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首页> 外文期刊>Tropical Animal Health and Production >A novel selection signature in stearoyl-coenzyme A desaturase (SCD) gene for enhanced milk fat content in Bubalus bubalis
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A novel selection signature in stearoyl-coenzyme A desaturase (SCD) gene for enhanced milk fat content in Bubalus bubalis

机译:硬脂酰辅酶A去饱和酶(SCD)基因中的一种新型选择标记,可提高水牛乳中的乳脂含量

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摘要

Modern molecular interventions are dynamic gears for breeding animals with superior genetic make-up. These scientific efforts lead us toward sustainable dairy herds with improved milk production in terms of yield and quality. Many of candidate genes have been dissected at molecular level, and suitable genetic markers have been identified in cattle, but this work has not been validated in buffaloes so far. Stearoyl-coenzyme A desaturase (SCD) has been a potential candidate gene for fat content of milk. Genomic analysis of SCD revealed a total of six variations that were identified through DNA sequencing of animals with lower and higher butter fat %age. After statistical analysis, genotype AB of p.K158I could be associated (P value 0.0001) with higher milk fat %age (10.5 +/- 0.5464). This SNP was validated on larger data set by cleaved amplified polymorphic sequences (CAPS) by using DdeI. To scrutinize the functional consequences of p.K158I, 3D protein structure of SCD was predicted by homology modeling and this variation was found located in the vicinity of functional domain and a part of transmembrane helix of this membrane integrated protein. This is a first report toward genetic screening of SCD gene at molecular level in buffalo. This report illustrates the implication of SCD gene and in particular p.K158I variation, in imparting its effect on milk fat %age, which can be targeted in selection of superior dairy buffaloes.
机译:现代分子干预是育种具有优良遗传组成的动物的动力装置。这些科学的努力使我们朝着可持续的奶牛群发展,从产量和质量上提高了牛奶产量。已经在分子水平上对许多候选基因进行了解剖,并且已经在牛中鉴定了合适的遗传标记,但是到目前为止,这项工作尚未在水牛中得到验证。硬脂酰辅酶A去饱和酶(SCD)已成为牛奶脂肪含量的潜在候选基因。对SCD的基因组分析显示,通过对黄油脂肪百分比较低和较高的动物进行DNA测序,共鉴定出六个变异。经过统计分析,p.K158I的基因型AB可能与较高的乳脂率(10.5 +/- 0.5464)相关(P值<0.0001)。通过使用DdeI通过切割的扩增多态序列(CAPS)在更大的数据集上验证了此SNP。为了仔细研究p.K158I的功能后果,通过同源性建模预测了SCD的3D蛋白质结构,发现该变异位于该膜整合蛋白的功能结构域和部分跨膜螺旋附近。这是首次在水牛分子水平上对SCD基因进行遗传筛选的报告。该报告说明了SCD基因,特别是p.K158I变异在赋予其对乳脂率的影响中的意义,这可以作为选择优质乳牛的目标。

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