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植物与丛枝菌根真菌的互利共生关系。

The Mutualistic Interaction between Plants and Arbuscular Mycorrhizal Fungi.

机构信息

Department of Life Sciences and Systems Biology, University of Torino, Torino, 10125, Italy.

出版信息

Microbiol Spectr. 2016 Dec;4(6). doi: 10.1128/microbiolspec.FUNK-0012-2016.

Abstract

Mycorrhizal fungi belong to several taxa and develop mutualistic symbiotic associations with over 90% of all plant species, from liverworts to angiosperms. While descriptive approaches have dominated the initial studies of these fascinating symbioses, the advent of molecular biology, live cell imaging, and "omics" techniques have provided new and powerful tools to decipher the cellular and molecular mechanisms that rule mutualistic plant-fungus interactions. In this article we focus on the most common mycorrhizal association, arbuscular mycorrhiza (AM), which is formed by a group of soil fungi belonging to Glomeromycota. AM fungi are believed to have assisted the conquest of dry lands by early plants around 450 million years ago and are found today in most land ecosystems. AM fungi have several peculiar biological traits, including obligate biotrophy, intracellular development inside the plant tissues, coenocytic multinucleate hyphae, and spores, as well as unique genetics, such as the putative absence of a sexual cycle, and multiple ecological functions. All of these features make the study of AM fungi as intriguing as it is challenging, and their symbiotic association with most crop plants is currently raising a broad interest in agronomic contexts for the potential use of AM fungi in sustainable production under conditions of low chemical input.

摘要

菌根真菌属于几个分类群,与超过 90%的所有植物物种形成互利共生的共生关系,从地钱到被子植物。虽然描述性方法在这些迷人的共生关系的最初研究中占据主导地位,但分子生物学、活细胞成像和“组学”技术的出现为破译支配植物-真菌相互作用的细胞和分子机制提供了新的、强大的工具。在本文中,我们重点介绍最常见的菌根共生关系——丛枝菌根(AM),它是由一组属于球囊霉目的土壤真菌形成的。AM 真菌被认为在大约 4.5 亿年前帮助早期植物征服了旱地,并且现在在大多数陆地生态系统中都有发现。AM 真菌具有几个特殊的生物学特征,包括专性生物营养、在植物组织内的细胞内发育、合胞多核菌丝和孢子,以及独特的遗传学,例如推测不存在有性周期和多种生态功能。所有这些特征使得 AM 真菌的研究既有趣又具有挑战性,它们与大多数作物植物的共生关系目前在农业背景下引起了广泛的兴趣,因为 AM 真菌在低化学投入条件下可持续生产中的潜在用途。

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