CHEN Bo,ZHANG Yan.Research Status on Mechanism of Maize Cytoplasmic Male Sterility[J].HEILONGJIANG AGRICULTURAL SCIENCES,2012,(03):147-151.
玉米细胞质雄性不育机制研究现状
- Title:
- Research Status on Mechanism of Maize Cytoplasmic Male Sterility
- 文章编号:
- 1002-2767(2012)03-0147-05
- Keywords:
- maize; male sterility; current situation
- 分类号:
- S513;Q813.6
- 文献标志码:
- A
- 摘要:
- 雄性不育是作物育种中利用杂种优势的主要途径,玉米是世界上最早利用雄性不育系生产杂交种的作物之一,利用雄性不育系生产玉米杂交种,可以节省劳动力投入,降低种子成本,减少去雄不彻底造成的混杂,提高种子纯度,充分发挥杂种优势的增产潜力。综述了玉米细胞质雄性不育的分类,败育的细胞学特征,败育机理,以及育性恢复研究进展。
- Abstract:
- Male sterility is the main way in the use of heterosis in crop breeding.Maize is one of the earliest crops that using the male sterile lines in crossbreeding.Using male sterile lines in the production of hybrid can save labor,reduce seed costs,improve seed purity and make full use of the yield potential of heterosis.The progress of maize cytoplasmic male sterility in classification,abortion cytological features and abortion mechanism and fertility restoration mechanism were reviewed.
参考文献/References:
[1]Beckett J B.Classification of male
-
sterile cytoplasms inmaize(
Zea mays
L.)[J].Crop Science,1971,11(5):724
-
726.
[2]郑用琏.若干玉米细胞质雄性不育类型育性机理的研究[J].华中农学院学报,1982,1(1):44-46. [3]李小琴,刘纪麟,万邦惠,等.玉米CMS育性恢复专效性分类系统的研究[J].华中农业大学学报,1999,18(3):203-206. [4]Pring D R,Levings C S.Heterogeneity of maize cytoplasmic genomes among male sterile cytoplasm[J].Genetics,1978,89:121-136. [5]李晚忱,荣廷昭,雷本鸣,等.3个玉米细胞质雄性不育系的选育及分组鉴定[J].作物学报,2001,27(3):308-312. [6]罗红兵,黄璜.玉米GDS细胞质雄性不育系的分类研究[J].玉米科学,2008,16(2):8-11. [7]陈伟,刘占先,鄂立柱,等.玉米细胞质雄性不育材料CMS-P的胞质分类研究[J].作物学报,2007,33(2):196-200. [8]夏涛,刘纪麟.玉米细胞质雄性不育的细胞学研究[J].作物学报,1989,15(2):97-102. [9]Cui X Q,Wise R,Schnable P S.Therf2 nuclear restore gene of male-sterile T-cytoplasm maize[J].Science,1996,272:1334-1336. [10]Bhadula S K,Sawhney V K.Protein analysis during the ontogeny of normal and male sterile stamenless mutant stamens of tomato[J].Biochem Genet,1991,29(1-2):29-41. [11]Horn R,Hu Sledt J E,Horstlneyer A,et al.The CMS-associated l6 kDa Proteinen coded by 0rfH522 in the PETl cytop1asm is also Present in other male-sterile cytoplasms of sunflower[J].Plant Mol.Biol.,1996,30(3):523-538. [12]Song Jiasheng,Charles Hedgcoth.A chimeric gene(orf256) is expressed as protein only in cytoplasmic male-sterile lines of wheat[J].Plant Mol.Biol.,1994,26:535-539 [13]Nowak C,Kuck U.RNA editing of the mitochondrial atp9 transcript from wheat[J].Nucleic Acids Res,1990,18:7164-7167. [14]Hernould M,Suharson S.Impairment of tapetum and mitochondria in engineered male sterile tobacco plants[J].Plant Mol.Biol.,1998,36:499-508. [15]孔进,谭艳平,陈祖玉,等.水稻红莲型不育系雄性配子发育过程中线粒体功能基因转录本的编辑位点研究[J].武汉植物学研究,2006,24(2):95-99. [16]易平,汪莉,孙清萍,等.红莲型细胞质雄性不育水稻线粒体atp6基因转录本的编辑位点研究[J].生物化学与生物物理进展,2002,29(5):729-733. [17]李鹏,牟秋焕,石运庆,等.不同核背景对小麦V-CMS coxⅢ基因转录本编辑的影响[J].生物技术通讯,2006(4):86-91. [18]Wise R P,Schnable P S.Mapping complementary genes in maize:positioning the Rf1 and Rf2 nuclear-fertility restorer loci of Texas(T) cytoplasm relative to RFLP and visible markers[J].Theor.Appl.Genet,1994,88:785-795. [19]Kamps T L,Chase C D.RFLP mapping of the maize gametophytic restorer-of-fertility locus (Rf3)and aberrant pollen transmission of the nonrestoringRf3 allele[J].Theor.Appl.Genet,1997,95:525-531. [20]石勇刚,郑用琏,李建生,等.玉米S组CMS育性恢复基因的分子标记定位[J].作物学报,1997,23(1):1-6. [21]王泽立,王鲁昕,戴景瑞,等.运用近等基因系(NIL)、AFLP、RFLP和SCAR标记对玉米S组育性恢复基因(Rf3)的研究[J].遗传学报,2001,28(5):465-470. [22]卢彩霞,铁双贵,郑用琏.玉米骨干自交系对S型细胞质雄性不育系的育性恢复特点及基因分析[J].河南农业科学,2004(12):3-6. [23]Josephson L M,Morgan T E.Genetics and inheritance of fertility restoration of male sterile cytoplasms in corn[A].Proc.of the 33rd Corn and Sorghum Res.Conf.1978. [24]汤继华,季洪强,黄中文,等.玉米C型胞质不育恢复基因Rf4的RFLP定位[J].河南农业大学学报,2001,35(2):99-102. [25]陈伟程,罗福和,季良越.玉米C型胞质雄性不育的遗传及其在生产上的应用[J].作物学报,1979,5(4):21-28. [26]Khey-Pour A,Grace V E,Everett H L.Genetics of fertility restorations in the C-group of cytoplasmic male sterility in maize[J].Genetics,1981,98:379-388. [27]Vidakovic M.Genetics of fertility restoration in cytoplasmic male sterility of the C-type(Cms-c)in maize[J].Maydica,1988,33:51-64. [28]陈绍江,陈伟程.玉米C型胞质雄性不育恢复基因的定位研究[J].河南农业大学学报,1989,23(3):201-208. [29]Vidakovic M,Vancetovic J,Vidakovic M.The existence of a duplicated or parallel genetic system for fertility restoration in cmsC of maize(Zea maysL.)[J].Maydica,1997,42:313-316. [30]Vidakovic M,Vancetovic J,Vidakovic M.Complementary genes Rf4,Rf5 and Rf6 are not the unique genetic system for fertility restoration in cmsC of maize(Zea maysL.)[J].Maize Genetics Cooperation News Letter,1997,71:10. [31]汤继华,刘宗华,陈伟程,等.玉米C胞质不育恢复主基因SSR标记[J].中国农业科学,2001,34(6):592-596. [32]赵素贞,谢惠玲,吴风华,等.玉米C型胞质雄性不育恢复基因Rf5的抑制基因的发现与鉴定[J].玉米科学,2007,15(1):67-69.
相似文献/References:
[1]王静.西昌地区玉米自交系苗期耐低磷特性鉴定[J].黑龙江农业科学,2013,(02):5.
WANG Jing.Identification of Resistance to Low-phosphorus Characteristics of Maize Inbred Lines at Seedling Stage in Xichang Area[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(03):5.
[2]石凤梅,马立功.黑龙江省玉米大斑病菌小种生理分化的研究[J].黑龙江农业科学,2013,(02):63.
SHI Feng-mei,MA Li-gong.Study on Physiological Race Differentiation of Exserohilum turcicum in Heilongjiang Province[J].HEILONGJIANG AGRICULTURAL SCIENCES,2013,(03):63.
[3]孙广全,焦少杰,王黎明,等.乌克兰玉米自交系芽期耐旱性鉴定[J].黑龙江农业科学,2014,(11):4.
SUN Guang-quan,JIAO Shao-jie,WANG Li-ming,et al.Drought Tolerance Identification of Ukrainian Maize Inbred Lines at Bud Stage[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):4.
[4]马延华,孙德全,李绥艳,等.玉米自交系灌浆期抗倒性评价及抗倒性状的相关分析[J].黑龙江农业科学,2014,(07):5.
MA Yan-hua,SUN De-quan,LI Sui-yan,et al.Evaluation of Lodging Resistance and Correlation Analysis of Lodging Resistance Characters for Maizenbred Lines During Grain filling Period[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):5.
[5]杨耿斌,刘兴焱,王立春,等.黑龙江早熟地区深松对玉米产量及土壤状态的影响[J].黑龙江农业科学,2014,(07):23.
YANG Geng-bin,LIU Xing-yan,WANG Li-chun,et al.Effect of Subsoiling on Maize Yield and Soil Characteristics in Earlymaturing District of Heilongjiang Province[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):23.
[6]王宇先.寒地半干旱地区膜上精播技术对玉米生长发育的影响[J].黑龙江农业科学,2014,(07):29.
WANG Yu-xian.Effect of Planting in Mulching Film on the Growth and Development of Maize Plant in Cold and Semi Arid Area[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):29.
[7]刘志华,盖兆雪,李晓梅,等.秸秆还田对玉米产量形成及土壤肥力的影响[J].黑龙江农业科学,2014,(07):42.
LIU Zhi-hua,GAI Zhao-xue,LI Xiao-mei,et al.Effect of Straw Return on Maize Yield Components and Soil Fertility[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):42.
[8]林红,何晶丽.玉米在畜牧养殖业中的有效利用[J].黑龙江农业科学,2014,(07):77.
LIN Hong,HE Jing-li.Effective Utilization of Maize in Animal Husbandry[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):77.
[9]林 红,孙德全,李绥艳,等.玉米单倍体诱导系对不同类群F1的诱导率评价[J].黑龙江农业科学,2014,(06):12.
[10]张崎峰,蔡鑫鑫,李金良,等.黑龙江省高纬寒地大垄双行栽培模式下玉米品种筛选试验[J].黑龙江农业科学,2014,(06):22.
ZHANG Qifeng,CAI Xinxin,LI Jinliang,et al.Screening Test of Maize Varieties under the Mode of Double Row Sowing with Big Ridge in High Latitude and Cold Region of Heilongjiang Province[J].HEILONGJIANG AGRICULTURAL SCIENCES,2014,(03):22.
备注/Memo
基金项目:四川省教育厅重点研究资助项目(08ZA034)