首页> 外文期刊>Photosynthetica: International Journal for Photosynthesis Research >Induction of water deficit tolerance in wheat due to exogenous application of plant growth regulators: membrane stability, water relations and photosynthesis
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Induction of water deficit tolerance in wheat due to exogenous application of plant growth regulators: membrane stability, water relations and photosynthesis

机译:外源施用植物生长调节剂对小麦耐水性的影响:膜稳定性、水关系和光合作用

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摘要

Our experiment was carried out in order to explore effects of plant growth regulators (PGR; thidiazuron, paclobutrazol, and ascorbic acid) on physiological traits of wheat genotypes under water surplus and deficit conditions. Study revealed that relative water content, membrane stability index, chlorophyll content, photosynthetic rate (P-N), and maximal quantum yield of PSII improved with PGRs application across the genotypes both under irrigation and water stress. The response of HD 2733 genotype was more positive toward PGRs treatment as compared to other genotypes under water stress. Higher P-N and chlorophyll contents were observed in HD 2987 followed by C 306 genotype under water-stress conditions. Moreover, Rubisco small subunit (SSU) expression was lower in wheat genotypes under water stress as compared to irrigated conditions. Application of PGRs led to upregulation of SSU under water stress, while no significant change was found in Rubisco level and activity under irrigated condition in dependence on PGRs treatments. Yield-related traits showed also significant reduction under water-stress conditions, while application of PGRs enhanced the yield and its components. Results indicated that the PGRs exhibited a positive interaction and synergetic effect on water stressed wheat plants in terms of photosynthetic machinery and yield.
机译:本试验旨在探究植物生长调节剂(PGR、噻虫隆、多效唑和抗坏血酸)对水分过剩和缺水条件下小麦基因型生理性状的影响。研究表明,在灌溉和水分胁迫下,随着PGRs的施用,PSII的相对含水量、膜稳定性指数、叶绿素含量、光合速率(P-N)和最大量子产率均有所提高。与其他基因型相比,HD 2733基因型在水分胁迫下对PGRs治疗的反应更为积极。在水分胁迫条件下,HD 2987 的 P-N 和叶绿素含量较高,其次是 C 306 基因型。此外,与灌溉条件相比,水分胁迫下小麦基因型的Rubisco小亚基(SSU)表达较低。PGRs的应用导致水分胁迫下SSU的上调,而在依赖PGRs处理的灌溉条件下,Rubisco水平和活性没有显著变化。在水分胁迫条件下,与产量相关的性状也显著降低,而PGRs的施用则提高了产量及其成分。结果表明,PGRs在光合机制和产量方面对水分胁迫小麦植株表现出正向交互作用和协同效应。

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