Lu Hongyun, Wei Tianyu, Lou Hanghang, Shu Xiaoli, Chen Qihe
Department of Food Science and Nutrition, Zhejiang University, Hangzhou 310058, China.
College of Agriculture and Biotechnology, Zhejiang University, Hangzhou 310058, China.
J Fungi (Basel). 2021 Sep 1;7(9):719. doi: 10.3390/jof7090719.
Endophytic fungi infect plant tissues by evading the immune response, potentially stimulating stress-tolerant plant growth. The plant selectively allows microbial colonization to carve endophyte structures through phenotypic genes and metabolic signals. Correspondingly, fungi develop various adaptations through symbiotic signal transduction to thrive in mycorrhiza. Over the past decade, the regulatory mechanism of plant-endophyte interaction has been uncovered. Currently, great progress has been made on plant endosphere, especially in endophytic fungi. Here, we systematically summarize the current understanding of endophytic fungi colonization, molecular recognition signal pathways, and immune evasion mechanisms to clarify the transboundary communication that allows endophytic fungi colonization and homeostatic phytobiome. In this work, we focus on immune signaling and recognition mechanisms, summarizing current research progress in plant-endophyte communication that converge to improve our understanding of endophytic fungi.
内生真菌通过逃避免疫反应来感染植物组织,这可能会刺激耐胁迫的植物生长。植物通过表型基因和代谢信号选择性地允许微生物定殖,以塑造内生菌结构。相应地,真菌通过共生信号转导形成各种适应性机制,从而在菌根中茁壮成长。在过去十年中,植物与内生菌相互作用的调控机制已被揭示。目前,在植物内生菌方面取得了重大进展,尤其是内生真菌。在此,我们系统地总结了目前对内生真菌定殖、分子识别信号通路和免疫逃避机制的理解,以阐明允许内生真菌定殖和维持植物微生物群落稳态的跨界交流。在这项工作中,我们专注于免疫信号传导和识别机制,总结了植物与内生菌交流方面的当前研究进展,以增进我们对内生真菌的理解。