Determinants of biodiversity in subtropical shallow lakes (Atlantic coast, Uruguay)
Факторы, определяющие биоразнообразие мелководных субтропических озёр (атлантическое побережье, Уругвай)
2009-07-30
SCID: 54.1/wuxkgc84
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plankton and fish assemblagesspecies richnesssubmerged macrophytessubtropical shallow lakeswater turbidity
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Abstract (AI)
Summary 1. Shallow lakes and ponds contribute disproportionally to species richness relative to other aquatic ecosystems. In‐lake conditions (e.g. presence of submerged plants) seem to play a key role in determining diversity, as has been demonstrated for temperate lakes. When water quality deteriorates and turbidity increases, conditions in such lakes are affected drastically resulting in a loss of diversity. However, it is not clear whether subtropical lakes show the same pattern and whether the richness of all groups reacts similarly to environmental changes. 2. Our aim was to analyse the main factors explaining patterns of species richness in plankton, fish and submerged macrophyte assemblages in both turbid and clear subtropical shallow lakes. We analysed abiotic and biotic features of 18 subtropical, small‐ to medium‐sized, shallow lakes along the Uruguayan coast. We compared both turbid and clear ecosystem states and evaluated the relative variance explained by the factors measured. 3. Variables describing lake and catchment morphology, as well as the percentage of the water column occupied by submerged macrophytes (%PVI) and water turbidity, had strong effects on taxon richness. Interestingly, individual biotic groups had dissimilar richness patterns. Macrophyte %PVI decreased with increasing lake area, while fish species richness showed the opposite pattern. Phytoplankton species richness increased with macrophyte %PVI, while the zooplankton richness pattern varied depending on the taxonomic group considered. 4. Overall, our results indicate that, as found for temperate lakes, a greater submerged plant cover promotes higher species richness in several groups, and that this may overwhelm the otherwise expected positive effect of lake size on species richness. On the other hand, small‐bodied zooplankton predominated in lakes with high plant abundance. Our findings concur with recent studies, indicating that refuge capacity of aquatic plants might be weaker in (sub)tropical than in temperate shallow lakes. 5. The extremely high plant cover, frequently observed in warm lakes, could potentially lead to different richness patterns in some groups. This conclusion has important consequences for local managers and conservationists.
Key Findings
1
Greater submerged-plant cover generally promoted higher species richness across several groups, potentially outweighing the expected positive effect of lake size.
2
Lake and catchment morphology, submerged-macrophyte cover (%PVI), and turbidity strongly influenced taxon richness across 18 subtropical shallow lakes in Uruguay.
3
Phytoplankton richness increased with submerged-macrophyte cover, while zooplankton richness varied among taxonomic groups.
4
Richness responses differed among biological groups: macrophyte cover declined with lake area, whereas fish species richness increased with lake area.
5
Small-bodied zooplankton predominated in lakes with abundant submerged plants, suggesting plant-related habitat effects on community structure.
Research Object
Subtropical shallow lakes and their plankton, fish, and submerged macrophyte assemblages along the Atlantic coast of Uruguay
Research Subject
The environmental determinants and intergroup patterns of species richness under turbid and clear lake conditions, particularly the effects of lake and catchment morphology, submerged macrophyte cover, and water turbidity
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2009-07-30
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