Construction of a cDNA library for sea cucumber Acaudina leucoprocta and differential expression of ferritin peptide

Acaudina leucoprocta is an edible sea cucumber of economic interest that is widely distributed in China. Little information is available concerning the molecular genetics of this species although such knowledge would contribute to a better understanding of the optimal conditions for its aquaculture...

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Published inChinese journal of oceanology and limnology Vol. 34; no. 4; pp. 719 - 729
Main Author 周君 侯付景 李晔 苏秀榕 李太武 金春华
Format Journal Article
LanguageEnglish
Published Heidelberg Science Press 01.07.2016
Springer Nature B.V
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ISSN0254-4059
2096-5508
1993-5005
2523-3521
DOI10.1007/s00343-016-5010-8

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Summary:Acaudina leucoprocta is an edible sea cucumber of economic interest that is widely distributed in China. Little information is available concerning the molecular genetics of this species although such knowledge would contribute to a better understanding of the optimal conditions for its aquaculture and its mechanisms of defense against disease. Therefore, we constructed a c DNA library and, based on bioinformatics analysis of the sequences, the functions of 75% of the c DNAs were identifi ed, including those involved in cell structure, energy metabolism, mitochondrial function, and signal transduction pathways. Approximately 25% of genes in the library were unmatched. The gene for A. leucoprocta ferritin was also cloned. The predicted amino-acid sequence of ferritin displayed signifi cant homology with other sea-cucumber counterparts but indicated that it was a new member of the ferritin family. Semiquantitative real-time RT-PCR indicated the highest levels of ferritin m RNA expression in the intestine. A polyclonal antibody of ferritin was also produced. These data provide a set of molecular tools essential for further studies of the functions of ferritin protein in A. leucoprocta.
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Acaudina leucoprocta is an edible sea cucumber of economic interest that is widely distributed in China. Little information is available concerning the molecular genetics of this species although such knowledge would contribute to a better understanding of the optimal conditions for its aquaculture and its mechanisms of defense against disease. Therefore, we constructed a c DNA library and, based on bioinformatics analysis of the sequences, the functions of 75% of the c DNAs were identifi ed, including those involved in cell structure, energy metabolism, mitochondrial function, and signal transduction pathways. Approximately 25% of genes in the library were unmatched. The gene for A. leucoprocta ferritin was also cloned. The predicted amino-acid sequence of ferritin displayed signifi cant homology with other sea-cucumber counterparts but indicated that it was a new member of the ferritin family. Semiquantitative real-time RT-PCR indicated the highest levels of ferritin m RNA expression in the intestine. A polyclonal antibody of ferritin was also produced. These data provide a set of molecular tools essential for further studies of the functions of ferritin protein in A. leucoprocta.
Acaudina leucoprocta;cDNA library;ferritin;real-time RT-PCR;polyclonal antibody
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ISSN:0254-4059
2096-5508
1993-5005
2523-3521
DOI:10.1007/s00343-016-5010-8