Scientia Agricultura Sinica ›› 2012, Vol. 45 ›› Issue (9): 1676-1684.doi: 10.3864/j.issn.0578-1752.2012.09.002

• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles     Next Articles

Identification and Genetic Analysis of a Cytoplasmic Male Sterile Line in Maize (Zea mays L.)

 ZHU  Li-Ying, CHEN  Jing-Tang, HUANG  Ya-Qun, ZHAO  Yong-Feng, SONG  Zhan-Quan   

  1. 1.河北农业大学农学院/国家玉米改良中心河北分中心/“华北作物种质资源研究与利用”省部共建教育部重点实验室,河北保定 071001
    2.保定学院,河北保定 071051
  • Received:2011-11-02 Online:2012-05-01 Published:2011-12-21

Abstract: 【Objective】 A new cytoplasmic male sterile line (Nongxi 928cms-Q1261) was identified for type of male sterile, stage of microspore abortion and genetic mechanism for its application to maize breeding. 【Method】 The male sterile expression was observed by planting sterile line in different locations and years. Testcross, sister cross and reciprocal cross were conducted with Nongxi 928cms-Q1261 to analyze the genetic characteristics of its male sterility. Meanwhile, the cytoplasmic type was discriminated by PCR amplification with specifically primers and the microspore genesis was observed under optical microscope by paraffin section technique.【Result】Results showed that the male sterility characteristics of Nongxi 928cms-Q1261 were stable, no anthers exposed on tassel and pollen aborted completely. The cytoplasmic male sterile gene, which was classified into S type of CMS, originated from Q1261, and its nuclear sterile gene originated from Nongxi 928, which was controlled by a pair of recessive genes. The microspores started degrading at the late stage of microspore and degenerated completely at the mature pollen stage. The male sterility of Nongxi 928cms-Q1261 could be maintained by inbred line Zheng58.【Conclusion】Nongxi 928cms-Q1261 belongs to S-type of CMS and is a non-pollen-type cytoplasmic male sterile line with many restorer lines.

Key words: maize, cytoplasmic male sterile, fertility identification, genetic analysis, cytoplasm classification

[1]刘纪麟. 玉米育种学: 第二版. 北京: 中国农业出版社, 2004: 257-258.

Liu J L. Maize Breeding: 2nd edition. Beijing: China Agriculture Press, 2004: 257-258. (in Chinese)

[2]许  珂, 曹墨菊, 朱英国, 潘光堂, 荣廷昭. 玉米C型细胞质雄性不育系C48-2及其保持系线粒体差异蛋白分析. 作物学报, 2008, 34(2): 232-237.

Xu K, Cao M J, Zhu Y G, Pan G T, Rong T Z. Analysis of differential expression of mitochondrial proteins between C-Type cytoplasmic male sterility line C48-2 and maintainer in maize. Acta Agronomica Sinica, 2008, 34(2): 232-237. (in Chinese)

[3]王泽立, 杨  会, 祝静静, 靳  亮, 李新征, 马俊业. 玉米CMS-S恢复基因Rf3近等基因系的蛋白分析. 中国农业科学, 2007, 40(5): 1050-1055.

Wang Z L, Yang H, Zhu J J, Jin L, Li X Z, Ma J Y. Preliminary protein analysis of near isogenic line (NILs) for Rf3 in CMS-S maize. Scientia Agricultura Sinica, 2007, 40(5): 1050-1055. (in Chinese)

[4]罗红兵, 黄  璜, 朱卫平, 戴林建. 玉米GDS细胞质雄性不育系的细胞学观察. 湖南农业大学学报:自然科学版, 2003, 29(2): 109-111.

Luo H B, Huang H, Zhu W P, Dai L J. Cytological observation of cytoplasmic male sterile line GDS in maize. Journal of Hunan Agricultural University: Natural Sciences, 2003, 29(2): 109-111. (in Chinese)

[5]燕振国, 曾孟潜. 玉米细胞质雄性不育新类型BaoⅠ、BaoⅡ的发现. 遗传, 1999, 21(6): 37-39.

Yan Z G, Zeng M Q. Discovery on CMS new types BaoⅠand BaoⅡ in maize. Hereditas, 1999, 21(6): 37-39. (in Chinese)

[6]Beckett J B. Classification of male sterile cytoplasms in maize (Zea mays L.). Crop Science, 1971, 11: 724-726.

[7]郑用琏. 若干玉米CMS类型雄性不育机理的研究. 华中农学院学报, 1982(1): 44-50.

Zheng Y L. Mechanism of several CMS maize. Journal of Huazhong Agricultural University, 1982(1): 44-50. (in Chinese)

[8]温振民. 玉米雄性不育胞质鉴定与分类问题的探讨. 遗传学报, 1983, 10(6): 477-482.

Wen Z M. Identifying and classification of male sterile cytoplasms in maize. Acta Genetica Sinica, 1983, 10(6): 477-482. (in Chinese)

[9]荣凤军, 曹墨菊, 唐祈林, 潘光堂, 荣廷昭. 转Bt基因后代玉米新不育胞质A的遗传分析. 四川农业大学学报, 2007, 25(1): 29-33.

Rong F J, Cao M J, Tang Q L, Pan G T, Rong T Z. Genetic analysis of a new type of maize CMS obtained from the offspring of transgenic Bt maize. Journal of Sichuan Agricultural University, 2007, 25(1): 29-33. (in Chinese)

[10]李小琴, 刘纪麟, 万邦惠, 郑用琏, 李建生, 徐尚忠, 季世国. 玉米新不育胞质WBMs的利用潜力研究. 中国农业科学, 2004, 37(8): 1099-1103.

Li X Q, Liu J L, Wan B H, Zheng Y L, Li J S, Xu S Z, Ji S G. Studies on utilization potential of a new type of maize CMS WBMs. Scientia Agricultura Sinica, 2004, 37(8): 1099-1103. (in Chinese)

[11]汪  静, 荣廷昭, 曹墨菊. 两个新选玉米雄性不育材料的初步鉴定和分析. 四川农业大学学报, 2009, 27(4): 415-418.

Wang J, Rong T Z, Cao M J. Preliminary identification and analysis of two new male sterile maize materials. Journal of Sichuan Agricultural University, 2009, 27(4): 415-418. (in Chinese)

[12]Kheyr-pouri A, Gracenz V E, Everett H L. Genetics of fertility restoration in the C-group of cytoplasmic male sterility in maize. Genetics, 1981, 98: 379-388.

[13]周洪生. 玉米细胞质雄性不育遗传机理的研究现状. 遗传, 1994, 16(1): 45-48.

Zhou H S. A review genetic mechanism of cytoplasmic male sterility in maize. Hereditas, 1994, 16(1): 45-48. (in Chinese)

[14]曹墨菊, 荣廷昭, 潘光堂. 首例航天诱变玉米雄性不育突变体的遗传分析. 遗传学报, 2003, 30(9): 817-822.

Cao M J, Rong T Z, Pan G T. Gentic analysis about maize male sterile mutant obtained by space flight. Acta Genetica Sinica, 2003, 30(9): 817-822. (in Chinese)

[15]李建生, 徐尚忠, 赖菁茹, 郑用琏, 熊秀珠, 刘纪麟. 对两个玉米雄性不育系的细胞质分类研究. 作物学报, 1993, 19(2): 156-164.

Li J S, Xu S Z, Lai J R, Zheng Y L, Xiong X Z, Liu J L. Cytoplasmic classification of two male sterile lines of maize. Acta Agronomica Sinica, 1993, 19(2): 156-164. (in Chinese)

[16]李晚忱, 荣廷昭, 雷本鸣, 曹墨菊, 胡长远. 3个玉米细胞质雄性不育系的选育及分组鉴定. 作物学报, 2001, 27(3): 308-312.

Li W C, Rong T Z, Lei B M, Cao M J, Hu C Y. Breeding and classification of three cytoplasmic male sterile inbreds in maize. Acta Agronomica Sinica, 2001, 27(3): 308-312. (in Chinese)

[17]李小琴, 万邦惠, 刘纪麟, 李建生, 徐尚忠, 郑用琏. 玉米细胞质雄性不育材料WBMs的胞质分类研究. 作物学报, 2004, 30(4): 304-307.

Li X Q, Wan B H, Liu J L, Li J S, Xu S Z, Zheng Y L. Classification of male sterile cytoplasms of WBMs in maize. Acta Agronomica Snica, 2004, 30(4): 304-307. (in Chinese)

[18]陈  伟, 刘占先, 鄂立柱, 杨  会, 戴景瑞. 玉米细胞质雄性不育材料CMS-P的胞质分类研究. 作物学报, 2007, 33(2): 196-200.

Chen W, Liu Z X, E L Z, Yang H, Dai J R. Classification of male sterile cytoplasm of CMS-P in maize (Zea mays everta). Acta Agronomica Sinica, 2007, 33(2): 196-200. (in Chinese)

[19]郭宝健, 张振兴, 陈丙堂, 刘保申. Ta型玉米细胞质不育材料的遗传分析. 分子育种学, 2008, 6(3): 491-494.

Guo B J, Zhang Z X, Chen B T, Liu B S. Genetic analysis of male sterile cytoplasm of Ta-CMS in maize. Molecular Plant Breeding, 2008, 6(3): 491-494. (in Chinese)

[20]张采波, 袁国钊, 汪  静, 潘光堂, 荣廷昭, 曹墨菊. 空间环境诱发玉米细胞质雄性不育突变体的遗传分析. 遗传, 2011, 33(2): 175-181.

Zhang C B, Yuan G Z, Wang J, Pan G T, Rong T Z, Cao M J. Genetic analysis of maize cytoplasmic male sterile mutants obtained by space flight. Hereditas, 2011, 33(2): 175-181. (in Chinese)

[21]孙庆泉, 荣廷昭. 玉米雄性不育材料的研究和利用进展. 玉米科学, 2003, 11(2): 22-27.

Sun Q Q, Rong T Z. Advance on study and use of male sterility in maize. Journal of Maize Sciences, 2003, 11(2): 22-27. (in Chinese)

[22]汤继华, 胡彦民, 付志远, 郝忠友, 郝  晋, 陈伟程. 一种新型玉米温敏核雄不育系的发现、鉴定及遗传分析. 中国农业科学, 2007, 40(5): 889-894.

Tang J H, Hu Y M, Fu Z Y, Hao Z Y, Hao J, Chen W C. Development, identification and genetic analysis of a new thermo-sensitive genic male sterile line in maize. Scientia Agricultura Sinica, 2007, 40(5): 889-894. (in Chinese)

[23]Saghai-Maroof M A, Soliman K M, Jorgensen R A, Allard R W. Ribosomal DNA spacer length polymorphisms in barley: Mendelian inheritance, chromosomal locations and population dynamics. Proceedings of the National Academy of Sciences of the USA, 1984, 81: 8014-8018.

[24]张祖新, 方明镜, 杜何为, 邓莉蓉, 郑用琏. 基于PCR技术的玉米CMS材料胞质类型的快速鉴定. 作物学报, 2005, 31(10): 1386-1388.

Zhang Z X, Fang M J, Du H W, Deng L R, Zheng Y L. The rapid discrimination based on PCR on cytoplasmic types of male sterile line of maize (Zea mays L.). Acta Agronomica Snica, 2005, 31(10): 1386-1388. (in Chinese)

[25]李小琴, 万邦惠, 刘纪麟, 郑用琏, 李建生, 徐尚忠. 玉米新不育胞质WBMs小孢子败育的细胞学观察. 中国农业科学, 2004, 37(9): 1261-1264.

Li X Q, Wan B H, Liu J L, Zheng Y L, Li J S, Xu S Z. Cytological observation on microspore genesis of WBMs- a new line of S-CMS maize. Scientia Agricultura Sinica, 2004, 37(9): 1261-1264. (in Chinese)

[26]Colhoun C W, Steer M W. Microsporogenesis and the mechanism of cytoplasmic male sterility in maize. Annals of Botany, 1981, 48: 417-424.

[27]Sisco P H, Grance V E, Everett H L, Earle E D, Pring D R, Mcnay J W, Levings C S. Fertility restoration and mitochondrial nucleic acids distinguish at lest five subgriups among cms-S cytoplasms of maize(Zea mays L.). Theoretical and Appllied Genetics, 1985, 71: 5-19.
[1] ZHAO ZhengXin,WANG XiaoYun,TIAN YaJie,WANG Rui,PENG Qing,CAI HuanJie. Effects of Straw Returning and Nitrogen Fertilizer Types on Summer Maize Yield and Soil Ammonia Volatilization Under Future Climate Change [J]. Scientia Agricultura Sinica, 2023, 56(1): 104-117.
[2] CHAI HaiYan,JIA Jiao,BAI Xue,MENG LingMin,ZHANG Wei,JIN Rong,WU HongBin,SU QianFu. Identification of Pathogenic Fusarium spp. Causing Maize Ear Rot and Susceptibility of Some Strains to Fungicides in Jilin Province [J]. Scientia Agricultura Sinica, 2023, 56(1): 64-78.
[3] LI ZhouShuai,DONG Yuan,LI Ting,FENG ZhiQian,DUAN YingXin,YANG MingXian,XU ShuTu,ZHANG XingHua,XUE JiQuan. Genome-Wide Association Analysis of Yield and Combining Ability Based on Maize Hybrid Population [J]. Scientia Agricultura Sinica, 2022, 55(9): 1695-1709.
[4] XIONG WeiYi,XU KaiWei,LIU MingPeng,XIAO Hua,PEI LiZhen,PENG DanDan,CHEN YuanXue. Effects of Different Nitrogen Application Levels on Photosynthetic Characteristics, Nitrogen Use Efficiency and Yield of Spring Maize in Sichuan Province [J]. Scientia Agricultura Sinica, 2022, 55(9): 1735-1748.
[5] LI YiLing,PENG XiHong,CHEN Ping,DU Qing,REN JunBo,YANG XueLi,LEI Lu,YONG TaiWen,YANG WenYu. Effects of Reducing Nitrogen Application on Leaf Stay-Green, Photosynthetic Characteristics and System Yield in Maize-Soybean Relay Strip Intercropping [J]. Scientia Agricultura Sinica, 2022, 55(9): 1749-1762.
[6] MA XiaoYan,YANG Yu,HUANG DongLin,WANG ZhaoHui,GAO YaJun,LI YongGang,LÜ Hui. Annual Nutrients Balance and Economic Return Analysis of Wheat with Fertilizers Reduction and Different Rotations [J]. Scientia Agricultura Sinica, 2022, 55(8): 1589-1603.
[7] LI Qian,QIN YuBo,YIN CaiXia,KONG LiLi,WANG Meng,HOU YunPeng,SUN Bo,ZHAO YinKai,XU Chen,LIU ZhiQuan. Effect of Drip Fertigation Mode on Maize Yield, Nutrient Uptake and Economic Benefit [J]. Scientia Agricultura Sinica, 2022, 55(8): 1604-1616.
[8] ZHANG JiaHua,YANG HengShan,ZHANG YuQin,LI CongFeng,ZHANG RuiFu,TAI JiCheng,ZHOU YangChen. Effects of Different Drip Irrigation Modes on Starch Accumulation and Activities of Starch Synthesis-Related Enzyme of Spring Maize Grain in Northeast China [J]. Scientia Agricultura Sinica, 2022, 55(7): 1332-1345.
[9] TAN XianMing,ZHANG JiaWei,WANG ZhongLin,CHEN JunXu,YANG Feng,YANG WenYu. Prediction of Maize Yield in Relay Strip Intercropping Under Different Water and Nitrogen Conditions Based on PLS [J]. Scientia Agricultura Sinica, 2022, 55(6): 1127-1138.
[10] WANG Kai,ZHANG HaiLiang,DONG YiXin,CHEN ShaoKan,GUO Gang,LIU Lin,WANG YaChun. Definition and Genetic Parameters Estimation for Health Traits by Using on-Farm Management Data in Dairy Cattle [J]. Scientia Agricultura Sinica, 2022, 55(6): 1227-1240.
[11] LIU Miao,LIU PengZhao,SHI ZuJiao,WANG XiaoLi,WANG Rui,LI Jun. Critical Nitrogen Dilution Curve and Nitrogen Nutrition Diagnosis of Summer Maize Under Different Nitrogen and Phosphorus Application Rates [J]. Scientia Agricultura Sinica, 2022, 55(5): 932-947.
[12] QIAO Yuan,YANG Huan,LUO JinLin,WANG SiXian,LIANG LanYue,CHEN XinPing,ZHANG WuShuai. Inputs and Ecological Environment Risks Assessment of Maize Production in Northwest China [J]. Scientia Agricultura Sinica, 2022, 55(5): 962-976.
[13] HUANG ZhaoFu, LI LuLu, HOU LiangYu, GAO Shang, MING Bo, XIE RuiZhi, HOU Peng, WANG KeRu, XUE Jun, LI ShaoKun. Accumulated Temperature Requirement for Field Stalk Dehydration After Maize Physiological Maturity in Different Planting Regions [J]. Scientia Agricultura Sinica, 2022, 55(4): 680-691.
[14] FANG MengYing,LU Lin,WANG QingYan,DONG XueRui,YAN Peng,DONG ZhiQiang. Effects of Ethylene-Chlormequat-Potassium on Root Morphological Construction and Yield of Summer Maize with Different Nitrogen Application Rates [J]. Scientia Agricultura Sinica, 2022, 55(24): 4808-4822.
[15] DU WenTing,LEI XiaoXiao,LU HuiYu,WANG YunFeng,XU JiaXing,LUO CaiXia,ZHANG ShuLan. Effects of Reducing Nitrogen Application Rate on the Yields of Three Major Cereals in China [J]. Scientia Agricultura Sinica, 2022, 55(24): 4863-4878.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!