Crops ›› 2016, Vol. 32 ›› Issue (3): 27-32.doi: 10.16035/j.issn.1001-7283.2016.03.006

Previous Articles     Next Articles

Type Identification of Cytoplasmic Male Sterile Line and Study of Pollen Abortion in Maize

Sun Lifang,Deng Jie,Wang Xia,Zhao Wei,Yang Kejun,Miao Xingfen,Gao Shuren   

  1. College of Agronomy,Heilongjiang Bayi Agricultural University,Daqing163319,Heilongjiang,China
  • Received:2016-01-22 Revised:2016-04-22 Online:2016-06-15 Published:2018-08-26

Abstract:

In this study, the fertility investigation in the field, the testing of pollen viability, PCR amplification of cytoplasmic male sterility with specific primers, identification of maydis resistance and paraffin were used to identify the type of cytoplasmic male sterility after chemical mutagenesis. The results showed that the sterile line 85218A was completely aborted in field. It was a typical yellowish round abortion after I2-KI staining, and was a C-type CMS.It showed mid-tolerance to maydis race C. The critical period of pollen abortion was late mononuclear. This study broadened the male sterility of maize germplasm resources.

Key words: Maize, Cytoplasmic, Male sterile line, Cytoplasmic type, Pollen abortion, Identification

Table 1

Compare the anther size of CMS and maintainer line mm"

自交系
Inbred line
长度
Length
横截面直径
Cross-sectional diameter
85218A 4.57±0.12c 0.78±0.12b
85218B 5.77±0.11a 1.19±0.06a

Fig.1

Identification of sterile cytoplasm by PCR using cytoplasmic type specifically primers A.Genome DNA; B.Identification the type of sterile cytoplasm by PCR; M.2000bp Marker; 1.He344; 2.DT-He344; 3.ZT-He344; 4.T103; 5.HD103; 6.85218A; 7.85218B"

Table 2

Reaction of Bipolaris maydis between the CMS and maintainer line"

自交系
Inbred line
平均级别(抗性)Average level(resistance)
灭多威Methomyl C小种C race CK
85218A 2(R) 4(MR) 1(R)
85218B 1(R) 1(R) 1(R)

Fig.2

Microspore growth situation of maintainer 85218B A.The stage of pollen mother cells(400×);B.Free pollen mother cells(400×);C.The dyad period(400×);D.Free tetrad cells(100×);E.The mononuclear period(400×);F.Free mononuclear mid microspores(400×);G.The binucleate period(400×);H.Three nuclear spores(400×);I.The sachet of fully grown spores(100×);J.Mature pollens(100×)"

Fig.3

Microspore growth situation of CMS 85218A A.The stage of pollen mother cells(400×); B.Free pollen mother cells(400×); C.The dyad period(400×); D.Free dyad cells(400×); E.The tetrad period(400×); F.Free tetrad cells(400×); G.Free mononuclear early microspores(400×); H.The mononuclear period(400×); I.Monocytes late period(100×); J.The binucleate period(400×); K.Dual-core spores(400×); L.The sachet of grown spores fully(100×); M.Pollen fragments after abortion(400×)"

[1] 张天真 . 作物育种学总论.北京:中国农业出版社, 2011.
[2] 燕振国, 曾孟潜 . 玉米细胞质雄性不育新类型BoaⅠ、BoaⅡ的发现. 遗传, 1999,21(6):37-39.
[3] 祁显涛, 杨海龙, 谢传晓 .玉米雄性不育机制及其产业化应用研究进展.作物杂志,2014(6):1-9.
[4] 韦桂旺, 郑用琏, 张德华 . 玉米CMS材料线粒体DNA遗传多型性的研究. 遗传学报, 1997,24(1):66-77.
[5] 郑用琏 . 若干玉米细胞质雄性不育类型(CMS)育性机理的研究.华中农学院学报,1982(3):44-50.
[6] Warmke H E, Lee J . Mitochondrial degeneration in Texas cytoplasm male-sterile corn anthers. Journal of Heredity, 1977,68:213-222.
doi: 10.1093/oxfordjournals.jhered.a108817
[7] 夏涛, 刘纪麟 . 玉米细胞质雄性不育的细胞学研究. 作物学报, 1989,15(2):97-102.
[8] Liu Z Y, Peter S O, Long M H , et al. A PCR assay for rapid discrimination of sterile cytoplasm types in maize. Crop Science, 2002,42:566-569.
doi: 10.2135/cropsci2002.5660
[9] 刘纪麟 . 玉米育种学.北京:中国农业出版社, 2004.
[10] 李竞雄, 周洪生, 孙荣锦 .玉米雄性不育生物学.北京:中国农业出版社, 1998.
[11] Saghai-Maroof M A, Soliman K M, Jorgensen R A , et al. Ribosomal DNA spacer length polymorphisms in barley:Mendelian inheritance,chromosomal locations and population dynamics. Proceedings of the National Academy of Sciences of the United States of America, 1984,81:8014-8018.
doi: 10.1073/pnas.81.24.8014
[12] 张祖新, 方明镜, 杜何为 , 等. 基于PCR技术的玉米CMS胞质类型的快速鉴定. 作物学报, 2005,31(10):1386-1388.
[13] 李洪连, 徐敬友 .农业植物病理学实验实习指导.北京:中国农业出版社, 2002.
[14] Ducick D N, Snyder R J, Anderson E C . The chromosomal location of Rf1,a restorer gene for cytoplasmic pollen sterile maize. Genetics, 1961,46:1245-1252.
doi: 10.2135/cropsci1969.0011183X000900020012x pmid: 13888759
[15] 罗红兵.玉米( Zea mays L.)GDS细胞质雄性不育系生物学研究. 长沙:湖南农业大学, 2006.
[16] 张增川 . 新型玉米细胞质雄性不育材料泰玉D2花粉败育的细胞学研究. 泰安:山东农业大学, 2009.
[17] Kelliher T, Walbot V . Maize germinal cell initials accommodate hypoxia and precociously express meiotic genes. Plant Journal, 2014,77(4):639-652.
doi: 10.1111/tpj.12414 pmid: 24387628
[1] Chen Guangzhou, Wang Guangfu, Qu Jianzhou, Si Leiyong, . Study on Grain Dehydration Rate and#br# Correlation Analysis of Major Related#br# Characters in Different Maize Inbred Lines [J]. Crops, 2018, 34(5): 33-39.
[2] Su Guihua, Li Chunlei, Su Yichen. Evaluation of 22 Main Popularized Varieties#br# by Variety Regional Trails in Jilin Province [J]. Crops, 2018, 34(5): 63-70.
[3] Wu Ronghua, Zhuang Kezhang, Liu Peng, Zhang Chunyan. Response of Summer Maize Yield to#br# Meteorological Factors in Lunan Region [J]. Crops, 2018, 34(5): 104-109.
[4] Li Shaokun, Zhang Wanxu, Wang Keru, Han Dongsheng, . Study on Maize Mechanical Grain#br# Harvest in Northern Xinjiang [J]. Crops, 2018, 34(5): 127-131.
[5] Gao Wenjun, Yang Guoyi, Gao Xinzhong, Yu Zhu, . The Effects of Nitrogen, Phosphorus, or Potassium#br# Fertilizer on the Yield and Silage Quality of Maize [J]. Crops, 2018, 34(5): 144-149.
[6] Wenhui Huang, Hui Wang, Desheng Mei. Research Progress on Lodging Resistance of Crops [J]. Crops, 2018, 34(4): 13-19.
[7] Hongyan Li,Yonghong Wang,Rulang Zhao,Wenjie Zhang,Bo Ming,Ruizhi Xie,Keru Wang,Lulu Li,Shang Gao,Shaokun Li. The Construction and Application of Maize Grain Dehydration Model in Yellow River Irrigation and Pumping Irrigation District in Ningxia [J]. Crops, 2018, 34(4): 149-153.
[8] Haiyan Liang, Hai Li, Fengxian Lin, Xiangyu Zhang, Zhi Zhang, Xiaoqiang Song. Field Identification of Different Broom Corn Millet Varieties Lodging Resistance and Evaluation Index Selection and Analysis [J]. Crops, 2018, 34(4): 37-41.
[9] Shaokun Li,Wanxu Zhang,Keru Wang,Wanbing Yu,Yongsheng Chen,Dongsheng Han,Xiaoxia Yang,Chaowei Liu,Guoqiang Zhang,Yizhou Wang,Fenghe Liu,Jianglu Chen,Jingjing Yang,Ruizhi Xie,Peng Hou,Bo Ming. The Selection of High Yield Maize Cultivars Suitable for Dense Planting and Grain Mechanical Harvesting in North of Xinjiang [J]. Crops, 2018, 34(4): 62-68.
[10] Yanli Fan,Hui Dong,Baishan Lu,Yaxing Shi,Ning Gao,Yamin Shi,Li Xu,Shengli Xi,Cuifen Zhang,Yanhui Liu. Effects of Sowing Date on Starch Gelatinization Characteristics of Different Waxy Maize Varieties [J]. Crops, 2018, 34(4): 79-83.
[11] Jingjing Yang,Jianglu Chen,Ruizhi Xie,Xiaowei Zhang,Bianhong Ding,Xinming Wu,Shaokun Li,Dongfang Li. Effects of Seed Weight Difference on the Evenness of Related Germination Indexes in Maize [J]. Crops, 2018, 34(3): 180-184.
[12] Shaokun Li,Keru Wang,Yanbo Wang,Haiyan Zhao,Yuzhong Shen,Dandan Cai,Wanxin Xiao,Wenye Jiang,Zhaofu Huang,Lichao Zhai,Ruizhi Xie,Peng Hou,Bo Ming. The Quality of Mechanical Harvesting Maize Grain and Its Influencing Factors in Central Liaoning Province [J]. Crops, 2018, 34(3): 162-167.
[13] Lei Shi,Guohong Wang,Yanbo Wang,Dawei Wang,Haiyan Zhao. Preliminary Study on Grain Dehydration Rate of Maize Hybrids and Their Parents [J]. Crops, 2018, 34(3): 84-89.
[14] Keru Wang,Shaokun Li,Yanbo Wang,Haiyan Zhao,Yuzhong Shen,Dandan Cai,Wanxin Xiao,Wenye Jiang,Zhaofu Huang,Lichao Zhai,Lulu Li,Ruizhi Xie,Peng Hou,Bo Ming. Screening Maize Varieties Suitable for Mechanical Harvesting Grain in the Central Liaoning Province [J]. Crops, 2018, 34(3): 97-102.
[15] Lulu Li,Ruizhi Xie,Keru Wang,Bo Ming,Peng Hou,Shaokun Li. Effects of Peeling Husk on Grain Dehydration of Maize [J]. Crops, 2018, 34(2): 114-117.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] Guangcai Zhao,Xuhong Chang,Demei Wang,Zhiqiang Tao,Yanjie Wang,Yushuang Yang,Yingjie Zhu. General Situation and Development of Wheat Production[J]. Crops, 2018, 34(4): 1 -7 .
[2] Baoquan Quan,Dongmei Bai,Yuexia Tian,Yunyun Xue. Effects of Different Leaf-Peg Ratio on Photosynthesis and Yield of Peanut[J]. Crops, 2018, 34(4): 102 -105 .
[3] Xuefang Huang,Mingjing Huang,Huatao Liu,Cong Zhao,Juanling Wang. Effects of Annual Precipitation and Population Density on Tiller-Earing and Yield of Zhangzagu 5 under Film Mulching and Hole Sowing[J]. Crops, 2018, 34(4): 106 -113 .
[4] Wenhui Huang, Hui Wang, Desheng Mei. Research Progress on Lodging Resistance of Crops[J]. Crops, 2018, 34(4): 13 -19 .
[5] Yun Zhao,Cailong Xu,Xu Yang,Suzhen Li,Jing Zhou,Jicun Li,Tianfu Han,Cunxiang Wu. Effects of Sowing Methods on Seedling Stand and Production Profit of Summer Soybean under Wheat-Soybean System[J]. Crops, 2018, 34(4): 114 -120 .
[6] Mei Lu,Min Sun,Aixia Ren,Miaomiao Lei,Lingzhu Xue,Zhiqiang Gao. Effects of Spraying Foliar Fertilizers on Dryland Wheat Growth and the Correlation with Yield Formation[J]. Crops, 2018, 34(4): 121 -125 .
[7] Xiaofei Wang,Haijun Xu,Mengqiao Guo,Yu Xiao,Xinyu Cheng,Shuxia Liu,Xiangjun Guan,Yaokun Wu,Weihua Zhao,Guojiang Wei. Effects of Sowing Date, Density and Fertilizer Utilization Rate on the Yield of Oilseed Perilla frutescens in Cold Area[J]. Crops, 2018, 34(4): 126 -130 .
[8] Pengjin Zhu,Xinhua Pang,Chun Liang,Qinliang Tan,Lin Yan,Quanguang Zhou,Kewei Ou. Effects of Cold Stress on Reactive Oxygen Metabolism and Antioxidant Enzyme Activities of Sugarcane Seedlings[J]. Crops, 2018, 34(4): 131 -137 .
[9] Jie Gao,Qingfeng Li,Qiu Peng,Xiaoyan Jiao,Jinsong Wang. Effects of Different Nutrient Combinations on Plant Production and Nitrogen, Phosphorus and Potassium Utilization Characteristics in Waxy Sorghum[J]. Crops, 2018, 34(4): 138 -142 .
[10] Na Shang,Zhongxu Yang,Qiuzhi Li,Huihui Yin,Shihong Wang,Haitao Li,Tong Li,Han Zhang. Response of Cotton with Vegetative Branches to Plant Density in the Western of Shandong Province[J]. Crops, 2018, 34(4): 143 -148 .