拟南芥中的氧化脂素途径。

The arabidopsis book Pub Date : 2002-01-01 Epub Date: 2002-08-12 DOI:10.1199/tab.0012
Robert A Creelman, Rao Mulpuri
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引用次数: 108

摘要

氧脂素是由脂肪酸分解代谢产生的无环或环状氧化产物,调节植物的许多防御和发育途径。自1997年以来,关于这些化合物的出版物和评论的数量急剧增加,表明人们对这种化合物及其在植物中的作用越来越感兴趣。对这一课题的研究巩固了我们对氧化脂素生产的化学和生物合成途径的理解。然而,关于游离脂肪酸是如何产生的以及β -氧化在氧化脂素生物合成途径中的作用,还需要更多的信息。在生长发育过程中,以及在病原体或昆虫侵袭过程中,氧化脂质的含量和组成也发生了明显的变化。氧脂类如茉莉酸(JA)或12-氧-植物二烯酸调节许多基因的表达,影响植物生长、发育和对非生物和生物胁迫的反应的特定方面。虽然氧脂素被认为是单独起作用的,但有几个例子表明,ja诱导的反应是由与其他信号分子(如乙烯和水杨酸)的串扰的类型和性质调节的。随着茉莉酸信号通路中正、负调节因子突变的分离和cDNA微阵列的使用,人们逐渐了解了氧脂素如何引起基因表达的变化并引发生理反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The oxylipin pathway in Arabidopsis.
Abstract Oxylipins are acyclic or cyclic oxidation products derived from the catabolism of fatty acids which regulate many defense and developmental pathways in plants. The dramatic increase in the volume of publications and reviews on these compounds since 1997 documents the increasing interest in this compound and its role in plants. Research on this topic has solidified our understanding of the chemistry and biosynthetic pathways for oxylipin production. However, more information is still needed on how free fatty acids are produced and the role of beta-oxidation in the biosynthetic pathway for oxylipins. It is also becoming apparent that oxylipin content and composition changes during growth and development and during pathogen or insect attack. Oxylipins such as jasmonic acid (JA) or 12-oxo-phytodienoic acid modulate the expression of numerous genes and influence specific aspects of plant growth, development and responses to abiotic and biotic stresses. Although oxylipins are believed to act alone, several examples were presented to illustrate that JA-induced responses are modulated by the type and the nature of crosstalk with other signaling molecules such as ethylene and salicylic acid. How oxylipins cause changes in gene expression and instigate a physiological response is becoming understood with the isolation of mutations in both positive and negative regulators in the jasmonate signaling pathway and the use of cDNA microarrays.
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