Department of Crop Physiology, University of Agricultural Sciences, GKVK, Bangalore 560065 India.
Department of Crop Physiology, University of Agricultural Sciences, GKVK, Bangalore 560065 India.
Plant Sci. 2022 Jul;320:111262. doi: 10.1016/j.plantsci.2022.111262. Epub 2022 Mar 24.
Under semi-irrigated ecosystem, rice is often exposed to a combination of drought and heat stress, especially at the reproductive stage, leading to substantial yield loss. Combined stress studies are very limited in rice partly due to the difficulty in creating heat stress on a larger scale. Here, 24 cultivars with specific stress adaptive traits were phenotyped for spikelet sterility under combined stress using the natural summer temperatures and open drought phenotyping facility, simulating the field conditions. LC-MS/MS based metabolite profiling was performed in flag leaves and spikelets of three cultivars contrasting for spikelet sterility and source (leaf weight) treated to drought, heat and combined stress. Constitutively regulated metabolites, metabolic signatures common to all stresses, cultivars and tissues, metabolites common to both the tissues across the stresses and cultivars and metabolites common to each cultivar across the tissues and stresses were identified. Under combined stress, metabolites differentially accumulated between cultivars contrasting for spikelet sterility but similar for source and cultivars contrasting for both spikelet sterility and source have been identified. These metabolites would serve as markers towards improving combined stress tolerance of rice.
在半灌溉生态系统下,水稻经常面临干旱和热胁迫的组合,特别是在生殖阶段,导致大量减产。由于在更大规模上创造热胁迫的难度,水稻的综合胁迫研究非常有限。在这里,使用自然夏季温度和开放干旱表型设施,模拟田间条件,对具有特定胁迫适应特性的 24 个品种进行了穗不育的表型分析。在对穗不育和源(叶重)进行干旱、热和综合胁迫处理的三个品种的旗叶和小穗中进行了基于 LC-MS/MS 的代谢物分析。鉴定了组成性调节代谢物、所有胁迫、品种和组织共有的代谢特征、跨越胁迫和品种的两种组织共有的代谢物以及跨越组织和胁迫的每个品种共有的代谢物。在综合胁迫下,鉴定了穗不育品种之间差异积累的代谢物,但源相似,穗不育和源都不同的品种之间也存在差异。这些代谢物将作为提高水稻综合胁迫耐受性的标记。