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一个涉及 Rho 型 GTPases、一种粘着斑蛋白和一种formin 同源物的网络调节丝状真菌棉阿舒囊霉的孢子长度和孢子壁完整性。

A network involving Rho-type GTPases, a paxillin and a formin homologue regulates spore length and spore wall integrity in the filamentous fungus Ashbya gossypii.

机构信息

Department of Genetics, University of Osnabrück, Barbarastr. 11, 49076 Osnabrück, Germany.

出版信息

Mol Microbiol. 2012 Aug;85(3):574-93. doi: 10.1111/j.1365-2958.2012.08128.x. Epub 2012 Jun 21.

Abstract

Fungi produce spores that allow for their dispersal and survival under harsh environmental conditions. These spores can have an astonishing variety of shapes and sizes. Using the highly polar, needle-shaped spores of the ascomycete Ashbya gossypii as a model, we demonstrated that spores produced by this organism are not simple continuous structures but rather consist of three different segments that correlate with the accumulation of different materials: a rigid tip segment, a more fragile main spore-compartment and a solid tail segment. Little is currently known about the regulatory mechanisms that control the formation of the characteristic spore morphologies. We tested a variety of mutant strains for their spore phenotypes, including spore size, shape and wall defects. The mutants that we identified as displaying such phenotypes are all known for their roles in the regulation of hyphal tip growth, including the formin protein AgBni1, the homologous Rho-type GTPases AgRho1a and AgRho1b and the scaffold protein AgPxl1. Our observations suggest that these proteins form a signalling network controlling spore length by regulating the formation of actin structures.

摘要

真菌产生孢子,使其能够在恶劣的环境条件下传播和生存。这些孢子可以有惊人的各种形状和大小。我们使用子囊菌棉阿舒囊霉的高度极性、针状孢子作为模型,证明了该生物产生的孢子不是简单的连续结构,而是由三个不同的部分组成,与不同物质的积累相关:一个刚性的尖端部分、一个更脆弱的主要孢子隔室和一个坚固的尾部部分。目前,关于控制特征孢子形态形成的调节机制知之甚少。我们测试了各种突变菌株的孢子表型,包括孢子大小、形状和壁缺陷。我们确定的表现出这种表型的突变体都以其在菌丝尖端生长调节中的作用而闻名,包括formin 蛋白 AgBni1、同源 Rho 型 GTPases AgRho1a 和 AgRho1b 以及支架蛋白 AgPxl1。我们的观察表明,这些蛋白质通过调节肌动蛋白结构的形成形成一个信号网络,控制孢子的长度。

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