Scientia Agricultura Sinica ›› 2005, Vol. 38 ›› Issue (03): 446-453 .

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

Phenotypic Recurrent Selection and MAS for Pooling High Yield Genes Related with Heterosis in Upland Cotton

,   

  1. 南京农业大学遗传与种质创新国家重点实验室
  • Received:2003-12-17 Revised:2004-11-03 Online:2005-03-10 Published:2005-03-10

Abstract: In order for development of new parents for development of new hybrids,the parental materials of popularized hybrids including Xiangzamian 2, Wanza 40 and Zhongmiansuo28 were used to construct recurrent populations for Pooling High Yield Genes in Upland cotton, and two cycles of selection were completed. The objective of this experiment was to investigate the results of phenotypic recurrent selection and MAS. The phenotypic recurrent selection was effective at both individual and cross level, and in different environments for the same trait. The tendency of mean variation in initial population and all populations of two cycles showed no difference, and the means of the most traits including lint yield, seed cotton yield and boll numbers per plant of populations in the second cycle were significantly higher than that of populations in the initial cycle while the genetic variances had no significant difference among them. The effects of MAS using S1495210, S167280 and S3994100, which identified by interval mapping in our institute were closely related to the QTLs for lint yield, lint percent and seed size respectively, were significant. MAS were also efficient using the marker S3452180, identified by individual maker mapping, related to lint yield and lint percent. The results of MAS for lint percent with two markers were more efficient than those with one of two markers.

Key words: Upland cotton, Recurrent selection, GCV, Genetic variance

[1] WANG CaiXiang,YUAN WenMin,LIU JuanJuan,XIE XiaoYu,MA Qi,JU JiSheng,CHEN Da,WANG Ning,FENG KeYun,SU JunJi. Comprehensive Evaluation and Breeding Evolution of Early Maturing Upland Cotton Varieties in the Northwest Inland of China [J]. Scientia Agricultura Sinica, 2023, 56(1): 1-16.
[2] XIE XiaoYu, WANG KaiHong, QIN XiaoXiao, WANG CaiXiang, SHI ChunHui, NING XinZhu, YANG YongLin, QIN JiangHong, LI ChaoZhou, MA Qi, SU JunJi. Restricted Two-Stage Multi-Locus Genome-Wide Association Analysis and Candidate Gene Prediction of Boll Opening Rate in Upland Cotton [J]. Scientia Agricultura Sinica, 2022, 55(2): 248-264.
[3] WANG Juan, MA XiaoMei, ZHOU XiaoFeng, WANG Xin, TIAN Qin, LI ChengQi, DONG ChengGuang. Genome-Wide Association Study of Yield Component Traits in Upland Cotton (Gossypium hirsutum L.) [J]. Scientia Agricultura Sinica, 2022, 55(12): 2265-2277.
[4] QIN HongDe, FENG ChangHui, ZHANG YouChang, BIE Shu, ZHANG JiaoHai, XIA SongBo, WANG XiaoGang, WANG QiongShan, LAN JiaYang, CHEN QuanQiu, JIAO ChunHai. F1 Performance Prediction of Upland Cotton Based on Partial NCII Design [J]. Scientia Agricultura Sinica, 2021, 54(8): 1590-1598.
[5] WANG Na,ZHAO ZiBo,GAO Qiong,HE ShouPu,MA ChenHui,PENG Zhen,DU XiongMing. Cloning and Functional Analysis of Salt Stress Response Gene GhPEAMT1 in Upland Cotton [J]. Scientia Agricultura Sinica, 2021, 54(2): 248-260.
[6] WEI Xin, WANG HanTao, WEI HengLing, FU XiaoKang, MA Liang, LU JianHua, WANG XingFen, YU ShuXun. Cloning and Drought Resistance Analysis of GhWRKY33 in Upland Cotton [J]. Scientia Agricultura Sinica, 2020, 53(22): 4537-4549.
[7] QU YuJie, SUN JunLing, GENG XiaoLi, WANG Xiao, Zareen Sarfraz, JIA YinHua, PAN ZhaoE, HE ShouPu, GONG WenFang, WANG LiRu, PANG BaoYin, DU XiongMing. Correlation Between Genetic Distance of Parents and Heterosis in Upland Cotton [J]. Scientia Agricultura Sinica, 2019, 52(9): 1488-1501.
[8] ZHANG ZhongQi, WANG Jiao, JIN Wei, GE DongDong, LIU Kang, Lü FenNi, SUN Jing. Identification and Expression Analysis of CRK Gene Family in Upland Cotton [J]. Scientia Agricultura Sinica, 2018, 51(13): 2442-2461.
[9] ZHENG XueWei, SHAH Syed Tariq, FAN ShuLi, WEI HengLing, PANG ChaoYou, LI HongBin, YU ShuXun. Molecular Cloning and Functional Analysis of GhNAC7 in Upland Cotton (Gossypium hirsutum L.) [J]. Scientia Agricultura Sinica, 2017, 50(3): 426-436.
[10] LIU XiangYu, ZHAO Long, BAHARGUL·Xamxi, PENG Hua, ABDUREYIM·Ibrayim. Comprehensive Evaluation of Germplasm Resources of Upland Cotton in Xinjiang [J]. Scientia Agricultura Sinica, 2017, 50(24): 4679-4691.
[11] LIU QiBao, LI LiBei, ZHANG Chi, SU JunJi, WEI HengLing, WANG HanTao, YU ShuXun. Association Analysis of Leaf Chlorophyll Content with SSR Markers and Exploration of Superior Alleles in Upland Cotton [J]. Scientia Agricultura Sinica, 2017, 50(18): 3439-3449.
[12] WANG CongCong, ZHANG XiaoHong, WANG XiaoYan, ZHANG Pan, FAN ShuLi, PANG ChaoYou, MA QiFeng, WEI HengLing, WANG HanTao, SU JunJi, YU ShuXun . The Expression Patterns and Function Analysis of GhFLP5, a Gene Related to Flowering in Upland Cotton (Gossypium hirsutum L.) [J]. Scientia Agricultura Sinica, 2017, 50(12): 2220-2231.
[13] CHI Ji-na, CAI Xiao, ZHANG Jian-hong, ZHEN Jun-bo, LIU Lin-lin, TIAN Hai-yan, TANG Li-yuan, LIU Cun-jing, CUI Rui-min, ZHANG Xiang-yun. Establishment and Identification of a Normalized Full-Length cDNA Library of Upland Cotton Ji228 [J]. Scientia Agricultura Sinica, 2016, 49(5): 813-824.
[14] DAI Pan-hong, SUN Jun-ling, HE Shou-pu, WANG Li-ru, JIA Yin-hua, PAN Zhao-e, PANG Bao-yin, DU Xiong-ming, WANG Mi. Comprehensive evaluation and genetic diversity analysis of phenotypic traits of core collection in upland cotton [J]. Scientia Agricultura Sinica, 2016, 49(19): 3694-3708.
[15] MU Min, SHU Na, WANG Shuai, GUO Li-xue, FAN Wei-li, YIN Zu-jun, WANG Jun-juan, WANG De-long, YE Wu-wei. The Function Expression of Salt-Tolerant Yeast Gene Halotolerance ( HAL1 ) in Cotton [J]. Scientia Agricultura Sinica, 2016, 49(14): 2651-2661.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!