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It is hoped that dike-pond ecological engineering will be instrumental in reducing water pollution and increasing biodiversity in the littoral zone of the Three Gorges Reservoir.
Freshwater lakes and ponds present an ecological interface between humans and a variety of host organisms.
The only study comparing fitness of LLR, LR and LRR in different habitats was, however, not very conclusive: The prevalence of adult LLR was positively correlated with human constructions and that of LR adults with forest around the breeding pond, but the majority of ecological parameters measured were not significantly correlated with genotype proportions [ 7].
The sediment and water inter-phase layer in aquaculture ponds is a dynamic zone that plays a crucial role in maintaining the ecological balance of the pond system.
Specifically, bimodality in trophic phenotypes is greatest in ponds where conspecific density and ecological opportunity are highest [ 46].
The dike-pond system was a form of ecological engineering that was a component of successional dikes and ponds along the banks of the Pengxi River in the drawdown zone (DDZ) of the Three Gorges Reservoir (TGR).
This practice improves the ecological state of the ponds and avoids negative impacts to the environment (Bergleiter 2011).
This prevented advances in developing adaptive methodologies for assessing the ecological quality of stormwater ponds and for providing quality objectives for the management of these facilities.
Beitang is an ecologically engineered constructed wetland dominated by human activities and is composed of paddy fields, ponds, ditches, courtyards and other related ecological infrastructure with the functions of agricultural production, hydrological regulation, environmental cleanup and ecological agricultural regulation.
In the current context of sustainable development, assessing the ecological risks of stormwater ponds serving as aquatic habitats is therefore crucial for ensuring both the preservation and rehabilitation of biodiversity in urban areas.
The multiple environmental gradients, at different spatial scales, that may affect biodiversity and ecological uniqueness of urban ponds can thus be seen both as an opportunity and as a challenge for a study.
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