1 |
Allen JO, Fauron CM, Minx P, Roark L, Oddiraju S, Lin GN, Meyer L, Sun H, Kim K, Wang C, Du F, Xu D, Gibson M, Cifrese J, Clifton SW, Newton KJ. Comparisons among two fertile and three male-sterile mitochondrial genomes of maize. Genetics, 2007, 177(2): 1173-1192,
DOI
|
2 |
Alverson AJ, Wei X, Rice DW, Stern DB, Barry K, Palmer JD. Insights into the evolution of mitochondrial genome size from complete sequences of Citrullus lanatus and Cucurbita pepo (Cucurbitaceae). Mol Biol Evol, 2010, 27(6): 1436-1448,
DOI
|
3 |
Alverson AJ, Rice DW, Dickinson S, Barry K, Palmer JD. Origins and recombination of the bacterial-sized multichromosomal mitochondrial genome of cucumber. Plant Cell, 2011, 23(7): 2499-2513,
DOI
|
4 |
Arseneau JR, Steeves R, Laflamme M. Modified low-salt CTAB extraction of high-quality DNA from contaminant-rich tissues. Mol Ecol Resour, 2017, 17(4): 686-693,
DOI
|
5 |
Bai S, Wu H, Zhang J, Pan Z, Zhao W, Li Z, Tong C. Genome assembly of Salicaceae Populus deltoides (Eastern Cottonwood) I-69 based on nanopore sequencing and Hi-C technologies. J Hered, 2021, 112(3): 303-310,
DOI
|
6 |
Beier S, Thiel T, Munch T, Scholz U, Mascher M. MISA-web: a web server for microsatellite prediction. Bioinformatics, 2017, 33(16): 2583-2585,
DOI
|
7 |
Bergthorsson U, Adams KL, Thomason B, Palmer JD. Widespread horizontal transfer of mitochondrial genes in flowering plants. Nature, 2003, 424(6945): 197-201,
DOI
|
8 |
Bernt M, Donath A, Juhling F, Externbrink F, Florentz C, Fritzsch G, Putz J, Middendorf M, Stadler PF. MITOS: improved de novo metazoan mitochondrial genome annotation. Mol Phylogenet Evol, 2013, 69(2): 313-319,
DOI
|
9 |
Bi C, Paterson AH, Wang X, Xu Y, Wu D, Qu Y, Jiang A, Ye Q, Ye N. Analysis of the complete mitochondrial genome sequence of the diploid cotton Gossypium raimondii by comparative genomics approaches. Biomed Res Int, 2016, 2016: 5040598,
DOI
|
10 |
Bi C, Lu N, Xu Y, He C, Lu Z. Characterization and analysis of the mitochondrial genome of common bean (Phaseolus vulgaris) by comparative genomic approaches. Int J Mol Sci, 2020,
DOI
|
11 |
Bock R, Khan MS. Taming plastids for a green future. Trends Biotechnol, 2004, 22(6): 311-318,
DOI
|
12 |
Bock H, Brennicke A, Schuster W. Rps3 and rpl16 genes do not overlap in Oenothera mitochondria: GTG as a potential translation initiation codon in plant mitochondria?. Plant Mol Biol, 1994, 24(5): 811-818,
DOI
|
13 |
Brenner WG, Mader M, Muller NA, Hoenicka H, Schroeder H, Zorn I, Fladung M, Kersten B. High level of conservation of mitochondrial RNA editing sites among four Populus species. G3 Bethesda, 2019, 9(3): 709-717,
DOI
|
14 |
Byng JW, Chase MW, Christenhusz MJM, Fay MF, Judd WS, Mabberley DJ, Sennikov AN, Soltis DE, Soltis PS, Stevens PF, Briggs B, Brockington S, Chautems A, Clark JC, Conran J, Haston E, Moller M, Moore M, Olmstead R, Perret M, Skog L, Smith J, Tank D, Vorontsova M, Weber A, Grp AP. An update of the angiosperm phylogeny group classification for the orders and families of flowering plants: APG IV. Bot J Linn Soc, 2016, 181(1): 1-20,
DOI
|
15 |
Camacho C, Coulouris G, Avagyan V, Ma N, Papadopoulos J, Bealer K, Madden TL. BLAST+: architecture and applications. BMC Bioinform, 2009, 10: 421,
DOI
|
16 |
Chan PP, Lowe TM. tRNAscan-SE: Searching for tRNA genes in genomic sequences. Methods Mol Biol, 2019, 1962: 1-14,
DOI
|
17 |
Chan PP, Lin BY, Mak AJ, Lowe TM. tRNAscan-SE 2.0: improved detection and functional classification of transfer RNA genes. Nucleic Acids Res, 2021, 49(16): 9077-9096,
DOI
|
18 |
Chang S, Wang Y, Lu J, Gai J, Li J, Chu P, Guan R, Zhao T. The mitochondrial genome of soybean reveals complex genome structures and gene evolution at intercellular and phylogenetic levels. PLoS ONE, 2013, 8(2): e56502,
DOI
|
19 |
Chaw SM, Shih AC, Wang D, Wu YW, Liu SM, Chou TY. The mitochondrial genome of the gymnosperm Cycas taitungensis contains a novel family of short interspersed elements, Bpu sequences, and abundant RNA editing sites. Mol Biol Evol, 2008, 25(3): 603-615,
DOI
|
20 |
Chen H, Deng L, Jiang Y, Lu P, Yu J. RNA editing sites exist in protein-coding genes in the chloroplast genome of Cycas taitungensis. J Integr Plant Biol, 2011, 53(12): 961-970,
DOI
|
21 |
Chen C, Chen H, Zhang Y, Thomas HR, Frank MH, He Y, Xia R. TBtools: An integrative toolkit developed for interactive analyses of big biological data. Mol Plant, 2020, 13(8): 1194-1202,
DOI
|
22 |
Chen X, Zhang L, Huang Y, Zhao F. Mitochondrial genome of Salix cardiophylla and its implications for infrageneric division of the genus of Salix. Mitochondrial DNA B Resour, 2020, 5(3): 3485-3486,
DOI
|
23 |
Choi IS, Schwarz EN, Ruhlman TA, Khiyami MA, Sabir JSM, Hajarah NH, Sabir MJ, Rabah SO, Jansen RK. Fluctuations in Fabaceae mitochondrial genome size and content are both ancient and recent. BMC Plant Biol, 2019, 19(1): 448,
DOI
|
24 |
Cole LW, Guo W, Mower JP, Palmer JD. High and variable rates of repeat-mediated mitochondrial genome rearrangement in a genus of plants. Mol Biol Evol, 2018, 35(11): 2773-2785,
DOI
|
25 |
De Coster W, D'Hert S, Schultz DT, Cruts M, Van Broeckhoven C. NanoPack: visualizing and processing long-read sequencing data. Bioinformatics, 2018, 34(15): 2666-2669,
DOI
|
26 |
Dong FG, Wilson KG, Makaroff CA. The radish (Raphanus sativus L.) mitochondrial cox2 gene contains an ACG at the predicted translation initiation site. Curr Genet, 1998, 34(2): 79-87,
DOI
|
27 |
Dong S, Zhao C, Chen F, Liu Y, Zhang S, Wu H, Zhang L, Liu Y. The complete mitochondrial genome of the early flowering plant Nymphaea colorata is highly repetitive with low recombination. BMC Genomics, 2018, 19(1): 614,
DOI
|
28 |
Edgar RC. MUSCLE: a multiple sequence alignment method with reduced time and space complexity. BMC Bioinformatics, 2004, 5: 113,
DOI
|
29 |
Fahrenkrog AM, Neves LG, Resende MFR Jr, Dervinis C, Davenport R, Barbazuk WB, Kirst M. Population genomics of the eastern cottonwood (Populus deltoides). Ecol Evol, 2017, 7(22): 9426-9440,
DOI
|
30 |
Galtier N. The intriguing evolutionary dynamics of plant mitochondrial DNA. BMC Biol, 2011, 9: 61,
DOI
|
31 |
Glover KE, Spencer DF, Gray MW. Identification and structural characterization of nucleus-encoded transfer RNAs imported into wheat mitochondria. J Biol Chem, 2001, 276(1): 639-648,
DOI
|
32 |
Goremykin VV, Salamini F, Velasco R, Viola R. Mitochondrial DNA of Vitis vinifera and the issue of rampant horizontal gene transfer. Mol Biol Evol, 2009, 26(1): 99-110,
DOI
|
33 |
Gray MW, Covello PS. RNA editing in plant mitochondria and chloroplasts. FASEB J, 1993, 7(1): 64-71,
DOI
|
34 |
Greiner S, Lehwark P, Bock R. OrganellarGenomeDRAW (OGDRAW) version 1.3.1: expanded toolkit for the graphical visualization of organellar genomes. Nucleic Acids Res, 2019, 47(W1): W59-W64,
DOI
|
35 |
Grewe F, Edger PP, Keren I, Sultan L, Pires JC, Ostersetzer-Biran O, Mower JP. Comparative analysis of 11 brassicales mitochondrial genomes and the mitochondrial transcriptome of Brassica oleracea. Mitochondrion, 2014, 19: 135-143,
DOI
|
36 |
Guo W, Grewe F, Fan W, Young GJ, Knoop V, Palmer JD, Mower JP. Ginkgo and welwitschia mitogenomes reveal extreme contrasts in gymnosperm mitochondrial evolution. Mol Biol Evol, 2016, 33(6): 1448-1460,
DOI
|
37 |
Gupta RS, Golding GB. The origin of the eukaryotic cell. Trends Biochem Sci, 1996, 21(5): 166-171,
DOI
|
38 |
Handa H. The complete nucleotide sequence and RNA editing content of the mitochondrial genome of rapeseed (Brassica napus L.): comparative analysis of the mitochondrial genomes of rapeseed and Arabidopsis thaliana. Nucleic Acids Res, 2003, 31(20): 5907-5916,
DOI
|
39 |
Jo YD, Park J, Kim J, Song W, Hur CG, Lee YH, Kang BC. Complete sequencing and comparative analyses of the pepper (Capsicum annuum L.) plastome revealed high frequency of tandem repeats and large insertion/deletions on pepper plastome. Plant Cell Rep, 2011, 30(2): 217-229,
DOI
|
40 |
Kalyaanamoorthy S, Minh BQ, Wong TKF, von Haeseler A, Jermiin LS. ModelFinder: fast model selection for accurate phylogenetic estimates. Nat Methods, 2017, 14(6): 587-589,
DOI
|
41 |
Kersten B, Faivre Rampant P, Mader M, Le Paslier MC, Bounon R, Berard A, Vettori C, Schroeder H, Leple JC, Fladung M. Genome sequences of Populus tremula chloroplast and mitochondrion: implications for holistic poplar breeding. PLoS ONE, 2016, 11(1): e0147209,
DOI
|
42 |
Kovar L, Nageswara-Rao M, Ortega-Rodriguez S, Dugas DV, Straub S, Cronn R, Strickler SR, Hughes CE, Hanley KA, Rodriguez DN, Langhorst BW, Dimalanta ET, Bailey CD. PacBio-based mitochondrial genome assembly of Leucaena trichandra (Leguminosae) and an intrageneric assessment of mitochondrial RNA editing. Genome Biol Evol, 2018, 10(9): 2501-2517,
DOI
|
43 |
Kozik A, Rowan BA, Lavelle D, Berke L, Schranz ME, Michelmore RW, Christensen AC. The alternative reality of plant mitochondrial DNA: One ring does not rule them all. PLoS Genet, 2019, 15(8): e1008373,
DOI
|
44 |
Kubo T, Nishizawa S, Sugawara A, Itchoda N, Estiati A, Mikami T. The complete nucleotide sequence of the mitochondrial genome of sugar beet (Beta vulgaris L.) reveals a novel gene for tRNA(Cys)(GCA). Nucleic Acids Res, 2000, 28(13): 2571-2576,
DOI
|
45 |
Kumar S, Stecher G, Tamura K. MEGA7: Molecular evolutionary genetics analysis Version 70 for bigger datasets. Mol Biol Evol, 2016, 33(7): 1870-1874,
DOI
|
46 |
Kumar S, Stecher G, Li M, Knyaz C, Tamura K. MEGA X: Molecular evolutionary genetics analysis across computing platforms. Mol Biol Evol, 2018, 35(6): 1547-1549,
DOI
|
47 |
Kurtz S, Choudhuri JV, Ohlebusch E, Schleiermacher C, Stoye J, Giegerich R. REPuter: the manifold applications of repeat analysis on a genomic scale. Nucleic Acids Res, 2001, 29(22): 4633-4642,
DOI
|
48 |
Lagesen K, Hallin P, Rodland EA, Staerfeldt HH, Rognes T, Ussery DW. RNAmmer: consistent and rapid annotation of ribosomal RNA genes. Nucleic Acids Res, 2007, 35(9): 3100-3108,
DOI
|
49 |
Leister D. Origin, evolution and genetic effects of nuclear insertions of organelle DNA. Trends Genet, 2005, 21(12): 655-663,
DOI
|
50 |
Li J, Ye C. Genome-wide analysis of microsatellite and sex-linked marker identification in Gleditsia sinensis. BMC Plant Biol, 2020, 20(1): 338,
DOI
|
51 |
Li J, Xu Y, Shan Y, Pei X, Yong S, Liu C, Yu J. Assembly of the complete mitochondrial genome of an endemic plant, Scutellaria tsinyunensis, revealed the existence of two conformations generated by a repeat-mediated recombination. Planta, 2021, 254(2): 36,
DOI
|
52 |
Ma Q, Li S, Bi C, Hao Z, Sun C, Ye N. Complete chloroplast genome sequence of a major economic species, Ziziphus jujuba (Rhamnaceae). Curr Genet, 2017, 63(1): 117-129,
DOI
|
53 |
Malek O, Brennicke A, Knoop V. Evolution of trans-splicing plant mitochondrial introns in pre-Permian times. Proc Natl Acad Sci U S A, 1997, 94(2): 553-558,
DOI
|
54 |
Martin W, Stoebe B, Goremykin V, Hapsmann S, Hasegawa M, Kowallik KV. Gene transfer to the nucleus and the evolution of chloroplasts. Nature, 1998, 393(6681): 162-165,
DOI
|
55 |
Minh BQ, Schmidt HA, Chernomor O, Schrempf D, Woodhams MD, von Haeseler A, Lanfear R. IQ-TREE 2: new models and efficient methods for phylogenetic inference in the genomic era. Mol Biol Evol, 2020, 37(5): 1530-1534,
DOI
|
56 |
Mower JP. The PREP suite: predictive RNA editors for plant mitochondrial genes, chloroplast genes and user-defined alignments. Nucleic Acids Res, 2009, 37: W253-259,
DOI
|
57 |
Oda K, Kohchi T, Ohyama K. Mitochondrial DNA of Marchantia polymorpha as a single circular form with no incorporation of foreign DNA. Biosci Biotechnol Biochem, 1992, 56(1): 132-135,
DOI
|
58 |
Patel RK, Jain M. NGS QC Toolkit: a toolkit for quality control of next generation sequencing data. PLoS ONE, 2012, 7(2): ,
DOI
|
59 |
Petersen G, Cuenca A, Moller IM, Seberg O. Massive gene loss in mistletoe (Viscum, Viscaceae) mitochondria. Sci Rep, 2015, 5: 17588,
DOI
|
60 |
Raman G, Park S. Analysis of the complete chloroplast genome of a medicinal plant, Dianthus superbus var. longicalyncinus, from a comparative genomics perspective. PLoS ONE, 2015, 10(10): e0141329,
DOI
|
61 |
Rice DW, Alverson AJ, Richardson AO, Young GJ, Sanchez-Puerta MV, Munzinger J, Barry K, Boore JL, Zhang Y, dePamphilis CW, Knox EB, Palmer JD. Horizontal transfer of entire genomes via mitochondrial fusion in the angiosperm Amborella. Science, 2013, 342(6165): 1468-1473,
DOI
|
62 |
Ruan J, Li H. Fast and accurate long-read assembly with wtdbg2. Nat Methods, 2020, 17(2): 155-158,
DOI
|
63 |
Rudinger M, Volkmar U, Lenz H, Groth-Malonek M, Knoop V. Nuclear DYW-type PPR gene families diversify with increasing RNA editing frequencies in liverwort and moss mitochondria. J Mol Evol, 2012, 74(1–2): 37-51,
DOI
|
64 |
Sau K, Gupta SK, Sau S, Mandal SC, Ghosh TC. Factors influencing synonymous codon and amino acid usage biases in Mimivirus. Biosystems, 2006, 85(2): 107-113,
DOI
|
65 |
Skippington E, Barkman TJ, Rice DW, Palmer JD. Miniaturized mitogenome of the parasitic plant Viscum scurruloideum is extremely divergent and dynamic and has lost all nad genes. Proc Natl Acad Sci U S A, 2015, 112(27): E3515-3524,
DOI
|
66 |
Sloan DB, Alverson AJ, Chuckalovcak JP, Wu M, McCauley DE, Palmer JD, Taylor DR. Rapid evolution of enormous, multichromosomal genomes in flowering plant mitochondria with exceptionally high mutation rates. PLoS Biol, 2012, 10(1): e1001241,
DOI
|
67 |
Sprinzl M, Vassilenko KS. Compilation of tRNA sequences and sequences of tRNA genes. Nucleic Acids Res, 2005, 33: D139-140,
DOI
|
68 |
Tanaka Y, Tsuda M, Yasumoto K, Terachi T, Yamagishi H. The complete mitochondrial genome sequence of Brassica oleracea and analysis of coexisting mitotypes. Curr Genet, 2014, 60(4): 277-284,
DOI
|
77 |
Tillich M, Lehwark P, Pellizzer T, Ulbricht-Jones ES, Fischer A, Bock R, Greiner S (2017) GeSeq - versatile and accurate annotation of organelle genomes. Nucleic Acids Res 45(W1):W6-W11. https://doi.org/10.1093/nar/gkx391
|
69 |
Walker BJ, Abeel T, Shea T, Priest M, Abouelliel A, Sakthikumar S, Cuomo CA, Zeng Q, Wortman J, Young SK, Earl AM. Pilon: an integrated tool for comprehensive microbial variant detection and genome assembly improvement. PLoS ONE, 2014, 9(11): e112963,
DOI
|
70 |
Wang X, Zhang RG, Yun QZ, Xu YY, Zhao GC, Liu JM, Shi SL, Chen Z, Jia LM. Comprehensive analysis of complete mitochondrial genome of Sapindus mukorossi Gaertn.: an important industrial oil tree species in China. Ind Crops Prod, 2021,
DOI
|
71 |
Wynn EL, Christensen AC. Repeats of unusual size in plant mitochondrial genomes: Identification, incidence and evolution. G3 (bethesda), 2019, 9(2): 549-559,
DOI
|
72 |
Xu C, Dong W, Li W, Lu Y, Xie X, Jin X, Shi J, He K, Suo Z. Comparative analysis of six lagerstroemia complete chloroplast genomes. Front Plant Sci, 2017, 8: 15,
DOI
|
73 |
Yang J, Liu G, Zhao N, Chen S, Liu D, Ma W, Hu Z, Zhang M. Comparative mitochondrial genome analysis reveals the evolutionary rearrangement mechanism in Brassica. Plant Biol (stuttg), 2016, 18(3): 527-536,
DOI
|
74 |
Yang H, Li W, Yu X, Zhang X, Zhang Z, Liu Y, Wang W, Tian X. Insights into molecular structure, genome evolution and phylogenetic implication through mitochondrial genome sequence of Gleditsia sinensis. Sci Rep, 2021, 11(1): 14850,
DOI
|
75 |
Ye N, Wang X, Li J, Bi C, Xu Y, Wu D, Ye Q. Assembly and comparative analysis of complete mitochondrial genome sequence of an economic plant Salix suchowensis. PeerJ, 2017, 5: e3148,
DOI
|
76 |
Zhang T, Zhang X, Hu S, Yu J. An efficient procedure for plant organellar genome assembly, based on whole genome data from the 454 GS FLX sequencing platform. Plant Methods, 2011, 7: 38,
DOI
|