Oxygen, a key signalling factor in the control of seed germination and dormancy

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
F. Corbineau
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引用次数: 2

Abstract

Abstract Oxygen is a major factor of seed germination since it allows resumption of respiration and subsequent metabolism reactivation during seed imbibition, thus leading to the production of reducing power and ATP. Most studies carried out in the 60s to 85s indicate that oxygen requirement depends on the species and is modulated by environmental factors. They have also demonstrated that the covering structures mainly inhibit germination by limiting oxygen supply to the embryo during imbibition through enzymatic oxidation of phenolic compounds by polyphenol oxidases (catechol oxidase and laccase) and peroxidases. Recent use of oxygen-sensitive microsensors has allowed to better characterize the oxygen diffusion in the seed and determine the oxygen content at the level of embryo below the covering structures. Here, I will also highlight the major data obtained over the last 30 years indicating the key role of oxygen in the molecular networks regulating seed germination and dormancy through (1) the hormonal balance (ethylene, ABA and GA), the hormone-signalling pathway and, in particular, the ABA sensitivity, (2) the emerging role of mitochondria in ROS production in hypoxia and (3) the involvement of the N-degron pathway in the turnover of proteins involved in seed tolerance to hypoxia.
氧气,控制种子发芽和休眠的关键信号因子
摘要氧气是种子发芽的主要因素,因为它可以在种子吸收过程中恢复呼吸和随后的代谢再激活,从而产生还原力和ATP。60年代至85年代进行的大多数研究表明,氧气需求取决于物种,并受环境因素的调节。他们还证明,覆盖结构主要通过多酚氧化酶(邻苯二酚氧化酶和漆酶)和过氧化物酶对酚类化合物的酶促氧化,在吸胀过程中限制胚胎的氧气供应来抑制发芽。最近使用的氧敏感微传感器可以更好地表征种子中的氧扩散,并确定覆盖结构下方胚胎水平的氧含量。在这里,我还将强调过去30年来获得的主要数据,这些数据表明氧在调节种子发芽和休眠的分子网络中的关键作用,通过(1)激素平衡(乙烯、ABA和GA)、激素信号通路,特别是ABA敏感性,(2)线粒体在低氧条件下ROS产生中的新作用,以及(3)N-降解途径参与参与种子耐缺氧性的蛋白质的转换。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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