De novo assembly of the complete mitochondrial genome of sweet potato (Ipomoea batatas [L.] Lam) revealed the existence of homologous conformations generated by the repeat-mediated recombination

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作者
Zhijian Yang
Yang Ni
Zebin Lin
Liubin Yang
Guotai Chen
Nuerla Nijiati
Yunzhuo Hu
Xuanyang Chen
机构
[1] Fujian Agriculture and Forestry University,Key Laboratory of Crop Biotechnology
[2] Fujian Province Universities,College of Agriculture
[3] Fujian Agriculture and Forestry University,undefined
[4] Fujian Provincial Key Laboratory of Crop Breeding by Design,undefined
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Mitochondrial genome; De novo assembly; Repeat-mediated recombination; RNA editing events;
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摘要
Sweet potato (Ipomoea batatas [L.] Lam) is an important food crop, an excellent fodder crop, and a new type of industrial raw material crop. The lack of genomic resources could affect the process of industrialization of sweet potato. Few detailed reports have been completed on the mitochondrial genome of sweet potato. In this research, we sequenced and assembled the mitochondrial genome of sweet potato and investigated its substructure. The mitochondrial genome of sweet potato is 270,304 bp with 23 unique core genes and 12 variable genes. We detected 279 pairs of repeat sequences and found that three pairs of direct repeats could mediate the homologous recombination into four independent circular molecules. We identified 70 SSRs in the whole mitochondrial genome of sweet potato. The longest dispersed repeat in mitochondrial genome was a palindromic repeat with a length of 915 bp. The homologous fragments between the chloroplast and mitochondrial genome account for 7.35% of the mitochondrial genome. We also predicted 597 RNA editing sites and found that the rps3 gene was edited 54 times, which occurred most frequently. This study further demonstrates the existence of multiple conformations in sweet potato mitochondrial genomes and provides a theoretical basis for the evolution of higher plants and cytoplasmic male sterility breeding.
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