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Sustained low abscisic acid levels increase seedling vigor under cold stress in rice (Oryza sativa L.)

机译:持续的低脱落酸水平提高了水稻在低温胁迫下的幼苗活力。

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摘要

Stress-induced abscisic acid (ABA) is mainly catabolized by ABA 8′-hydroxylase (ABA8ox), which also strictly regulates endogenous ABA levels. Although three members of the ABA8ox gene family are conserved in rice, it is not clear which stressors induce expression of these genes. Here, we found that OsABA8ox1 was induced by cold stress within 24 h and that OsABA8ox2 and OsABA8ox3 were not. In contrast, OsABA8ox2 and OsABA8ox3 were ABA-inducible, but OsABA8ox1 was not. OsABA8ox1, OsABA8ox2, and OsABA8ox3 restored germination of a cyp707a1/a2/a3 triple mutant of Arabidopsis to rates comparable to those of the wild type, indicating that OsABA8ox1, OsABA8ox2, and OsABA8ox3 function as ABA-catabolic genes in vivo. Transgenic rice lines overexpressing OsABA8ox1 showed decreased levels of ABA and increased seedling vigor at 15 °C. These results indicate that sustained low levels of ABA lead to increased seedling vigor during cold stress. On the other hand, excessively low endogenous ABA levels caused reduced drought and cold tolerance, although some of the transgenic rice lines expressing OsABA8ox1 at moderate levels did not show these harmful effects. Adequate regulation of endogenous ABA levels is thought to be crucial for maintaining seedling vigor under cold stress and for cold and drought tolerance in rice.
机译:胁迫诱导的脱落酸(ABA)主要由ABA 8'-羟化酶(ABA8ox)分解代谢,ABA 8'-羟化酶也严格调节内源性ABA水平。尽管ABA8ox基因家族的三个成员在水稻中是保守的,但尚不清楚哪些应激源诱导这些基因的表达。在这里,我们发现OsABA8ox1是由24小时内的冷胁迫诱导的,而OsABA8ox2和OsABA8ox3并非如此。相反,OsABA8ox2和OsABA8ox3是ABA诱导型的,而OsABA8ox1不是。 OsABA8ox1,OsABA8ox2和OsABA8ox3将拟南芥属cyp707a1 / a2 / a3三重突变体的发芽恢复至与野生型相当的速率,表明OsABA8ox1,OsABA8ox2和OsABA8ox3在体内成为ABA分解代谢基因。 em>。过表达 OsABA8ox1 的转基因水稻品系在15°C下ABA含量降低,幼苗活力增强。这些结果表明持续低水平的ABA导致冷胁迫期间幼苗活力增加。另一方面,过低的内源ABA含量导致干旱和耐寒性降低,尽管一些表达中等水平的 OsABA8ox1 的转基因水稻品系没有显示出这些有害作用。人们认为适当调节内源ABA水平对于维持水稻在寒冷胁迫下的活力以及水稻的耐旱抗旱性至关重要。

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