4.6 Article

Analysis of differential gene expression by SRAP-cDNA in mantle tissue of Meretrix petechialis with different external shell color

期刊

ANIMAL BIOTECHNOLOGY
卷 32, 期 1, 页码 31-37

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/10495398.2019.1642907

关键词

Meretrix petechialis; SCAR; shell color; color related gene; SRAP-cDNA

资金

  1. Chinese Ministry of Science and Technology through the National Key Research and Development Program of China [2018YFD0901400]
  2. Modern Agro-industry Technology Research System [CARS-49]
  3. Dalian Youth Science and Technology Star Project Support Program [2016RQ065]

向作者/读者索取更多资源

In this study, gene expression of two shell colors in Meretrix petechialis was analyzed using sequence-related amplified polymorphism-cDNA to identify associated molecular markers. Through validation experiments, four markers were confirmed to be related to shell color in M. petechialis, providing a theoretical basis for further research on shell color regulation.
Gene expression of two shell colors in Meretrix petechialis were analyzed by sequence related amplified polymorphism-cDNA to screen the associated molecular markers. The two shell color genomes of M. petechialis were amplified using combinations of 30 primers; 11 pairs of primers showed differential fragments, and by recovery, cloning and sequencing, 18 different differential sequences were obtained. The sequencing results were analyzed by BlastX. Only one fragment shared high homology with memory-related protein-2 and TonB-dependent receptor was found that related to shell color. Sequence characterized amplified region primers were designed according to the difference sequences, and PCR amplification was performed in both 'yellow' and 'red' M. petechialis. Four pairs of differential primers were obtained. Using the population to verify the four markers (Me1-Em2, Me2-Em3, Me4-The Em11 and Me4-Em12), it was found that Me1-Em2 and Me2-Em3 were positive in the 'yellow' and Me4-The Em11 and Me4-Em12 were positive in the 'red' M. petechialis populations. All four markers can, therefore, be used as M. petechialis shell color related markers. This provides a theoretical basis for studying shell color regulation in M. petechialis, which may help to reveal the underlying molecular mechanisms more comprehensively.

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