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细胞分裂素通过靶向细胞骨架和细胞运输抑制真菌发育和毒力。

Cytokinin Inhibits Fungal Development and Virulence by Targeting the Cytoskeleton and Cellular Trafficking.

机构信息

Department of Plant Pathology and Weed Research, ARO, Volcani Institute, Rishon LeZion, Israel.

Institute of Agri-food, Animal and Environmental Sciences, Universidad de O'Higgins, Rancagua, Chile.

出版信息

mBio. 2021 Oct 26;12(5):e0306820. doi: 10.1128/mBio.03068-20. Epub 2021 Oct 19.

Abstract

Cytokinin (CK) is an important plant developmental regulator, having activities in many aspects of plant life and response to the environment. CKs are involved in diverse processes in the plant, including stem cell maintenance, vascular differentiation, growth and branching of roots and shoots, leaf senescence, nutrient balance, and stress tolerance. In some cases, phytopathogens secrete CKs. It has been suggested that to achieve pathogenesis in the host, CK-secreting biotrophs manipulate CK signaling to regulate the host cell cycle and nutrient allocation. CK is known to induce host plant resistance to several classes of phytopathogens from a few works, with induced host immunity via salicylic acid signaling suggested to be the prevalent mechanism for this host resistance. Here, we show that CK directly inhibits the growth, development, and virulence of fungal phytopathogens. Focusing on Botrytis cinerea (), we demonstrate that various aspects of fungal development can be reversibly inhibited by CK. We also found that CK affects both budding and fission yeast in a similar manner. Investigating the mechanism by which CK influences fungal development, we conducted RNA next-generation sequencing (RNA-NGS) on mock- and CK-treated samples, finding that CK alters the cell cycle, cytoskeleton, and endocytosis. Cell biology experiments demonstrated that CK affects cytoskeleton components and cellular trafficking in , lowering endocytic rates and endomembrane compartment sizes, likely leading to reduced growth rates and arrested developmental programs. Mutant analyses in yeast confirmed that the endocytic pathway is altered by CK. Our work uncovers a remarkably conserved role for a plant growth hormone in fungal biology, suggesting that pathogen-host interactions resulted in fascinating molecular adaptations on fundamental processes in eukaryotic biology. Cytokinins (CKs), important plant growth/developmental hormones, have previously been associated with host disease resistance. Here, we demonstrate that CK directly inhibits the growth, development, and virulence of () and many additional phytopathogenic fungi. Molecular and cellular analyses revealed that CK is not toxic to , but rather, likely recognizes CK and responds to it, resulting in cell cycle and individual cell growth retardation, via downregulation of cytoskeletal components and endocytic trafficking. Mutant analyses in yeast confirmed that the endocytic pathway is a CK target. Our work demonstrates a conserved role for CK in yeast and fungal biology, suggesting that pathogen-host interactions may cause molecular adaptations in fundamental processes in eukaryotic biology.

摘要

细胞分裂素(CK)是一种重要的植物发育调节剂,在植物生命的许多方面和对环境的响应中都具有活性。CK 参与植物的多种过程,包括干细胞维持、血管分化、根和芽的生长和分枝、叶片衰老、养分平衡和胁迫耐受。在某些情况下,植物病原体分泌 CK。有人认为,为了在宿主中实现发病机制,分泌 CK 的生物营养体操纵 CK 信号转导来调节宿主细胞周期和养分分配。有几项工作表明,CK 诱导宿主植物对几类植物病原体产生抗性,通过水杨酸信号诱导宿主免疫被认为是这种宿主抗性的普遍机制。在这里,我们表明 CK 直接抑制真菌植物病原体的生长、发育和毒力。我们专注于灰葡萄孢(Botrytis cinerea),证明 CK 可以可逆地抑制真菌发育的各个方面。我们还发现 CK 以类似的方式影响芽殖酵母和裂殖酵母。为了研究 CK 影响真菌发育的机制,我们对 CK 处理和未处理的 样品进行了 RNA 下一代测序(RNA-NGS),发现 CK 改变了细胞周期、细胞骨架和内吞作用。细胞生物学实验表明,CK 影响细胞骨架成分和 中的细胞运输,降低内吞率和内吞小体腔室的大小,可能导致生长速度降低和发育程序停滞。酵母中的突变分析证实,内吞途径被 CK 改变。我们的工作揭示了一种植物生长激素在真菌生物学中惊人的保守作用,表明病原体-宿主相互作用导致了真核生物学基本过程中迷人的分子适应。细胞分裂素(CK)是一种重要的植物生长/发育激素,先前与宿主疾病抗性有关。在这里,我们表明 CK 直接抑制(Botrytis cinerea)和许多其他植物病原体真菌的生长、发育和毒力。分子和细胞分析表明,CK 对 无毒,而是 可能识别 CK 并对其做出反应,通过下调细胞骨架成分和内吞作用来导致细胞周期和单个细胞生长的减缓。酵母中的突变分析证实,内吞途径是 CK 的靶标。我们的工作在酵母和真菌生物学中证明了 CK 的保守作用,表明病原体-宿主相互作用可能导致真核生物学基本过程中的分子适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c3e/8524340/bfefd388255b/mbio.03068-20-f001.jpg

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