...
首页> 外文期刊>Plant Physiology and Biochemistry >Transcriptomic analysis of oxylipin biosynthesis genes and chemical profiling reveal an early induction of jasmonates in chickpea roots under drought stress
【24h】

Transcriptomic analysis of oxylipin biosynthesis genes and chemical profiling reveal an early induction of jasmonates in chickpea roots under drought stress

机译:转录水平的脂氧生物合成基因的转录组分析和化学分析表明干旱胁迫下鹰嘴豆根中茉莉酸酯的早期诱导

获取原文
获取原文并翻译 | 示例
           

摘要

Drought is one of the major constraints in subtropical agriculture. Therefore improving water stress tolerance is of great importance to breed for drought tolerance in future. The first plant organ sensing dehydration is the root. Aim of the present work was to clarify the potential impact of the phyto-oxylipins pathway on drought tolerance of chickpea (Cicer arietinum), the third important legume crop worldwide. Therefore, we measured the expression of key genes involved in oxylipins metabolism by qPCR on samples from stressed and non-stressed roots of a drought-tolerant and a drought-sensitive chickpea variety using commercially available TaqMan assays. We demonstrate that the drought tolerant variety reacts to drought with sustained and earlier activation of a specific lipoxygenase (Mt-LOX 1) gene, two hydroperoxide lyases (Mt-HPL 1 and Mt-HPL 2), an allene oxide synthase (Mt-AOS), and an oxo-phytodienoate reductase (Mt-OPR). We further show that gene over-expression positively correlates with the levels of major oxylipin metabolites from the AOS branch of the pathway, which finally leads to the synthesis of jasmonates. Higher levels of jasmonic acid (JA), its precursor 12-oxophytodienoic acid (OPDA) and the active form JA-isoleucine (JA-Ile) were especially detected in the root tissues of the tolerant variety, prompting us to assume a role of jasmonates in the early signalling of drought stress in chickpea and its involvement in the tolerance mechanism of the drought-tolerant variety.
机译:干旱是亚热带农业的主要制约因素之一。因此,提高水分胁迫耐受性对于今后的抗旱育种至关重要。第一个感应脱水的植物器官就是根。本研究的目的是阐明植物磷脂素途径对鹰嘴豆(Cicer arietinum)的抗旱性的潜在影响,鹰嘴豆是全球第三大重要豆类作物。因此,我们使用市售的TaqMan分析方法,通过qPCR测定了来自耐旱和对干旱敏感的鹰嘴豆品种的受压根和非受压根的样品上qPCR所涉及的脂蛋白代谢关键基因的表达。我们证明了耐旱品种对干旱的反应与特定脂氧合酶(Mt-LOX 1)基因,两种氢过氧化物裂解酶(Mt-HPL 1和Mt-HPL 2)的持续和更早的激活,丙二烯氧化物合酶(Mt-AOS )和氧代植物二烯酸酯还原酶(Mt-OPR)。我们进一步表明,基因的过表达与该途径的AOS分支中主要脂蛋白代谢产物的含量成正相关,最终导致茉莉酸酯的合成。特别是在耐性品种的根组织中检测到较高水平的茉莉酸(JA),其前体12-氧代苯二酸(OPDA)和活性形式的JA-异亮氨酸(JA-Ile),促使我们承担了茉莉酸的作用鹰嘴豆干旱胁迫的早期信号传递及其参与耐旱品种的耐受机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号