Members of the flowering plant family Cucurbitaceae harbor the largest known mitochondrial genomes. Here, we report the 1685-kb mitochondrial genome of cucumber (Cucumis sativus). We help solve a 30-year mystery about the origins of its large size by showing that it mainly reflects the proliferation of dispersed repeats, expansions of existing introns, and the acquisition of sequences from diverse sources, including the cucumber nuclear and chloroplast genomes, viruses, and bacteria. The cucumber genome has a novel structure for plant mitochondria, mapping as three entirely or largely autonomous circular chromosomes (lengths 1556, 84, and 45 kb) that vary in relative abundance over a twofold range. These properties suggest that the three chromosomes replicate independently of one another. The two smaller chromosomes are devoid of known functional genes but nonetheless contain diagnostic mitochondrial features. Paired-end sequencing conflicts reveal differences in recombination dynamics among chromosomes, for which an explanatory model is developed, as well as a large pool of low-frequency genome conformations, many of which may result from asymmetric recombination across intermediate-sized and sometimes highly divergent repeats. These findings highlight the promise of genome sequencing for elucidating the recombinational dynamics of plant mitochondrial genomes.
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http://dx.doi.org/10.1105/tpc.111.087189 | DOI Listing |
Genes Cells
January 2025
Advanced Biological Information Research Division, INAMORI Frontier Research Center, Kyushu University, Fukuoka, Japan.
Preimplantation embryonic development is orchestrated by dynamic changes in the proteome and transcriptome, regulated by mechanisms such as maternal-to-zygotic transition. Here, we employed label-free quantitative proteomics to comprehensively analyze proteome dynamics from germinal vesicle oocytes to blastocysts in mouse embryos. We identified 3490 proteins, including 715 consistently detected across all stages, revealing stage-specific changes in proteins associated with translation, protein modification, and mitochondrial metabolism.
View Article and Find Full Text PDFMitochondrial DNA B Resour
January 2025
Department of Chinese Materia Medica, Changchun Sci-Tech University, Changchun, PR China.
Hance is an important plant owing to its medicinal root and edible fruit, and extensively distributed in China. In this study, we reported the complete chloroplast genome of . The chloroplast genome was 156,335 bp in size with the overall GC content of 37.
View Article and Find Full Text PDFMitochondrial DNA B Resour
January 2025
East China Sea Ecological Center of the Ministry of Natural Resources, MNR, Shanghai, China.
In this study, the complete mitochondrial genome of was sequenced by Illumina high-throughput sequencing and its characteristics were analyzed. The mitogenome of is 16,635 bp long, and it encodes the standard set of 13 PCGs, 22 tRNA genes, and two rRNA genes. The mitogenome has a GC content of 29.
View Article and Find Full Text PDFMitochondrial DNA B Resour
January 2025
College of Pharmacy, Dali University, Dali, China.
, a significant folk medicinal plant, is utilized to treat a variety of ailments. In this study, we reported the complete chloroplast genome sequence of this species. The length of the complete chloroplast genome was 155,810 bp, included a pair of inverted repeat (IR) regions (26,340 bp), a large single-copy region (LSC, 84,853 bp), and a small single-copy region (SSC, 18,277 bp).
View Article and Find Full Text PDFWellcome Open Res
November 2024
Lancaster Environment Centre, Lancaster University, Lancaster, England, UK.
We present a genome assembly from a juvenile male (the white-throated dipper; Chordata; Aves; Passeriformes; Cinclidae). The genome sequence has a total length of 1,170.80 megabases.
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