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Recent Insights on Biological and Ecological Aspects of Ectomycorrhizal Fungi and Their Interactions

机译:外生菌根真菌的生物学和生态学方面及其相互作用的最新见解

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摘要

The roots of most terrestrial plants are colonized by mycorrhizal fungi. They play a key role in terrestrial environments influencing soil structure and ecosystem functionality. Around them a peculiar region, the mycorrhizosphere, develops. This is a very dynamic environment where plants, soil and microorganisms interact. Interest in this fascinating environment has increased over the years. For a long period the knowledge of the microbial populations in the rhizosphere has been limited, because they have always been studied by traditional culture-based techniques. These methods, which only allow the study of cultured microorganisms, do not allow the characterization of most organisms existing in nature. The introduction in the last few years of methodologies that are independent of culture techniques has bypassed this limitation. This together with the development of high-throughput molecular tools has given new insights into the biology, evolution, and biodiversity of mycorrhizal associations, as well as, the molecular dialog between plants and fungi. The genomes of many mycorrhizal fungal species have been sequenced so far allowing to better understanding the lifestyle of these fungi, their sexual reproduction modalities and metabolic functions. The possibility to detect the mycelium and the mycorrhizae of heterothallic fungi has also allowed to follow the spatial and temporal distributional patterns of strains of different mating types. On the other hand, the availability of the genome sequencing from several mycorrhizal fungi with a different lifestyle, or belonging to different groups, allowed to verify the common feature of the mycorrhizal symbiosis as well as the differences on how different mycorrhizal species interact and dialog with the plant. Here, we will consider the aspects described before, mainly focusing on ectomycorrhizal fungi and their interactions with plants and other soil microorganisms.
机译:大多数陆地植物的根都被菌根真菌定殖。它们在影响土壤结构和生态系统功能的陆地环境中起着关键作用。在它们周围形成一个特殊区域,菌根根。这是植物,土壤和微生物相互作用的动态环境。多年来,人们对这种迷人的环境越来越感兴趣。长期以来,根际中微生物种群的知识一直很有限,因为它们一直是通过传统的基于文化的技术进行研究的。这些方法仅允许研究培养的微生物,而不能表征自然界中存在的大多数生物。在过去的几年中,不依赖于培养技术的方法的介绍绕过了这一限制。这与高通量分子工具的发展一起,使人们对菌根协会的生物学,进化和生物多样性以及植物与真菌之间的分子对话有了新的认识。迄今为止,已对许多菌根真菌物种的基因组进行了测序,从而可以更好地了解这些真菌的生活方式,它们的有性繁殖方式和代谢功能。检测异源真菌的菌丝体和菌根的可能性也使得人们可以遵循不同交配类型的菌株的时空分布规律。另一方面,来自几种生活方式不同或属于不同群体的菌根真菌的基因组测序的有效性,可以验证菌根共生的共同特征,以及不同菌根种类之间如何相互作用和对话的差异。植物。在这里,我们将考虑前面所述的方面,主要集中在外生菌根真菌及其与植物和其他土壤微生物的相互作用上。

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