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Expansins are among plant cell wall modifying agents specifically expressed during development of nematode-induced syncytia

机译:扩张素是在线虫诱导的合胞体发育过程中特异性表达的植物细胞壁修饰剂之一

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摘要

Cyst nematodes are economically important pests. As obligatory biotrophic endoparasites they invade host roots and induce formation of syncytia, structures that serve them as the only source of nutrients. During syncytium development, extensive cell wall modifications take place. Cell wall dissolution occurs during cell wall opening formation, cell walls expand during hypertrophy of syncytial elements and local cell wall synthesis leads to the thickening of syncytial cell wall and the formation of cell wall ingrowths. Numerous studies revealed that nematodes change expression of plant genes encoding cell wall modifying proteins including expansins. Expansins poses unique abilities to induce cell wall extension in acidic pH. Recently, we demonstrated that two α-expansin genes LeEXPA4 and LeEXPA5 are upregulated in tomato roots infected with potato cyst nematode (Globodera rostochiensis). In this addendum, we present the most recent results concerning involvement of plant cell wall modifying genes in syncytium development and discuss possible practical applications of this knowledge for developing plants with resistance against nematodes.
机译:囊肿线虫是经济上重要的害虫。它们作为必需的生物营养性内寄生虫侵入宿主根并诱导合胞体形成,合胞体是它们唯一的营养来源。在合胞体发育期间,发生了广泛的细胞壁修饰。细胞壁溶解发生在细胞壁开口形成期间,细胞壁在合胞体元素肥大期间膨胀,并且局部细胞壁合成导致合胞体细胞壁增厚并形成细胞壁向内生长。大量研究表明,线虫会改变植物基因的表达,而植物基因编码的细胞壁修饰蛋白包括扩展蛋白。扩展蛋白具有独特的能力,可在酸性pH条件下诱导细胞壁扩展。最近,我们证明了两个α-expansin基因LeEXPA4和LeEXPA5在感染了马铃薯囊肿线虫(Globodera rostochiensis)的番茄根中上调。在本附录中,我们介绍了有关植物细胞壁修饰基因参与合胞体发育的最新结果,并讨论了该知识在开发对线虫具有抗性的植物中的可能的实际应用。

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