Genetic diversity analysis and core germplasm bank construction in cold resistant germplasm of rubber trees (Hevea brasiliensis)
文献类型: 外文期刊
第一作者: Tian, Maoju
作者: Tian, Maoju;Li, Wenxiu;Luo, Ping;He, Junjun;Zhang, Hualin;Yan, Qing;Ye, Yanna;He, Junjun;Tian, Maoju
作者机构:
关键词: Hevea brasiliensis; SNP marking; Genetic diversity; Fingerprint; Core collection; Group structure; Principal component analysis
期刊名称:SCIENTIFIC REPORTS ( 影响因子:3.9; 五年影响因子:4.3 )
ISSN: 2045-2322
年卷期: 2024 年 14 卷 1 期
页码:
收录情况: SCI
摘要: The rubber tree, Hevea brasiliensis (Willd. ex Adr. de Juss.) Muell. Arg., is the sole plant worldwide utilized for the commercial production of natural rubber. Following years of breeding, there exists a wide array of germplasm differentiation in rubber trees. The exploration of diversity and population structure within rubber tree germplasm resources, alongside the establishment of core germplasm resources, is instrumental in elucidating the genetic background and facilitating the effective utilization and management of these resources. By employing SNP molecular marker technology, 195 rubber tree resources were amplified, their genetic diversity analyzed, and a fingerprint map was subsequently constructed. Through this process, the cold-resistant core germplasm of rubber trees was identified. The results revealed that the PIC, He, and pi values ranged from 0.0905 to 0.3750, 0.095 to 0.5000, and 0.0953 to 0.5013, respectively. Both group structure analysis and cluster analysis delineated the accessions into two groups, signifying a simple group structure. A core germplasm bank was established with a sampling ratio of 10%, comprising 21 accessions divided into two populations. Population G1 consists of 20 accessions, while population G2 comprises 1 accession. The research findings have led to the creation of a molecular database that is anticipated to contribute to the management and subsequent breeding applications of rubber tree accessions.
分类号:
- 相关文献
作者其他论文 更多>>
-
Identification of ZmSNAC06, a Maize NAC Family Transcription Factor with Multiple Transcripts Conferring Drought Tolerance in Arabidopsis
作者:Wang, Fei;Yang, Ruisi;Luo, Ping;Wang, Houwen;Zhang, Runze;Li, Wenzhe;Yang, Ke;Xu, Xinlong;Hao, Zhuanfang;Li, Xinhai;Chen, Yong
关键词:maize (
Zea mays L.);ZmSNAC06 ; transcription factor; drought tolerance -
The cotton gene family encoding translationally controlled tumor proteins and the role of GhTCTP5 in salt tolerance
作者:Pang, Bo;Luo, Ping;Zhang, Ru;Li, Jing;Liang, Weiwei;Gao, Wenwei;Li, Shengmei;Chen, Jialin;Li, Shengmei;Pang, Bo;Liang, Weiwei
关键词:G. hirsutum; TCTP; VIGS; RNA-seq
-
GWAS and GS analysis revealed the selection and prediction efficiency for yield, plant morphological, and fiber quality in Gossypium barbadense
作者:Yang, Tao;Wang, Honggang;Zhao, Kang;Pang, Bo;Wang, Yongpan;Luo, Ping;Liang, Weiwei;Shi, Shunyu;Wang, Jie;Lin, Yifeng;Li, Jing;Wang, Zhenrui;Guo, Yongqin;Gao, Wenwei;Song, Jikun;Zhao, Kang
关键词:
-
Genome-Wide Association Study and Candidate Gene Identification for Girth Traits in Rubber Tree
作者:Li, Wenxiu;Ouyang, Huan;Zhang, Hualin;Yan, Qing;Ye, Yana;Luo, Ping;Zhang, Zishan;Xie, Ruihong;Cheng, Han;Zhang, Xiaofei;Gao, Xinsheng;He, Junjun;Yi, Yingtao;Li, Pingsheng
关键词:rubber tree; growth traits; genome-wide association analysis; candidate genes
-
Numerical Simulation and Bench Test of Crawler-Type Cotton Time-Delay Hole-Forming Device Based on RecurDyn-EDEM Coupling
作者:Pan, Feng;Chen, Jincheng;Zhang, Hualin;Wang, Baiwei;Jiang, Xizhen;Ji, Chao;Pan, Feng;Chen, Jincheng;Zhang, Hualin;Wang, Baiwei;Jiang, Xizhen;Ji, Chao;Zhang, Hualin;Jiang, Xizhen
关键词:cotton; crawler-type; delayed hole-forming device; coupling simulation; field experiment; soil bin test
-
ZmADF5, a Maize Actin-Depolymerizing Factor Conferring Enhanced Drought Tolerance in Maize
作者:Liu, Bojuan;Yang, Ruisi;Wang, Xiaonan;Luo, Ping;Chen, Yong;Wang, Fei;Li, Mingshun;Weng, Jianfeng;Zhang, Degui;Yong, Hongjun;Han, Jienan;Zhou, Zhiqiang;Hao, Zhuanfang;Li, Xinhai;Wang, Nan;Zhang, Xuecai
关键词:maize (Zea mays L.); drought tolerance; ZmADF5; transcriptome analysis
-
Population Genetic Structure of the Rubber Tree Powdery Mildew Pathogen (Erysiphe quercicola) from China
作者:Cao, Xueren;Han, Qiaohui;Xiao, Ying;Han, Qiaohui;Han, Qiaohui;Han, Qiaohui;Xiao, Ying;He, Junjun;Chuan, Xiangxian;Jiang, Guizhi;West, Jonathan S.;Xu, Xiangming
关键词:fungi; pathogen diversity; tropical plants