Formation of Adaptive Trophic Niches of Euryphagous Fish Species in Response to Off-Seasonal Water Level Regulation in Hongze Lake.

Fuente: PubMed
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Auteurs principaux: Luo, Si, Wang, Zexin, Zhang, Shengyu, Mu, Huan, Jiao, Yubin, Qu, Xiao, Wang, Qishuo, Yang, Ruiqi, Zuo, Yanxia, Jin, Shiyu
Format: Artículo científico
Langue:en
Publié: Animals : an open access journal from MDPI 2024
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author Luo, Si
Wang, Zexin
Zhang, Shengyu
Mu, Huan
Jiao, Yubin
Qu, Xiao
Wang, Qishuo
Yang, Ruiqi
Zuo, Yanxia
Jin, Shiyu
author_facet Luo, Si
Wang, Zexin
Zhang, Shengyu
Mu, Huan
Jiao, Yubin
Qu, Xiao
Wang, Qishuo
Yang, Ruiqi
Zuo, Yanxia
Jin, Shiyu
Luo, Si
Wang, Zexin
Zhang, Shengyu
Mu, Huan
Jiao, Yubin
Qu, Xiao
Wang, Qishuo
Yang, Ruiqi
Zuo, Yanxia
Jin, Shiyu
collection PubMed - marine biology
contents Formation of Adaptive Trophic Niches of Euryphagous Fish Species in Response to Off-Seasonal Water Level Regulation in Hongze Lake. Luo, Si Wang, Zexin Zhang, Shengyu Mu, Huan Jiao, Yubin Qu, Xiao Wang, Qishuo Yang, Ruiqi Zuo, Yanxia Jin, Shiyu Off-seasonal water level regulations disrupt the biological traits and phenological rhythms of native fish species, yet their impacts on interspecific trophic interactions remain understudied. This study employed stable isotope analysis to assess the trophic dynamics of three fish species (, , and ) across different water periods in Hongze Lake. The findings revealed that all three species occupied similar mid-level trophic positions, with no significant difference among water periods ( > 0.05). During high-water periods, and exploited broader niches, while relied on a narrower diet. In contrast, during low-water periods, expanded its niche, while and reduced their isotopic niche widths. Niche overlap analysis showed minimal trophic overlap among the three species during high-water periods, with increased overlap during low-water periods, except for the highest overlap between and during mid-water periods. This variation in niche overlap aligns with shifts in dietary reliance, as POM was the predominant dietary component for all three species, but its contribution varied significantly across different water periods. These findings indicated that adaptive trophic niche facilitated the coexistence of these fish species, while off-seasonal water level regulation may intensify interspecific competition. These insights are essential for refining water management policies and developing sustainable fishery management strategies of Hongze Lake and other water-level-regulated systems.
format Artículo científico
id pubmed_39795002
institution PubMed
language en
publishDate 2024
publisher Animals : an open access journal from MDPI
record_format pubmed
spellingShingle Formation of Adaptive Trophic Niches of Euryphagous Fish Species in Response to Off-Seasonal Water Level Regulation in Hongze Lake.
Luo, Si
Wang, Zexin
Zhang, Shengyu
Mu, Huan
Jiao, Yubin
Qu, Xiao
Wang, Qishuo
Yang, Ruiqi
Zuo, Yanxia
Jin, Shiyu
Formation of Adaptive Trophic Niches of Euryphagous Fish Species in Response to Off-Seasonal Water Level Regulation in Hongze Lake. Luo, Si Wang, Zexin Zhang, Shengyu Mu, Huan Jiao, Yubin Qu, Xiao Wang, Qishuo Yang, Ruiqi Zuo, Yanxia Jin, Shiyu Off-seasonal water level regulations disrupt the biological traits and phenological rhythms of native fish species, yet their impacts on interspecific trophic interactions remain understudied. This study employed stable isotope analysis to assess the trophic dynamics of three fish species (, , and ) across different water periods in Hongze Lake. The findings revealed that all three species occupied similar mid-level trophic positions, with no significant difference among water periods ( > 0.05). During high-water periods, and exploited broader niches, while relied on a narrower diet. In contrast, during low-water periods, expanded its niche, while and reduced their isotopic niche widths. Niche overlap analysis showed minimal trophic overlap among the three species during high-water periods, with increased overlap during low-water periods, except for the highest overlap between and during mid-water periods. This variation in niche overlap aligns with shifts in dietary reliance, as POM was the predominant dietary component for all three species, but its contribution varied significantly across different water periods. These findings indicated that adaptive trophic niche facilitated the coexistence of these fish species, while off-seasonal water level regulation may intensify interspecific competition. These insights are essential for refining water management policies and developing sustainable fishery management strategies of Hongze Lake and other water-level-regulated systems.
title Formation of Adaptive Trophic Niches of Euryphagous Fish Species in Response to Off-Seasonal Water Level Regulation in Hongze Lake.
url https://pubmed.ncbi.nlm.nih.gov/39795002/