Zhengzhou Subcenter of National Soybean Improvement Center/Key Laboratory of Oil Crops in Huanghuaihai Plains of the Ministry of Agriculture/Institute of Industrial Crops, Henan Academy of Agricultural Sciences, Zhengzhou, China.
Luoyang Academy of Agriculture and Forestry Sciences, Luoyang, China.
Mol Ecol Resour. 2019 Nov;19(6):1637-1646. doi: 10.1111/1755-0998.13068. Epub 2019 Sep 9.
Soybean cyst nematode (SCN, Heterodera glycines) is a major pest of soybean that is spreading across major soybean production regions worldwide. Increased SCN virulence has recently been observed in both the United States and China. However, no study has reported a genome assembly for H. glycines at the chromosome scale. Herein, the first chromosome-level reference genome of X12, an unusual SCN race with high infection ability, is presented. Using whole-genome shotgun (WGS) sequencing, Pacific Biosciences (PacBio) sequencing, Illumina paired-end sequencing, 10X Genomics linked reads and high-throughput chromatin conformation capture (Hi-C) genome scaffolding techniques, a 141.01-megabase (Mb) assembled genome was obtained with scaffold and contig N50 sizes of 16.27 Mb and 330.54 kilobases (kb), respectively. The assembly showed high integrity and quality, with over 90% of Illumina reads mapped to the genome. The assembly quality was evaluated using Core Eukaryotic Genes Mapping Approach and Benchmarking Universal Single-Copy Orthologs. A total of 11,882 genes were predicted using de novo, homolog and RNAseq data generated from eggs, second-stage juveniles (J2), third-stage juveniles (J3) and fourth-stage juveniles (J4) of X12, and 79.0% of homologous sequences were annotated in the genome. These high-quality X12 genome data will provide valuable resources for research in a broad range of areas, including fundamental nematode biology, SCN-plant interactions and co-evolution, and also contribute to the development of technology for overall SCN management.
大豆胞囊线虫(SCN, Heterodera glycines)是一种严重危害大豆的害虫,正在全球主要大豆产区蔓延。最近在美国和中国都观察到 SCN 的毒力增强。然而,目前尚无关于 H. glycines 染色体水平基因组组装的研究报告。本文报道了具有高侵染能力的异常 SCN 小种 X12 的首个染色体水平参考基因组。利用全基因组鸟枪法(WGS)测序、PacBio 测序、Illumina 配对末端测序、10X Genomics 连接读取和高通量染色质构象捕获(Hi-C)基因组支架技术,获得了一个 141.01 兆碱基(Mb)的组装基因组,其支架和 contig N50 大小分别为 16.27 Mb 和 330.54 千碱基(kb)。该组装具有较高的完整性和质量,超过 90%的 Illumina 读段可映射到基因组上。使用核心真核基因映射方法和基准通用单拷贝同源物评估组装质量。利用从头预测、同源预测和 X12 的卵、二龄幼虫(J2)、三龄幼虫(J3)和四龄幼虫(J4)生成的 RNAseq 数据,共预测到 11882 个基因,其中 79.0%的同源序列在基因组中得到注释。这些高质量的 X12 基因组数据将为广泛的研究领域提供有价值的资源,包括基础线虫生物学、SCN-植物相互作用和共同进化,也将有助于全面 SCN 管理技术的发展。