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首页> 外文期刊>International review of cytology >Mitosis and motor proteins in the filamentous ascomycete, Nectria haematococca, and some related fungi.
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Mitosis and motor proteins in the filamentous ascomycete, Nectria haematococca, and some related fungi.

机译:丝状子囊菌,血球菌和一些相关真菌中的有丝分裂和运动蛋白。

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Among filamentous fungi, mitosis has been studied in-depth in just a few species. The mitotic apparatuses in the ascomycetous Fusarium spp. are the most clearly and readily visualized in vivo within this group; fluorescent labeling is unnecessary. This superior cytological tractability has enabled detailed studies and revealing experiments that have led the way toward a more complete understanding of fungal mitosis. Some of the most important discoveries include the role of half-spindles in development of the bipolar spindle, the existence of true kinetochores in fungi, the unorthodox chromosome configurations and movements comprising metaphase and anaphase A, the attachment of astral microtubules to the plasmalemma, the role of the astral pulling force in elongating the spindle, an inwardly directed force within the spindle, and microtubule cross-bridging in both spindle and asters. Recent research has focused on the roles of microtubuleassociated motor proteins in Fusarium solani f. sp. pisi (anamorph of Nectria haematococca). Cytoplasmic dynein was shown to be involved in the development and/or maintenance of mitotic asters and necessary for motility and functionality of the interphase spindle pole body. The inwardly directed force within the anaphase spindle was shown to be produced by a kinesin-related protein, NhKRP1. Because of its superior cytological tractability, the considerable and unique knowledge we have of many aspects of its mitosis, and its genetic tractability, Fusarium solani f. sp. pisi is a good choice for further investigations of mitosis in filamentous fungi.
机译:在丝状真菌中,仅在少数物种中对有丝分裂进行了深入研究。子囊性镰刀菌属中的有丝分裂器。是该组中最清晰,最容易观察到的体内物质;不需要荧光标记。这种优越的细胞学易处理性使详细研究和揭示实验成为了对真菌有丝分裂的更完整理解的方法。一些最重要的发现包括半纺锤体在双极纺锤体发育中的作用,真菌中真正动植物的存在,非正统的染色体构型和包括中期和后期A的运动,星形微管与质膜的附着,星形拉力在拉长纺锤中的作用,纺锤内部的向内作用力以及纺锤和紫苑中的微管交叉桥。最近的研究集中在微管镰刀菌镰刀菌中的微管相关运动蛋白的作用。 sp。 isi(Nectria haematococca的变形)。已显示细胞质动力蛋白参与有丝分裂星系的发展和/或维持,并且是相间纺锤极体的运动性和功能性所必需的。已显示后期纺锤体内向内的力是由驱动蛋白相关蛋白NhKRP1产生的。由于其优异的细胞学易处理性,我们对有丝分裂的许多方面以及其遗传易处理性Solsol f。有了很多独特的认识。 sp。 pisi是进一步研究丝状真菌有丝分裂的好选择。

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