Advances in understanding of mycorrhizal-like associations in bryophytes

S. Pressel, M. Bidartondo, Katie J. Field, J. Duckett
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引用次数: 4

Abstract

Mutually beneficial associations between plants and soil fungi, mycorrhizas, are one of the most important terrestrial symbioses. These partnerships are thought to have propelled plant terrestrialisation some 500 million years ago and today they play major roles in ecosystem functioning. It has long been known that bryophytes harbour, in their living tissues, fungal symbionts, recently identified as belonging to the three mycorrhizal fungal lineages Glomeromycotina, Ascomycota and Basidiomycota. Latest advances in understanding of fungal associations in bryophytes have been largely driven by the discovery, nearly a decade ago, that early divergent liverwort clades, including the most basal Haplomitriopsida, and some hornworts, engage with a wider repertoire of fungal symbionts than previously thought, including endogonaceous members of the ancient sub-phylum Mucoromycotina. Subsequent global molecular and cytological studies have revealed that Mucoromycotina symbionts, alongside Glomeromycotina, are widespread in both complex and simple thalloid liverworts and throughout hornworts, with physiological studies confirming that, in liverworts at least, these associations are mycorrhizal-like, and highlighting important functional differences between Mucoromycotina and Glomeromycotina symbioses. Whether a more prominent role of Mucoromycotina symbionts in plant nitrogen nutrition, as identified in liverworts, extends to other plant lineages, including the flowering plants, is a major topic for future research.          The latest finding that ascomycete symbionts of leafy liverworts are not restricted to one fungus, Rhizoscyphus ericae, but include species in the genus Meliniomyces, as shown here in Mylia anomala, together with the recent demonstration that R. ericae forms nutritional mutualisms with the rhizoids of Cephalozia bicuspidata, fill other major gaps in our growing knowledge of fungal associations across land plants.
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苔藓植物菌根样组合研究进展
植物与土壤真菌菌根之间的互利关系是最重要的陆地共生关系之一。这些伙伴关系被认为在大约5亿年前推动了植物的陆地化,今天它们在生态系统功能中发挥着重要作用。人们早就知道苔藓植物在其活组织中含有真菌共生体,最近被鉴定为属于三个菌根真菌谱系的小球菌门、子囊菌门和担子菌门。对苔藓植物中真菌关联的最新了解很大程度上是由近十年前的发现所推动的,即早期分化的苔类分支,包括最基础的Haplomitriopsida和一些角苔类,与比以前认为的更广泛的真菌共生体,包括古老的毛霉亚门的内源性成员。随后的全球分子和细胞学研究表明,毛菌门共生体与小球菌门一起广泛存在于复杂和简单的菌体肝菌中以及整个角菌中,生理学研究证实,至少在肝菌中,这些共生体是菌根状的,并强调了毛菌门和小球菌门共生体之间的重要功能差异。毛霉菌门共生体在植物氮营养中的作用,如在苔类中所发现的,是否会扩展到其他植物谱系,包括开花植物,是未来研究的主要课题。最近的一项研究发现,叶苔的子囊菌共生体并不局限于一种真菌,如Mylia anomala所示,而是包括Meliniomyces属的物种,以及最近的一项研究表明,R. ericae与cephalalozia bicuspidata的类根形成营养互惠关系,填补了我们对陆地植物真菌关联的日益增长的知识中的其他主要空白。
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