Novel Aspects of Nitrate Regulation in Arabidopsis.

Novel Aspects of Nitrate Regulation in Arabidopsis.
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拟南芥硝酸盐调节的新方面

DOI:
10.3389/fpls.2020.574246
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发表时间:
2020
影响因子:
5.6
通讯作者:
Wang Y
Wang Y
中科院分区:
生物学2区
文献类型:
--
作者:
Fan H;Quan S;Qi S;Xu N;Wang Y

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氮(N)是植物生长和发育最重要的常量营养素之一。硝酸盐 (NO3–) 是植物从土壤中吸收的氮的主要形式,除了具有营养功能外,还充当重要的信号分子。在过去的十年中,在识别涉及 NO3 调节的新成分并开始解开 NO3 调节网络方面取得了重大进展。最近,科学家们对 NO3- 信号传导的关键调节因子、NO3- 对植物发育的影响及其与磷 (P)、钾 (K)、激素和钙信号传导的串扰进行了深入的评论。然而,NO3- 调节的几个新方面此前尚未详细回顾。在这里,我们主要关注NO3-信号传导中转录后调控和非编码RNA(ncRNA)以及NO3-对叶片衰老和生物钟的调控的最新进展。这将有助于我们扩展NO3-调控的总体图景,并为进一步探索NO3-调控网络提供基础。
Nitrogen (N) is one of the most essential macronutrients for plant growth and development. Nitrate (NO3–), the major form of N that plants uptake from the soil, acts as an important signaling molecule in addition to its nutritional function. Over the past decade, significant progress has been made in identifying new components involved in NO3– regulation and starting to unravel the NO3– regulatory network. Great reviews have been made recently by scientists on the key regulators in NO3– signaling, NO3– effects on plant development, and its crosstalk with phosphorus (P), potassium (K), hormones, and calcium signaling. However, several novel aspects of NO3– regulation have not been previously reviewed in detail. Here, we mainly focused on the recent advances of post-transcriptional regulation and non-coding RNA (ncRNAs) in NO3– signaling, and NO3– regulation on leaf senescence and the circadian clock. It will help us to extend the general picture of NO3– regulation and provide a basis for further exploration of NO3– regulatory network.
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