EST-based identification of genes expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus

The hypothalamus is involved in many physiological functions in teleosts. To accelerate the molecular analysis of hypothalamic functions, a list of transcripts expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus, was compiled using the expressed sequence tag (EST) strategy. Of 16...

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Published inBiochemical and biophysical research communications Vol. 316; no. 2; pp. 523 - 527
Main Authors Shiue, Yow-Ling, Wang, Li-Hsueh, Chao, Ting-Ying, Lin, Chorng-Horng, Tsai, Ching-Lin
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 02.04.2004
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ISSN0006-291X
1090-2104
DOI10.1016/j.bbrc.2004.02.079

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Abstract The hypothalamus is involved in many physiological functions in teleosts. To accelerate the molecular analysis of hypothalamic functions, a list of transcripts expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus, was compiled using the expressed sequence tag (EST) strategy. Of 161 clones, 130 clones were unique genes and 31 clones were found to be redundant. Of 130 unique genes, 32.3% (42/130 ESTs) were identified as known genes and 67.7% (88/130 ESTs) as unknown genes. The functional categorization of the known genes was analyzed. Bioinformatic analysis revealed that 62 of 88 unknown genes (62/130 ESTs, 47.7%) showed a significant homology to neither nucleotide nor translated peptide sequences in the public database. These genes might be particularly expressed in the tilapia hypothalamus.
AbstractList The hypothalamus is involved in many physiological functions in teleosts. To accelerate the molecular analysis of hypothalamic functions, a list of transcripts expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus, was compiled using the expressed sequence tag (EST) strategy. Of 161 clones, 130 clones were unique genes and 31 clones were found to be redundant. Of 130 unique genes, 32.3% (42/130 ESTs) were identified as known genes and 67.7% (88/130 ESTs) as unknown genes. The functional categorization of the known genes was analyzed. Bioinformatic analysis revealed that 62 of 88 unknown genes (62/130 ESTs, 47.7%) showed a significant homology to neither nucleotide nor translated peptide sequences in the public database. These genes might be particularly expressed in the tilapia hypothalamus.The hypothalamus is involved in many physiological functions in teleosts. To accelerate the molecular analysis of hypothalamic functions, a list of transcripts expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus, was compiled using the expressed sequence tag (EST) strategy. Of 161 clones, 130 clones were unique genes and 31 clones were found to be redundant. Of 130 unique genes, 32.3% (42/130 ESTs) were identified as known genes and 67.7% (88/130 ESTs) as unknown genes. The functional categorization of the known genes was analyzed. Bioinformatic analysis revealed that 62 of 88 unknown genes (62/130 ESTs, 47.7%) showed a significant homology to neither nucleotide nor translated peptide sequences in the public database. These genes might be particularly expressed in the tilapia hypothalamus.
The hypothalamus is involved in many physiological functions in teleosts. To accelerate the molecular analysis of hypothalamic functions, a list of transcripts expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus, was compiled using the expressed sequence tag (EST) strategy. Of 161 clones, 130 clones were unique genes and 31 clones were found to be redundant. Of 130 unique genes, 32.3% (42/130 ESTs) were identified as known genes and 67.7% (88/130 ESTs) as unknown genes. The functional categorization of the known genes was analyzed. Bioinformatic analysis revealed that 62 of 88 unknown genes (62/130 ESTs, 47.7%) showed a significant homology to neither nucleotide nor translated peptide sequences in the public database. These genes might be particularly expressed in the tilapia hypothalamus.
The hypothalamus is involved in many physiological functions in teleosts. To accelerate the molecular analysis of hypothalamic functions, a list of transcripts expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus, was compiled using the expressed sequence tag (EST) strategy. Of 161 clones, 130 clones were unique genes and 31 clones were found to be redundant. Of 130 unique genes, 32.3% (42/130 ESTs) were identified as known genes and 67.7% (88/130 ESTs) as unknown genes. The functional categorization of the known genes was analyzed. Bioinformatic analysis revealed that 62 of 88 unknown genes (62/130 ESTs, 47.7%) showed a significant homology to neither nucleotide nor translated peptide sequences in the public database. These genes might be particularly expressed in the tilapia hypothalamus.
Author Tsai, Ching-Lin
Shiue, Yow-Ling
Lin, Chorng-Horng
Chao, Ting-Ying
Wang, Li-Hsueh
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Keywords Tilapia
Hypothalamus
Oreochromis mossambicus
Expressed sequence tags
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Snippet The hypothalamus is involved in many physiological functions in teleosts. To accelerate the molecular analysis of hypothalamic functions, a list of transcripts...
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SubjectTerms Amino Acid Sequence
Animals
Expressed Sequence Tags
Gene Expression
Gene Expression Profiling
Gene Library
Hypothalamus
Hypothalamus - metabolism
Oreochromis mossambicus
Proteins - classification
Proteins - genetics
Tilapia
Tilapia - genetics
Tilapia - metabolism
Title EST-based identification of genes expressed in the hypothalamus of adult tilapia, Oreochromis mossambicus
URI https://dx.doi.org/10.1016/j.bbrc.2004.02.079
https://www.ncbi.nlm.nih.gov/pubmed/15020248
https://www.proquest.com/docview/17978661
https://www.proquest.com/docview/71756840
Volume 316
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