Enhancing drought tolerance in chilli pepper through AdDjSKI‐mediated modulation of ABA sensitivity, photosynthetic preservation, and ROS scavenging

超氧化物歧化酶 胡椒粉 过氧化氢酶 光合作用 光抑制 过氧化物酶 耐旱性 叶绿素 活性氧 园艺 生物 光合效率 抗氧化剂 丙二醛 植物 化学 光系统II 生物化学
作者
Mallesham Bulle,Ajay Kumar Venkatapuram,Md. Mezanur Rahman,Kamal A. Attia,Arif Ahmed Mohammed,Sadanandam Abbagani,P. B. Kirti
出处
期刊:Physiologia Plantarum [Wiley]
卷期号:176 (3) 被引量:1
标识
DOI:10.1111/ppl.14379
摘要

Abstract Drought stress threatens the productivity of numerous crops, including chilli pepper ( Capsicum annuum ). DnaJ proteins are known to play a protective role against a wide range of abiotic stresses. This study investigates the regulatory mechanism of the chloroplast‐targeted chaperone protein AdDjSKI, derived from wild peanut ( Arachis diogoi ), in enhancing drought tolerance in chilli peppers. Overexpressing AdDjSKI in chilli plants increased chlorophyll content, reflected in the maximal photochemical efficiency of photosystem II (PSII) ( Fv/Fm ) compared with untransformed control (UC) plants. This enhancement coincided with the upregulated expression of PSII‐related genes. Our subsequent investigations revealed that transgenic chilli pepper plants expressing AdDjSKI showed reduced accumulation of superoxide and hydrogen peroxide and, consequently, lower malondialdehyde levels and decreased relative electrolyte leakage percentage compared with UC plants. The mitigation of ROS‐mediated oxidative damage was facilitated by heightened activities of antioxidant enzymes, including superoxide dismutase, catalase, ascorbate peroxidase, and peroxidase, coinciding with the upregulation of the expression of associated antioxidant genes. Additionally, our observations revealed that the ectopic expression of the AdDjSKI protein in chilli pepper plants resulted in diminished ABA sensitivity, consequently promoting seed germination in comparison with UC plants under different concentrations of ABA. All of these collectively contributed to enhancing drought tolerance in transgenic chilli plants with improved root systems when compared with UC plants. Overall, our study highlights AdDjSKI as a promising biotechnological solution for enhancing drought tolerance in chilli peppers, addressing the growing global demand for this economically valuable crop.
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