Új cikkünk a Functional Ecology-ban
Elfogadta közlésre elsőszerzőségemmel jegyzett a szakma egyik rangos nemzetközi lapja a Functional Ecology. A cikk címe a "Functional diversity supports the biomass-diversity humped-back relationship in phytoplankton assemblages". Bár kissé meglepő lehet mind a cím, mind a témaválasztás a cikk kötődik gyepekhez, hiszen a diszkusszió harmadik bekezdése lényegében a a terresztris növényközösségek és a fitoplankton közösségekben tapasztalt humped-back összefüggések összehasonlítását tartalmazza rámutatva a kialakult különbségek lehetséges magyarázatára. A cikk összefoglalója az alábbiakban olvasható, a cikk pedig megtalálható (egyenlőre csak) a folyóirat honlapján.
Functional diversity supports the biomass-diversity humped-back relationship in phytoplankton assemblages
Török P., T-Krasznai E., B-Béres V., Bácsi I., Borics G., Tóthmérész B.
1. Modelling the
relationship between biomass and diversity in phytoplankton assemblages
provides new insights into the mechanisms responsible for the
coexistence of species, even in terrestrial ecosystems.
2. We
tested the biomass-diversity relationship in lake phytoplankton along a
wide biomass gradient using functional species groups. We hypothesized
that changes in the taxonomic diversity of the phytoplankton along a
biomass gradient are associated with altered functional diversity.
3. For
the analyses, in total 768 samples were collected from 30 oxbows,
reservoirs and lakes in the Hungarian Lowland Region and analysed
between 1992 and 2002.
4. We found that the diversity and also the
number of functional species groups showed a humped-back curve similar
to the species richness. The changes in functional group composition act
as a good proxy for phytoplankton species responses. We found that the
peak of the number of strategy groups and their Shannon diversity was at
a much lower biomass than that of species richness.
5. We revealed
the fine-scale effects of increasing the dominance of respective
species or species groups with increasing biomass. This increase was
well reflected by the changes in the functional characteristics: first,
the species evenness; then, the Shannon diversity; and finally, the
species richness started to decrease with increasing biomass.
6. Cyanoprokaryota
were positively correlated with increasing biomass and negatively with
the increase in species richness; thus, the high increase both in their
abundance and biomass can be responsible for the abruptly decreasing
part of the humped-back curve.
7. We detected a humped-back curve
between biomass and diversity, where the peak compared to terrestrial
plant communities tended to be towards high biomass scores, that is,
greater than 60% instead of the 20 to 60% of the biomass range typical
for terrestrial plant communities. Marked differences in the structural
and dynamic features of phytoplankton assemblages and terrestrial plant
communities are likely responsible for this difference.
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