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硬粒小麦籽粒灌浆初期对短期热胁迫的转录组和生理响应

Transcriptomic and Physiological Response of Durum Wheat Grain to Short-Term Heat Stress during Early Grain Filling.

作者信息

Arenas-M Anita, Castillo Francisca M, Godoy Diego, Canales Javier, Calderini Daniel F

机构信息

Institute of Biochemistry and Microbiology, Faculty of Sciences, Universidad Austral de Chile, Valdivia 5110566, Chile.

ANID-Millennium Science Initiative Program-Millennium Institute for Integrative Biology (iBio), Santiago 8331150, Chile.

出版信息

Plants (Basel). 2021 Dec 25;11(1):59. doi: 10.3390/plants11010059.

Abstract

In a changing climate, extreme weather events such as heatwaves will be more frequent and could affect grain weight and the quality of crops such as wheat, one of the most significant crops in terms of global food security. In this work, we characterized the response of L. spp. wheat to short-term heat stress (HS) treatment at transcriptomic and physiological levels during early grain filling in glasshouse experiments. We found a significant reduction in grain weight (23.9%) and grain dimensions from HS treatment. Grain quality was also affected, showing a decrease in starch content (20.8%), in addition to increments in grain protein levels (14.6%), with respect to the control condition. Moreover, RNA-seq analysis of durum wheat grains allowed us to identify 1590 differentially expressed genes related to photosynthesis, response to heat, and carbohydrate metabolic process. A gene regulatory network analysis of HS-responsive genes uncovered novel transcription factors (TFs) controlling the expression of genes involved in abiotic stress response and grain quality, such as a member of the DOF family predicted to regulate glycogen and starch biosynthetic processes in response to HS in grains. In summary, our results provide new insights into the extensive transcriptome reprogramming that occurs during short-term HS in durum wheat grains.

摘要

在气候变化的背景下,诸如热浪等极端天气事件将更加频繁,可能会影响谷物重量以及小麦等作物的品质,小麦是全球粮食安全方面最重要的作物之一。在这项研究中,我们在温室实验中,于籽粒灌浆早期在转录组和生理水平上对硬粒小麦响应短期热胁迫(HS)处理的情况进行了表征。我们发现热胁迫处理使粒重(下降了23.9%)和籽粒尺寸显著降低。籽粒品质也受到影响,与对照条件相比,淀粉含量降低了20.8%,籽粒蛋白质水平增加了14.6%。此外,对硬粒小麦籽粒的RNA测序分析使我们能够鉴定出1590个与光合作用、热响应和碳水化合物代谢过程相关的差异表达基因。对热胁迫响应基因的基因调控网络分析揭示了控制参与非生物胁迫响应和籽粒品质的基因表达的新转录因子(TFs),例如DOF家族的一个成员,预计其可调节籽粒中糖原和淀粉生物合成过程以响应热胁迫。总之,我们的结果为硬粒小麦籽粒在短期热胁迫期间发生的广泛转录组重编程提供了新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ff6/8747107/7b354b2ba97c/plants-11-00059-g001.jpg

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