Protist ecology in Patagonian peatlands: pH, organic phosphorus, and sulfate as key drivers of testate amoeba diversity in undisturbed ecosystems.

IF 1.3 3区 生物学 Q2 ZOOLOGY
ZooKeys Pub Date : 2025-05-21 eCollection Date: 2025-01-01 DOI:10.3897/zookeys.1239.146538
Leonardo D Fernández, Erwin Domínguez, Antonio Parra-Gómez, Enrique Lara
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Abstract

Peatlands in southern Chile, particularly in the remote Aysén region, are unique ecosystems that remain understudied despite their ecological significance as natural laboratories. These near-pristine environments serve as essential water reservoirs and harbor largely unexplored microbial diversity. Testate amoebae, a group of shelled protists, play key roles in nutrient cycling and are highly sensitive to environmental changes, making them valuable bioindicators. However, the ecological drivers shaping their diversity and community composition in Chilean peatlands remain poorly understood. This study investigated the spatial distribution and diversity of testate amoebae across five peatlands in the Aysén region (44°S and 49°S; Southern Patagonia, Chile). We recorded 73 morphospecies, including typical southern taxa such as Alocoderacockayni, Apoderavas, Argynniagertrudeana, Certesellacertesi, and C.martiali. Redundancy analysis revealed that organic phosphorus, pH, and sulfate are the most influential factors shaping testate amoeba communities. Beta diversity analysis indicated significant spatial turnover among sites, suggesting that local environmental gradients strongly influence species distribution. Interestingly, Sphagnum-dominated peatlands exhibited higher diversity compared to those with mixed vegetation (vascular plants and bryophytes). Our findings fill a critical gap in understanding microbial biodiversity in Chilean peatlands and highlight the importance of conserving these ecosystems as reservoirs of microbial diversity and natural archives of environmental change.

Protist巴塔哥尼亚泥炭地的生态学:pH、有机磷和硫酸盐是未受干扰生态系统中土壤阿米巴原虫多样性的关键驱动因素。
智利南部的泥炭地,特别是偏远的ayssamen地区的泥炭地是独特的生态系统,尽管它们作为自然实验室具有重要的生态意义,但仍未得到充分研究。这些近乎原始的环境充当了重要的水库,并孕育了大量未开发的微生物多样性。无肾变形虫是一类有壳原生生物,在营养循环中起着关键作用,对环境变化高度敏感,是有价值的生物指标。然而,形成智利泥炭地的多样性和群落组成的生态驱动因素仍然知之甚少。本研究调查了ayssamn地区5个泥炭地(44°S和49°S;南巴塔哥尼亚,智利)。记录形态种73种,包括南方典型分类群Alocoderacockayni、Apoderavas、Argynniagertrudeana、Certesellacertesi、C.martiali等。冗余分析表明,有机磷、pH和硫酸盐是影响睾丸阿米巴群落形成的主要因素。Beta多样性分析表明,不同站点间存在显著的空间转换,表明局地环境梯度对物种分布有较大影响。有趣的是,泥炭地以泥炭草为主,其多样性高于混合植被(维管植物和苔藓植物)的泥炭地。我们的发现填补了了解智利泥炭地微生物多样性的关键空白,并强调了保护这些生态系统作为微生物多样性储存库和环境变化自然档案的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ZooKeys
ZooKeys 生物-动物学
CiteScore
2.70
自引率
15.40%
发文量
400
审稿时长
3 months
期刊介绍: ZooKeys is a peer-reviewed, open-access, online and print, rapidly produced journal launched to support free exchange of ideas and information in systematic zoology, phylogeny and biogeography. All papers can be freely copied, downloaded, printed and distributed at no charge. Authors and readers are thus encouraged to post the pdf files of published papers on homepages or elsewhere to expedite distribution. There is no charge for color.
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