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Assessing the Roles of Striatin Orthologs in Fungal Morphogenesis, Sexual Development and Pathogenicity

机译:评估直链同源蛋白在真菌形态发生,性发育和致病性中的作用

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摘要

Striatin family proteins contain a caveolin binding domain, a coiled-coil motif, a calmodulin binding domain, and a WD-repeat domain. Homologs of striatin protein have been However, our knowledge of the function and the molecular mechanism of fungal striatin homologs is limited. Based on the conserved sequences of functional domains, I hypothesized that the fungal striatin orthologs also act as scaffolding proteins that are functionally conserved among fungal species and involved in multiple types of development in the diverse kingdom Mycota. I used reverse genetic strategies to study the function of the Aspergillus nidulans striatin ortholog (strA) and the Colletotrichum graminicola striatin ortholog (str1). In assays of sexual development, the strA deletion strain (?strA) produces fewer ascospores with smaller cleistothecia, while the str1 deletion strain (?str1) is defective in perithecia development. The ?strA phenotypes indicate that StrA is associated with ascosporogenesis in cleistothecia. Both ?strA and ?str1 are reduced in radial growth and in conidia production. The ?str1 strain is also altered in its spiral growth pattern and morphology of conidia and hyphopodia, but it produces appressoria similar to wild type. The pairing of nitrate non-utilizing mutants demonstrates that Str1 is required for hyphal fusion. In pathogenicity, ?str1 is less virulent in maize anthracnose leaf blight and stalk rot. The phenotypes of ?str1 are complemented by the Fusarium verticillioides striatin ortholog (fsr1), indicating that Fsr1 and Str1 are functionally conserved. Over-expression of StrA reveals its positive role in conidiation and the sexual production. StrA::eGFP localizes mainly to the endoplasmic reticulum. After comparing the results from these two species and other studied fungal species, I suggest that fungal striatins are involved in five types of development including hyphal growth, hyphal fusion, conidiation, sexual development, and virulence, and propose a model of fungal striatin protein interactions to account for these diverse phenotypes.
机译:Striatin家族蛋白包含小孔蛋白结合结构域,卷曲螺旋基序,钙调蛋白结合结构域和WD重复结构域。 striatin蛋白的同源物已经存在,但是,我们对真菌striatin同源物的功能和分子机制的了解有限。基于功能域的保守序列,我假设真菌striatin直系同源物也充当支架蛋白,这些蛋白在真菌物种之间具有功能保守性,并参与了不同物种Mycota的多种发育类型。我使用逆向遗传策略研究了构巢曲霉(Astrgillus nidulans)striatin ortholog(strA)和Colletotrichum graminicola striatin ortholog(str1)的功能。在性发育试验中,strA缺失菌株(?strA)产生的孢子孢子较少,而粘膜鞘膜较小,而str1缺失菌株(?str1)在皮周组织发育中是有缺陷的。 αstrA表型表明StrA与硬化症中的孢子发生有关。 ?strA和?str1的径向生长和分生孢子的产生都减少了。 βstr1菌株的螺旋生长方式以及分生孢子和拟足菌的形态也发生了变化,但其产生的压感类似于野生型。硝酸盐非利用突变体的配对表明Str1是菌丝融合所必需的。在致病性方面,Δstr1对玉米炭疽病和茎腐病的毒性较小。 βstr1的表型由镰孢镰刀菌striatin ortholog(fsr1)补充,表明Fsr1和Str1在功能上是保守的。 StrA的过度表达揭示了其在分娩和性生产中的积极作用。 StrA :: eGFP主要定位于内质网。在比较了这两个物种和其他研究过的真菌物种的结果后,我建议真菌striatin参与五种类型的发育,包括菌丝生长,菌丝融合,分生,有性发育和毒力,并提出了真菌striatin蛋白相互作用的模型。来解释这些不同的表型。

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    Wang Chih-Li;

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  • 年度 2011
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