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Responses of Almond Genotypes to Osmotic Stress Induced In Vitro

机译:杏仁基因型对体外渗透胁迫的响应

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Drought is one of the major limitations to crop production worldwide. This study was conducted to evaluate the response of five almond genotypes and peach×almond hybrid GF to drought stress in vitro, and screening drought tolerance. Explants subjected to polyethylene glycol osmotic stress ( , , and . % WV) on the MS medium. Increasing PEG level in the medium significantly reduced fresh weight and leaf growth indices of the explants. Concentrations of chlorophylls, anthocyanins and carotenoids were significantly reduced under osmotic stress. Drought sensitive genotypes ‘B- ’, ‘Sepid’, ‘Mamaei’ and ‘Ferragnès’ showed stunted growth with high rate of leaf abscission under osmotic stress. Under osmotic stress, leaf water content, cellular membrane stability and pigments concentration were significantly higher in the leaves of tolerant genotypes ‘Supernova’ and GF . The results revealed that carotenoids and anthocyanins may be involved in protecting almonds against drought stress. Based on their responses to the osmotic treatments, almond genotypes were divided into drought tolerant (‘Supernova’ and GF ), semi-sensitive (‘B- ’ and ‘Sepid’) and drought sensitive (‘Mamaei’ and ‘Ferragnès’).
机译:干旱是全球农作物生产的主要限制之一。本研究旨在评估五种杏仁基因型和桃×杏仁杂种GF对体外干旱胁迫的响应,并筛选耐旱性。外植体在MS培养基上受到聚乙二醇渗透胁迫(,和。%WV)。培养基中PEG含量的增加显着降低了外植体的鲜重和叶片生长指数。在渗透胁迫下,叶绿素,花色苷和类胡萝卜素的浓度显着降低。干旱敏感基因型“ B-”,“ Sepid”,“ Mamaei”和“Ferragnès”在渗透胁迫下生长缓慢,叶片脱落率很高。在渗透胁迫下,耐性基因型“超新星”和GF的叶片中的水分,细胞膜稳定性和色素浓度明显高于叶片。结果表明,类胡萝卜素和花青素可能参与保护杏仁免受干旱胁迫。根据对渗透处理的反应,杏仁基因型分为耐旱型(“超新星”和“ GF”),半敏感型(“ B-”和“ Sepid”)和干旱型(“ Mamaei”和“Ferragnès”)。

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