da Calidade do
Medio Ma iño” (Xun a de Galicia), in pa icula
Joaquín Ma iño and Juan Manei o, o supplying us
wi h da a on nu ien s in wa e . We also hank Xoán
Puen e o his help wi h he ieldwo k. The au ho s
a e g a e ul o he cons uc i e c i icisms o wo
anonymous e e ees, which helped o imp o e he
o iginal e sion o he manusc ip .
This s udy was pa ly inanced by he “Banco de
Especímenes Ambien ales de Galicia (BEAG)”
(Conselle ía de Medio Ambien e, Xun a de Galicia).
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