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首页> 外文期刊>PLoS One >Steady expression of high oleic acid in peanut bred by marker-assisted backcrossing for fatty acid desaturase mutant alleles and its effect on seed germination along with other seedling traits
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Steady expression of high oleic acid in peanut bred by marker-assisted backcrossing for fatty acid desaturase mutant alleles and its effect on seed germination along with other seedling traits

机译:用脂肪酸去饱和酶突变等位基因的标记辅助回复高油酸在花生中的常态表达及其对其他幼苗特征的影响及其对种子萌发的影响

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Peanut ( Arachis hypogaea L.) is an important nutrient-rich food legume and valued for its good quality cooking oil. The fatty acid content is the major determinant of the quality of the edible oil. The oils containing higher monounsaturated fatty acid are preferred for improved shelf life and potential health benefits. Therefore, a high oleic/linoleic fatty acid ratio is the target trait in an advanced breeding program. The two mutant alleles, ahFAD2A (on linkage group a09) and ahFAD2B (on linkage group b09) control fatty acid composition for higher oleic/linoleic ratio in peanut. In the present study, marker-assisted backcrossing was employed for the introgression of two FAD2 mutant alleles from SunOleic95R into the chromosome of ICGV06100, a high oil content peanut breeding line. In the marker-assisted backcrossing-introgression lines, a 97% increase in oleic acid, and a 92% reduction in linoleic acid content was observed in comparison to the recurrent parent. Besides, the oleic/linoleic ratio was increased to 25 with respect to the recurrent parent, which was only 1.2. The most significant outcome was the stable expression of oil-content, oleic acid, linoleic acid, and palmitic acid in the marker-assisted backcrossing-introgression lines over the locations. No significant difference was observed between high oleic and normal oleic in peanuts for seedling traits except germination percentage. In addition, marker-assisted backcrossing-introgression lines exhibited higher yield and resistance to foliar fungal diseases, i . e ., late leaf spot and rust.
机译:花生(arachis hypogaea L.)是一种重要的富含营养丰富的食物豆类,并为其优质的食用油而受到重视。脂肪酸含量是可食用油质量的主要决定因素。含有较高的单不饱和脂肪酸的油是优选改善保质期和潜在的健康益处。因此,高油酸/亚油脂肪酸比是先进的育种程序中的目标性状。两个突变等位基因,AHFAD2A(在连杆组A09)和AHFAD2B(在连杆组B09)中,对照在花生中具有较高的油酸/亚油比的脂肪酸组合物。在本研究中,使用标记辅助的回复,用于将来自浪费的2个FAD2突变等位基因从浪潮到ICGV06100中的染色体中的高油含量花生育种线。在标记辅助的回复 - 间隙线中,与复发父母相比,延展酸含量增加97%,并观察到亚油酸含量的92%。此外,对复发性父母仅增加至25的油/亚油比仅为1.2。最显着的结果是在地点上标记辅助的回复 - 旋转线中的油含量,油酸,亚油酸和棕榈酸的稳定表达。除萌发百分比外,在除萌发率的幼苗特征的高油酸和正常油气之间没有观察到显着差异。此外,标记辅助的远程转化线表现出更高的产量和对叶面真菌疾病的抵抗力,i。即,晚叶点和生锈。

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