Gene editing and overexpression of soybean miR396a reveals its role in salinity tolerance and development

Xiangqian Chen, Xuemin Jiang, Xianjun Sun, Zheng Hu, Fei Gao, Xiuping Wang, Hui Zhang, Rui Chen, Qiyan Jiang
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Abstract

MicroRNAs (miRNAs) are versatile regulators of gene expression at both the transcription and post-transcription levels. The microRNA miR396 plays vital roles in growth, development, and resistance to abiotic stresses in many plant species. However, the roles and functions of miR396 in soybeans are not well understood. Here, we report that influences soybean development and salinity tolerance. We found that soybean was responsive to salt stress. gene-edited lines (-GEs), created using CRISPR/Cas9, exhibited more branches, higher grain yields, and greater salinity tolerance than control plants. The transcripts in lines with altered abundance of -GE were significantly enriched for biological processes related to hormone regulation. Overexpression of the precursor (pre--OE) resulted in developmental deficiencies including dwarfness, abnormal inflorescences and flowers, smaller and fewer seeds, and small leaves with larger and more numerous stomata. Transcriptome analysis indicated photosynthesis-related genes were downregulated in pre--OE plants. These results contribute valuable insights into the function of in soybeans and hold promise for enhancing soybean yield and salinity tolerance through germplasm innovation.
大豆 miR396a 的基因编辑和过表达揭示了其在耐盐性和发育中的作用
微小 RNA(miRNA)是转录和转录后基因表达的多功能调节因子。在许多植物物种中,microRNA miR396 在生长、发育和抵抗非生物胁迫方面发挥着重要作用。然而,miR396 在大豆中的作用和功能还不十分清楚。在此,我们报告了影响大豆发育和耐盐性的 miR396。我们发现大豆对盐胁迫有反应。与对照植物相比,利用 CRISPR/Cas9 创建的基因编辑品系(-GEs)表现出更多的分枝、更高的谷物产量和更强的耐盐性。在-GE丰度改变的品系中,与激素调控相关的生物过程的转录本显著富集。过量表达前体(pre--OE)会导致发育缺陷,包括矮小、花序和花朵异常、种子更小且数量更少、叶片小且气孔更大更多。转录组分析表明,光合作用相关基因在pre--OE植株中下调。这些结果有助于深入了解大豆的功能,为通过种质创新提高大豆产量和耐盐性带来了希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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