首页> 外文期刊>Horticulture research. >Chromosome-scale genome assembly of sweet cherry ( Prunus avium L.) cv. Tieton obtained using long-read and Hi-C sequencing
【24h】

Chromosome-scale genome assembly of sweet cherry ( Prunus avium L.) cv. Tieton obtained using long-read and Hi-C sequencing

机译:甜樱桃(Prunus Avium L.)CV的染色体级基因组组装。 Tieton使用长读和高c测序获得

获取原文
           

摘要

Sweet cherry (Prunus avium) is an economically significant fruit species in the genus Prunus. However, in contrast to other important fruit trees in this genus, only one draft genome assembly is available for sweet cherry, which was assembled using only Illumina short-read sequences. The incompleteness and low quality of the current sweet cherry draft genome limit its use in genetic and genomic studies. A high-quality chromosome-scale sweet cherry reference genome assembly is therefore needed. A total of 65.05?Gb of Oxford Nanopore long reads and 46.24?Gb of Illumina short reads were generated, representing ~190x and 136x coverage, respectively, of the sweet cherry genome. The final de novo assembly resulted in a phased haplotype assembly of 344.29?Mb with a contig N50 of 3.25?Mb. Hi-C scaffolding of the genome resulted in eight pseudochromosomes containing 99.59% of the bases in the assembled genome. Genome annotation revealed that more than half of the genome (59.40%) was composed of repetitive sequences, and 40,338 protein-coding genes were predicted, 75.40% of which were functionally annotated. With the chromosome-scale assembly, we revealed that gene duplication events contributed to the expansion of gene families for salicylic acid/jasmonic acid carboxyl methyltransferase and ankyrin repeat-containing proteins in the genome of sweet cherry. Four auxin-responsive genes (two GH3s and two SAURs) were induced in the late stage of fruit development, indicating that auxin is crucial for the sweet cherry ripening process. In addition, 772 resistance genes were identified and functionally predicted in the sweet cherry genome. The high-quality genome assembly of sweet cherry obtained in this study will provide valuable genomic resources for sweet cherry improvement and molecular breeding.
机译:甜樱桃(Prunus Avium)是Prunus属的经济上显着的果实物种。然而,与该属中的其他重要果树相反,只有一个基因组组件可以用于甜樱桃,仅使用Illumina短读序列组装。目前甜樱桃草案基因组的不完整性和低质量限制其在遗传和基因组研究中的用途。因此需要一种高质量的染色体级甜樱桃参考基因组组件。共有65.05克GB的牛津纳米孔长读数和46.24·GB的Illumina短读数,分别表示甜樱桃基因组的〜190x和136倍。最终的de novo组件导致分阶段的单倍型组装为344.29μm≤mb,具有3.25μmb的contig n50。基因组的Hi-C脚手架导致含有八个伪体染色体含有99.59%的组装基因组。基因组注释显示,超过一半的基因组(59.40%)由重复序列组成,预测了40,338个蛋白质编码基因,其中75.40%在功能上注释。随着染色体级组件,我们透露了基因重复事件导致甜樱桃基因组中的水杨酸/茉莉酸羧基甲基转移酶和含有ankyrin重复的蛋白质的基因家族的扩展。在水果发育晚期诱导四个毒素响应基因(两种GH3和两种畜脉),表明植物素对甜樱桃成熟过程至关重要。此外,在甜樱桃基因组中鉴定出772个抗性基因并在功能上预测。本研究中获得的甜樱桃的高质量基因组组装将为甜樱桃改善和分子育种提供有价值的基因组资源。

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