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座囊菌纲通常作为内生菌与植物根系共生吗?

Do Sebacinales commonly associate with plant roots as endophytes?

作者信息

Selosse Marc-André, Dubois Marie-Pierre, Alvarez Nadir

机构信息

Centre d'Ecologie Fonctionnelle et Evolutive (CNRS, UMR 5175), Equipe co-évolution, 1919 Route de Mende, 34293 Montpellier Cedex 5, France.

出版信息

Mycol Res. 2009 Oct;113(Pt 10):1062-9. doi: 10.1016/j.mycres.2009.07.004. Epub 2009 Jul 17.

DOI:10.1016/j.mycres.2009.07.004
PMID:19616625
Abstract

Sebacinales are basal Hymenomycetes with diverse mycorrhizal abilities, ranging from ectomycorrhizae to ericoid and orchid mycorrhizae. Several previous PCR or isolation works raised the possibility that Sebacinales are endophytes in plant roots. We tested this hypothesis in an isolation-independent approach by using specific PCR primers for ribosomal DNA of Sebacinales on AM mycorrhizal or non-mycorrhizal roots. Thirty-nine plant species were sampled on a Caribbean and two European sites (3 repetition per species and site), covering 25 families in monocots and eudicots. PCR signals were obtained from 40 samples (28.9%) from 27 species (69.2%) and all sites. Whenever sequencing was successful, a sequence belonging to Sebacinales was recovered. A phylogenetic approach revealed that 13 of them belonged to clade B (encompassing ericoid and orchid mycorrhizal species) and 4 to clade A (usually encompassing only ectomycorrhizal species). These data suggest that Sebacinales may be endophytic in many angiosperm roots, and that this condition is plesiomorphic in Sebacinales. They bridge the gap between physiological studies, inoculating Sebacinales (Piriformospora indica or Sebacina vermifera) on diverse plants and molecular ecology, hitherto restricting Sebacinales to mycorrhizal interactions. Structural and functional aspects of the interaction deserve further studies.

摘要

座囊菌纲是基部的层菌纲,具有多样的菌根能力,从外生菌根到石楠类菌根和兰花菌根。先前的一些聚合酶链式反应(PCR)或分离研究提出了座囊菌纲可能是植物根内生菌的可能性。我们通过使用针对座囊菌纲核糖体DNA的特异性PCR引物,以一种不依赖分离的方法对这一假设进行了测试,该方法应用于丛枝菌根(AM)或非菌根的根。在一个加勒比地区和两个欧洲地点采集了39种植物样本(每个物种和地点重复3次),涵盖单子叶植物和双子叶植物的25个科。在所有地点的27个物种(69.2%)的40个样本(28.9%)中获得了PCR信号。只要测序成功,就能得到属于座囊菌纲的序列。系统发育分析表明,其中13个属于分支B(包括石楠类菌根和兰花菌根物种),4个属于分支A(通常仅包括外生菌根物种)。这些数据表明座囊菌纲可能在许多被子植物根中是内生的,并且这种情况在座囊菌纲中是原始的。它们弥合了生理学研究(在不同植物上接种座囊菌纲,如印度梨形孢或蠕虫状座囊菌)和分子生态学(迄今为止将座囊菌纲限制于菌根相互作用)之间的差距。这种相互作用的结构和功能方面值得进一步研究。

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