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基于性状的硅藻功能多样性作为理解苏打盐碱地环境变化影响的合适工具。

Trait-based diatom functional diversity as an appropriate tool for understanding the effects of environmental changes in soda pans.

作者信息

Stenger-Kovács Csilla, Lengyel Edina, Buczkó Krisztina, Padisák Judit, Korponai János

机构信息

Department of Limnology University of Pannonia Veszprém Hungary.

Department of Botany Hungarian Natural History Museum Budapest Hungary.

出版信息

Ecol Evol. 2019 Dec 10;10(1):320-335. doi: 10.1002/ece3.5897. eCollection 2020 Jan.

Abstract

Saline lakes, among the most seriously endangered ecosystems, are threatened due to climate change and human activities. One valuable feature of these environments is that they constitute areas of high biodiversity. Ecologists are, therefore, under great pressure to improve their understanding of the effects of natural and anthropogenic disturbances on the biodiversity of saline lakes. In this study, a total of 257 samples from 32 soda pans in Central Europe between 2006 and 2015 were examined. The effects of environmental variables and of geographical and limnoecological factors on functional diversity were analyzed. Furthermore, the explanatory power of the trait-based approach was assessed, and the applicability of the indices for biomonitoring purposes was determined. It was found that low habitat heterogeneity and harsh environments lead to the selection of a small number of suitable traits, and consequently, to a naturally low level of functional diversity. Anthropogenic activities enhance diversity at functional level due to the shift toward freshwater characteristics. On the regional scale, the effects of the region and status (natural, degraded, reconstructed) on diatom functional diversity were significant and more pronounced than that of the environmental and other limnoecological factors. The degree of variance found in functional diversity ascribed to environmental variables is five times greater in the case of the application of a trait-based approach, than when a taxonomic one is employed in the literature. Each of the tested functional diversity indices was sensitive to the most important environmental variables. Furthermore, these were type-specific and proved to be more complex indicators than taxonomic metrics. It is possible to suggest four functional diversity indices (FGR, FRic, FDis, and FDiv) which emphasize their independence from substrate and seasonal variations for ecological status assessment and conservation planning.

摘要

盐湖是最濒危的生态系统之一,因气候变化和人类活动而受到威胁。这些环境的一个宝贵特征是它们构成了高生物多样性区域。因此,生态学家面临巨大压力,需要更好地理解自然和人为干扰对盐湖生物多样性的影响。在本研究中,对2006年至2015年间中欧32个碱湖的总共257个样本进行了检查。分析了环境变量以及地理和湖沼生态因素对功能多样性的影响。此外,评估了基于性状方法的解释力,并确定了这些指数用于生物监测目的的适用性。研究发现,低栖息地异质性和恶劣环境导致选择少量合适的性状,从而导致功能多样性自然水平较低。由于向淡水特征的转变,人为活动在功能水平上增强了多样性。在区域尺度上,区域和状态(自然、退化、重建)对硅藻功能多样性的影响显著,且比环境和其他湖沼生态因素的影响更明显。在应用基于性状的方法时,归因于环境变量的功能多样性方差程度比文献中采用分类学方法时大五倍。每个测试的功能多样性指数对最重要的环境变量都很敏感。此外,这些指数具有类型特异性,并且被证明是比分类学指标更复杂的指标。可以提出四个功能多样性指数(FGR、FRic、FDis和FDiv),它们强调在生态状况评估和保护规划中不受底物和季节变化的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58f2/6972871/b74c3f65972b/ECE3-10-320-g001.jpg

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