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氮素缺乏会增加玉米中由伏马毒素诱导的挥发性物质释放、茉莉酸积累以及乙烯敏感性。

Nitrogen deficiency increases volicitin-induced volatile emission, jasmonic acid accumulation, and ethylene sensitivity in maize.

作者信息

Schmelz Eric A, Alborn Hans T, Engelberth Juergen, Tumlinson James H

机构信息

Center of Medical, Agricultural, and Veterinary Entomology, U.S. Department of Agriculture, Agricultural Research Service, Gainesville, FL 32608, USA.

出版信息

Plant Physiol. 2003 Sep;133(1):295-306. doi: 10.1104/pp.103.024174.

Abstract

Insect herbivore-induced plant volatile emission and the subsequent attraction of natural enemies is facilitated by fatty acid-amino acid conjugate (FAC) elicitors, such as volicitin [N-(17-hydroxylinolenoyl)-L-glutamine], present in caterpillar oral secretions. Insect-induced jasmonic acid (JA) and ethylene (E) are believed to mediate the magnitude of this variable response. In maize (Zea mays) seedlings, we examined the interaction of volicitin, JA, and E on the induction of volatile emission at different levels of nitrogen (N) availability that are known to influence E sensitivity. N availability and volicitin-induced sesquiterpene emission are inversely related as maximal responses were elicited in N-deficient plants. Plants with low N availability demonstrated similar volatile responses to volicitin (1 nmol plant(-1)) and JA (100 nmol plant(-1)). In contrast, plants with medium N availability released much lower amounts of volicitin-induced sesquiterpenes compared with JA, suggesting an alteration in volicitin-induced JA levels. As predicted, low N plants exhibited greater sustained increases in wound- and volicitin-induced JA levels compared with medium N plants. N availability also altered volicitin-E interactions. In low N plants, E synergized volicitin-induced sesquiterpene and indole emission 4- to 12-fold, with significant interactions first detected at 10 nL L(-1) E. Medium N plants demonstrated greatly reduced volicitin-E interactions. Volicitin-induced sesquiterpene emission was increased by E and was decreased by pretreatment the E perception inhibitor 1-methylcyclopropene without alteration in volicitin-induced JA levels. N availability influences plant responses to insect-derived elicitors through changes in E sensitivity and E-independent JA kinetics.

摘要

昆虫食草动物诱导的植物挥发性物质释放以及随后对天敌的吸引,是由毛虫口腔分泌物中存在的脂肪酸 - 氨基酸共轭物(FAC)诱导剂促成的,例如volicitin [N-(17-羟基亚麻酰基)-L-谷氨酰胺]。昆虫诱导的茉莉酸(JA)和乙烯(E)被认为介导了这种可变反应的程度。在玉米(Zea mays)幼苗中,我们研究了volicitin、JA和E在不同氮(N)有效性水平下对挥发性物质释放诱导的相互作用,已知氮有效性会影响E的敏感性。氮有效性与volicitin诱导的倍半萜烯释放呈负相关,因为在缺氮植物中引发了最大反应。氮有效性低的植物对volicitin(1 nmol 植株⁻¹)和JA(100 nmol 植株⁻¹)表现出相似的挥发性反应。相比之下,氮有效性中等的植物与JA相比,释放的volicitin诱导的倍半萜烯量要低得多,这表明volicitin诱导的JA水平发生了变化。正如预测的那样,与氮有效性中等的植物相比,低氮植物在伤口和volicitin诱导的JA水平上表现出更大的持续增加。氮有效性也改变了volicitin - E的相互作用。在低氮植物中,E使volicitin诱导的倍半萜烯和吲哚释放协同增加4至12倍,在10 nL L⁻¹ E时首次检测到显著的相互作用。氮有效性中等的植物表现出volicitin - E相互作用大大降低。E增加了volicitin诱导的倍半萜烯释放,而E感知抑制剂1 - 甲基环丙烯预处理则降低了该释放,且volicitin诱导的JA水平没有改变。氮有效性通过E敏感性和不依赖E的JA动力学变化来影响植物对昆虫来源诱导剂的反应。

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