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首页> 外文期刊>Plant physiology >Ectopic expression of at JMT in Nicotiana attenuata: Creating a metabolic sink has tissue-specific consequences for the jasmonate metabolic network and silences downstream gene expression
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Ectopic expression of at JMT in Nicotiana attenuata: Creating a metabolic sink has tissue-specific consequences for the jasmonate metabolic network and silences downstream gene expression

机译:JMT在弱烟中的异位表达:产生代谢沉陷对茉莉酸代谢网络具有组织特异性的影响,并使下游基因表达沉默

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摘要

To create a metabolic sink in the jasmonic acid (JA) pathway, we generated transgenic Nicotiana attenuata lines ectopically expressing Arabidopsis (Arabidopsis thaliana) jasmonic acid O-methyltransferase (35S-jmt) and additionally silenced in other lines the N. attenuata methyl jasmonate esterase (35S-jmt/ir-mje) to reduce the deesterification of methyl jasmonate (MeJA). Basal jasmonate levels did not differ between transgenic and wild-type plants; however, after wounding and elicitation with Manduca sexta oral secretions, the bursts of JA, jasmonoyl-isoleucine (JA-Ile), and their metabolites that are normally observed in the lamina, midvein, and petiole of elicited wild-type leaves were largely abssent in both transformants but replaced by a burst of endogenous MeJA that accounted for almost half of the total elicited jasmonate pools. In these plants, MeJA became a metabolic sink that affected the jasmonate metabolic network and its spread to systemic leaves, with major effects on 12-oxo-phytodieonic acid, JA, and hydroxy-JA in petioles and on JA-Ile in laminas. Alterations in the size of jasmonate pools were most obvious in systemic tissues, especially petioles. Expression of threonine deaminase and trypsin proteinase inhibitor, two JA-inducible defense genes, was strongly decreased in both transgenic lines without influencing the expression of JA biosynthesis genes that were uncoupled from the wounding and elicitation with M. sexta oral secretions-elicited JA-Ile gradient in elicited leaves. Taken together, this study provides support for a central role of the vasculature in the propagation of jasmonates and new insights into the versatile spatiotemporal characteristics of the jasmonate metabolic network.
机译:为了在茉莉酸(JA)途径中创建代谢库,我们生成了异位表达拟南芥(Arabidopsis thaliana)茉莉酸O-甲基转移酶(35S-jmt)的转基因烟草株,并在其他株系中使亚麻茉莉酸甲酯甲酯酶沉默。 (35S-jmt / ir-mje)来减少茉莉酸甲酯(MeJA)的脱酯作用。转基因植物和野生型植物的基础茉莉酸酯水平没有差异。然而,在用曼杜卡六倍体口腔分泌物进行创伤和诱引后,通常不存在被诱导的野生型叶片的叶片,中脉和叶柄中突然出现的JA,茉莉单异亮氨酸(JA-Ile)及其代谢产物的爆发。在两个转化子中,但被内源性MeJA的爆发所取代,该事件几乎占引起的茉莉花池总数的一半。在这些植物中,MeJA成为了影响茉莉酸代谢网络并扩散到全身叶片的代谢汇,对叶柄中的12-氧-植物二烯酸,JA和羟基-JA和薄层中的JA-Ile产生了重大影响。茉莉花池大小的变化在全身组织,特别是叶柄中最明显。在两个转基因品系中,苏氨酸脱氨酶和胰蛋白酶蛋白酶抑制剂(两个JA诱导的防御基因)的表达均大大降低,而不会影响JA合成基因的表达,该基因与伤口和M. sexta口腔分泌物诱导的JA-Ile的分离无关。叶片中的梯度。两者合计,这项研究提供支持的脉管系统在茉莉酮酸酯的传播中的核心作用,以及对茉莉酸酯代谢网络的多种时空特征的新见解。

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