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Published on: February 15, 2021
Fish Assemblages Distinguish Eco-Friendly from Conventional Rice Paddies Through Abundance and Biomass Rather than
Byung-Mo Lee1, Myung-Hyun Kim2, Soon-Kun Choi1
1Climate Change Assessment Division, National Institute of Agricultural Sciences, Rural Development Administration, Wanju 55365, Republic of Korea.
Abstract:
Although rice paddies are agricultural land, they also serve as artificial wetlands that deliver essential ecosystem services. Yet how farming systems affect their fish communities-and which metrics best capture those effects-remains poorly quantified in Asia. We compared fish assemblages between eco-friendly and conventional rice paddies in South Korea across the 2015 rice growing season (May-September), sampling 94 events by fyke net in Dangjin City (2704 individuals; 13 species) and analyzing the data with generalized linear mixed models and multivariate methods. Eco-friendly paddies supported 2.3-fold higher abundance and 2.6-fold higher biomass; differences were negligible in May (Cohen's d ≈ 0) but large from June onward (d > 1.0), with a moderate-to-large pooled effect (d = 0.76-0.89). Community composition differed significantly (PERMANOVA), and eco-friendly assemblages were more consistent among fields (PERMDISP). Carassius auratus and Misgurnus anguillicaudatus were 10.8- and 2.7-fold more abundant under eco-friendly management, whereas α-diversity indices (richness, Shannon, Simpson, evenness) showed no differences, as three taxa comprised over 90% of the catch. In these species-poor, dominance-skewed systems, abundance-based and species-specific metrics detected management effects more sensitively than α-diversity indices, complementing rather than replacing them. Because these results derive from a single growing season in one region, however, they should be regarded as specific to comparable systems and require multi-year, multi-region validation before their use in biomonitoring and eco-friendly agricultural policy can be generalized.
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