首页> 外文期刊>Journal of Plant Biology >Soybean GmAOC3 Promotes Plant Resistance to the Common Cutworm by Increasing the Expression of Genes Involved in Resistance and Volatile Substance Emission in Transgenic Tobaccos
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Soybean GmAOC3 Promotes Plant Resistance to the Common Cutworm by Increasing the Expression of Genes Involved in Resistance and Volatile Substance Emission in Transgenic Tobaccos

机译:大豆GmAOC3通过增加转基因烟草中涉及抗性和挥发性物质释放的基因的表达来促进植物对普通地老虎的抗性。

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The evaluation and use of endogenous soybean genes is an effective strategy to minimize the yield losses caused by insects. Allene oxide cyclase (AOC) catalyzes the most important step in the biosynthesis of jasmonate (JA), which plays a crucial role in plant defense against insects. In this study, the role of GmAOC3 in plant insect resistance was evaluated. Real-time PCR results indicate that GmAOC3 was uniquely and rapidly activated and attained peak expression in leaves after attack by the common cutworm (CCW). In insect bioassays, transgenic lines overexpressing GmAOC3 were significantly less damaged than wild-type plants, and the relative growth rate of CCW fed with leaves from transgenic lines was significantly lower than that of CCW fed with leaves from wild-type plants. Electron microscopy revealed that the density of leaf trichomes in transgenic lines overexpressing GmAOC3 was greater than that in wild-type tobacco. Several physiological and morphological indicators, including JA, phenolic content and the relative expression levels of the putrescine N-methyltransferase (PMT) and proteinase inhibitor (PI) genes, phenylalanine ammonia lyase (PAL) activity and volatile substances, increased in the transgenic plants overexpressing GmAOC3. Our findings indicate that GmAOC3 plays an important role in soybean resistance to CCW and can be used as a resource for plant breeding.
机译:内源大豆基因的评估和使用是一种有效的策略,可最大程度地减少由昆虫引起的产量损失。氧化烯丙环化酶(AOC)催化茉莉酸酯(JA)生物合成中最重要的步骤,茉莉酸酯在植物抗虫中起着至关重要的作用。在这项研究中,评估了GmAOC3在植物抗虫性中的作用。实时PCR结果表明,GmAOC3被普通角虫(CCW)攻击后被独特而快速地激活并在叶片中达到峰值表达。在昆虫生物测定中,过表达GmAOC3的转基因品系的损害明显少于野生型植物,而转基因品系叶片饲喂的CCW的相对生长速率显着低于野生型植物叶片饲喂的CCW的相对生长速率。电子显微镜显示,过表达GmAOC3的转基因品系中叶毛的密度大于野生型烟草。在过量表达的转基因植物中,包括JA,腐胺N-甲基转移酶(PMT)和蛋白酶抑制剂(PI)基因的酚含量和相对表达水平,苯丙氨酸氨裂合酶(PAL)活性和挥发性物质在内的几种生理和形态学指标有所增加GmAOC3。我们的发现表明,GmAOC3在大豆对CCW的抗性中起着重要作用,可以用作植物育种的资源。

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