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Genetic variability of seed-quality traits in gamma-induced mutants of sunflower (Helianthus annuus L.) under water-stressed condition

机译:水分胁迫下γ诱导的向日葵(Helianthus annuus L.)突变体种子品质性状的遗传变异

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Sunflower is one of the major annual world crops grown for edible oil and its meal is a potential source of protein for human consumption. It contains tocopherol that decreases potential risk of chronic diseases in human. The objectives of the current research are to assess the genetic variability and to identify AFLP markers and candidate genes associated with seed-quality traits under well-irrigated and water-stressed conditions in gamma-induced mutants of sunflower. Two mutant lines, M8-826-2-1 and M8-39-2-1, with significant increased level of oleic acid were identified that can be used in breeding programs for quality increase high oxidative stability and heart-healthy properties. The significant increased level of tocopherol in mutant lines, M8-862-1N1 and M8-641-2-1, is justified by observed polymorphism for tocopherol pathway-related gene; MCT. The most important marker for total tocopherol content is E33M50_16 which explains 33.9% of phenotypic variance. One of the most important candidate genes involving fatty acid biosynthesis, FAD2 (FAD2-1), is linked to oleic and linoleic acids content and explained more than 53% of phenotypic variance. Common markers associated with different seed-quality traits in well-irrigated and water-stressed conditions could be used for marker-assisted selection (MAS) in both conditions. Other markers, which are specific for one condition whereas linked to different traits or specific for a trait, could be useful for a given water treatment.
机译:向日葵是世界上主要的食用油作物之一,其膳食是人类食用蛋白质的潜在来源。它含有生育酚,可降低人类慢性疾病的潜在风险。当前研究的目的是评估在γ诱导的向日葵突变体中,在灌溉和水分胁迫条件下,种子的性状与AFLP标记相关的基因变异性和候选基因。确定了两个突变株,M8-826-2-1和M8-39-2-1,其油酸水平显着提高,可用于育种程序中以提高氧化稳定性和心脏健康特性,从而提高品质。观察到生育酚途径相关基因的多态性证明突变体M8-862-1N1和M8-641-2-1中生育酚水平显着增加。 MCT。总生育酚含量最重要的标记是E33M50_16,它解释了33.9%的表型变异。 FAD2(FAD2-1)是涉及脂肪酸生物合成的最重要的候选基因之一,与油酸和亚油酸含量有关,解释了超过53%的表型变异。在良好灌溉和水分胁迫条件下,与不同种子质量性状相关的常见标记可用于两种条件下的标记辅助选择(MAS)。对于一种条件特异而与不同性状相关或对于一种性状特异的其他标记,可用于给定的水处理。

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