Scientia Agricultura Sinica ›› 2005, Vol. 38 ›› Issue (06): 1095-1099 .

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

Genetic Study of Thermo-Sensitive Male Sterility on Thermo-Sensitive Male Sterile Wheat Line A3314

,,,,   

  1. 西北农林科技大学农学院
  • Received:2004-07-05 Revised:2005-01-23 Online:2005-06-10 Published:2005-06-10

Abstract: To establish the two-lines hybrid wheat seeds production system, which is easy-using and low-cost, and to breed the thermo-sensitive male sterile wheat lines that could be used in wide-range areas, experiments on genetic study of the thermo-sensitive male-sterile wheat line A3314(the sensitive stage of fertility exchange is booting, the daily average temperature of fertility exchange is 18℃, when the daily average temperature is less than 18℃ during the fertility sensitive stage,the male fertility of A3314 is male-sterile, but it will be male-fertile when the daily average temperature is over 18℃ during the sensitive stage.), which was bred by applying the technology of Chinese invention patent ZL00105488.0, were conducted through self setting of F2 and BC1F1 population of A3314/Silverstar and K3314A/A3314 under given conditions. That is to say, under sterile condition(the daily average temperature is less than 18℃, A3314 showed male sterility, i.e. sowing at the time suitable for wheat growing in Huang-Huai (the valleys of Huanghe river and Huaihe river) winter wheat producing area, Yunnan-Guizhou winter wheat producing area, Northwest spring wheat producing area and Northeast spring wheat producing area.) , sowing in autumn, the male-fertility of A3314 was male sterile, with Silverstar as the pollen parent. Obtaining F2 population of A3314/Silverstar and BC1F1 population of A3314//A3314/Silverstar was obtained. Under fertile condition (sowing in spring or summer in Huang-Huai winter wheat producing area and Yunnan-Guizhou winter wheat producing area), the male-fertility of A3314 was male fertile, with K3314 as the female parent. F2 population of K3314A/A3314 and BC1F1 population of K3314A//K3314A/A3314 was obtained. At the same time, the different daily average temperatures of A3314 were controlled by artificial climatic box. Analysis on the findings of these experiments showed that male fertility of no-1B/R K type thermo-sensitive male sterile wheat line A3314 was the same as 1B/R K type male sterile wheat line K3314A, and the male fertility of A3314 might be controlled mainly by two pairs of segregate excessive genes besides cytoplasm genes (table1), especially rfv1sp derived from T.spelta var.duh. 1BS chromosome was a major effect gene in A3314, which was not the same as the major male sterile gene rfv1 of K3314A, and might be a pairs of allies (table2), and rfv1sp gene had thermo-sensitivity, but rfv1 gene had no thermo-sensitivity.

Key words: Wheat (Triticum aestivum L.), Thermo-sensitive gene, Thermo-sensitive gen, Ae .kotschyi, Male sterile line

[1] TAO XingLin, HOU Dong, ZHU HuiXia, LIU MingXia, ZHANG JinWen, HU LiMin. Transcriptome and Cytological Researches on the Anther Abortion of a Thermo-Sensitive Genic Male Sterile Line GS-19 in Cauliflower [J]. Scientia Agricultura Sinica, 2017, 50(13): 2538-2552.
[2] LI Ke-qi, ZENG Xin-hua, YUAN Rong, YAN Xiao-hong, WU Gang. Cytological Researches on the Anther Development of a Thermo-Sensitive Genic Male Sterile Line TE5A in Brassica napus [J]. Scientia Agricultura Sinica, 2016, 49(12): 2408-2417.
[3] SUN Hong, ZHANG Wei, WEI Xiao-Jing, WANG Hua-Zhong. Identification of Wheat Key Autophagy-Related Factor ATG18 and Profiling of Their Expression Under Biotic and Abiotic Stresses [J]. Scientia Agricultura Sinica, 2014, 47(9): 1657-1669.
[4] GUO Li-1, GUO Cheng-Jin-1, LU Wen-Jing-2, LI Xiao-Juan-2, XIAO Kai-1. Chromosome Localization of Phosphate Transporter Gene TaPHT2;1 and Its Effects on Phosphate Uptake and Utilization in Wheat [J]. Scientia Agricultura Sinica, 2014, 47(4): 613-621.
[5] HU Ning, YAO Ke-min, YUAN Qian-hua, JIA Shi-rong, HE Mei-dan, JIANG Xiao-dong, XU Li-xin, HU Ji-chao, PEI Xin-wu. The Maximum Threshold Distances of Rice Gene Flow and Its Temporal and Spatial Distribution in the Hainan Crop Winter-Season Multiplication Region of China [J]. Scientia Agricultura Sinica, 2014, 47(23): 4551-4562.
[6] HU Di-1, 2 , XU Zhao-Shi-2, CUI Xiao-Yu-2, CHEN Ming-2, LI Lian-Cheng-2, MA You-Zhi-2, ZHANG Xiao-Hong-1. Isolation and Functional Analysis of Salt-Responsive Gene TaSRP in Wheat [J]. Scientia Agricultura Sinica, 2014, 47(12): 2292-2299.
[7] WANG Lin-Lin-1, WANG Ping-1, 2 , WANG Zhen-Lin-1, SUN Ai-Qing-1, YANG Min-1, WANG Chun-Wei-1, YI Xiao-Mei-1, HAN Xiao-Yu-1, YIN Yan-Ping-11. Research on Heredity and Gene Expression Differences for Nitrogen Metabolism-Related Indices of Wheat Parents and Their Hybrids at Seedling Stage [J]. Scientia Agricultura Sinica, 2014, 47(12): 2300-2312.
[8] LIANG Liang, ZHANG Lian-Peng, LIN Hui, LI Chun-Mei, YANG Min-Hua. Estimating Canopy Leaf Water Content in Wheat Based on Derivative Spectra [J]. Scientia Agricultura Sinica, 2013, 46(1): 18-29.
[9] REN Yong-Zhe, XU Yan-Hua, GUI Xiang-Wei, WANG Su-Ping, DING Jin-Ping, ZHANG Qing-Chen, MA Yuan-Song, PEI Dong-Li. QTLs Analysis of Wheat Seedling Traits under Salt Stress [J]. Scientia Agricultura Sinica, 2012, 45(14): 2793-2800.
[10] DAI Shuang, LI Hao-Sheng, CHENG Dun-Gong, LIU Ai-Feng, CAO Xin-You, LIU Jian-Jun, SONG Jian-Min. Cloning of a 14-3-3 Gene from Developing Wheat Endosperm and Expression of its Recombinant Protein in Escherichia coli [J]. Scientia Agricultura Sinica, 2012, 45(10): 2076-2084.
[11] HE Zhong-hu,LAN Cai-xia1,CHEN Xin-min,ZOU Yu-chun,ZHUANG Qiao-sheng,XIA Xian-chun. Progress and Perspective in Research of Adult-Plant Resistance to Stripe Rust and Powdery Mildew in Wheat [J]. Scientia Agricultura Sinica, 2011, 44(11): 2193-2215 .
[12] YUE Ai-Qin,LI Ang,MAO Xin-Guo,CHANG Xiao-Ping,LI Run-Zhi,JIA Ji-Zeng,JING Rui-Lian. Single Nucleotide Polymorphism and Mapping of 6-SFT-A Gene Responsible for Fructan Biosynthesis in Common Wheat [J]. Scientia Agricultura Sinica, 2011, 44(11): 2216-2224 .
[13] TIAN Bin,ZHU Zhan-ling,LIU Bin,XIE Quan-gang,TIAN Ji-chun
. Quantitative Trait Loci for Dough Alveogram Characters in Cultivated Wheat
[J]. Scientia Agricultura Sinica, 2010, 43(24): 4991-4999 .
[14] LIU Bin,ZHAO Liang,ZHANG Kun-pu,ZHU Zhan-ling,TIAN Bin,TIAN Ji-chun
.

Genetic Dissection of Plant Height at Different Growth Stages in Common Wheat

[J]. Scientia Agricultura Sinica, 2010, 43(22): 4562-4570 .
[15] GUO Yan-ping,WEI Fang,ZHANG Gai-sheng,CHENG Hai-gang,SONG Yu-long,WANG Qing,NIU Na,MA Shou-cai,LI Hong-xia
. Molecular and Cytological Analyses of 1BL/1RS Wheat and Fertility-Restoring Locations for Male Sterile Lines with Aegilops Cytoplasm
[J]. Scientia Agricultura Sinica, 2010, 43(14): 2839-2847 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!