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端粒到端粒单倍型解析参考基因组揭示了三倍体卡文迪什香蕉的亚基因组分化和抗病性。

Telomere-to-telomere haplotype-resolved reference genome reveals subgenome divergence and disease resistance in triploid Cavendish banana.

作者信息

Huang Hui-Run, Liu Xin, Arshad Rida, Wang Xu, Li Wei-Ming, Zhou Yongfeng, Ge Xue-Jun

机构信息

Key Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China.

South China National Botanical Garden, Guangzhou 510650, China.

出版信息

Hortic Res. 2023 Aug 1;10(9):uhad153. doi: 10.1093/hr/uhad153. eCollection 2023 Sep.

Abstract

Banana is one of the most important crops of the world. Cavendish-type bananas, which have a monospecific origin (AAA), account for around half of the global banana production, thereby are of great significance for human societies. However, until now, the high-quality haplotype-resolved reference genome was still undecoded for banana cultivars. Here, we reported the telomere-to-telomere (T2T) and haplotype-resolved reference genome of 'Baxijiao' (Cavendish) consisting of three haploid assemblies. The sizes of the three haploid assemblies were estimated to be 477.16 Mb, 477.18 Mb, and 469.57 Mb, respectively. Although with monospecific origins, the three haploid assemblies showed great differences with low levels of sequence collinearity. Several large reciprocal translocations were identified among chromosomes 1, 4, and 7. An expansion of gene families that might affect fruit quality and aroma was detected, such as those belonging to sucrose/disaccharide/oligosaccharide catabolic processes, sucrose metabolic process, starch metabolic process, and aromatic compound biosynthetic process. Besides, an expansion of gene families related to anther and pollen development was observed, which could be associated with parthenocarpy and sterility of the Cavendish cultivar. Finally, much fewer resistance genes were identified in 'Baxijiao' than in , particularly in the gene clusters in chromosomes 3 and 10, providing potential targets to explore for molecular analysis of disease resistance in banana. This T2T haplotype-resolved reference genome will thus be a valuable genetic resource for biological studies, molecular breeding, and genetic improvement of banana.

摘要

香蕉是世界上最重要的作物之一。卡文迪什型香蕉起源单一(AAA),占全球香蕉产量的一半左右,因此对人类社会具有重要意义。然而,到目前为止,香蕉品种的高质量单倍型解析参考基因组仍未解码。在此,我们报道了由三个单倍体组装体组成的‘巴西蕉’(卡文迪什)从端粒到端粒(T2T)的单倍型解析参考基因组。三个单倍体组装体的大小估计分别为4.7716亿碱基对、4.7718亿碱基对和4.6957亿碱基对。尽管起源单一,但这三个单倍体组装体显示出很大差异,序列共线性水平较低。在1号、4号和7号染色体之间发现了几个大的相互易位。检测到可能影响果实品质和香气的基因家族扩张,例如那些属于蔗糖/二糖/寡糖分解代谢过程、蔗糖代谢过程、淀粉代谢过程和芳香化合物生物合成过程的基因家族。此外,还观察到与花药和花粉发育相关的基因家族扩张,这可能与卡文迪什品种的单性结实和不育有关。最后,在‘巴西蕉’中鉴定出的抗性基因比[未提及的品种]少得多,特别是在3号和10号染色体的基因簇中,这为探索香蕉抗病性的分子分析提供了潜在靶点。因此,这个T2T单倍型解析参考基因组将成为香蕉生物学研究、分子育种和遗传改良的宝贵遗传资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75e7/10493638/9efb996c7334/uhad153f1.jpg

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