Romero-Contreras Yordan J, Ramírez-Valdespino Claudia A, Guzmán-Guzmán Paulina, Macías-Segoviano Juan Ignacio, Villagómez-Castro Julio César, Olmedo-Monfil Vianey
Departamento de Biología, División de Ciencias Naturales y Exactas, Universidad de Guanajuato, Guanajuato, Mexico.
Front Microbiol. 2019 Sep 25;10:2231. doi: 10.3389/fmicb.2019.02231. eCollection 2019.
LysM effectors play a relevant role during the plant colonization by successful phytopathogenic fungi, since they enable them to avoid either the triggering of plant defense mechanisms or their attack effects. Tal6, a LysM protein from , is capable of binding to complex chitin. However, until now its biological function is not completely known, particularly its participation in plant- interactions. We obtained null mutant and overexpressing strains and determined the role played by this protein during -plant interaction and mycoparasitism. LysM effector Tal6 from protects the hyphae from chitinases by binding to chitin of the fungal cell wall, increases the fungus mycoparasitic capacity, and modulates the activation of the plant defense system. These results show that beneficial fungi also employ LysM effectors to improve their association with plants.
LysM效应蛋白在成功的植物病原真菌定殖过程中发挥着重要作用,因为它们使真菌能够避免触发植物防御机制或免受其攻击影响。Tal6是一种来自[具体来源未给出]的LysM蛋白,能够结合复杂的几丁质。然而,到目前为止其生物学功能尚未完全明确,尤其是其在植物相互作用中的参与情况。我们获得了[具体名称未给出]缺失突变体和过表达菌株,并确定了该蛋白在[具体名称未给出]与植物相互作用及真菌寄生过程中所起的作用。来自[具体来源未给出]的LysM效应蛋白Tal6通过与真菌细胞壁的几丁质结合来保护菌丝免受几丁质酶的影响,增强真菌的真菌寄生能力,并调节植物防御系统的激活。这些结果表明有益真菌也利用LysM效应蛋白来改善它们与植物的关联。