在非生态压力下植物翻译的分子编排
Aleksandra V Suhorukova1, Denis S Sobolev1, Irina G Milovskaya1
1Laboratory of Functional Genomics, Timiryazev Institute of Plant Physiology, Russian Academy of Sciences, 127276 Moscow, Russia.
Cells
|October 27, 2023
概括
植物使用复杂的翻译策略来适应基因表达和新陈代谢的环境压力. 本综述探讨了这些复杂的机制和研究它们的高性能技术.
科学领域:
- 植物生物学 植物生物学
- 分子遗传学 分子遗传学
- 环境科学 环境科学
背景情况:
- 植物表现出复杂的转化策略,对基因表达和代谢调节至关重要,特别是在应对环境挑战时.
- 由于全球变暖而加剧的非生物压力,显著影响植物生理学,需要复杂的适应机制.
- 了解这些植物反应对于农业和生态系统弹性至关重要.
研究的目的:
- 审查非生物压力下的植物转化调节的现状.
- 按时间顺序评估涉及植物应激反应的各种调节元素和模式.
- 突出研究翻译过程中遗传信息动态的高性能技术.
主要方法:
- 关于植物转化调节的文献综述.
- 对植物非生物应激反应背后的分子遗传机制的分析.
- 随着时间的推移,对各种监管要素和模式的评估.
- 对研究翻译的高性能技术的评估.
主要成果:
- 转化调节是植物适应非生物压力的关键机制.
- 进化史已经塑造了植物中多样化和复杂的翻译策略.
- 特定的分子和遗传机制微调新陈代谢途径以应激耐受.
- 有各种高性能技术可用于研究这些动态过程.
结论:
- 转化控制是基因调节的关键层,使植物能够应对环境逆境.
- 对这些机制和先进技术的进一步研究可以提高作物弹性.
- 了解植物转化策略对于应对全球环境变化至关重要.
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