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首页> 外文期刊>Plant Biotechnology Journal >Enhanced resistance to soybean cyst nematode Heterodera glycines in transgenic soybean by silencing putative CLE receptors
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Enhanced resistance to soybean cyst nematode Heterodera glycines in transgenic soybean by silencing putative CLE receptors

机译:通过沉默推定的CLE受体增强转基因大豆中对大豆囊肿线虫异型藻甘氨酸的抗性

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摘要

CLE peptides are small extracellular proteins important in regulating plant meristematic activity through the CLE?¢????receptor kinase?¢????WOX signalling module. Stem cell pools in the SAM (shoot apical meristem), RAM (root apical meristem) and vascular cambium are controlled by CLE signalling pathways. Interestingly, plant?¢????parasitic cyst nematodes secrete CLE?¢????like effector proteins, which act as ligand mimics of plant CLE peptides and are required for successful parasitism. Recently, we demonstrated that Arabidopsis CLE receptors CLAVATA1 (CLV1), the CLAVATA2 (CLV2)/CORYNE (CRN) heterodimer receptor complex and RECEPTOR?¢????LIKE PROTEIN KINASE 2 (RPK2), which transmit the CLV3 signal in the SAM, are required for perception of beet cyst nematode Heterodera schachtii CLEs. Reduction in nematode infection was observed in clv1 , clv2 , crn , rpk2 and combined double and triple mutants. In an effort to develop nematode resistance in an agriculturally important crop, orthologues of Arabidopsis receptors including CLV1, CLV2, CRN and RPK2 were identified from soybean, a host for the soybean cyst nematode Heterodera glycines . For each of the receptors, there are at least two paralogues in the soybean genome. Localization studies showed that most receptors are expressed in the root, but vary in their level of expression and spatial expression patterns. Expression in nematode?¢????induced feeding cells was also confirmed. In vitro direct binding of the soybean receptors with the HgCLE peptide was analysed. Knock?¢????down of the receptors in soybean hairy roots showed enhanced resistance to SCN. Our findings suggest that targeted disruption of nematode CLE signalling may be a potential means to engineer nematode resistance in crop plants.
机译:CLE肽是小的细胞外蛋白,其对通过CLE受体激酶激活WOX信号模块调节植物分生组织的活性很重要。 SAM(顶生分生组织),RAM(根尖分生组织)和血管形成层中的干细胞池受CLE信号通路控制。有趣的是,植物的寄生性囊肿线虫分泌CLE样的效应蛋白,其作为植物CLE肽的配体模拟物,是成功寄生的必需蛋白。最近,我们证明了拟南芥CLE受体CLAVATA1(CLV1),CLAVATA2(CLV2)/ CORYNE(CRN)异二聚体受体复合物和RECEPTOR?像蛋白激酶2(RPK2)在SAM中传输CLV3信号。 ,是感知甜菜囊肿线虫异形CLE的必要条件。在clv1,clv2,crn,rpk2和组合的双突变体和三突变体中观察到线虫感染的减少。为了提高农业上重要农作物的线虫抗性,从大豆中鉴定了拟南芥受体的直向同源物,其中包括CLV1,CLV2,CRN和RPK2。大豆是大豆囊肿线虫Heterodera甘氨酸的寄主。对于每种受体,大豆基因组中至少有两个旁系同源物。定位研究表明,大多数受体在根中表达,但它们的表达水平和空间表达模式不同。还证实了在线虫诱导的饲养细胞中的表达。分析了大豆受体与HgCLE肽的体外直接结合。大豆毛根中受体的敲低表明对SCN的抗性增强。我们的研究结果表明,有针对性地破坏线虫的CLE信号传导可能是改造农作物线虫抗性的潜在手段。

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