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12-氧代-植二烯酸作为玉米防御玉米叶蝉的调节剂。

12-Oxo-Phytodienoic Acid Acts as a Regulator of Maize Defense against Corn Leaf Aphid.

机构信息

Department of Entomology, University of Nebraska, Lincoln, Nebraska 68583.

Boyce Thompson Institute, Cornell University, Ithaca, New York 14853.

出版信息

Plant Physiol. 2019 Apr;179(4):1402-1415. doi: 10.1104/pp.18.01472. Epub 2019 Jan 14.

Abstract

The corn leaf aphid (CLA; ) is a phloem sap-sucking insect that attacks many cereal crops, including maize (). We previously showed that the maize inbred line Mp708, which was developed by classical plant breeding, provides enhanced resistance to CLA. Here, using electrophysiological monitoring of aphid feeding behavior, we demonstrate that Mp708 provides phloem-mediated resistance to CLA. Furthermore, feeding by CLA on Mp708 plants enhanced callose deposition, a potential defense mechanism utilized by plants to limit aphid feeding and subsequent colonization. In maize, benzoxazinoids (BX) or BX-derived metabolites contribute to enhanced callose deposition by providing heightened resistance to CLA. However, BX and BX-derived metabolites were not significantly altered in CLA-infested Mp708 plants, indicating BX-independent defense against CLA. Evidence presented here suggests that the constitutively higher levels of 12-oxo-phytodienoic acid (OPDA) in Mp708 plants contributed to enhanced callose accumulation and heightened CLA resistance. OPDA enhanced the expression of ethylene biosynthesis and receptor genes, and the synergistic interactions of OPDA and CLA feeding significantly induced the expression of the transcripts encoding Maize insect resistance1-Cysteine Protease, a key defensive protein against insect pests, in Mp708 plants. Furthermore, exogenous application of OPDA on maize jasmonic acid-deficient plants caused enhanced callose accumulation and heightened resistance to CLA, suggesting that the OPDA-mediated resistance to CLA is independent of the jasmonic acid pathway. We further demonstrate that the signaling function of OPDA, rather than a direct toxic effect, contributes to enhanced CLA resistance in Mp708.

摘要

玉米叶蝉(CLA;)是一种吸食韧皮部汁液的昆虫,会攻击许多谷类作物,包括玉米()。我们之前曾表明,通过经典植物育种开发的玉米自交系 Mp708 对 CLA 具有增强的抗性。在这里,我们使用电生理监测蚜虫取食行为的方法,证明 Mp708 对 CLA 提供了韧皮部介导的抗性。此外,CLA 在 Mp708 植株上取食会增强胼胝质的沉积,这是植物用来限制蚜虫取食和随后定殖的一种潜在防御机制。在玉米中,苯并恶嗪类(BX)或 BX 衍生代谢物通过为 CLA 提供更高的抗性来促进胼胝质的沉积。然而,在受 CLA 侵害的 Mp708 植株中,BX 和 BX 衍生代谢物并没有明显改变,这表明 BX 对 CLA 具有独立的防御作用。这里提出的证据表明,Mp708 植株中 12-氧-植物二烯酸(OPDA)的水平持续升高有助于增强胼胝质的积累和提高 CLA 的抗性。OPDA 增强了乙烯生物合成和受体基因的表达,OPDA 和 CLA 取食的协同作用显著诱导了编码玉米抗虫 1-半胱氨酸蛋白酶的转录本的表达,这是一种针对昆虫害虫的关键防御蛋白,在 Mp708 植株中。此外,在玉米茉莉酸缺陷型植株上外源施用 OPDA 会导致胼胝质的积累增强和 CLA 抗性的提高,这表明 OPDA 介导的 CLA 抗性独立于茉莉酸途径。我们进一步证明,OPDA 的信号功能,而不是直接的毒性作用,有助于提高 Mp708 对 CLA 的抗性。

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