实验池塘网络连通性丧失导致微生物元群落生物多样性丧失

IF 10.8 1区 环境科学与生态学 Q1 BIODIVERSITY CONSERVATION
Beáta Szabó, Máté Váczy-Földi, Csaba F. Vad, Károly Pálffy, Thu-Hương Huỳnh, Péter Dobosy, Ádám Fierpasz, Zsuzsanna Márton, Tamás Felföldi, Zsófia Horváth
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引用次数: 0

摘要

生境破碎化是生物多样性面临的最重要的全球性威胁之一;然而,包括连通性丧失在内的生境破碎化因素的直接影响在很大程度上还不为人所知,大多数情况下仍然是根据间接证据来推断的。在微生物群落中,我们对这些驱动因素的了解尤其有限。在这里,通过对人工池塘(中观宇宙)元群落进行为期 4 个月的户外实验,我们研究了连通性丧失对浮游微生物的影响,主要侧重于原核和微真核细胞。连接性丧失的模拟方法是,在最初的扩散期之后,停止在当地栖息地之间的扩散。在保持栖息地数量不变和非生物环境均质的情况下,我们可以跟踪连通性丧失过程的直接影响。我们发现,连通性的丧失导致了更高程度的灭绝,并降低了微真核细胞的局部和区域多样性。相比之下,原核生物的多样性模式基本未受影响,但有一些灭绝债务的迹象。连通性的丧失还导致微真核细胞的均匀度降低,这可能是由于与浮游动物食草动物的生物相互作用发生了变化。我们的研究结果表明,连通性的丧失可直接转化为群落中物种的减少,并强调了保护在当地栖息地之间有足够扩散能力的栖息地网络的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Connectivity Loss in Experimental Pond Networks Leads to Biodiversity Loss in Microbial Metacommunities

Connectivity Loss in Experimental Pond Networks Leads to Biodiversity Loss in Microbial Metacommunities

Connectivity Loss in Experimental Pond Networks Leads to Biodiversity Loss in Microbial Metacommunities

Habitat fragmentation is among the most important global threats to biodiversity; however, the direct effects of its components including connectivity loss are largely unknown and still mostly inferred based on indirect evidence. Our understanding of these drivers is especially limited in microbial communities. Here, by conducting a 4-month outdoor experiment with artificial pond (mesocosm) metacommunities, we studied the effects of connectivity loss on planktonic microorganisms, primarily focusing on pro- and microeukaryotes. Connectivity loss was simulated by stopping the dispersal among local habitats after an initial period with dispersal. Keeping the habitat amount constant and the abiotic environment homogeneous allowed us to track the direct effects of the process of connectivity loss. We found that connectivity loss led to higher levels of extinction and a decrease in both local and regional diversity in microeukaryotes. In contrast, diversity patterns of prokaryotes remained largely unaffected, with some indications of extinction debt. Connectivity loss also led to lower evenness in microeukaryotes, likely through changes in biotic interactions with zooplankton grazers. Our results imply that connectivity loss can directly translate into species losses in communities and highlight the importance of conserving habitat networks with sufficient dispersal among local habitats.

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来源期刊
Global Change Biology
Global Change Biology 环境科学-环境科学
CiteScore
21.50
自引率
5.20%
发文量
497
审稿时长
3.3 months
期刊介绍: Global Change Biology is an environmental change journal committed to shaping the future and addressing the world's most pressing challenges, including sustainability, climate change, environmental protection, food and water safety, and global health. Dedicated to fostering a profound understanding of the impacts of global change on biological systems and offering innovative solutions, the journal publishes a diverse range of content, including primary research articles, technical advances, research reviews, reports, opinions, perspectives, commentaries, and letters. Starting with the 2024 volume, Global Change Biology will transition to an online-only format, enhancing accessibility and contributing to the evolution of scholarly communication.
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