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菌根真菌菌丝的寿命和功能与宿主植物的寿命脱钩。

Lifespan and functionality of mycorrhizal fungal mycelium are uncoupled from host plant lifespan.

机构信息

Department of Agriculture, Food and Environment, University of Pisa, Pisa, 56124, Italy.

CNR-Institute of Agricultural Biology and Biotechnology, UOS Pisa, Pisa, 56124, Italy.

出版信息

Sci Rep. 2018 Jul 6;8(1):10235. doi: 10.1038/s41598-018-28354-5.

Abstract

Arbuscular mycorrhizal fungi (AMF) are obligate symbionts, living in associations with the roots of most land plants. AMF produce wide networks of extraradical mycelium (ERM) of indeterminate length, spreading from host roots into the surrounding soil and establishing belowground interconnections among plants belonging to the same or to different taxa. Whether their lifespan and functionality are limited by host plant viability or can be extended beyond this limit is unknown. To address this issue, we performed time-course studies to investigate viability and functionality of ERM produced in an in vivo whole-plant system by Funneliformis mosseae and Rhizoglomus irregulare, after shoot detachment. Our data revealed that viability and functionality of F. mosseae and R. irregulare extraradical hyphae were uncoupled from host plant lifespan. Indeed, ERM spreading from roots of intact or shootless plants showed comparable levels of viability, similar structural traits and ability to establish mycorrhizal symbioses with new plants, as long as five months after shoot removal. Our findings expand the current knowledge on AMF biology and life cycle, providing data on ERM long-term survival in the soil of two Glomeracean species, functional to the prompt establishment of mycorrhizal symbioses and to the maintenance of soil biological fertility.

摘要

丛枝菌根真菌(AMF)是专性共生体,与大多数陆生植物的根系共生。AMF 产生不定长的广泛的根外菌丝(ERM)网络,从宿主根系延伸到周围土壤,并在属于同一或不同分类群的植物之间建立地下连接。它们的寿命和功能是否受宿主植物活力的限制,或者是否可以超出这个限制,目前还不清楚。为了解决这个问题,我们进行了时间进程研究,以调查 Funneliformis mosseae 和 Rhizoglomus irregulare 在离体整株植物系统中产生的 ERM 的活力和功能,在去除芽后。我们的数据显示,F. mosseae 和 R. irregulare 根外菌丝的活力和功能与宿主植物的寿命无关。事实上,从完整或无芽植物的根系延伸的 ERM 表现出类似的活力水平、相似的结构特征和与新植物建立共生关系的能力,在芽去除后长达五个月的时间里都是如此。我们的发现扩展了 AMF 生物学和生命周期的现有知识,为两种 Glomeracean 物种 ERM 在土壤中的长期生存提供了数据,这对促进共生关系的建立和维持土壤生物肥力是功能的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ec5/6035242/5d99b28908d3/41598_2018_28354_Fig1_HTML.jpg

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