Wageningen University and Research, P.O. Box 338, 6700 AH, Wageningen, The Netherlands.
Hybrid Turkeys, 650 Riverbend Drive Suite C, Kitchener, ON N2K 3S2, Canada.
Gigascience. 2022 Dec 28;12. doi: 10.1093/gigascience/giad051. Epub 2023 Jul 21.
The domesticated turkey (Meleagris gallopavo) is a species of significant agricultural importance and is the second largest contributor, behind broiler chickens, to world poultry meat production. The previous genome is of draft quality and partly based on the chicken (Gallus gallus) genome. A high-quality reference genome of M. gallopavo is essential for turkey genomics and genetics research and the breeding industry.
By adopting the trio-binning approach, we were able to assemble a high-quality chromosome-level F1 assembly and 2 parental haplotype assemblies, leveraging long-read technologies and genome-wide chromatin interaction data (Hi-C). From a total of 40 chromosomes (2n = 80), we captured 35 chromosomes in a single scaffold, showing much improved genome completeness and continuity compared to the old assembly build. The 3 assemblies are of higher quality than the previous draft quality assembly and comparable to the chicken assemblies (GRCg7) shown by the largest contig N50 (26.6 Mb) and comparable BUSCO gene set completeness scores (96-97%). Comparative analyses confirm a previously identified large inversion of around 19 Mbp on the Z chromosome not found in other Galliformes. Structural variation between the parent haplotypes was identified, which poses potential new target genes for breeding.
We contribute a new high-quality turkey genome at the chromosome level, benefiting turkey genetics and other avian genomics research as well as the turkey breeding industry.
驯化火鸡(Meleagris gallopavo)是一种具有重要农业意义的物种,是仅次于肉鸡的世界第二大家禽肉类生产贡献者。以前的基因组质量较差,部分基于鸡(Gallus gallus)基因组。高质量的 M. gallopavo 参考基因组对于火鸡基因组学和遗传学研究以及养殖行业至关重要。
通过采用三系 bin 方法,我们能够组装出高质量的 F1 染色体水平组装体和 2 个亲本单倍型组装体,利用长读长技术和全基因组染色质相互作用数据(Hi-C)。在总共 40 条染色体(2n = 80)中,我们在单个支架中捕获了 35 条染色体,与旧组装相比,基因组完整性和连续性有了很大提高。这 3 个组装体的质量优于以前的草图质量组装体,与鸡组装体(GRCg7)相当,最大连续体 N50(26.6 Mb)和可比的 BUSCO 基因集完整性评分(96-97%)。比较分析证实了以前在 Z 染色体上发现的约 19 Mbp 的大型倒位,而在其他鸡形目动物中没有发现。在亲本单倍型之间发现了结构变异,这为育种提供了潜在的新靶基因。
我们提供了一个新的高质量火鸡染色体水平基因组,这将有益于火鸡遗传学和其他禽类基因组学研究以及火鸡养殖行业。