Supporting data for "Draft genome of the lined seahorse, Hippocampus erectus"

The lined seahorse, Hippocampus erectus, is an Atlantic species and mainly inhabits shallow sea-beds or coral reefs. It has become very popular in China for its wide use in traditional Chinese medicine. In order to improve the aquaculture yield of this valuable fish species, we are trying to develop...

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Hauptverfasser: Lin, Qiang, Qiu, Ying, Ruobo Gu, Xu, Meng, Li, Jia, Bian, Chao, Huixian Zhang, Qin, Geng, Yanhong Zhang, Luo, Wei, Jieming Chen, Xinxin You, Mingjun Fan, Sun, Min, Pao Xu, Byrappa Venkatesh, Junming Xu, Hongtuo Fu, Shi, Qiong
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creator Lin, Qiang
Qiu, Ying
Ruobo Gu
Xu, Meng
Li, Jia
Bian, Chao
Huixian Zhang
Qin, Geng
Yanhong Zhang
Luo, Wei
Jieming Chen
Xinxin You
Mingjun Fan
Sun, Min
Pao Xu
Byrappa Venkatesh
Junming Xu
Hongtuo Fu
Shi, Qiong
description The lined seahorse, Hippocampus erectus, is an Atlantic species and mainly inhabits shallow sea-beds or coral reefs. It has become very popular in China for its wide use in traditional Chinese medicine. In order to improve the aquaculture yield of this valuable fish species, we are trying to develop genomic resources for assistant selection in genetic breeding. Here, we provide whole genome sequencing, assembly and gene annotation of the lined seahorse, which can enrich genome resource and further application for its molecular breeding. A total of 174.6-Gb (Gigabase) raw DNA sequences were generated by the Illumina Hiseq2500 platform. The final assembly of the lined seahorse genome is around 458 Mb, representing 94% of the estimated genome size (489 Mb by k-mer analysis). The contig N50 and scaffold N50 reached 14.57 kb and 1.97 Mb respectively. Quality of the assembled genome was assessed by BUSCO with prediction of 85% of the known vertebrate genes and evaluated using the de novo assembled RNA-seq transcripts to prove a high mapping ratio (more than 99% transcripts could be mapped to the assembly). Using homology-based, de novo annotation and transcriptome-based prediction methods, we predicted 20,788 protein-coding genes in the generated assembly, which is similar to our previously reported gene number (23,458) of the tiger tail seahorse (H. comes). We report a draft genome of the lined seahorse. These generated genomic data are going to enrich genome resource of this economically important fish, and also provide insights into the genetic mechanisms of its iconic morphology and male pregnancy behavior.
doi_str_mv 10.5524/100298
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It has become very popular in China for its wide use in traditional Chinese medicine. In order to improve the aquaculture yield of this valuable fish species, we are trying to develop genomic resources for assistant selection in genetic breeding. Here, we provide whole genome sequencing, assembly and gene annotation of the lined seahorse, which can enrich genome resource and further application for its molecular breeding. A total of 174.6-Gb (Gigabase) raw DNA sequences were generated by the Illumina Hiseq2500 platform. The final assembly of the lined seahorse genome is around 458 Mb, representing 94% of the estimated genome size (489 Mb by k-mer analysis). The contig N50 and scaffold N50 reached 14.57 kb and 1.97 Mb respectively. Quality of the assembled genome was assessed by BUSCO with prediction of 85% of the known vertebrate genes and evaluated using the de novo assembled RNA-seq transcripts to prove a high mapping ratio (more than 99% transcripts could be mapped to the assembly). Using homology-based, de novo annotation and transcriptome-based prediction methods, we predicted 20,788 protein-coding genes in the generated assembly, which is similar to our previously reported gene number (23,458) of the tiger tail seahorse (H. comes). We report a draft genome of the lined seahorse. 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Quality of the assembled genome was assessed by BUSCO with prediction of 85% of the known vertebrate genes and evaluated using the de novo assembled RNA-seq transcripts to prove a high mapping ratio (more than 99% transcripts could be mapped to the assembly). Using homology-based, de novo annotation and transcriptome-based prediction methods, we predicted 20,788 protein-coding genes in the generated assembly, which is similar to our previously reported gene number (23,458) of the tiger tail seahorse (H. comes). We report a draft genome of the lined seahorse. 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It has become very popular in China for its wide use in traditional Chinese medicine. In order to improve the aquaculture yield of this valuable fish species, we are trying to develop genomic resources for assistant selection in genetic breeding. Here, we provide whole genome sequencing, assembly and gene annotation of the lined seahorse, which can enrich genome resource and further application for its molecular breeding. A total of 174.6-Gb (Gigabase) raw DNA sequences were generated by the Illumina Hiseq2500 platform. The final assembly of the lined seahorse genome is around 458 Mb, representing 94% of the estimated genome size (489 Mb by k-mer analysis). The contig N50 and scaffold N50 reached 14.57 kb and 1.97 Mb respectively. Quality of the assembled genome was assessed by BUSCO with prediction of 85% of the known vertebrate genes and evaluated using the de novo assembled RNA-seq transcripts to prove a high mapping ratio (more than 99% transcripts could be mapped to the assembly). Using homology-based, de novo annotation and transcriptome-based prediction methods, we predicted 20,788 protein-coding genes in the generated assembly, which is similar to our previously reported gene number (23,458) of the tiger tail seahorse (H. comes). We report a draft genome of the lined seahorse. These generated genomic data are going to enrich genome resource of this economically important fish, and also provide insights into the genetic mechanisms of its iconic morphology and male pregnancy behavior.</abstract><pub>GigaScience Database</pub><doi>10.5524/100298</doi><oa>free_for_read</oa></addata></record>
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subjects Annotation
Assembly
Genome
Genomic
Hippocampus erectus
title Supporting data for "Draft genome of the lined seahorse, Hippocampus erectus"
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