发酵介导植物的生长,信号和防御
Kolby J Jardine1,2, Nate McDowell3,4
1Climate and Ecosystem Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA, 94720, USA.
The New phytologist
|June 7, 2023
概括
植物利用乙酸发酵作为干旱生存策略,生产乙酸,为防御机制和新陈代谢提供燃料. 这一过程涉及乙信号,对于水应激期间的植物弹性至关重要.
科学领域:
- 植物生理学 植物生理学
- 生物化学 生物化学
- 压力生物学 压力生物学
背景情况:
- 发酵途径,特别是乙醇发酵,传统上与植物在洪水期间对缺氧根条件的反应有关.
- 最近的研究表明,乙酸发酵是植物进化保存的干旱生存策略.
- 乙酸信号传递在重新编程植物转录和从根到叶的新陈代谢中发挥着关键作用.
研究的目的:
- 在干旱期间在有氧条件下审查植物乙醇发酵对低氧和乙酸发酵的反应.
- 总结关于长途酸盐运输作为呼吸系统基质的证据.
- 引入由乙酸发酵推动的"防御呼吸"概念.
主要方法:
- 在各种压力条件下对根乙醇发酵和酸发酵的研究进行文献综述.
- 通过透气流进行长途酸盐运输的最近工作的分析.
- 基于现有和新发现的"防御呼吸"的概念化.
主要成果:
- 乙酸的生产与植物的生存机制相关,包括防御基因激活和代谢重编程.
- 乙通过透气流长途运输,作为呼吸基质.
- 乙酸发酵支持"防御呼吸",为能源生产,生物合成和蛋白质乙化提供基质.
结论:
- 乙酸发酵是植物的关键干旱生存机制,超出了缺氧条件.
- "防御呼吸"的概念为了解植物应激反应提供了一个新的框架.
- 叶子-大气排放测量为研究不同尺度的酸盐发酵反应提供了一种新的方法.
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