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从历史角度看菌根共生关系,重点关注丛枝菌根及其面临的新挑战。

A historical perspective on mycorrhizal mutualism emphasizing arbuscular mycorrhizas and their emerging challenges.

机构信息

Agroécologie, AgroSup Dijon, CNRS, Université de Bourgogne, INRAE, Université de Bourgogne Franche-Comté, Dijon, France.

出版信息

Mycorrhiza. 2021 Nov;31(6):637-653. doi: 10.1007/s00572-021-01053-2. Epub 2021 Oct 16.

Abstract

Arbuscular mycorrhiza, one of the oldest interactions on earth (~ 450 million years old) and a first-class partner for plants to colonize emerged land, is considered one of the most pervasive ecological relationships on the globe. Despite how important and old this interaction is, its discovery was very recent compared to the long story of land plant evolution. The story of the arbuscular mycorrhiza cannot be addressed apart from the history, controversies, and speculations about mycorrhiza in its broad sense. The chronicle of mycorrhizal research is marked by multiple key milestones such as the initial description of a "persistent epiderm and pellicular wall structure" by Hartig; the introduction of the "Symbiotismus" and "Mycorrhiza" concepts by Frank; the description of diverse root-fungal morphologies; the first description of arbuscules by Gallaud; Mosse's pivotal statement of the beneficial nature of the arbuscular mycorrhizal symbiosis; the impact of molecular tools on the taxonomy of mycorrhizal fungi as well as the development of in vitro root organ cultures for producing axenic arbuscular mycorrhizal fungi (AMF). An appreciation of the story - full of twists and turns - of the arbuscular mycorrhiza, going from the roots of mycorrhiza history, along with the discovery of different mycorrhiza types such as ectomycorrhiza, can improve research to help face our days' challenge of developing sustainable agriculture that integrates the arbuscular mycorrhiza and its ecosystem services.

摘要

丛枝菌根,地球上最古老的共生关系之一(约 4.5 亿年),是植物在出现陆地时的最佳共生伙伴,被认为是全球最普遍的生态关系之一。尽管这种共生关系非常重要且古老,但与陆地植物的漫长进化史相比,它的发现非常晚。丛枝菌根的故事不能脱离广义菌根的历史、争议和推测来讲述。菌根研究的编年史有多个关键里程碑,例如 Hartig 最初描述的“持久的表皮和膜壁结构”;Frank 引入的“Symbiotismus”和“菌根”概念;描述多样化的根-真菌形态;Gallaud 首次描述了丛枝;Mosse 关于丛枝菌根共生有益性质的关键论述;分子工具对菌根真菌分类学的影响,以及为生产无菌丛枝菌根真菌(AMF)而开发的体外根器官培养。欣赏丛枝菌根的故事——充满曲折——从菌根历史的根源,以及发现不同的菌根类型,如外生菌根,可以改进研究,帮助我们应对当今发展可持续农业的挑战,即将丛枝菌根及其生态系统服务整合在一起。

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