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珍珠粟对干旱的响应:综述

Pearl millet response to drought: A review.

作者信息

Shrestha Nikee, Hu Hao, Shrestha Kumar, Doust Andrew N

机构信息

Department of Plant Biology, Ecology and Evolution, Oklahoma State University, Stillwater, OK, United States.

Center for Plant Science Innovation and Department of Agronomy and Horticulture, University of Nebraska-Lincoln, Lincoln, NE, United States.

出版信息

Front Plant Sci. 2023 Feb 10;14:1059574. doi: 10.3389/fpls.2023.1059574. eCollection 2023.

Abstract

The C4 grass pearl millet is one of the most drought tolerant cereals and is primarily grown in marginal areas where annual rainfall is low and intermittent. It was domesticated in sub-Saharan Africa, and several studies have found that it uses a combination of morphological and physiological traits to successfully resist drought. This review explores the short term and long-term responses of pearl millet that enables it to either tolerate, avoid, escape, or recover from drought stress. The response to short term drought reveals fine tuning of osmotic adjustment, stomatal conductance, and ROS scavenging ability, along with ABA and ethylene transduction. Equally important are longer term developmental plasticity in tillering, root development, leaf adaptations and flowering time that can both help avoid the worst water stress and recover some of the yield losses asynchronous tiller production. We examine genes related to drought resistance that were identified through individual transcriptomic studies and through our combined analysis of previous studies. From the combined analysis, we found 94 genes that were differentially expressed in both vegetative and reproductive stages under drought stress. Among them is a tight cluster of genes that are directly related to biotic and abiotic stress, as well as carbon metabolism, and hormonal pathways. We suggest that knowledge of gene expression patterns in tiller buds, inflorescences and rooting tips will be important for understanding the growth responses of pearl millet and the trade-offs at play in the response of this crop to drought. Much remains to be learnt about how pearl millet's unique combination of genetic and physiological mechanisms allow it to achieve such high drought tolerance, and the answers to be found may well be useful for crops other than just pearl millet.

摘要

C4 禾本科作物珍珠粟是最耐旱的谷物之一,主要种植在年降雨量低且不稳定的边缘地区。它在撒哈拉以南非洲被驯化,多项研究发现它利用形态和生理特征的组合来成功抵御干旱。本综述探讨了珍珠粟的短期和长期反应,这些反应使其能够耐受、避免、逃避干旱胁迫或从干旱胁迫中恢复。对短期干旱的反应显示出渗透调节、气孔导度和活性氧清除能力的精细调节,以及脱落酸和乙烯信号转导。同样重要的是分蘖、根系发育、叶片适应性和开花时间方面的长期发育可塑性,这既有助于避免最严重的水分胁迫,又能通过异步分蘖生产挽回部分产量损失。我们研究了通过个体转录组学研究以及对先前研究的综合分析确定的与抗旱性相关的基因。通过综合分析,我们发现了94个在干旱胁迫下营养和生殖阶段均差异表达的基因。其中有一组紧密相关的基因,它们直接与生物和非生物胁迫、碳代谢以及激素途径有关。我们认为,了解分蘖芽、花序和根尖中的基因表达模式对于理解珍珠粟的生长反应以及该作物对干旱反应中所起的权衡作用至关重要。关于珍珠粟独特的遗传和生理机制组合如何使其具有如此高的耐旱性,仍有许多有待了解的地方,而找到的答案可能不仅对珍珠粟,对其他作物也很有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e17/9955113/8f53cef00139/fpls-14-1059574-g001.jpg

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