Verticillium wilt resistance analysis of different lines derived from a random-mated population of Gossypium barbadense chromosome substitution lines with upland cotton cultivars

Geng Lige, Lu Xiuyun, Qie Yanmin, Wang Xindong, Sun Juan, Niu Xuejing, Wang Lina

PDF(928 KB)
PDF(928 KB)
China Cotton ›› 2022, Vol. 49 ›› Issue (11) : 1-6. DOI: 10.11963/cc20220141

Verticillium wilt resistance analysis of different lines derived from a random-mated population of Gossypium barbadense chromosome substitution lines with upland cotton cultivars

  • Geng Lige*, Lu Xiuyun, Qie Yanmin, Wang Xindong, Sun Juan, Niu Xuejing, Wang Lina
Author information +
History +

Cite this article

Download Citations
Geng Lige, Lu Xiuyun, Qie Yanmin, Wang Xindong, Sun Juan, Niu Xuejing, Wang Lina. Verticillium wilt resistance analysis of different lines derived from a random-mated population of Gossypium barbadense chromosome substitution lines with upland cotton cultivars. China Cotton. 2022, 49(11): 1-6 https://doi.org/10.11963/cc20220141

References

[1] 朱荷琴,冯自力,尹志新,等. 我国棉花黄萎菌致病力分化及ISSR指纹分析[J]. 植物病理学报,2012,42(3):225-235.
[2] 张绪振,张树琴,陈吉棣,等. 我国棉花黄萎病菌“种”的鉴定[J]. 植物病理学报,1981,11(3):15-20,67-68.
[3] 黄滋康. 中国棉花遗传育种学[M]. 济南:山东科学技术出版社,2003.
[4] 孔庆平. 我国海岛棉生产概况及比较优势分析[J]. 中国棉花,2002,29(12):19-22.
[5] 张小全,王学德. 细胞质雄性不育陆地棉与海岛棉间杂种优势初步研究[J]. 棉花学报,2005,17(2):79-83.
[6] Wendel J F,Brubaker C L,Percival A E. Genetic diversity in Gossypium hirsutum and the origin of upland cotton[J]. American Journal of Botany,1992,79(11):1291-1310.
[7] Saha S,Stelly D M,Raska D A,et al. Chromosome substitution lines: concept, development and utilization in the genetic improvement of upland cotton[M]// Abdurakhmonov I. Plant Breeding. Rijeka,Croatia:InTech,2012:107-128. 
[8] Gutierrez O A,Bowman D T,Cole C B,et al. Development of random-mated populations using bulked pollen methodology: cotton as a model[J]. Journal of Cotton Science,2006,10:175-179.
[9] Jenkins J N,McCarty J C,Gutierrez O A,et al. Registration of RMBUP-C4, a random mated population with Gossy-pium hirsutum L. alleles, introgressed into upland cotton germplasm[J]. Journal of Plant Registrations,2013,7(2):224-228.
[10] Jenkins J N,McCarty J C,Deng D,et al. Introgression of Gossypium barbadense L. into upland cotton germplasm RMBUP-C4S1[J]. Euphytica,2018,214(7):118. 
[11] McCarty J C,Jenkins J N,Wu J X,et al. Evaluation of cotton populations for agronomic and fiber traits after different cycles of random mating[R]. Starkville:Mississippi State University,2008:1-17.
[12] 杨代刚. 棉花新品种“鄂荆l号”[J]. 中国农学通报,1988(3):44.
[13] 栗红梅. 中植棉2号[Z/OL]. (2010-03-15)[2022-09-08]. https://kns.cnki.net/KCMS/detail/detail.aspx?dbname=
SNAD&filename=SNAD000001322117.
[14] 王彦. 棉花黄萎菌致病力分化测定及其致萎毒素研究[D]. 保定:河北农业大学,2010.
[15] 马平,Huang H C,李社增,等. 一种新的棉花黄萎病快速接种技术及其在病原菌致病力和寄主抗病性鉴定上的应用[J]. 植物病理学报,2004,34(6):536-541.
[16] 石磊岩,王波,文学. 棉花黄萎病菌落叶型菌系研究[J]. 棉花学报,1993,5(1):89-92.
[17] 中华人民共和国农业部. 棉花抗病虫性评价技术规范 第5部分:黄萎病:GB/T 22101.5-2009[S]. 北京:中国标准出版社,2009.
[18] 任立华,张天真. 陆地棉7个置换系的遗传评价[J]. 作物学报,2001,27(6):993-999.
[19] Saha S,Wu J X,Jenkins J N,et al. Effect of chromosome substitutions from Gossypium barbadense L. 3-79 into G. hirsutum L. TM-1 on agronomic and fiber traits[J]. Journal of Crop Science,2004,8:162-169.
[20] Saha S,Jenkins J N,Wu J X,et al. Effects of chromosome-specific introgression in upland cotton on fiber and agronomic traits[J]. Genetics,2006,172(3):1927-1938.
[21] Saha S,Jenkins J N,Wu J X,et al. Genetic analysis of agronomic and fiber traits using four interspecific chromosome substitution lines in cotton[J]. Plant Breeding,2008,127(6):612-618.
[22] Wu J X,Jenkins J N,McCarty J C,et al. Genetic association of lint yield with its components in cotton chromosome substitution lines[J]. Euphytica,2008,164(1):199-207.
[23] 栾明宝,郭香墨,张永山,等. 利用陆地棉置换系进行海岛棉主要性状基因的染色体定位[J]. 棉花学报,2008,20(1):70-72.
[24] Luan M B,Guo X M,Zhang Y S,et al. QTL mapping for agronomic and fibre traits using two interspecific chromosome substitution lines of upland cotton[J]. Plant Breeding,2009,128(6):671-679.
[25] Wu J X,McCarty J C,Jenkins J N. Cotton chromosome substitution lines crossed with cultivars: genetic model evaluation and seed trait analyses[J]. Theoretical and Applied Genetics,2010,120(7):1473-1483.
[26] Wu J X,Jenkins J N,McCarty J C,et al. Seed trait evaluation of Gossypium barbadense L. chromosomes arms in a G. hirsutum L. background[J]. Euphytica,2009,167(3):371-380.
[27] 钱能. 陆地棉遗传多样性与育种目标性状基因(QTL)的关联分析[D]. 南京:南京农业大学,2009.
[28] 付央,苑冬冬,胡文静,等. 陆地棉背景下海岛棉第18染色体片段置换系的培育及相关农艺性状QTL定位[J]. 作物学报,2013,39(1):21-28.
[29] 房卫平. 棉花黄萎病抗性机制、遗传及分子标记的研究[D]. 杭州:浙江大学,2001.
[30] 杜雄明,刘方,王坤波,等. 棉花种质资源收集鉴定与创新利用[J]. 棉花学报,2017,29(S1):51-61.
[31] 顾爱星. 棉花黄萎病抗病性分析和分子标记筛选[D]. 乌鲁木齐:新疆农业大学,2013.
[32] 朱荷琴,李志芳,冯自力,等. 我国棉花黄萎病研究十年回顾及展望[J]. 棉花学报,2017,29(S1):37-50.
Share on Mendeley
PDF(928 KB)

Collection(s)

Cotton

40

Accesses

0

Citation

Detail

Sections
Recommended

/