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首页> 外文期刊>Journal of Crop Improvement >Generation means analysis of fatty acid composition in peanut.
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Generation means analysis of fatty acid composition in peanut.

机译:产生是指分析花生中的脂肪酸组成。

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Optimizing the chemical composition of peanut (Arachis hypogaea L.) oil is essential for the production of biodiesel. Specifically, increasing the ratio of oleic to linoleic acid (O/L) in peanut oil and reducing the long chain saturated fatty acid concentration (which includes arachidic, behenic, and lignoceric acids) produces high-quality, stable methyl esters for biodiesel. Therefore, elucidating the inheritance of these factors and their relationships in peanut populations segregating for high oil is critical. The F1, F2, and backcross generations derived from two crosses, both involving a high oil concentration, low O/L runner breeding line (31-08-05-02) and two high O/L, normal oil concentration, adapted runner genotypes (Tamrun OL01 and Tamrun OL07), were evaluated in College Station, Texas, in 2010. The results from generation means analysis confirm that the high-oleic trait is under simple genetic control and can be manipulated through breeding and selection. Most fatty acids were controlled primarily by additive gene action, which is highly selectable. Dominance effects also played an important part in the inheritance of most fatty acids. Additive x dominance interaction was significant in the inheritance of stearic and arachidic acids in the cross involving Tamrun OL07. Oil concentration was also negatively correlated with oleic acid concentration in the F2 generations of both crosses and positively correlated with arachidic acid in most of the segregating generations evaluated. Therefore, developing a peanut genotype high in oil and oleic acid concentration that has reduced long chain saturates will require the evaluation of large numbers of segregating progeny
机译:优化花生油(花生)的化学组成对于生产生物柴油至关重要。具体来说,增加花生油中油酸与亚油酸的比例(O / L)并降低长链饱和脂肪酸浓度(包括花生酸,山be酸和木质素酸)可生产出高质量,稳定的生物柴油甲酯。因此,阐明在高油分离的花生种群中这些因素的遗传及其关系至关重要。来自两个杂交的F 1 ,F 2 和回交世代,都涉及高油浓度,低O / L转基因繁殖线(31-08-05- 02)和2010年在得克萨斯州大学城评估了两种高O / L,正常油浓度,适应转轮基因型(Tamrun OL01和Tamrun OL07)。发电均值分析的结果证实高油性性状在简单的遗传控制,可以通过育种和选择来操纵。大多数脂肪酸主要是通过加性基因作用来控制的,这种作用是高度选择性的。优势效应在大多数脂肪酸的遗传中也起着重要作用。在涉及Tamrun OL07的杂交中,硬脂酸和花生酸的加性x显性相互作用显着。在两个杂交代的F 2 世代中,油浓度也与油酸浓度呈负相关,而在大多数评估的分离代中,油浓度与花生酸呈正相关。因此,要开发出油酸和油酸浓度高,长链饱和度降低的花生基因型,就需要评估大量的分离后代

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