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基因组和转录组分析为深入了解芽变对桃的复杂影响提供了新视角。

Genomic and transcriptomic analyses provide new insights into the complex impacts of bud mutation in peach.

作者信息

Rui Guo, Ping Zhou, Shaobin Yan, Guang Jin, Yong Li

机构信息

Fruit Research Institute, Fujian Academy of Agricultural Sciences, Fuzhou, 350013, China.

Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences, Zhengzhou, 450009, China.

出版信息

Sci Rep. 2025 Jul 2;15(1):22951. doi: 10.1038/s41598-025-07225-w.

Abstract

Bud mutation is an important solution in fruit breeding, but the mechanism of bud mutation remains largely unknown. Here, we present the phenotypic, genomic, and transcriptomic analyses of a peach hairless bud mutation. Phenotypic analyses found an increase in the soluble solid content (SSC), fructose, and glucose, as well as a decrease in fruit weight, sucrose, and sorbitol in hairless bud mutation. Genomic analyses showed a higher number of SNPs, indels, SVs, and TEs in the hairless bud mutation than the wild type. Moreover, most of the variations were heterozygous. An LTR transpose element in the third exon of PpMYB25 was identified in the hairless mutation, but was absent in the wild type, underlying the hairless phenotype. A total of 660 differentially expressed genes were identified in mutation, including 254 were upregulated and 406 were downregulated. The functional annotation of differentially expressed genes revealed two sucrose synthase gene PpSUS3 and PpSUS4, as well as two nitrate transporter gene PpNRT2.5 and PpNRT1, implying the candidates underlying the increase in the SSC and decrease in the fruit weight in mutation. Our results elucidated the complicated impacts of bud mutation on the genome and transcriptome provide new insights into, providing new insights into the molecular mechanism of somatic mutation in plants.

摘要

芽变是果树育种中的一种重要途径,但芽变的机制在很大程度上仍不清楚。在此,我们展示了对一个桃无毛芽变的表型、基因组和转录组分析。表型分析发现,无毛芽变中可溶性固形物含量(SSC)、果糖和葡萄糖增加,而果实重量、蔗糖和山梨醇减少。基因组分析表明,无毛芽变中的单核苷酸多态性(SNP)、插入缺失(indel)、结构变异(SV)和转座元件(TE)数量比野生型多。此外,大多数变异是杂合的。在无毛突变体中鉴定出PpMYB25第三个外显子中的一个长末端重复转座元件,而野生型中不存在,这是无毛表型的基础。在突变体中总共鉴定出660个差异表达基因,其中254个上调,406个下调。差异表达基因的功能注释揭示了两个蔗糖合酶基因PpSUS3和PpSUS4,以及两个硝酸盐转运蛋白基因PpNRT2.5和PpNRT1,这意味着它们是突变体中SSC增加和果实重量减少的潜在候选基因。我们的结果阐明了芽变对基因组和转录组的复杂影响,为植物体细胞突变的分子机制提供了新的见解。

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