水稻萌发胚中糖、细胞能量和氧可用性的转录组调节比较

IF 4 3区 生物学 Q1 PLANT SCIENCES
Mi-na Lim , Sung-eun Lee , Woo Yong Chang , In Sun Yoon , Yong-sic Hwang
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引用次数: 2

摘要

在萌发过程中,糖、氧或细胞能量的可用性在动态环境条件下波动,可能影响水稻基因的全局RNA谱。在有氧条件下,水稻胚胎中表现出糖调节的大多数基因对低能量和厌氧条件都有反应,这表明糖调节与能量和厌氧信号密切相关。无氧或低能量条件下糖调节的干扰模式表明,诱导可能是比抑制更普遍的调节机制,以改变糖调节基因的表达。在好氧糖调控基因中,有限基因在厌氧条件下表现出糖调控,表明厌氧条件对糖调控基因的表达有强烈影响。厌氧反应基因与低能量反应基因大量重叠。特别是,厌氧下调基因的表达水平与低能量条件下引起的表达水平一致,这表明厌氧下调是由于缺乏最终电子受体(即分子氧)而阻止有氧呼吸的结果。已经注意到,与下调基因相比,在低能量条件下,脱落酸(ABA)应答基因在基因上调中具有代表性。这表明ABA本身或ABA信号通路的上游信号组分可能参与了低能量条件激活的信号通路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of transcriptomic adjustments to availability of sugar, cellular energy, and oxygen in germinating rice embryos

During germination, the availability of sugars, oxygen, or cellular energy fluctuates under dynamic environmental conditions, likely affecting the global RNA profile of rice genes. Most genes that exhibit sugar-regulation in rice embryos under aerobic conditions are responsive to low energy and anaerobic conditions, indicating that sugar regulation is strongly associated with energy and anaerobic signaling. The interference pattern of sugar regulation by either anaerobic or low energy conditions indicates that induction is likely the more prevalent regulatory mechanism than repression for altering the expression of sugar-regulated genes. Among the aerobically sugar-regulated genes, limited genes exhibit sugar regulation under anaerobic conditions, indicating that anaerobic conditions strongly influence sugar regulated gene expression. Anaerobically responsive genes substantially overlap with low energy responsive genes. In particular, the expression levels of anaerobically downregulated genes are consistent with those provoked by low energy conditions, suggesting that anaerobic downregulation results from the prevention of aerobic respiration due to the absence of the final electron acceptor, i.e., molecular oxygen. It has been noted that abscisic acid (ABA) responsive genes are over representative of genes upregulated under low energy conditions, in contrast to downregulated genes. This suggests that either ABA itself or upstream signaling components of the ABA signaling pathway are likely to be involved in the signaling pathways activated by low energy conditions.

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来源期刊
Journal of plant physiology
Journal of plant physiology 生物-植物科学
CiteScore
7.20
自引率
4.70%
发文量
196
审稿时长
32 days
期刊介绍: The Journal of Plant Physiology is a broad-spectrum journal that welcomes high-quality submissions in all major areas of plant physiology, including plant biochemistry, functional biotechnology, computational and synthetic plant biology, growth and development, photosynthesis and respiration, transport and translocation, plant-microbe interactions, biotic and abiotic stress. Studies are welcome at all levels of integration ranging from molecules and cells to organisms and their environments and are expected to use state-of-the-art methodologies. Pure gene expression studies are not within the focus of our journal. To be considered for publication, papers must significantly contribute to the mechanistic understanding of physiological processes, and not be merely descriptive, or confirmatory of previous results. We encourage the submission of papers that explore the physiology of non-model as well as accepted model species and those that bridge basic and applied research. For instance, studies on agricultural plants that show new physiological mechanisms to improve agricultural efficiency are welcome. Studies performed under uncontrolled situations (e.g. field conditions) not providing mechanistic insight will not be considered for publication. The Journal of Plant Physiology publishes several types of articles: Original Research Articles, Reviews, Perspectives Articles, and Short Communications. Reviews and Perspectives will be solicited by the Editors; unsolicited reviews are also welcome but only from authors with a strong track record in the field of the review. Original research papers comprise the majority of published contributions.
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