Downregulation of the OsAKT1 K+/Na+ Transporter Gene by CRISPR-Cas9 Mediated Transformation in Sensitive Rice IR29 Makes it Tolerant to Salt Stress

I. Khan, Aysha Akter Laboni, T. Azim, S. M. Elias, Z. I. Seraj
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Abstract

The coastal area of Bangladesh is affected by soil salinity which threatens rice production. Saline soils are mainly caused by excessive Na+ which interferes with the uptake of the essential nutrient K+. Certain K+ transporters may cause leakage of Na+ ions and the OsAKT1 transporter was earlier shown to be downregulated under salt stress in a tolerant rice landrace called Horkuch. We therefore targeted this gene for Crispr-mediated downregulation by Agrobacterium-mediated in planta transformation in salt sensitive IR29 rice. The gene was shown to be significantly downregulated in at least 3 independent transformants. One of the gene edited IR29 transformants showed significantly high survival, low loss in chlorophyll content, low electrolyte leakage as well as low H2O2 after 15-days of salt stress at 120mM NaCl at the T3 generation. Therefore the potassium transporter OsAKT1 gene is a good target for downregulation to produce salt tolerant rice. Plant Tissue Cult. & Biotech. 33(1): 71-84, 2023 (June)
通过CRISPR-Cas9介导的水稻IR29基因转化下调OsAKT1 K+/Na+转运体基因使其耐盐胁迫
孟加拉国沿海地区受到土壤盐度的影响,这威胁到水稻生产。盐渍土主要是由过量的Na+引起的,Na+干扰了必需养分K+的吸收。某些K+转运蛋白可能导致Na+离子泄漏,而OsAKT1转运蛋白在一种名为Horkuch的耐盐水稻地方品种中早些时候被证明在盐胁迫下下调。因此,我们靶向该基因,通过农杆菌介导的盐敏感IR29水稻植株转化中的Crispr介导的下调。该基因在至少3个独立的转化体中被证明是显著下调的。基因编辑的IR29转化体中的一个在T3代在120mM NaCl的盐胁迫15天后表现出显著的高存活率、低叶绿素含量损失、低电解质渗漏以及低H2O2。因此,钾转运蛋白OsAKT1基因是生产耐盐水稻的良好下调靶点。植物组织培养生物技术。33(1):71-842023(六月)
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