首页> 外文期刊>Frontiers in Genetics >Draft Sequencing of the Heterozygous Diploid Genome of Satsuma ( Citrus unshiu Marc.) Using a Hybrid Assembly Approach
【24h】

Draft Sequencing of the Heterozygous Diploid Genome of Satsuma ( Citrus unshiu Marc.) Using a Hybrid Assembly Approach

机译:使用混合装配方法对萨摩( Citrus unshiu Marc。)杂合二倍体基因组进行测序的草案。

获取原文
           

摘要

Satsuma ( Citrus unshiu Marc.) is one of the most abundantly produced mandarin varieties of citrus, known for its seedless fruit production and as a breeding parent of citrus. De novo assembly of the heterozygous diploid genome of Satsuma (“Miyagawa Wase”) was conducted by a hybrid assembly approach using short-read sequences, three mate-pair libraries, and a long-read sequence of PacBio by the PLATANUS assembler. The assembled sequence, with a total size of 359.7 Mb at the N_(50)length of 386,404 bp, consisted of 20,876 scaffolds. Pseudomolecules of Satsuma constructed by aligning the scaffolds to three genetic maps showed genome-wide synteny to the genomes of Clementine, pummelo, and sweet orange. Gene prediction by modeling with MAKER-P proposed 29,024 genes and 37,970 mRNA; additionally, gene prediction analysis found candidates for novel genes in several biosynthesis pathways for gibberellin and violaxanthin catabolism. BUSCO scores for the assembled scaffold and predicted transcripts, and another analysis by BAC end sequence mapping indicated the assembled genome consistency was close to those of the haploid Clementine, pummel, and sweet orange genomes. The number of repeat elements and long terminal repeat retrotransposon were comparable to those of the seven citrus genomes; this suggested no significant failure in the assembly at the repeat region. A resequencing application using the assembled sequence confirmed that both kunenbo-A and Satsuma are offsprings of Kishu, and Satsuma is a back-crossed offspring of Kishu. These results illustrated the performance of the hybrid assembly approach and its ability to construct an accurate heterozygous diploid genome.
机译:萨摩(柑橘类)是柑桔生产最丰富的柑桔品种之一,以无核水果生产而闻名,是柑桔的育种亲本。萨摩杂种二倍体基因组从头开始的组装(“ Miyagawa Wase”)是使用PLATANUS组装程序使用PacBio的短读序列,三个伴侣对文库和长读序列,通过杂交装配方法进行的。组装的序列在N_(50)长度为386,404 bp时总大小为359.7 Mb,由20,876个支架组成。通过将支架与三个遗传图谱对齐而构建的萨摩假单分子显示出与克莱门汀,柚子和甜橙的基因组相关的全基因组同构。通过使用MAKER-P建模进行的基因预测提出了29,024个基因和37,970个mRNA。此外,基因预测分析发现了赤霉素和紫黄质分解代谢的几种生物合成途径中新基因的候选者。 BUSCO对组装的支架和预测的转录本进行评分,通过BAC末端序列作图进行的另一项分析表明,组装的基因组一致性接近单倍体Clementine,pummel和甜橙基因组。重复元件和长末端重复逆转录转座子的数量与七个柑橘基因组相当。这表明在重复区域的组装中没有明显的故障。使用组装序列进行的重测序应用证实,kunenbo-A和萨摩都是纪州的后代,而萨摩是纪州的回交后代。这些结果说明了杂交装配方法的性能及其构建准确的杂合二倍体基因组的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号