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高粱根中抗旱响应基因的快速可靠分子检测方法。

A Method for Rapid and Reliable Molecular Detection of Drought-Response Genes in Sorghum bicolor (L.) Moench Roots.

机构信息

Department of Molecular Genetics, Centre for Research in Agricultural Genomics CSIC-IRTA-UAB-UB (CRAG), Barcelona, Spain.

Department of Biosciences, University of Milan, Milan, Italy.

出版信息

Methods Mol Biol. 2022;2539:223-233. doi: 10.1007/978-1-0716-2537-8_18.

Abstract

Drought is a major environmental stress that limits growth and productivity in agricultural ecosystems limiting crop yield worldwide. Breeding crops for enhanced drought tolerance is a priority to preserve food security on the increasing world population. Recent work in Arabidopsis has shown that vascular brassinosteroid receptor BRL3 (Brassinosteroid insensitive like-3) transcriptionally controls the production of osmoprotectant metabolites that confer drought resistance without penalizing growth, offering new and exciting possibilities for biotechnological improvement of drought-resistant crops. In cereals, understanding transcriptional responses to drought is an essential step for the production of gene-edited drought-resistant cereals. In this chapter, we present a method to analyze the transcriptional responses to drought in Sorghum bicolor (L.) Moench, our cereal of choice. Among the genes we tested, we found that drought marker gene SbDHN1 has a 1000-fold increase only after 1 day of drought, bringing possibilities for the development of molecular sensors for testing drought. Overall, this analysis is useful to set up conditions of high-throughput transcriptomic analysis of drought stressed plants before drought phenotype is observed.

摘要

干旱是一种主要的环境胁迫,限制了农业生态系统的生长和生产力,从而限制了全球的作物产量。培育具有增强耐旱性的作物是优先考虑的事项,以维护不断增长的世界人口的粮食安全。最近在拟南芥中的研究表明,血管中的油菜素类固醇受体 BRL3(油菜素不敏感样 3)转录控制产生渗透保护代谢物,从而赋予耐旱性而不影响生长,为生物技术改良耐旱作物提供了新的令人兴奋的可能性。在谷物中,了解对干旱的转录反应是生产基因编辑耐旱谷物的重要步骤。在本章中,我们介绍了一种分析高粱(Sorghum bicolor(L.)Moench)对干旱响应的转录反应的方法,高粱是我们选择的谷物。在我们测试的基因中,我们发现耐旱标记基因 SbDHN1 在干旱 1 天后仅增加了 1000 倍,为开发用于测试干旱的分子传感器带来了可能性。总体而言,在观察到干旱表型之前,这种分析对于建立对干旱胁迫植物进行高通量转录组分析的条件非常有用。

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