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首页> 外文期刊>Plant Physiology and Biochemistry >Genotypic differences in physiological and biochemical responses to salinity stress in melon ( Cucumis melo L.) plants: Prospects for selection of salt tolerant landraces
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Genotypic differences in physiological and biochemical responses to salinity stress in melon ( Cucumis melo L.) plants: Prospects for selection of salt tolerant landraces

机译:甜瓜盐度应激的生理和生化反应的基因型差异(甘蔗骨质Melo L.)植物:选择耐盐性地形的前景

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摘要

AbstractMelon (Cucumis meloL.) is one of the most important horticultural crops in Iran often cultivated in arid and semiarid regions of the country with salinity problems. The objective of this work was to better understand the mechanisms of physiological and biochemical responses to salinity stress of five Iranian melon landraces “Samsuri”, “Kashan”, “Khatouni”, “Suski-e-Sabz”, and “Ghobadlu” from different geographical origins, and “Galia” F1 cultivar. Plants were grown under greenhouse conditions and irrigated with half-strength Hoagland solution containing 0, 30, 60, or 90?mM NaCl for 60 days. Increase in the external salt concentration was accompanied by an obvious depression in leaf relative water content, membrane stability index, chlorophyllaandband carotenoid contents, stomata and trichome density, leaf area, specific leaf area, biomass, leaf and stem K+concentrations as well as leaf and stem K+/Na+ratios in all landraces studied. In contrast, hydrogen peroxide, lipid peroxidation, proline and soluble carbohydrate contents, activity of antioxidant enzymes as well as leaf and stem Na+and Cl?concentrations, all increased significantly with increasing stress over all plants. Moreover, carbon isotope discrimination (Δ13C), determined on leaf organic matter, was found to be associated with evaluated traits. For example, a highly positive correlation between Δ13C and both biomass production and salt tolerance index was notable when all saline treatments were averaged (r?=?0.998 and 0.998, respectively). Also, scatter plot and clustering analysis showed that “Suski-e-Sabz” and “Ghobadlu” were placed close to “Galia” F1, a salt tolerant cultivar, indicating that their similar behavior under salinity. Overall, the present results indicated a significant genetic variability for most of the traits studied, suggesting that “Suski-e-Sabz” and “Ghobadlu” could be introduced as the superior landraces and the most promising tolerant parents in the future melon breeding programs due to their suitable performance, in terms of responses to salt stress as compared with other landraces. Also, Δ13C can be used as a powerful criterion in melon breeding programs aimed at selection of salt tolerant landraces.Highlights?Melon is an important horticultural crop which is often cultivated in arid and semiarid regions with salinity problems.?Current study provided a broad analysis of the impact of a 60-day NaCl stress on the physiological and biochemical traits.?An increase in the external salt concentrations was accompanied by the significant changes for most of the traits studied.?The Suski-e-Sabz
机译:<![CDATA [ 抽象 Melon( Cucumis Melo l。)是最多的伊朗的重要园艺作物经常在国家的干旱和半干旱地区培养,具有盐度问题。这项工作的目标是更好地了解五个伊朗甜瓜体位“Samsuri”,“kashan”,“khatouni”,“Suski-e-Sabz”和“Ghobadlu”的生理和生化反应的生理和生化反应的机制。来自不同的地理起源,“Galia”F1品种。植物在温室条件下生长,并用含有0,30,60或90Ω·mm NaCl的半强度Hoagland溶液灌溉60天。外部盐浓度的增加伴随着叶相对含水量,膜稳定性指数,叶绿素 a b 和类胡萝卜素的抑郁症内容物,气孔和毛状体密度,叶面积,特定叶面积,生物质,叶和茎k + 浓度以及叶子和茎k + / na + 在所有研体面中的比率。相比之下,过氧化氢,脂质过氧化,脯氨酸和可溶性碳水化合物含量,抗氧化酶的活性以及叶和茎Na:Sup =“柱”> + 和Cl 浓度,随着所有植物的压力越来越大,都会显着增加。此外,发现在叶片有机物物质上确定的碳同位素辨别(δ 13-ce:sup> c)与评估的性状相关。例如,当所有盐水处理平均时,Δ 13 / ce:sup> c和盐耐药性和盐耐药性和耐盐性指数之间的高阳性相关性(r?= 0.998分别为0.998)。此外,散点图和聚类分析表明,“SUSKI-E-SABZ”和“GHOBADLU”靠近“GALIA”F1,耐盐品种,表明它们在盐度下的类似行为。总体而言,目前的结果表明,对于所研究的大多数特征表示显着的遗传变异性,表明“苏斯基-E-SABZ”和“GHOBADLU”可以作为优越的体力造成和最有前途的豪华父母在未来的甜瓜育种计划中被引入与其他地位相比,在对盐压力的反应方面的适当性能。此外,Δ 13 c可以用作旨在选择耐盐体重体的甜瓜育种计划中的强大标准。 亮点 瓜是一个重要的园艺作物,通常在干旱和半干旱地区培养具有盐度问题。 目前的研究提供了对60天NaCl胁迫对生理和生化特征的影响的广泛分析。 外部盐浓度的增加伴随着大多数的显着变化研究的特征。 Suski-e-Sabz

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