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拟南芥γ-微管蛋白基因的表达对于由大豆胞囊线虫诱导的功能性合胞体的发育是必需的。

Expression of both Arabidopsis γ-tubulin genes is essential for development of a functional syncytium induced by Heterodera schachtii.

机构信息

Department of Botany, Faculty of Agriculture and Biology, Warsaw University of Life Sciences-SGGW, Nowoursynowska 159, 02-776, Warsaw, Poland.

Department of Plant Genetics, Breeding and Biotechnology, Faculty of Horticulture, Biotechnology and Landscape Architecture, Warsaw University of Life Sciences-SGGW, Warsaw, Poland.

出版信息

Plant Cell Rep. 2018 Sep;37(9):1279-1292. doi: 10.1007/s00299-018-2312-7. Epub 2018 Jun 12.

Abstract

After initial up-regulation, expression of TUBG1 and TUBG2 is significantly down-regulated in mature syncytia, but lack of expression of either of γ-tubulin genes reduces numbers of nematode infections and developing females. Infective second stage juveniles of sedentary plant parasitic nematode Heterodera schachtii invade the root vascular tissue and induce a feeding site, named syncytium, formed as a result of cell hypertrophy and partial cell wall dissolution leading to a multinucleate state. Syncytium formation and maintenance involves a molecular interplay between the plant host and the developing juveniles leading to rearrangements and fragmentation of the plant cytoskeleton. In this study, we investigated the role of two Arabidopsis γ-tubulin genes (TUBG1 and TUBG2), involved in MTs nucleation during syncytium development. Expression analysis revealed that both γ-tubulin's transcript levels changed during syncytium development and after initial up-regulation (1-3 dpi) they were significantly down-regulated in 7, 10 and 15 dpi syncytia. Moreover, TUBG1 and TUBG2 showed distinct immunolocalization patterns in uninfected roots and syncytia. Although no severe changes in syncytium anatomy and ultrastructure in tubg1-1 and tubg2-1 mutants were observed compared to syncytia induced in wild-type plants, nematode infection assays revealed reduced numbers of infecting juveniles and developed female nematodes in mutant lines. Our results indicate that the expression of both TUBG1 and TUBG2 genes, although generally down-regulated in mature syncytia, is essential for successful root infection, development of functional syncytium and nematode maturation.

摘要

在成熟的合胞体中,TUBG1 和 TUBG2 的表达最初上调后显著下调,但 γ-微管蛋白基因的任何一个缺失都会减少线虫感染和发育雌性的数量。固着性植物寄生线虫根结线虫的感染性 2 龄幼虫侵入根的维管束组织,并诱导一个称为合胞体的取食部位形成,合胞体的形成是由于细胞肥大和部分细胞壁溶解导致多核状态。合胞体的形成和维持涉及植物宿主和发育中的幼虫之间的分子相互作用,导致植物细胞骨架的重排和片段化。在这项研究中,我们研究了两个拟南芥 γ-微管蛋白基因(TUBG1 和 TUBG2)在合胞体发育过程中参与 MTs 成核的作用。表达分析显示,两个 γ-微管蛋白的转录水平在合胞体发育过程中发生变化,在初始上调(1-3dpi)后,它们在 7、10 和 15dpi 合胞体中显著下调。此外,TUBG1 和 TUBG2 在未感染的根和合胞体中表现出不同的免疫定位模式。尽管与在野生型植物中诱导的合胞体相比,tubg1-1 和 tubg2-1 突变体中的合胞体解剖和超微结构没有观察到严重变化,但线虫感染测定显示突变体系中感染性幼虫和发育中的雌性线虫数量减少。我们的结果表明,尽管 TUBG1 和 TUBG2 基因的表达在成熟的合胞体中普遍下调,但它们对于成功的根感染、功能性合胞体的发育和线虫的成熟是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4ab/6096582/ca9726a3a78d/299_2018_2312_Fig1_HTML.jpg

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