首页> 美国卫生研究院文献>Plant Physiology >Methyl Jasmonate-Induced Ethylene Production Is Responsible for Conifer Phloem Defense Responses and Reprogramming of Stem Cambial Zone for Traumatic Resin Duct Formation
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Methyl Jasmonate-Induced Ethylene Production Is Responsible for Conifer Phloem Defense Responses and Reprogramming of Stem Cambial Zone for Traumatic Resin Duct Formation

机译:茉莉酸甲酯诱导的乙烯生产是针叶树韧皮部防御反应和创伤性树脂风管形成的干茎区的重新编程。

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摘要

Conifer stem pest resistance includes constitutive defenses that discourage invasion and inducible defenses, including phenolic and terpenoid resin synthesis. Recently, methyl jasmonate (MJ) was shown to induce conifer resin and phenolic defenses; however, it is not known if MJ is the direct effector or if there is a downstream signal. Exogenous applications of MJ, methyl salicylate, and ethylene were used to assess inducible defense signaling mechanisms in conifer stems. MJ and ethylene but not methyl salicylate caused enhanced phenolic synthesis in polyphenolic parenchyma cells, early sclereid lignification, and reprogramming of the cambial zone to form traumatic resin ducts in Pseudotsuga menziesii and Sequoiadendron giganteum. Similar responses in internodes above and below treated internodes indicate transport of a signal giving a systemic response. Studies focusing on P. menziesii showed MJ induced ethylene production earlier and 77-fold higher than wounding. Ethylene production was also induced in internodes above the MJ-treated internode. Pretreatment of P. menziesii stems with the ethylene response inhibitor 1-methylcyclopropene inhibited MJ and wound responses. Wounding increased 1-aminocyclopropane-1-carboxylic acid (ACC) oxidase protein, but MJ treatment produced a higher and more rapid ACC oxidase increase. ACC oxidase was most abundant in ray parenchyma cells, followed by cambial zone cells and resin duct epithelia. The data show these MJ-induced defense responses are mediated by ethylene. The cambial zone xylem mother cells are reprogrammed to differentiate into resin-secreting epithelial cells by an MJ-induced ethylene burst, whereas polyphenolic parenchyma cells are activated to increase polyphenol production. The results also indicate a central role of ray parenchyma in ethylene-induced defense.
机译:针叶树的害虫抗性包括阻止入侵的本构防御和包括酚类和萜类树脂合成在内的诱导型防御。最近,茉莉酸甲酯(MJ)被证明可以诱导针叶树树脂和酚类物质的防御。但是,不清楚MJ是直接效应器还是下游信号。 MJ,水杨酸甲酯和乙烯的外源应用被用来评估针叶树茎中的诱导防御信号传导机制。 MJ和乙烯而不是水杨酸甲酯引起多酚实质细胞中酚类合成增强,早期硬化木质素化以及对冈比亚区重新编程以在假单胞菌和红杉中形成创伤性树脂导管。在经过处理的节点间上方和下方的节点间类似的响应表示信号的传递会产生系统性响应。针对孟席斯疟原虫的研究表明,MJ诱导乙烯生成的时间更早,比受伤高77倍。在经过MJ处理的节点间上方的节点间也诱导了乙烯的产生。用乙烯反应抑制剂1-甲基环丙烯预处理孟席斯木茎的MJ和伤口反应。受伤增加了1-氨基环丙烷-1-羧酸(ACC)氧化酶蛋白,但MJ处理产生了更高,更快速的ACC氧化酶增加。 ACC氧化酶在射线实质细胞中含量最高,其次是冈比亚区细胞和树脂管上皮细胞。数据显示这些MJ诱导的防御反应是由乙烯介导的。通过MJ诱导的乙烯爆发,将冈比亚区木质部母细胞重新编程为分化成分泌树脂的上皮细胞,而激活多酚实质细胞以增加多酚的产生。结果还表明射线实质在乙烯诱导的防御中起着核心作用。

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