The cytonuclear interactions during grapevine domestication

IF 9.3 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Ting Hou, Yanshuai Xu, Yang Dong, Jin Yao, Tianhao Zhang, Lianzhu Zhou, Xiangnian Su, Yi Zhang, Yingchun Zhang, Cheng Chen, Xiaoya Shi, Yuting Liu, Jiacui Li, Mengrui Du, Xinyue Fang, Sheng Yan, Sifan Yang, Wenrui Wang, Zhuyifu Chen, Siqi Qiao, Bilal Ahmad, Xiaodong Xu, Yanling Peng, Hua Xiao, Zhongxin Jin, Xiangpeng Leng, Cong Tan, Ling Tian, Chaochao Li, Yongfeng Zhou
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引用次数: 0

Abstract

DNAs from the cytoplasmic genomes often communicate with the nuclear genome during regulation, development, and evolution. However, the dynamics of cytonuclear interaction during crop domestication have still been rarely investigated. Here, we examine cytonuclear interactions during grapevine domestication using pan-mitogenome, pan-plastome, and haplotype-resolved nuclear genomes, all assembled from long-read sequences across 33 wild and domesticated grapevine accessions. Structural variation shaped the mitogenomic variation in gene contents, leading to duplications of three specific genes during grapevine domestication (one cox and two rpl genes). Extensive genomic signals of cytonuclear interactions were detected, including a total of 212–431 nuclear–mitochondrial segments (NUMTs) and 95–205 nuclear–plastid segments (NUPTs). These results showed that NUMTs were under strong selection and were more abundant in cultivated grapes, whereas NUPTs dominated in wild grapes, indicating the evolutionary trajectories of cytonuclear interactions during grape domestication. Through Genome-Wide Association Study (GWAS), we identified 84 candidate genes associated with mitochondrial–nuclear genome interactions. Among these, the PFD1 gene acts as a signaling regulator, modulating specific signaling pathways regulated by the mitochondria. Interestingly, there are significantly more cytonuclear interaction genes near NUMTs than in other genomic regions, suggesting NUMT-mediated interactions between the nuclear and mitochondrial genomes. Overall, our study provides evidence that NUMTs promote cytonuclear interaction during grapevine domestication, offering new insight into the impact of cytonuclear interactions on plant evolution, genetics, and breeding.

Abstract Image

葡萄驯化过程中的细胞核相互作用。
来自细胞质基因组的dna在调控、发育和进化过程中经常与核基因组交流。然而,在作物驯化过程中,细胞核相互作用的动力学研究仍然很少。在这里,我们使用泛有丝分裂基因组、泛质体和单倍型核基因组来研究葡萄驯化过程中的细胞核相互作用,这些基因组都是由33个野生和驯化葡萄品种的长读序列组装而成的。结构变异塑造了基因含量的有丝分裂基因组变异,导致葡萄驯化过程中三个特定基因(一个cox基因和两个rpl基因)的重复。检测到广泛的细胞核相互作用的基因组信号,包括212-431个核线粒体片段(numt)和95-205个核质体片段(nupt)。这些结果表明,在栽培葡萄中,numt具有较强的选择性,且数量较多,而在野生葡萄中,nupt占主导地位,这表明了葡萄驯化过程中细胞核相互作用的进化轨迹。通过全基因组关联研究(GWAS),我们确定了84个与线粒体-核基因组相互作用相关的候选基因。其中,PFD1基因作为信号调节因子,调节线粒体调控的特定信号通路。有趣的是,numt附近的细胞核相互作用基因明显多于其他基因组区域,这表明numt介导了核基因组和线粒体基因组之间的相互作用。总之,我们的研究提供了numt在葡萄驯化过程中促进细胞核相互作用的证据,为细胞核相互作用对植物进化、遗传和育种的影响提供了新的见解。
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来源期刊
Journal of Integrative Plant Biology
Journal of Integrative Plant Biology 生物-生化与分子生物学
CiteScore
18.00
自引率
5.30%
发文量
220
审稿时长
3 months
期刊介绍: Journal of Integrative Plant Biology is a leading academic journal reporting on the latest discoveries in plant biology.Enjoy the latest news and developments in the field, understand new and improved methods and research tools, and explore basic biological questions through reproducible experimental design, using genetic, biochemical, cell and molecular biological methods, and statistical analyses.
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