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对伽马射线辐照诱导的柑橘品种IrM2基因组结构变异进行表征。

Characterizing the structural variations in the genome of the mandarin variety, IrM2, induced by gamma irradiation.

作者信息

Nakandala Upuli, Furtado Agnelo, Kharabian Masouleh Ardashir, Smith Malcolm W, Mason Patrick, Henry Robert J

机构信息

Queensland Alliance for Agriculture and Food Innovation, University of Queensland, Brisbane, Australia.

ARC Centre of Excellence for Plant Success in Nature and Agriculture, University of Queensland, Brisbane, Australia.

出版信息

Plant Biotechnol J. 2025 Sep;23(9):3814-3823. doi: 10.1111/pbi.70205. Epub 2025 Jun 15.

Abstract

Fruits with few or no seeds are favoured by consumers because they provide an improved eating experience alongside other important quality traits such as taste and shelf-life. Gamma irradiation has been widely used to induce favourable trait changes in plants, including a reduction in seediness. For this reason, it has been extremely important in the development of new commercial citrus cultivars. The variety IrM2 is a mutant derived from the mandarin variety, Murcott, by gamma irradiation. IrM2 has improved consumer and economic appeal due to its earlier fruit maturity time, low number of seeds and improved external skin colour compared with its progenitor. Here, we developed high-quality, haplotype-resolved genomes for Murcott and IrM2, using PacBio HiFi and Hi-C sequencing. The assemblies ranged from 329 to 344 Mb, with N50s of more than 30 Mb, and more than 98% assembly and annotation completeness for the four haplotypes. Duplications, inversions, translocations and INDELs were the predominant types of mutations found in IrM2. Two large heterozygous inversions (3.1 Mb in Chr3 and 8.6 Mb in Chr6) and one large heterozygous, non-reciprocal translocation (between Chr3 and Chr6) were prominent in IrM2 and may be the causes of the reduced seeds. Variations such as insertions and deletions were also found, resulting in additions and loss of genes in IrM2. The genes lost in IrM2 were associated with many processes, including hormone signalling, flowering, DNA transcription, reproduction, gene expression and transmembrane transport. These high-quality genomes contribute to a deeper understanding of how irradiation affects plant genomes.

摘要

种子少或无籽的水果受到消费者青睐,因为它们除了具有诸如口感和保质期等其他重要品质特征外,还能带来更好的食用体验。伽马射线辐照已被广泛用于诱导植物产生有利的性状变化,包括减少种子数量。因此,它在新型商业柑橘品种的开发中极其重要。IrM2品种是通过伽马射线辐照从默科特柑橘品种衍生而来的突变体。与亲本相比,IrM2果实成熟时间更早、种子数量少且外皮颜色更佳,具有更高的消费者吸引力和经济价值。在此,我们利用PacBio HiFi和Hi-C测序技术,为默科特和IrM2构建了高质量的、单倍型解析基因组。组装后的基因组大小在329至344兆字节之间,N50超过30兆字节,四种单倍型的组装和注释完整性超过98%。重复、倒位、易位和插入缺失是在IrM2中发现的主要突变类型。两个大的杂合倒位(3号染色体上3.1兆字节和6号染色体上8.6兆字节)和一个大的杂合非相互易位(3号染色体和6号染色体之间)在IrM2中很突出,可能是种子减少的原因。还发现了插入和缺失等变异,导致IrM2中基因的增加和丢失。IrM2中丢失的基因与许多过程相关,包括激素信号传导、开花、DNA转录、繁殖、基因表达和跨膜运输。这些高质量的基因组有助于更深入地了解辐照如何影响植物基因组。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b49/12392971/2b4e10f07c73/PBI-23-3814-g002.jpg

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