Verma Rakesh Kumar, Kumar Vinjamuri Venkata Santosh, Yadav Shashank Kumar, Kumar Thiruppathi Senthil, Rao Mandali Venkateswara, Chinnusamy Viswanathan
Division of Plant Physiology, ICAR-Indian Agricultural Research Institute , New Delhi, India.
Department of Botany, School of Life Sciences, Bharathidasan University Tiruchirappalli , Tiruchirappalli, India.
Plant Signal Behav. 2020 Nov 1;15(11):1814547. doi: 10.1080/15592324.2020.1814547. Epub 2020 Sep 12.
ICE1 (Inducer of CBF Expression 1), a MYC-type bHLH transcription factor, is a regulator of cold tolerance in Arabidopsis. Indica rice, which occupies the major rice cultivated area, is highly sensitive to cold stress. Hence in this study, Arabidopsis () was overexpressed in indica rice to analyze its role in reproductive stage cold and other abiotic stress tolerance to indica rice. was overexpressed by using stress inducible promoter in mega rice cv. MTU1010. Under cold stress conditions, overexpression lines showed lower accumulation of MDA and HO, higher membrane stability, and thus higher seedling survival rate than the WT plants. Expression levels of , and were significantly higher in transgenics as compared with WT under cold stress conditions. transgenic rice plants produced 44-60% higher grain yield as compared with WT plants under control conditions in three independent experiments. Of the three overexpression lines, two lines produced significantly higher grain yield as compared with WT plants after recovery from cold, salt and drought stresses. overexpression lines showed significantly higher stomatal density and conductance under non-stress conditions. qRT-PCR analysis showed that expression levels of stomatal pathway genes viz., and were significantly higher in transgenics as compared with WT plants. The components of water use viz., stomatal conductance, photosynthesis, and instantaneous WUE were higher in transgenics as compared with WT plants. The results showed that confers multiple stress tolerance to indica rice, and the role of in stress tolerance and stomatal development is conserved across species.
ICE1(CBF表达诱导因子1)是一种MYC型bHLH转录因子,是拟南芥耐寒性的调节因子。占水稻主要种植面积的籼稻对冷胁迫高度敏感。因此,在本研究中,拟南芥ICE1在籼稻中过表达,以分析其在生殖阶段低温及籼稻对其他非生物胁迫耐受性中的作用。通过在超级稻品种MTU1010中使用胁迫诱导型启动子来过表达ICE1。在冷胁迫条件下,ICE1过表达株系的丙二醛(MDA)和过氧化氢(H₂O₂)积累量较低,膜稳定性较高,因此与野生型植株相比,幼苗存活率更高。在冷胁迫条件下,转基因植株中CBF1、CBF2和CBF3的表达水平显著高于野生型。在三个独立实验的对照条件下,ICE1转基因水稻植株的产量比野生型植株高44%-60%。在三个ICE1过表达株系中,有两个株系在从冷、盐和干旱胁迫恢复后,产量显著高于野生型植株。ICE1过表达株系在非胁迫条件下气孔密度和导度显著更高。qRT-PCR分析表明,与野生型植株相比,ICE1转基因植株中气孔途径基因(即EPF1和EPF2)的表达水平显著更高。转基因植株的水分利用组成部分(即气孔导度、光合作用和瞬时水分利用效率)高于野生型植株。结果表明,ICE1赋予籼稻多重胁迫耐受性,ICE1在胁迫耐受性和气孔发育中的作用在不同物种间具有保守性。