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内生真菌在毛萼含笑茎内的空间分布和群落组成。

Spatial distribution and community composition of endophytic fungi within Mussaenda pubescens stems.

机构信息

Fujian Agriculture and Forestry University, Fuzhou, China.

Faculty of Biological Science and Technology, Baotou Teacher's College, Baotou, China.

出版信息

Fungal Biol. 2024 Jun;128(4):1815-1826. doi: 10.1016/j.funbio.2024.05.001. Epub 2024 May 14.

Abstract

Endophytic fungi, pivotal in facilitating plant co-evolution, significantly enhance plant growth, stress resistance, and environmental adaptability. Despite their importance, the spatial distribution of stem endophytic fungi (SEF) within host plants remains poorly characterized. Here, we employed high-throughput sequencing to conduct a comparative analysis of SEF communities in Mussaenda pubescens on a regional scale. Our findings reveal that whole-SEF communities were overwhelmingly dominated by members of the phylum Ascomycota, accounting for 85.9 %, followed by Basidiomycota at 13.9 %, and that alpha diversity within the whole-SEF community of M. pubescens remains relatively consistent across sampling sites. However, significant variation was observed within conditionally abundant taxa (CAT), conditionally rare or abundant taxa (CRAT), and conditionally rare taxa (CRT). Climatic factors emerged as the primary influence on SEF community distribution, followed by spatial distance and stem chemical properties. Neutral community modeling results suggested that both stochastic and deterministic processes play a role in shaping whole-SEF communities, with deterministic processes having a stronger influence on CRT subcommunities. Furthermore, the CRT co-occurrence network exhibited a more complex structure, characterized by higher values of network betweenness and degree relative to CAT and CRAT subcommunities. These findings enhance our understanding of community assembly and ecological interactions between stem fungal endophytes, presenting opportunities for harnessing fungal resources for the benefit of humanity.

摘要

内生真菌在促进植物共同进化方面起着关键作用,它们显著增强了植物的生长、抗逆性和环境适应性。尽管它们很重要,但宿主植物内茎内生真菌(SEF)的空间分布仍然知之甚少。在这里,我们采用高通量测序技术对区域尺度上鸡矢藤内生真菌群落进行了比较分析。我们的研究结果表明,整个 SEF 群落主要由子囊菌门成员主导,占 85.9%,担子菌门占 13.9%,并且鸡矢藤整个 SEF 群落的 α多样性在采样点之间相对一致。然而,在条件丰富的分类群(CAT)、条件稀有或丰富的分类群(CRAT)和条件稀有分类群(CRT)中观察到显著的变化。气候因素是 SEF 群落分布的主要影响因素,其次是空间距离和茎化学性质。中性群落模型结果表明,随机和确定性过程都对整个 SEF 群落的形成起作用,确定性过程对 CRT 亚群落的影响更强。此外,CRT 共生网络表现出更复杂的结构,与 CAT 和 CRAT 亚群落相比,网络的中间中心性和度数具有更高的值。这些发现增强了我们对茎真菌内生菌之间群落组装和生态相互作用的理解,为利用真菌资源造福人类提供了机会。

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