Chen H, Huang Y, Xue J, Luo K, Tang H, Zheng S, Xiong Y, Wu Y, Li J, Xuan R, Xiong R, Gong Y, Fang X, Wang L, Miao J, Zhou J, Tan H, Wang Y, Wu L, Ouyang J, Shen Y, Yan X
Jiangxi Key Laboratory of Bioprocess Engineering, College of Life Sciences, Jiangxi Science and Technology Normal University, Nanchang 330013, China.
Jiangxi Key Laboratory of Bioprocess Engineering, College of Life Sciences, Jiangxi Science and Technology Normal University, Nanchang 330013, China.
Animal. 2025 Jan;19(1):101374. doi: 10.1016/j.animal.2024.101374. Epub 2024 Nov 13.
The domestication of ducks represents a pivotal evolutionary shift from the unguided propagation of wild species to deliberate human-mediated selection, culminating in distinct behavioural, morphological, and physiological traits that differentiate domesticated ducks from their wild counterparts. This transition has yielded breeds with traits fine-tuned to specific economic roles, such as egg production, meat yield, or dual-purpose functionality. Duck domestication plays a significant role in poultry production globally, meeting the growing demand for eggs and meat in various regions. Here, we focus on the Jinding Duck (JDD), a breed renowned for its prolific egg-laying traits. Employing whole-genome resequencing data from 325 individuals across five Chinese indigenous duck breeds, we aimed to dissect the unique population structure and assess the genetic diversity within the JDD cohort. The findings reveal the distinct genetic heritage of JDD, diverged from other domesticated breeds, and show a relative paucity of genetic diversity. A salient discovery was a 200 kb genomic interval containing three genes (NCF2, SMG7, and ARPC5) with almost exclusive haplotypes, which were inherited from Anas platyrhynchos or Anas zonorhyncha, impacting the morphological attributes of JDD. The study highlights a c.28G>A non-synonymous mutation in the first exon of the LAMC1 gene, which is potentially influencing feather morphology in JDD. Our findings suggest that unique blue eggshell colouration in JDD is likely attributable to variations within the promoter element of the ABCG2 gene, distinguishing it from other breeds. Moreover, the MAP7 and FHL1 genes emerge as significant factors in the laying performance of JDD. These genetic insights are not only crucial for improving the JDD breed but also provide valuable information that could be applied to duck breeding programmes worldwide, helping enhance productivity and meet international demands for high-efficiency poultry breeds.
鸭子的驯化代表了一个关键的进化转变,即从野生物种的无引导繁殖到人类有意识的介导选择,最终形成了使家鸭与其野生同类区分开来的独特行为、形态和生理特征。这种转变产生了具有针对特定经济用途(如产蛋、产肉或两用功能)进行精细调整的性状的品种。鸭子驯化在全球家禽生产中发挥着重要作用,满足了各地区对蛋类和肉类不断增长的需求。在此,我们聚焦于金定鸭(JDD),这是一个以高产蛋性状而闻名的品种。利用来自五个中国本土鸭品种的325个个体的全基因组重测序数据,我们旨在剖析JDD群体独特的种群结构,并评估其遗传多样性。研究结果揭示了JDD与其他驯化品种不同的独特遗传谱系,并显示出相对缺乏遗传多样性。一个显著的发现是一个200 kb的基因组区间,包含三个基因(NCF2、SMG7和ARPC5),具有几乎排他的单倍型,这些单倍型是从绿头鸭或斑嘴鸭遗传而来,影响了JDD的形态特征。该研究突出了LAMC1基因第一个外显子中的一个c.28G>A非同义突变,这可能影响JDD的羽毛形态。我们的研究结果表明,JDD独特的蓝蛋壳颜色可能归因于ABCG2基因启动子元件内的变异,使其与其他品种区分开来。此外,MAP7和FHL1基因是JDD产蛋性能的重要影响因素。这些遗传学见解不仅对于改良JDD品种至关重要,还提供了可应用于全球鸭育种计划的有价值信息,有助于提高生产力并满足国际对高效家禽品种的需求。