AM真菌的全球分类和系统发育组合。

IF 3.3 2区 生物学 Q2 MYCOLOGY
Mycorrhiza Pub Date : 2022-03-01 Epub Date: 2022-02-09 DOI:10.1007/s00572-022-01072-7
Martti Vasar, John Davison, Siim-Kaarel Sepp, Jane Oja, Saleh Al-Quraishy, C Guillermo Bueno, Juan José Cantero, Ezequiel Chimbioputo Fabiano, Guillaume Decocq, Lauchlan Fraser, Inga Hiiesalu, Wael N Hozzein, Kadri Koorem, Mari Moora, Ladislav Mucina, Vladimir Onipchenko, Maarja Öpik, Meelis Pärtel, Cherdchai Phosri, Tanel Vahter, Leho Tedersoo, Martin Zobel
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引用次数: 11

摘要

丛枝菌根真菌(AM)是一种普遍存在的植物共生体,但其全球组装的过程-特别是扩散限制和历史驱动因素的作用-仍然知之甚少。由于早期的研究已经报道了AM真菌的生态位保守性,我们假设分类群落组成的变化(即不以分类单元亲缘关系加权)应该类似于系统发育群落组成的变化(即以分类单元亲缘关系加权),反映了祖先对历史生境梯度的适应。由于AM真菌具有较强的传播能力,我们还预测AM真菌群落的大规模结构将跟踪环境条件,而不会出现区域间断。我们使用最近发表的AM真菌序列数据(小亚基核糖体RNA基因)从世界各地收集的土壤样品重建全球格局的分类和系统发育群落变异。AM真菌群落的分类结构主要受生境条件的驱动,区域分化有限,存在两个较好的支持群落群-发生在寒冷和温暖条件下。系统发育结构是由相同的因素驱动的,尽管所有的关系都明显较弱。这表明AM真菌群落在生境关联方面的生态位保守性表达较弱。结果表明,AM真菌群落的组成遵循主要的气候和土壤梯度,扩散限制和历史因素的影响远不如气候和土壤的影响明显。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Global taxonomic and phylogenetic assembly of AM fungi.

Arbuscular mycorrhizal (AM) fungi are a ubiquitous group of plant symbionts, yet processes underlying their global assembly - in particular the roles of dispersal limitation and historical drivers - remain poorly understood. Because earlier studies have reported niche conservatism in AM fungi, we hypothesized that variation in taxonomic community composition (i.e., unweighted by taxon relatedness) should resemble variation in phylogenetic community composition (i.e., weighted by taxon relatedness) which reflects ancestral adaptations to historical habitat gradients. Because of the presumed strong dispersal ability of AM fungi, we also anticipated that the large-scale structure of AM fungal communities would track environmental conditions without regional discontinuity. We used recently published AM fungal sequence data (small-subunit ribosomal RNA gene) from soil samples collected worldwide to reconstruct global patterns in taxonomic and phylogenetic community variation. The taxonomic structure of AM fungal communities was primarily driven by habitat conditions, with limited regional differentiation, and there were two well-supported clusters of communities - occurring in cold and warm conditions. Phylogenetic structure was driven by the same factors, though all relationships were markedly weaker. This suggests that niche conservatism with respect to habitat associations is weakly expressed in AM fungal communities. We conclude that the composition of AM fungal communities tracks major climatic and edaphic gradients, with the effects of dispersal limitation and historic factors considerably less apparent than those of climate and soil.

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来源期刊
Mycorrhiza
Mycorrhiza 生物-真菌学
CiteScore
8.20
自引率
2.60%
发文量
40
审稿时长
6-12 weeks
期刊介绍: Mycorrhiza is an international journal devoted to research into mycorrhizas - the widest symbioses in nature, involving plants and a range of soil fungi world-wide. The scope of Mycorrhiza covers all aspects of research into mycorrhizas, including molecular biology of the plants and fungi, fungal systematics, development and structure of mycorrhizas, and effects on plant physiology, productivity, reproduction and disease resistance. The scope also includes interactions between mycorrhizal fungi and other soil organisms and effects of mycorrhizas on plant biodiversity and ecosystem structure. Mycorrhiza contains original papers, short notes and review articles, along with commentaries and news items. It forms a platform for new concepts and discussions, and is a basis for a truly international forum of mycorrhizologists from all over the world.
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