首页> 外文期刊>Crop & Pasture Science >Effects of exogenous application of abscisic acid on membrane stability, osmotic adjustment, photosynthesis and hormonal status of two lucerne (Medicago sativa L.) genotypes under high temperature stress and drought stress.
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Effects of exogenous application of abscisic acid on membrane stability, osmotic adjustment, photosynthesis and hormonal status of two lucerne (Medicago sativa L.) genotypes under high temperature stress and drought stress.

机译:外源脱落酸对高温胁迫和干旱胁迫下两种紫花苜蓿基因型膜稳定性,渗透调节,光合作用和激素状态的影响。

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This study was designed to examine effects of high temperature, drought and exogenous abscisic acid (ABA) on membrane stability, osmotic adjustment, photosynthesis and the hormone status of two lucerne (alfalfa, Medicago sativa L.) genotypes contrasting in heat tolerance: Ameristand 801S (AS801) (heat-tolerant), and Aohan (heat-sensitive), The results showed that AS801 had lower electrolyte leakage, but higher chlorophyll content, net photosynthetic rate, stomatal conductance, proline content, ABA content and zeatin riboside (ZR) content than Aohan during 72 h of heat stress under well-watered conditions. Under drought conditions, however, only proline content and ZR content in roots, electrolyte leakage in leaves and roots, net photosynthetic rate, and ABA content were significantly different between the two genotypes. A foliar application of ABA to heat-stressed plants significantly decreased electrolyte leakage and stomatal conductance, and increased recovery in growth and leaf water potential in the two genotypes under both watering conditions. The other physiological responses measured differed under drought or well-watered conditions, and appeared to be genotype-specific. These results suggest that the physiological responses of heat-sensitive and heat-tolerant lucerne to heat stress under different soil-water conditions varied. The heat-induced changes in proline accumulation in roots, electrolyte leakage in leaves and roots, and photosynthetic rate could serve as early instant stress indicators for evaluating the tolerance of lucerne genotypes to heat stress under different soil water conditions.
机译:这项研究旨在检查高温,干旱和外源脱落酸(ABA)对两种耐热性不同的卢塞恩(苜蓿,苜蓿)的基因型对膜稳定性,渗透调节,光合作用和激素状态的影响:Ameristand 801S (AS801)(耐热)和Aohan(热敏),结果表明,AS801的电解质泄漏量较低,但叶绿素含量,净光合速率,气孔导度,脯氨酸含量,ABA含量和玉米素核糖苷(ZR)较高水分充足的条件下,热胁迫72 h后的有机质含量比敖汉高。然而,在干旱条件下,两种基因型的根中脯氨酸含量和ZR含量,叶和根中的电解质渗漏,净光合速率和ABA含量均显着不同。叶面喷施ABA到热胁迫植物上显着降低了两种基因型在两种浇水条件下的电解质渗漏和气孔导度,并增加了生长和叶片水势的恢复。在干旱或水源充足的条件下,测得的其他生理反应有所不同,并且似乎是基因型特异性的。这些结果表明,在不同的土壤-水条件下,热敏和耐热的卢塞恩对热胁迫的生理响应是不同的。热诱导的脯氨酸在根中积累的变化,叶和根中电解质的泄漏以及光合作用的速率可以作为早期即时胁迫指标,用于评估卢塞恩基因型在不同土壤水分条件下对热胁迫的耐受性。

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