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Metabolomic, Transcriptional, Hormonal, and Signaling Cross-Talk in Superroot2

机译:Superroot2中的代谢组学,转录,激素和信号交叉对话

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摘要

Auxin homeostasis is pivotal for normal plant growth and development. The superroot2 (sur2) mutant was initially isolated in a forward genetic screen for auxin overproducers, and SUR2 was suggested to control auxin conjugation and thereby regulate auxin homeostasis. However, the phenotype was not uniform and could not be described as a pure high auxin phenotype, indicating that knockout of CYP83B1 has multiple effects. Subsequently, SUR2 was identified as CYP83B1, a cytochrome P450 positioned at the metabolic branch point between auxin and indole glucosinolate metabolism. To investigate concomitant global alterations triggered by knockout of CYP83B1 and the countermeasures chosen by the mutant to cope with hormonal and metabolic imbalances, 10-day-old mutant seedlings were characterized with respect to their transcriptome and metabolome profiles. Here, we report a global analysis of the sur2 mutant by the use of a combined transcriptomic and metabolomic approach revealing pronounced effects on several metabolic grids including the intersection between secondary metabolism, cell wall turnover, hormone metabolism, and stress responses. Metabolic and transcriptional cross-talks in sur2 were found to be regulated by complex interactions between both positively and negatively acting transcription factors. The complex phenotype of sur2 may thus not only be assigned to elevated levels of auxin, but also to ethylene and abscisic acid responses as well as drought responses in the absence of a water deficiency. The delicate balance between these signals explains why minute changes in growth conditions may result in the non-uniform phenotype. The large phenotypic variation observed between and within the different surveys may be reconciled by the complex and intricate hormonal balances in sur2 seedlings decoded in this study.
机译:生长素稳态对正常植物的生长和发育至关重要。 superroot2(sur2)突变体最初是在正向遗传筛选中寻找生长素过度生产者的,而SUR2被建议控制生长素的结合,从而调节植物生长素的稳态。然而,该表型并不均匀,不能被描述为纯的高生长素表型,表明敲除CYP83B1具有多种作用。随后,SUR2被鉴定为CYP83B1,一种细胞色素P450,位于生长素和吲哚芥子油苷代谢之间的代谢分支点。为了研究由敲除CYP83B1引发的总体变化以及突变体选择的应对激素和代谢不平衡的对策,对10天龄的突变体幼苗的转录组和代谢组谱进行了表征。在这里,我们通过使用转录组和代谢组学方法相结合的方法对sur2突变体进行了全面分析,揭示了对几个代谢网格的显着影响,包括次级代谢,细胞壁更新,激素代谢和应激反应之间的交集。发现sur2中的代谢和转录串扰受正向和负向转录因子之间复杂相互作用的调控。因此,在没有缺水的情况下,sur2的复杂表型不仅可以分配给植物生长素水平升高,而且还可以分配给乙烯和脱落酸响应以及干旱响应。这些信号之间的微妙平衡说明了为什么生长条件的微小变化可能导致表型不一致。在不同调查之间和之内观察到的大表型变异可能与本研究中解码的sur2幼苗中复杂而复杂的激素平衡相吻合。

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  • 来源
    《Molecular Plant》 |2010年第1期|p.192-211|共20页
  • 作者

    Søren Bak;

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    To whom correspondence should be addressed. E-mail;

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