Geographic distribution of nematodes in the Atacama is associated with elevation, climate gradients and parthenogenesis
Laura Villegas · Laura C. Pettrich · Esteban Acevedo-Trejos · Arunee Suwanngam · Nadim Wassey · Miguel L. Allende · Alexandra Stoll · Oleksandr Holovachov · Ann-Marie Waldvogel · Philipp H. Schiffer
期刊Nature Communications / Nat Commun
类型Article
发表2026-01-09 (online)
卷期页17(1): 424
收录2026-10-03
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关键词soil nematodesAtacama Desertgeographic distributionelevation gradientparthenogenesisasexual reproductionsoil biodiversityextreme environmentsarid ecosystemslatitudinal gradient
标签—
土壤生态系统对于支持生命至关重要,但关于其生物多样性及其在极端环境中的分布知之甚少。阿塔卡马沙漠是地球上最干燥的非极地沙漠,水资源稀缺,盐度高,水体富含金属,为大多数生物创造了挑战性环境。地面上生物已有部分记录,但其土壤研究仍然不足。我们展示了土壤线虫——一类丰富多样的无脊椎动物——在阿塔卡马地区,在遗传、分类、群落和生命周期等多个生物学层面上展现出独特的生物多样性模式。对沙丘系统、高海拔山脉、盐湖、河谷和雾绿洲的调查揭示了每个栖息地中独特的组合。我们发现无性分类单元在高海拔地区更为常见,这与地理上的孤雌生殖模式相符。属的丰富度呈纬度梯度,并随降水增加而增加。这些结果表明,即使在极端的陆地环境中,稳定的土壤群落依然可以持续存在。然而,简化的土壤食物网证据表明其易受进一步环境变化的影响。我们的发现为干旱生态系统中塑造生物多样性的机制提供了新的见解,并可为预测全球气候驱动干旱下土壤韧性提供参考。
Soil ecosystems are crucial for supporting life, yet little is known about their biodiversity and its distribution in extreme environments. The Atacama Desert, the driest non-polar desert on Earth, has scarce water, high salinity, and metal-rich water bodies, creating challenging conditions for most organisms. Above-ground life has been partially documented, but its soils remain poorly studied. Here we show that soil nematodes, an abundant and diverse group of invertebrates, display distinct biodiversity patterns across the Atacama at multiple biological scales, including genetic, taxonomic, community, and life-cycle levels. Surveys across dune systems, high-altitude mountains, saline lakes, river valleys, and fog oases reveal unique assemblages in each habitat. We find that asexual taxa are more common at higher altitudes, consistent with patterns of geographical parthenogenesis. Genus richness follows a latitudinal gradient and increases with precipitation. These results demonstrate that even in one of the most extreme terrestrial environments, stable soil communities can persist. However, evidence of simplified soil food webs suggests vulnerability to further environmental change. Our findings provide new insights into the mechanisms shaping biodiversity in arid ecosystems and can inform predictions about soil resilience under global climate-driven aridification.

@article{villegas2026,
author = {Laura Villegas and Laura C. Pettrich and Esteban Acevedo-Trejos and Arunee Suwanngam and Nadim Wassey and Miguel L. Allende and Alexandra Stoll and Oleksandr Holovachov and Ann-Marie Waldvogel and Philipp H. Schiffer},
title = {Geographic distribution of nematodes in the Atacama is associated with elevation, climate gradients and parthenogenesis},
journal = {Nature Communications},
year = {2026},
volume = {17},
number = {1},
pages = {424},
doi = {10.1038/s41467-025-67117-5},
publisher = {Springer Science and Business Media LLC},
}· END ·