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首页> 外文期刊>Environmental microbiology >UBL1 of Fusarium verticillioides links the N-end rule pathway to extracellular sensing and plant pathogenesis
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UBL1 of Fusarium verticillioides links the N-end rule pathway to extracellular sensing and plant pathogenesis

机译:枯萎镰刀菌的UBL1将N端规则途径与细胞外传感和植物发病机理联系起来

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Fusarium verticillioides produces fumonisin mycotoxins during colonization of maize. Currently, molecular mechanisms underlying responsiveness of F. verticillioides to extracellular cues during pathogenesis are poorly understood. In this study, insertional mutants were created and screened to identify genes involved in responses to extracellular starch. In one mutant, the restriction enzyme-mediated integration cassette disrupted a gene (UBL1) encoding a UBR-Box/RING domain E3 ubiquitin ligase involved in the N-end rule pathway. Disruption of UBL1 in F. verticillioides (Δubl1) influenced conidiation, hyphal morphology, pigmentation and amylolysis. Disruption of UBL1 also impaired kernel colonization, but the ratio of fumonisin B_1 per unit growth was not significantly reduced. The inability of a Δubl1 mutant to recognize an N-end rule degron confirmed involvement of UBL1 in the N-end rule pathway. Additionally, Ubl1 physically interacted with two G protein α subunits of F. verticillioides, thus implicating UBL1 in G protein-mediated sensing of the external environment. Furthermore, deletion of the UBL1 orthologue in F. graminearum reduced virulence on wheat and maize, thus indicating that UBL1 has a broader role in virulence among Fusarium species. This study provides the first linkage between the N-end rule pathway and fungal pathogenesis, and illustrates a new mechanism through which fungi respond to the external environment.
机译:玉米镰刀菌在玉米定殖过程中产生伏马菌素霉菌毒素。目前,在发病过程中潜在的网状拟南芥对细胞外提示反应的分子机制了解甚少。在这项研究中,创建并筛选了插入突变体,以鉴定参与细胞外淀粉反应的基因。在一个突变体中,限制酶介导的整合盒破坏了一个编码UBR-Box / RING域E3泛素连接酶的基因(UBL1),该酶参与了N端规则通路。轮状假丝酵母(Δubl1)中UBL1的破坏影响分生孢子,菌丝形态,色素沉着和淀粉分解。 UBL1的破坏也损害了内核定植,但伏马毒素B_1单位生长的比例并未显着降低。 Δubl1突变体无法识别N端规则德贡,证实了UBL1参与N端规则途径。此外,Ubl1与褐藻假单胞菌的两个G蛋白α亚基物理相互作用,从而将UBL1牵涉到G蛋白介导的外部环境感知中。此外,在禾谷镰孢中UBL1直向同源物的缺失降低了对小麦和玉米的毒力,因此表明UBL1在镰刀菌属物种之间的毒力中具有更广泛的作用。这项研究提供了N端规则通路和真菌发病机制之间的第一个联系,并阐明了真菌对外部环境作出反应的新机制。

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