Suppr超能文献

尽管沿海生态系统在严重缺氧期间环境异质性更大,但鱼类物种组成相似。

Similar fish species composition despite larger environmental heterogeneity during severe hypoxia in a coastal ecosystem.

作者信息

Shinohara Naoto, Hongo Yuki, Ichinokawa Momoko, Nishijima Shota, Sawayama Shuhei, Kurogi Hiroaki, Uto Yasuyuki, Mita Hisanori, Ishii Mitsuhiro, Kusano Akane, Akimoto Seiji

机构信息

Fisheries Resources Institute Japan Fisheries Research and Education Agency Yokohama Japan.

Marine Industries Promotion Division Chiba Prefectural Government Chiba Japan.

出版信息

Ecol Evol. 2022 May 15;12(5):e8884. doi: 10.1002/ece3.8884. eCollection 2022 May.

Abstract

Environmental heterogeneity is one of the most influential factors that create compositional variation among local communities. Greater compositional variation is expected when an environmental gradient encompasses the most severe conditions where species sorting is more likely to operate. However, evidence for stronger species sorting at severer environment has typically been obtained for less mobile organisms and tests are scarce for those with higher dispersal ability that allows individuals to sensitively respond to environmental stress. Here, with the dynamics of fish communities in a Japanese bay revealed by environmental DNA metabarcoding analyses as a model case, we tested the hypothesis that larger environmental heterogeneity caused by severe seasonal hypoxia (lower concentration of oxygen in bottom waters in summer) leads to larger variation of species composition among communities. During summer, fish species richness was lower in the bottom layer, suggesting the severity of the hypoxic bottom water. In contrast to the prediction, we found that although the environmental parameters of bottom and surface water was clearly distinct in summer, fish species composition was more similar between the two layers. Our null model analysis suggested that the higher compositional similarity during hypoxia season was not a result of the sampling effect reflecting differences in the alpha or gamma diversity. Furthermore, a shift in the species occurrence from bottom to surface layers was observed during hypoxia season, which was consistent across species, suggesting that the severe condition in the bottom adversely affected fish species irrespective of their identity. These results suggest that larger environmental heterogeneity does not necessarily lead to higher compositional variation once the environmental gradient encompasses extremely severe conditions. This is most likely because individual organisms actively avoided the severity quasi-neutrally, which induced mass effect-like dispersal and lead to the mixing of species composition across habitats. By showing counter evidence against the prevailing view, we provide novel insights into how species sorting by environment acts in heterogeneous and severe conditions.

摘要

环境异质性是导致当地群落组成变化的最具影响力的因素之一。当环境梯度涵盖最极端的条件时,预计会出现更大的组成变化,因为在这些条件下物种分选更有可能发生。然而,通常在移动性较差的生物中获得了在更恶劣环境中更强物种分选的证据,而对于具有较高扩散能力、能使个体对环境压力做出敏感反应的生物,相关测试却很少。在此,以环境DNA宏条形码分析揭示的日本一个海湾鱼类群落动态作为一个模型案例,我们检验了这样一个假设:由严重季节性缺氧(夏季底层水体中氧气浓度较低)导致的更大环境异质性会导致群落间物种组成的更大变化。在夏季,底层鱼类物种丰富度较低,这表明缺氧底层水的严重性。与预测相反,我们发现尽管夏季底层水和表层水的环境参数明显不同,但两层之间的鱼类物种组成却更为相似。我们的零模型分析表明,缺氧季节较高的组成相似性并非反映α或γ多样性差异的抽样效应的结果。此外,在缺氧季节观察到物种出现从底层向表层的转移,这在各物种中是一致的,表明底层的恶劣条件对鱼类物种产生了不利影响,而不论其种类如何。这些结果表明,一旦环境梯度涵盖了极其恶劣的条件,更大的环境异质性不一定会导致更高的组成变化。这很可能是因为个体生物积极地近乎中性地避开了恶劣条件,这引发了类似质量效应的扩散,并导致了跨栖息地物种组成的混合。通过展示与普遍观点相反的证据,我们为环境物种分选在异质和恶劣条件下如何发挥作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/360a/9108318/4d1ee4b8cad6/ECE3-12-e8884-g004.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验