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首页> 外文期刊>The Plant Cell >Nicotiana attenuata LECTIN RECEPTOR KINASE1 Suppresses the Insect-Mediated Inhibition of Induced Defense Responses during Manduca sexta Herbivory
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Nicotiana attenuata LECTIN RECEPTOR KINASE1 Suppresses the Insect-Mediated Inhibition of Induced Defense Responses during Manduca sexta Herbivory

机译:尼古丁烟草蛋白受体激酶KINASE1抑制昆虫介导的曼杜卡六性草食性中防御反应的抑制作用。

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摘要

Nicotiana attenuata has the capacity to respond specifically to herbivory by its natural herbivore, Manduca sexta, through the perception of elicitors in larval oral secretions. We demonstrate that Lectin receptor kinase 1 (LecRK1) functions during M. sexta herbivory to suppress the insect-mediated inhibition of jasmonic acid (JA)-induced defense responses. Gene function analysis performed by reducing LecRK1 expression in N. attenuata by both virus-induced gene silencing and inverted repeated RNA interference (ir-lecRK1 plants) revealed that LecRK1 was essential to mount a full defense response against M. sexta folivory; larvae growing on ir-lecRK1 plants were 40 to 100% larger than those growing on wild-type plants. The insect-induced accumulation of nicotine, diterpene-glucosides, and trypsin protease inhibitors, as well as the expression of Thr deaminase, was severalfold reduced in ir-lecRK1 plants compared with the wild type. The accumulation of JA and JA-Ile was unaffected during herbivory in ir-lecRK1 plants; however, salicylic acid (SA) accumulation was increased by twofold. The expression of nahG in ir-lecRK1 plants prevented the increased accumulation of SA and restored the defense response against M. sexta herbivory. The results suggest that LecRK1 inhibits the accumulation of SA during herbivory, although other mechanisms may also be affected.
机译:通过对幼虫口腔分泌物中引发剂的感知,尼古丁烟草具有通过其天然草食动物性生殖器(Manduca sexta)对草食动物作出特别反应的能力。我们证明凝集素受体激酶1(LecRK1)在M. sexta草食动物过程中抑制昆虫介导的茉莉酸(JA)诱导的防御反应的抑制作用。通过病毒诱导的基因沉默和反向重复的RNA干扰(ir-lecRK1植物)均降低了N.衰减虫中LecRK1的表达而进行的基因功能分析表明,LecRK1对于增强针对六面体分枝杆菌的完整防御反应至关重要。在ir-lecRK1植物上生长的幼虫比在野生型植物上生长的幼虫大40%至100%。与野生型相比,ir-lecRK1植物中昆虫诱导的烟碱,二萜糖苷和胰蛋白酶蛋白酶抑制剂的积累以及Thr脱氨酶的表达降低了几倍。 ir-lecRK1植物的食草期间,JA和JA-Ile的积累不受影响。但是,水杨酸(SA)的积累增加了两倍。 nahG在ir-lecRK1植物中的表达阻止了SA积累的增加,并恢复了对六面体草食性草的防御反应。结果表明,LecRK1抑制草食动物期间SA的积累,尽管其他机制也可能受到影响。

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