首页> 美国卫生研究院文献>Journal of Experimental Botany >Ethylene negatively regulates transcript abundance of ROP-GAP rheostat-encoding genes and affects apoplastic reactive oxygen species homeostasis in epicarps of cold stored apple fruits
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Ethylene negatively regulates transcript abundance of ROP-GAP rheostat-encoding genes and affects apoplastic reactive oxygen species homeostasis in epicarps of cold stored apple fruits

机译:乙烯负调控ROP-GAP变阻器编码基因的转录本丰度并影响冷藏苹果果实表皮的外生再生质活性氧稳态

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摘要

Apple (Malus×domestica Borkh) fruits are stored for long periods of time at low temperatures (1 °C) leading to the occurrence of physiological disorders. ‘Superficial scald’ of Granny Smith apples, an economically important ethylene-dependent disorder, was used as a model to study relationships among ethylene action, the regulation of the ROP-GAP rheostat, and maintenance of H2O2 homeostasis in fruits during prolonged cold exposure. The ROP-GAP rheostat is a key module for adaptation to low oxygen in Arabidopsis through Respiratory Burst NADPH Oxidase Homologs (RBOH)-mediated and ROP GTPase-dependent regulation of reactive oxygen species (ROS) homeostasis. Here, it was shown that the transcriptional expression of several components of the apple ROP-GAP machinery, including genes encoding RBOHs, ROPs, and their ancillary proteins ROP-GEFs and ROP-GAPs, is coordinately and negatively regulated by ethylene in conjunction with the progressive impairment of apoplastic H2O2 homeostatic levels. RNA sequencing analyses showed that several components of the known ROP- and ROS-associated transcriptional networks are regulated along with the ROP-GAP rheostat in response to ethylene perception. These findings may extend the role of the ROP-GAP rheostat beyond hypoxic responses and suggest that it may be a functional regulatory node involved in the integration of ethylene and ROS signalling pathways in abiotic stress.
机译:苹果(Malus×domestica Borkh)水果在低温(1°C)下长时间保存会导致发生生理异常。格兰尼·史密斯苹果的“表面烫伤”是一种经济上重要的乙烯依赖性疾病,被用作研究长期低温暴露期间乙烯作用,ROP-GAP变阻器调节和水果中H2O2稳态维持之间的关系的模型。 ROP-GAP变阻器是通过呼吸爆发NADPH氧化酶同源物(RBOH)介导和ROP GTPase依赖性调节活性氧(ROS)稳态来适应拟南芥中低氧的关键模块。在这里,研究表明,苹果ROP-GAP机器的几个组成部分的转录表达,包括编码RBOH,ROPs及其辅助蛋白ROP-GEFs和ROP-GAPs的基因,均受乙烯协同和负调控。质外体过氧化氢稳态水平的进行性损害。 RNA测序分析表明,响应于乙烯感知,与ROP-GAP变阻器一起调节了已知ROP和ROS相关转录网络的几个组成部分。这些发现可能将ROP-GAP变阻器的作用扩展到了缺氧反应以外,并暗示它可能是参与非生物胁迫中乙烯和ROS信号通路整合的功能性调节节点。

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