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The Interrelationship between Abscisic Acid and Reactive Oxygen Species Plays a Key Role in Barley Seed Dormancy and Germination

机译:脱落酸和活性氧之间的相互关系在大麦种子休眠和萌发中起关键作用

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摘要

Seed dormancy is one of the adaptive responses in the plant life cycle and an important agronomic trait. Reactive oxygen species (ROS) release seed dormancy and promote seed germination in several cereal crops; however, the key regulatory mechanism of ROS-mediated seed dormancy and germination remains controversial. Here, we focused on the relationship between hydrogen peroxide (a ROS) and abscisic acid (ABA) in dormant and non-dormant barley seeds. The hydrogen peroxide (H2O2) level produced in barley seed embryos after imbibition was higher in non-dormant seeds than in dormant seeds. H2O2 regulated the ABA content in the embryos through ABA-8′-hydroxylase, an ABA catabolic enzyme. Moreover, compared with non-dormant seeds, in dormant seeds the activity of NADPH oxidase, which produces ROS, was lower, whereas the activity of catalase, which is a H2O2 scavenging enzyme, was higher, as was the expression of HvCAT2. Furthermore, precocious germination of isolated immature embryos was suppressed by the transient introduction of HvCAT2 driven by the maize (Zea mays) ubiquitin promoter. HvCAT2 expression was regulated through an ABA-responsive transcription factor (HvABI5) induced by ABA. These results suggest that the changing of balance between ABA and ROS is active in barley seed embryos after imbibition and regulates barley seed dormancy and germination.
机译:种子休眠是植物生命周期中的适应性反应之一,也是重要的农艺性状。活性氧(ROS)释放种子休眠并促进几种谷物作物的种子发芽;然而,ROS介导的种子休眠和萌发的关键调控机制仍存在争议。在这里,我们着重研究了休眠和非休眠大麦种子中的过氧化氢(ROS)和脱落酸(ABA)之间的关系。吸收后,大麦种子胚中产生的过氧化氢(H2O2)水平在非休眠种子中高于休眠种子。 H2O2通过ABA分解代谢酶ABA-8'-羟化酶调节胚胎中的ABA含量。此外,与非休眠种子相比,在休眠种子中,产生ROS的NADPH氧化酶的活性较低,而作为H2O2清除酶的过氧化氢酶的活性较高,HvCAT2的表达也较高。此外,通过玉米(Zea mays)遍在蛋白启动子驱动的HvCAT2的瞬时导入,抑制了分离的未成熟胚的早熟萌发。 HvCAT2表达受ABA诱导的ABA响应转录因子(HvABI5)调控。这些结果表明,ABA和ROS之间的平衡变化在大麦种子胚中被吸收后很活跃,并调节大麦种子的休眠和发芽。

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