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Genetic analysis of phytosterol content in sunflower seeds.

机译:向日葵种子中植物甾醇含量的遗传分析。

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摘要

Interest in phytosterol contents due to their potential benefits for human health has been largely documented in several crop species. Studies were focused mainly on total sterol content and their concentration or distribution in seed. This study aimed at providing new insight into the genetic control of total and individual sterol contents in sunflower seed through QTL analyses in a RIL population characterized over 2 years showing contrasted rainfall during seed filling. Results indicated that 13 regions on 9 linkage groups were involved in different phytosterol traits. Most of the QTL mapped were stable across years in spite of contrasted growing conditions. Some of them explained up to 30% of phenotypic variation. Two QTL, located on LG10, near b1, and on LG14, were found to co-localize with QTL for oil content, indicating that likely, a part of the genetic variation for sterol content is only the result of genetic variation for oil content. However, three other QTL, stable over the 2 years, were found on LG1, LG4 and LG7 each associated with a particular class of sterols, suggesting that some enzymes known to be involved in the sterol metabolic pathway may determine the specificity of sterol profiles in sunflower seeds. These results suggest that it may be possible to introduce these traits as criteria in breeding programmes for quality in sunflower. The molecular markers linked to genetic factors controlling phytosterol contents could help selection during breeding programs.
机译:由于植物甾醇对人类健康的潜在益处,人们对植物甾醇含量的兴趣已在几种作物中得到了广泛的记载。研究主要集中在总固醇含量及其在种子中的浓度或分布。这项研究旨在通过特征为2年的RIL群体中通过QTL分析对向日葵种子中总固醇和单个固醇含量的遗传控制提供新的见解,其特征是种子灌装期间降雨形成对比。结果表明9个连锁组的13个区域参与了不同的植物甾醇性状。尽管生长条件相反,但大多数绘制的QTL多年来仍保持稳定。其中一些解释了多达30%的表型变异。发现位于b1附近的LG10和LG14上的两个QTL与QTL共同定位于含油量,这表明固醇含量遗传变异的一部分可能仅仅是含油量遗传变异的结果。然而,在LG1,LG4和LG7上发现了另外两个在2年内稳定的QTL,每个QTL与一类特定的甾醇相关,这表明某些已知参与固醇代谢途径的酶可能决定了固醇代谢过程中的固醇特性。葵花籽。这些结果表明,有可能将这些性状作为向日葵品质育种计划的标准。与控制植物甾醇含量的遗传因素相关的分子标记可以帮助育种计划中的选择。

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