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Regulatory Cross-Talks and Cascades in Rice Hormone Biosynthesis Pathways Contribute to Stress Signaling

机译:水稻激素生物合成途径中的调控交叉对话和级联反应有助于胁迫信号传递

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摘要

Crosstalk among different hormone signaling pathways play an important role in modulating plant response to both biotic and abiotic stress. Hormone activity is controlled by its bio-availability, which is again influenced by its biosynthesis. Thus, independent hormone biosynthesis pathways must be regulated and co-ordinated to mount an integrated response. One of the possibilities is to use cis-regulatory elements to orchestrate expression of hormone biosynthesis genes. Analysis of CREs, associated with differentially expressed hormone biosynthesis related genes in rice leaf under Magnaporthe oryzae attack and drought stress enabled us to obtain insights about cross-talk among hormone biosynthesis pathways at the transcriptional level. We identified some master transcription regulators that co-ordinate different hormone biosynthesis pathways under stress. We found that Abscisic acid and Brassinosteroid regulate Cytokinin conjugation; conversely Brassinosteroid biosynthesis is affected by both Abscisic acid and Cytokinin. Jasmonic acid and Ethylene biosynthesis may be modulated by Abscisic acid through DREB transcription factors. Jasmonic acid or Salicylic acid biosynthesis pathways are co-regulated but they are unlikely to influence each others production directly. Thus, multiple hormones may modulate hormone biosynthesis pathways through a complex regulatory network, where biosynthesis of one hormone is affected by several other contributing hormones.
机译:不同激素信号通路之间的串扰在调节植物对生物和非生物胁迫的响应中起着重要作用。激素的活性受其生物利用度的控制,而生物利用度又受其生物合成的影响。因此,必须调节和协调独立的激素生物合成途径以产生综合反应。一种可能性是使用顺式调节元件来协调激素生物合成基因的表达。 CREs与稻瘟病和干旱胁迫下水稻叶片中与激素生物合成相关基因的差异表达相关的基因分析,使我们能够在转录水平上了解激素生物合成途径之间的串扰。我们确定了一些主要的转录调节剂,它们可以在压力下协调不同的激素生物合成途径。我们发现脱落酸和油菜素类固醇调节细胞分裂素的结合。相反,脱落酸和细胞分裂素均会影响油菜素类固醇的生物合成。脱落酸可通过DREB转录因子调节茉莉酸和乙烯的生物合成。茉莉酸或水杨酸的生物合成途径是共同调节的,但它们不可能直接影响彼此的产量。因此,多种激素可通过复杂的调节网络调节激素的生物合成途径,其中一种激素的生物合成受其他几种促成激素的影响。

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