[1] GRAY M W.Mitochondrial evolution[J]. Cold Spring Harbor Perspectives in Biology,2012,4(9):a011403. [2] RYAN M T,HOOGENRAAD N J.Mitochondrial-nuclear communications[J]. Annual Review of Biochemistry,2007,76:701-722. [3] CLANCY D J.Variation in mitochondrial genotype has substantial lifespan effects which may be modulated by nuclear background[J]. Aging Cell,2008,7(6):795-804. [4] ZHANG C Y,MONTOOTH K L,CALVI B R.Incompatibility between mitochondrial and nuclear genomes during oogenesis results in ovarian failure and embryonic lethality[J].Development,2017,144(13):2490-2503. [5] CHASE C D.Cytoplasmic male sterility:a window to the world of plant mitochondrial-nuclear interactions[J]. Trends in Genetics,2007,23(2):81-90. [6] CHEN L T,LIU Y G.Male sterility and fertility restoration in crops[J]. Annual Review of Plant Biology,2014,65:579-606. [7] LASER K D,LERSTEN N R.Anatomy and cytology of microsporogenesis in cytoplasmic male sterile angiosperms[J]. The Botanical Review,1972,38(3):425-454. [8] KAUL M L H. Male Sterility in Higher Plants[M]. Berlin:Springer-Verlag,1988. [9] SCHNABLE P S,WISE R P.The molecular basis of cytoplasmic male sterility and fertility restoration[J]. Trends in Plant Science,1998,3(5):175-180. [10] DUVICK D N.Cytoplasmic pollen sterility in corn[J]. Advances in Genetics,1965,13:1-56. [11] BUDAR F,PELLETIER G.Male sterility in plants:occurrence,determinism,significance and use[J].Comptes Rendus de l′Académie des Sciences. Série Ⅲ.,2001,324(6):543-550. [12] OWEN F V.Cytoplasmically inherited male-sterility in sugar beets[J]. Journal of Agricultural Research,1945,71:423-440. [13] NISHIZAWA S,KUBO T,MIKAMI T.Variable number of tandem repeat loci in the mitochondrial genomes of beets[J]. Current Genetics,2000,37(1):34-38. [14] CHENG D Y,KITAZAKI K,XU D C,et al.The distribution of normal and male-sterile cytoplasms in Chinese sugar-beet germplasm[J]. Euphytica,2009,165(2):345-351. [15] CHENG D Y,YOSHIDA Y,KITAZAKI K,et al.Mitochondrial genome diversity in Beta vulgaris L. ssp. vulgaris(Leaf and Garden Beet Groups)and its implications concerning the dissemination of the crop[J]. Genetic Resources and Crop Evolution,2011,58(4):553-560. [16] 王良,白晨,李晓东,等. VNTR分子标记技术在甜菜不育系选育中的应用[J]. 华北农学报,2014,29(4):135-139. [17] NISHIZAWA S,MIKAMI T,KUBO T.Mitochondrial DNA phylogeny of cultivated and wild beets:relationships among cytoplasmic male-sterility-inducing and nonsterilizing cytoplasms[J]. Genetics,2007,177(3):1703-1712. [18] 崔平. 甜菜种质资源描述规范和数据标准[M]. 北京:中国农业出版社,2006. [19] 王华忠. 单胚甜菜细胞质雄性不育研究及利用[M].北京:中国农业出版社,2009. [20] TOURMENTE S,DERAGON J M,LAFLEURIEL J,et al.Characterization of minisatellites in Arabidopsis thaliana with sequence similarity to the human minisatellite core sequence[J]. Nucleic Acids Research,1994,22(16):3317-3321. [21] BUARD J,VERGNAUD G.Complex recombination events at the hypermutable minisatellite CEB1(D2S90)[J]. The EMBO Journal,1994,13(13):3203-3210. [22] CONKLIN P L,HANSON M R.Recombination of plant mitochondrial genomes[M]//PASZKOWSKI J.Homologous Recombination and Gene Silencing in Plants.Dordrecht: Kluwer Academic Publishers,1994:61-81. [23] FIEVET V,TOUZET P,ARNAUD J F,et al.Spatial analysis of nuclear and cytoplasmic DNA diversity in wild sea beet(Beta vulgaris ssp. maritima)populations:do marine currents shape the genetic structure[J]. Molecular Ecology,2007,16(9):1847-1864. |