Yue Xin, Nie Qing, Xiao Guoqiang, Liu Baozhong
Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences, 7 Nanhai Road, Qingdao, 266071, China.
Mar Biotechnol (NY). 2015 Jun;17(3):364-74. doi: 10.1007/s10126-015-9625-0. Epub 2015 Feb 14.
Color polymorphism has received much attention due to its strong implications for speciation and adaptation. In contrast to body color, little is currently known about the molecular mechanism of shell color formation. This study represents the first analysis of the relationship between whole-scale gene expression and shell color variations in the marine bivalve mollusks via comparative transcriptome analyses. Three clam Meretrix meretrix strains with different and monotonous shell color patterns, which were developed by our 10-year artificial selection, combined with clams with nearly white shell color were used in the analyses. The results supported the idea that there was a relationship between gene expression and shell pigmentation in the clam M. meretrix, and complex signal transduction were involved. It was proposed that Notch signaling pathway played a crucial role in shell pigmentation in a gene-dosage dependent pattern and also potentially involved in the shell color patterning. Calcium signaling process may equally be implicated in shell color formation via activation of Notch pathway. Other differentially expressed genes (e.g., Myl, Mitf) potentially implicated in shell color pigmentation were also noticed. This study provides information on the expression profiles of clams with different shell color morphs and sheds light on color formation mechanism of shell.
由于颜色多态性对物种形成和适应性具有重要意义,因此备受关注。与体色不同,目前对贝壳颜色形成的分子机制了解甚少。本研究通过比较转录组分析,首次对海洋双壳贝类全基因组表达与贝壳颜色变异之间的关系进行了分析。分析使用了我们经过10年人工选择培育出的三种具有不同且单一贝壳颜色模式的文蛤菌株,以及贝壳颜色近乎白色的文蛤。结果支持了文蛤基因表达与贝壳色素沉着之间存在关联且涉及复杂信号转导的观点。研究表明,Notch信号通路在贝壳色素沉着中以基因剂量依赖模式发挥关键作用,并且可能也参与了贝壳颜色图案的形成。钙信号传导过程可能同样通过Notch通路的激活而参与贝壳颜色的形成。还发现了其他可能与贝壳颜色色素沉着有关的差异表达基因(如Myl、Mitf)。本研究提供了不同贝壳颜色形态文蛤的表达谱信息,并揭示了贝壳颜色形成机制。