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转录组揭示影响鸟类身体背腹模式的多个色素沉着基因。

Transcriptome Reveals Multi Pigmentation Genes Affecting Dorsoventral Pattern in Avian Body.

作者信息

Xi Yang, Liu Hehe, Li Liang, Xu Qian, Liu Yisi, Wang Lei, Ma Shengchao, Wang Jianmei, Bai Lili, Zhang Rongping, Han Chunchun

机构信息

Farm Animal Genetic Resources Exploration and Innovation Key Laboratory of Sichuan Province, College of Animal Science and Technology, Sichuan Agricultural University, Chengdu, China.

出版信息

Front Cell Dev Biol. 2020 Oct 1;8:560766. doi: 10.3389/fcell.2020.560766. eCollection 2020.

Abstract

Certain animals exhibit a special dorsoventral pattern with a lighter ventral side compared to the dorsal one and this phenomenon was preserved in the long-term evolution process. Birds also retain this trait. Recently, Inaba et al. (2019) found that (agouti signal protein) regulated interconversion between different melanocyte types leads to dorsal stripe pattern, which may partly explain the birds' dorsoventral plumage color difference. In this study, we used the embryo samples of LBM (light brown mottling) ducks () with white ventral and dark dorsal body parts to investigate the mechanism of dorsoventral color variation. Firstly, melanin deposition process of duck embryos was investigated. The result indicated that E13 and E16 were the active stages of melanin synthesis. Moreover, the melanin deposition on the dorsum of LBM ducks was higher than that on the ventral side throughout. Then, RNA-seq was conducted for the dorsal and ventral skin tissues from E7 (early), E13 (middle) and E19 (late) of LBM ducks. Expression pattern analysis showed that the mRNA expression of most melanin synthesis related genes were at the highest level at E13, which was consistent with the section analysis. A correlation was found between melanogenesis pathway and dorsoventral color difference by co-expression analysis. In the DEG (differentially expressed gene) analysis, we added the dorsal skin transcriptome of embryonic white and black duck of same subspecies () for horizontal comparison. The results showed that 8 melanogenesis related genes (, , , , , , , and ) were the common DEGs (Differential expressed genes) in the comparisons of body parts and breeds suggesting that the underlying molecular regulatory mechanism of dorsoventral plumage color difference may be similar to that of albino and melanic duck, which were caused by the different expression of multiple genes in melanin synthesis pathway. In addition, the molecular regulation of melanin synthesis pathway in the dorsal and ventral side of LBM ducks was analyzed. In this pathway, , , , and have differential mRNA expression. , as an upstream gene in this pathway, was likely to play a decisive role in determining the dorsoventral plumage pattern.

摘要

某些动物呈现出一种特殊的背腹模式,其腹侧比背侧颜色浅,这种现象在长期进化过程中得以保留。鸟类也保留了这一特征。最近,稻叶等人(2019年)发现,刺鼠信号蛋白调节不同黑素细胞类型之间的相互转化会导致背部条纹图案,这可能部分解释了鸟类背腹羽毛颜色差异。在本研究中,我们使用了浅褐 mottling(LBM)鸭(腹白背黑)的胚胎样本,以研究背腹颜色变化的机制。首先,研究了鸭胚胎的黑色素沉积过程。结果表明,E13和E16是黑色素合成的活跃阶段。此外,LBM鸭背部的黑色素沉积始终高于腹侧。然后,对LBM鸭E7(早期)、E13(中期)和E19(晚期)的背侧和腹侧皮肤组织进行了RNA测序。表达模式分析表明,大多数与黑色素合成相关基因的mRNA表达在E13时达到最高水平,这与切片分析结果一致。通过共表达分析发现黑色素生成途径与背腹颜色差异之间存在相关性。在差异表达基因(DEG)分析中,我们添加了同一亚种()胚胎白鸭和黑鸭的背侧皮肤转录组进行横向比较。结果表明,8个与黑色素生成相关的基因(,,,,,,,和)是身体部位和品种比较中的共同差异表达基因,这表明背腹羽毛颜色差异的潜在分子调控机制可能与白化鸭和黑羽鸭相似,是由黑色素合成途径中多个基因的不同表达引起的。此外,还分析了LBM鸭背侧和腹侧黑色素合成途径的分子调控。在该途径中,,,,和具有不同的mRNA表达。作为该途径中的上游基因,可能在决定背腹羽毛图案方面起决定性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25e9/7559526/8b3b7fa1e875/fcell-08-560766-g001.jpg

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