Embrapa Genetic Resources and Biotechnology-EMBRAPA CENARGEN, Brasília, DF, Brazil.
Biochemistry and Molecular Biology, Universidade Federal de Viçosa (UFV), Viçosa, MG, Brazil.
Sci Rep. 2020 Oct 1;10(1):16231. doi: 10.1038/s41598-020-72464-y.
Plants are sessile organisms, which are vulnerable to environmental stresses. As such, plants have developed multiple molecular, physiological, and cellular mechanisms to cope with natural stressors. However, these environmental adversities, including drought, are sources of the main agribusiness problems since they interfere with plant growth and productivity. Particularly under water deprivation conditions, the abscisic acid-responsive element-binding protein AREB1/ABF2 plays an important role in drought stress response and physiological adaptation. In this investigation, we provide substantial confirmation for the role of AREB1/ABF2 in plant survival under severe water deficit using the CRISPR activation (CRISPRa) technique to enhance the AREB1 gene expression. In our strategy, the inactive nuclease dCas9 was fused with an Arabidopsis histone acetyltransferase 1, which improves gene expression by remodeling chromatin. The AREB1 overexpression promotes an improvement in the physiological performance of the transgenic homozygous plants under drought, which was associated with an increase in chlorophyll content, antioxidant enzyme activity, and soluble sugar accumulation, leading to lower reactive oxygen species accumulation. Finally, we found that the CRISPR-mediated up-regulation of AREB1 changes the abundance of several downstream ABA-inducible genes, allowing us to report that CRISPRa dCas9-HAT is a valuable biotechnological tool to improve drought stress tolerance through the positive regulation of AREB1.
植物是固着生物,容易受到环境胁迫的影响。因此,植物已经发展出多种分子、生理和细胞机制来应对自然胁迫。然而,这些环境逆境,包括干旱,是农业主要问题的根源,因为它们会干扰植物的生长和生产力。特别是在缺水条件下,脱落酸响应元件结合蛋白 AREB1/ABF2 在干旱胁迫响应和生理适应中起着重要作用。在这项研究中,我们使用 CRISPR 激活(CRISPRa)技术来增强 AREB1 基因表达,为 AREB1/ABF2 在严重缺水条件下植物生存中的作用提供了充分的证据。在我们的策略中,无活性的核酸酶 dCas9 与拟南芥组蛋白乙酰转移酶 1 融合,通过重塑染色质来提高基因表达。AREB1 的过表达促进了转基因纯合子植物在干旱条件下生理性能的改善,这与叶绿素含量、抗氧化酶活性和可溶性糖积累的增加有关,导致活性氧积累减少。最后,我们发现 CRISPR 介导的 AREB1 上调改变了几个下游 ABA 诱导基因的丰度,这使我们能够报告说,CRISPRa dCas9-HAT 通过对 AREB1 的正向调节,是一种提高耐旱性的有价值的生物技术工具。