首页> 美国卫生研究院文献>International Journal of Molecular Sciences >The Mitochondrial Genome Assembly of Fennel (Foeniculum vulgare) Reveals Two Different atp6 Gene Sequences in Cytoplasmic Male Sterile Accessions
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The Mitochondrial Genome Assembly of Fennel (Foeniculum vulgare) Reveals Two Different atp6 Gene Sequences in Cytoplasmic Male Sterile Accessions

机译:茴香(Foeniculum Vulgare)的线粒体基因组组装揭示了两种不同的ATP6基因序列在细胞质雄性不育凝固中

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摘要

Cytoplasmic male sterility (CMS) has always aroused interest among researchers and breeders, being a valuable resource widely exploited not only to breed F1 hybrid varieties but also to investigate genes that control stamen and pollen development. With the aim of identifying candidate genes for CMS in fennel, we adopted an effective strategy relying on the comparison between mitochondrial genomes (mtDNA) of both fertile and sterile genotypes. mtDNA raw reads derived from a CMS genotype were assembled in a single molecule (296,483 bp), while a draft mtDNA assembly (166,124 nucleotides, 94 contigs) was performed using male fertile sample (MF) sequences. From their annotation and alignment, two atp6-like sequences were identified. atp6−, the putative mutant copy with a 300 bp truncation at the 5’-end, was found only in the mtDNA of CMS samples, while the wild type copy (atp6+) was detected only in the MF mtDNA. Further analyses (i.e., reads mapping and Sanger sequencing), revealed an atp6+ copy also in CMS samples, probably in the nuclear DNA. However, qPCRs performed on different tissues proved that, despite its availability, atp6+ is expressed only in MF samples, while apt6− mRNA was always detected in CMS individuals. In the light of these findings, the energy deficiency model could explain the pollen deficiency observed in male sterile flower. atp6− could represent a gene whose mRNA is translated into a not-fully functional protein leading to suboptimal ATP production that guarantees essential cellular processes but not a high energy demand process such as pollen development. Our study provides novel insights into the fennel mtDNA genome and its atp6 genes, and paves the way for further studies aimed at understanding their functional roles in the determination of male sterility.
机译:细胞质雄性不育(CMS)一直引起了研究人员和育种者之间的利益,是一种宝贵的资源广泛利用,不仅滋生F1杂交品种,而且研究基因控制雄蕊和花粉发育。与识别候选基因在CMS茴香的目的,我们通过一个有效的策略依赖于两个育和不育基因型的线粒体基因组(线粒体DNA)之间的比较。 mtDNA的原始读取衍生自CMS基因型在单个分子(296483 bp)的组装,而草案的mtDNA组件(166124个核苷酸,94个重叠群)使用雄性可育样品(MF)序列来进行。从他们的注释和比对,二ATP6样序列进行了鉴定。 atp6-,与在5'端具有300bp的截短的突变体推定复制,被发现仅在CMS样品的线粒体DNA,而野生型拷贝(ATP6 +)中的溶液在MF的mtDNA仅检测到。进一步的分析(即,读出映射和Sanger测序),揭示了一个基因atp6 +也复制CMS样品中,可能是在核DNA。然而,在不同组织上进行的QPCR证明,尽管其可用性,但ATP6 +仅在MF样品中表达,而APT6-mRNA总是在CMS个体中检测到。鉴于这些发现,能量缺乏模型可以解释在雄性无菌花中观察到的花粉缺乏。 atp6-可以代表一个基因,其mRNA翻译成一个不完全的功能蛋白,导致次优的ATP生产,保证必要的细胞过程,但不是高能源需求的过程中,如花粉发育。我们的研究为茴香MTDNA基因组及其ATP6基因提供了新的洞察力,并为进一步研究铺平了旨在了解其在雄性不育中的功能作用的进一步研究的方式。

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