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首页> 外文期刊>Indian Journal of Biochemistry & Biophysics >Evaluation of water binding, seed coat permeability and germination characteristics of wheat seeds equilibrated at different relative humidities
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Evaluation of water binding, seed coat permeability and germination characteristics of wheat seeds equilibrated at different relative humidities

机译:在不同相对湿度下平衡的小麦种子的水分结合,种皮渗透性和发芽特性的评估

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The relative binding of seed water and seed coat membrane stability were measured in two contrasting wheat (Triticum aestivum L) varieties, HDR 77 (drought-tolerant) and HD 2009 (susceptible) using seed water sorption isotherms, electrical conductivity (EC) of leachates and desorption-absorption isotherms. Analysis of sorption isotherm at 25 degrees C showed that the seeds of HDR 77 had significantly higher number of strong binding sites, with correspondingly greater amount of seed water as strongly bound water, as compared to HD 2009. Total number of binding sites was also higher in HDR 77 than HD 2009, which explained the better desiccation tolerance and higher capacity to bind water in seeds of HDR 77. EC of seed leachate in both varieties did not change with respect to change in equilibrium relative humidity (RH), indicating the general seed coat membrane stability of wheat seeds. However, absolute conductivity values were higher for HD 2009, showing its relatively porous seed coat membrane. Significantly lower area enclosed by the desorption-absorption isotherm loop in HDR 77, as compared to HD 2009 also indicated the greater membrane integrity of HDR 77. Germination and seedling vigour of HD 2009 were reduced when equilibrated over very low and very high RH. In contrast, germination and vigour in HDR 77 were maintained high, except at very high RH, indicating again its desiccation tolerance. Thus, the study demonstrated the relative drought tolerance of HDR 77, on the basis of seed water-binding characteristics and seed membrane stability. Seed membrane stability as measured by seed leachate conductivity or as area under dehydration-rehydration loop may be used as a preliminary screening test for drought, tolerance in wheat.
机译:使用种子水分吸附等温线,浸出液的电导率(EC)在两个对比小麦(Triticum aestivum L)品种HDR 77(耐旱)和HD 2009(易感)中测量种子水的相对结合和种子皮膜稳定性。和解吸-吸收等温线。在25摄氏度下的吸附等温线分析表明,与HD 2009相比,HDR 77的种子具有较强的强结合位点数量,相应地,作为强结合水的种子水量也相应增加。结合位点总数也更高HDR 77比HD 2009具有更高的抗旱性和结合水的能力。HDR77种子的浸出液EC相对于平衡相对湿度(RH)的变化均未改变。小麦种子的种皮膜稳定性。但是,HD 2009的绝对电导率值较高,显示出其相对多孔的种皮膜。与HD 2009相比,HDR 77中由解吸-吸收等温线环所包围的面积明显减少,这也表明HDR 77具有更大的膜完整性。当在非常低和非常高的相对湿度下平衡时,HD 2009的发芽和幼苗活力会降低。相反,除了在非常高的相对湿度下,HDR 77的发芽和活力保持较高,这再次表明其耐干燥性。因此,该研究基于种子的水分结合特性和种子膜的稳定性,证明了HDR 77的相对耐旱性。通过种子浸出液电导率或脱水-脱水回路下面积测量的种子膜稳定性可以用作小麦耐旱性的初步筛选试验。

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