生物
水稻
非生物胁迫
转化(遗传学)
转基因
转基因水稻
非生物成分
转基因作物
农杆菌
解旋酶
遗传学
基因
植物
细胞生物学
核糖核酸
古生物学
作者
Shabnam K. Saifi,Narendra Tuteja,Renu Tuteja,Manoj Nath,Ritu Gill,Sarvajeet Singh Gill,Narendra Tuteja
出处
期刊:Plant Science
[Elsevier]
日期:2023-10-01
卷期号:335: 111786-111786
被引量:1
标识
DOI:10.1016/j.plantsci.2023.111786
摘要
RuvBL, is a member of SF6 superfamily of helicases and is conserved among the various model systems. Recently, rice (Oryza sativa L.) homolog of RuvBL has been biochemically characterized for its ATPase and DNA helicase activities; however its involvement in stress has not been studied so far. Present investigation reports the detailed functional characterization of OsRuvBL under abiotic stresses through genetic engineering. An efficient Agrobacterium-mediated in planta transformation protocol was developed in indica rice to generate the transgenic lines and study was focused on optimization of factors to achieve maximum transformation efficiency. Overexpressing OsRuvBL1a transgenic lines showed enhanced tolerance under in vivo salinity stress as compared to WT plants. The physiological and biochemical analysis of the OsRuvBL1a transgenic lines showed better performance under salinity and drought stresses. Several stress responsive interacting partners of OsRuvBL1a were identified using Y2H system revealed to its role in stress tolerance. Functional mechanism for boosting stress tolerance by OsRuvBL1a has been proposed in this study. This integration of OsRuvBL1a gene in rice genome using in planta transformation method helped to achieve the abiotic stress resilient smart crop. This study is the first direct evidence to show the novel function of RuvBL in boosting abiotic stress tolerance in plants.
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