首页> 外文期刊>Journal of Insect Physiology >Gall-forming root-knot nematodes hijack key plant cellular functions to induce multinucleate and hypertrophied feeding cells
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Gall-forming root-knot nematodes hijack key plant cellular functions to induce multinucleate and hypertrophied feeding cells

机译:胆汁形成的根结线虫劫持关键植物的细胞功能,以诱导多核和肥大的饲养细胞

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Among plant-parasitic nematodes, the root-knot nematodes (RKNs) of the Meloidogyne spp. are the most economically important genus. RKN are root parasitic worms able to infect nearly all crop species and have a wide geographic distribution. During infection, RKNs establish and maintain an intimate relationship with the host plant. This includes the creation of a specialized nutritional structure composed of multinucleate and hypertrophied giant cells, which result from the redifferentiation of vascular root cells. Giant cells constitute the sole source of nutrients for the nematode and are essential for growth and reproduction. Hyperplasia of surrounding root cells leads to the formation of the gall or root-knot, an easily recognized symptom of plant infection by RKNs. Secreted effectors produced in nematode salivary glands and injected into plant cells through a specialized feeding structure called the stylet play a critical role in the formation of giant cells. Here, we describe the complex interactions between RKNs and their host plants. We highlight progress in understanding host plant responses, focusing on how RKNs manipulate key plant processes and functions, including cell cycle, defence, hormones, cellular scaffold, metabolism and transport. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在植物寄生线虫中,根结线虫属的根结线虫(RKN)。是最经济重要的属。 RKN是根寄生虫,能够感染几乎所有农作物物种,并具有广泛的地理分布。在感染期间,RKN与宿主植物建立并保持密切的关系。这包括创建由多核和肥大巨细胞组成的特殊营养结构,这是由于血管根细胞的再分化所致。巨型细胞是线虫营养的唯一来源,对生长和繁殖至关重要。周围根细胞的增生导致形成胆结或根结,这是RKNs容易感染植物的症状。线虫唾液腺中产生的分泌效应子,通过称为探针的特殊喂养结构注入植物细胞,在巨细胞的形成中起关键作用。在这里,我们描述了RKN及其寄主植物之间的复杂相互作用。我们强调了解宿主植物反应的进展,重点是RKN如何操纵植物的关键过程和功能,包括细胞周期,防御,激素,细胞支架,代谢和运输。 (C)2015 Elsevier Ltd.保留所有权利。

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