Evidence map›Paper›PMID 41673554›Full record

ArticleBMC plant biology2026

De novo assembly of the first mitochondrial genome in Benincasa reveals structural dynamics and evolutionary insights in Cucurbitaceae.

Kun Zhang, Hong Zhang, Zhiyin Huang, Xiaohui Liu, Bin Zhang, Xiaofei Shan, Weiqiang Fan, Chaonan Wang

Abstract read
In one paragraph

Article in BMC plant biology, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 1 paper.

0numbers the graph read from it
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1citing papers in PubMed
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1 · What the graph read from it

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3 · Its place in the literature

Who cites it

1 citing paper in PubMed.

  1. TheGenes · 2026
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4 · The record

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5 · Who and what money

Authors and funding

8 authors.

Kun Zhang *College of Agriculture and Life Sciences, Shanxi Datong University, Datong, Shanxi, China.
Hong Zhang *Vegetable Research Institute, Tianjin Academy of Agricultural Sciences, Tianjin, China.
Zhiyin HuangVegetable Research Institute, Tianjin Academy of Agricultural Sciences, Tianjin, China.
Xiaohui LiuVegetable Research Institute, Tianjin Academy of Agricultural Sciences, Tianjin, China.
Bin ZhangVegetable Research Institute, Tianjin Academy of Agricultural Sciences, Tianjin, China.
Xiaofei ShanCollege of Agriculture and Life Sciences, Shanxi Datong University, Datong, Shanxi, China.
Weiqiang FanVegetable Research Institute, Tianjin Academy of Agricultural Sciences, Tianjin, China. 441737357@qq.com.
Chaonan WangVegetable Research Institute, Tianjin Academy of Agricultural Sciences, Tianjin, China. chaonan229@163.com.

Funding

Applied Basic Research Program of Datong Science and Technology 2025078Key Research and Development Program of Datong Science and Technology 2024014National College Students' Innovation and Entrepreneurship Training Program XDC2024003
6 · The paper itself

Abstract

backgroundBenincasa hispida Cogn. var. chieh-qua How, commonly referred to as the small wax gourd, is a widely cultivated cucurbit vegetable renowned for its considerable nutritional and medicinal benefits. However, the lack of reported mitochondrial genome (mitogenome) information for B. hispida severely restricts our understanding of the organelle evolution within the Cucurbitaceae family. This study bridges this knowledge gap by undertaking the sequencing, assembly, and comprehensive analysis of the complete mitogenome of B. hispida.

resultsUsing an integrated sequencing approach that combined Illumina and Nanopore technologies, we performed de novo assembly of the mitogenome of B. hispida, followed by comparative analyses with its close relatives. The assembled mitogenome was characterized by a linear structure composed of 18 contigs, with a total length of 431,446 bp and a GC content of 44.9%. Annotation revealed 72 mitochondrial genes, including 40 protein-coding genes (PCGs), 27 tRNA genes, 4 rRNA genes, and 1 pseudogene (rps14). Codon usage analysis showed a preference for codons that ended with A/T, and 488 RNA-editing sites, predominantly C-to-U conversions, were predicted, potentially enhancing the protein hydrophobicity and stability. A notable abundance of repetitive elements was observed, which comprised 106 simple sequence repeats, 20 tandem repeats, and 643 dispersed repeats, collectively accounting for 11.6% of the genome. Furthermore, we identified a significant presence of chloroplast-derived transfer fragments, with 56 homologous fragments that encompassed a length of 50,189 bp (11.6% of the mitogenome). A comparative evolutionary analysis revealed that most PCGs were under purifying selection, where cox1 and cox3 were highly conserved, while nad4 and rpl2 displayed signals indicative of positive selection. A nucleotide diversity analysis across 12 Cucurbitaceae species confirmed general sequence conservation, with rpl5 exhibiting the highest variability. Phylogenetic reconstruction based on 32 conserved mitochondrial PCGs from representative angiosperm species robustly placed B. hispida within the Cucurbitales clade, which revealed its closest relationship with Citrullus lanatus. Collinearity analysis further supported this close affinity, showing extensive homologous blocks between their mitogenomes, alongside structural rearrangements unique to B. hispida.

conclusionsThis study presents the first complete mitogenome resource for B. hispida, elucidating its structural complexity, evolutionary dynamics, and phylogenetic position. Prolific repeats and frequent intracellular gene transfers underscore their crucial roles in shaping the architecture and diversification of cucurbit mitogenomes. This genomic foundation paves the way for future research on molecular breeding, species identification, and evolutionary studies within the genus Benincasa and the broader Cucurbitaceae family.

Indexed as

CucurbitaceaeEvolution, MolecularGenome, MitochondrialGenome, PlantPhylogenyBenincasa hispidaComparative analysisCucurbitaceaeMitochondrial genomePhylogenetic evolution

Identifiers

PMID41673554
PMCPMC12997736

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