首页> 外文期刊>The Plant Cell >MAP65-3 Microtubule-Associated Protein Is Essential for Nematode-Induced Giant Cell Ontogenesis in Arabidopsis.
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MAP65-3 Microtubule-Associated Protein Is Essential for Nematode-Induced Giant Cell Ontogenesis in Arabidopsis.

机译:MAP65-3微管相关蛋白是拟南芥中线虫诱导的巨细胞本体发生所必需的。

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The infection of plants by obligate parasitic nematodes constitutes an interesting model for investigating plant cytoskeleton functions. Root knot nematodes have evolved the ability to manipulate host functions to their own advantage by redifferentiating root cells into multinucleate and hypertrophied feeding cells. These giant cells result from repeated rounds of karyokinesis without cell division. Detailed functional analyses demonstrated that Arabidopsis thaliana Microtubule-Associated Protein65-3 (MAP65-3) was essential for giant cell ontogenesis and that cytokinesis was initiated but not completed in giant cells. In developing giant cells, MAP65-3 was associated with a novel kind of cell plate--the giant cell mini cell plate--that separates daughter nuclei. In the absence of functional MAP65-3, giant cells developed but failed to fully differentiate and were eventually destroyed. These defects in giant cells impaired the maturation of nematode larvae. Thus, MAP65-3 is essential for giant cell development during root knot nematode infection. Subcellular localization of MAP65-3 and analysis of microtubule organization in the dyc283 T-DNA map65-3 mutant demonstrated that MAP65-3 played a critical role in organizing the mitotic microtubule array during both early and late mitosis in all plant organs. Here, we propose a model for the role of MAP65-3 in giant cell ontogenesis.
机译:专性寄生线虫感染植物构成了研究植物细胞骨架功能的有趣模型。根结线虫通过将根细胞再分化为多核和肥大的饲养细胞,从而发展了操纵宿主功能以发挥自身优势的能力。这些巨大的细胞是由反复的核分裂运动造成的,没有细胞分裂。详细的功能分析表明,拟南芥微管相关蛋白65-3(MAP65-3)对于巨细胞本体发生是必不可少的,并且胞质分裂是在巨细胞中启动但尚未完成。在发育中的巨细胞中,MAP65-3与一种新型的细胞板(巨细胞微型细胞板)相关联,该细胞板可分离子核。在缺乏功能性MAP65-3的情况下,巨细胞发育但未能完全分化,最终被破坏。巨细胞中的这些缺陷损害了线虫幼虫的成熟。因此,MAP65-3对于根结线虫感染期间巨细胞的发育至关重要。 dyc283 T-DNA map65-3突变体中MAP65-3的亚细胞定位和微管组织分析表明,MAP65-3在所有植物器官的有丝分裂的早期和晚期均在组织有丝分裂微管阵列中发挥了关键作用。在这里,我们提出了MAP65-3在巨细胞本体发生中的作用模型。

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