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Modulation of Anti-Oxidation Ability by Proanthocyanidins during Germination of Arabidopsis thaliana Seeds

机译:原花青素在拟南芥种子萌发过程中抗氧化能力的调控

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摘要

Proanthocyanidins (PAs) as the end products of flavonoid biosynthetic pathway mainly accumulate in seed coat but their biological function is largely unknown. We studied the anti-oxidation ability in seed coat and germination changes under externally applied oxidative stresses in PAs-deficient mutants of Arabidopsis. Germination of PAs-deficient mutant seeds was faster than that of wild-type under low or no oxidative stress, suggesting a PAs-induced inhibition of germination. When the applied oxidative stress was high, germination of PAs-deficient mutants was lower than that of wild-type, suggesting a loss of PAs-related anti-oxidation ability in the mutants. Using ABA signaling mutants, our studies demonstrated that both ABA signaling pathway and PAs were important for the response to serve oxidative stress during seed germination. However, the discrepancy of the response between abi mutants and PAs mutants to oxidative stress suggests that ABA signaling pathway may not play a major role in PAs’ action in alleviating oxidative stress. Under low or no oxidative stress, germination was mainly determined by the ABA content in seed and the PAs-deficient mutant seeds germinated faster due to their lower ABA content than wild-type. However, oxidative injury inhibited germination when PAs-deficient seeds germinated under high oxidative stress. Wild-type exhibited higher germination under the high oxidative stress due to the PAs’ anti-oxidation ability. Oxidative stress applied externally led to changes in endogenous PAs contents that coincided with the expression changes of PAs biogenesis genes. PAs modulated the activities of some key enzymes that controlled the levels of reactive oxygen species and the anti-oxidation capacity during the seed germination. This work suggests that PAs contribute to the adaptive mechanism that helps germination under environmental stresses by playing dual roles in both germination control and anti-oxidation reaction.
机译:类黄酮生物合成途径的终产物原花色素(PAs)主要在种皮中积累,但其生物学功能尚不清楚。我们研究了PAs缺陷型拟南芥突变体在外部施加氧化胁迫下种皮的抗氧化能力和发芽变化。在低或无氧化胁迫下,PAs缺失突变体种子的发芽速度快于野生型种子,这表明PAs诱导的发芽抑制作用。当施加的氧化胁迫较高时,PAs缺陷型突变体的发芽率低于野生型,这表明突变体中PAs相关的抗氧化能力下降。使用ABA信号突变体,我们的研究表明ABA信号途径和PAs对于种子萌发期间响应氧化应激的反应都很重要。但是,abi突变体和PAs突变体对氧化应激的反应差异表明,ABA信号通路可能在PAs减轻氧化应激的作用中不发挥主要作用。在低或无氧化胁迫下,发芽主要取决于种子中的ABA含量,而缺乏PAs的突变种子由于其ABA含量低于野生型,因此发芽速度更快。但是,当缺乏PAs的种子在高氧化应激下发芽时,氧化损伤会抑制发芽。由于PAs的抗氧化能力,野生型在高氧化胁迫下表现出更高的发芽率。外部施加的氧化应激导致内源性PA含量的变化,与PAs生物发生基因的表达变化相吻合。 PAs调节了一些关键酶的活性,这些酶控制了种子发芽过程中活性氧的水平和抗氧化能力。这项工作表明,PAs通过在发芽控制和抗氧化反应中扮演双重角色,有助于在环境胁迫下帮助发芽的自适应机制。

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  • 来源
    《Molecular Plant》 |2012年第2期|p.472-481|共10页
  • 作者

    Jian-Hua Zhang;

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    To whom correspondence should be addressed. E-mail;

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  • 正文语种 eng
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