数字农科院2.0

Molecular breeding and the impacts of some important genes families on agronomic traits, a review

文献类型: 外文期刊

作者: Mohamad Hesam Shahrajabian;Wenli Sun;Qi Cheng

作者机构:

关键词: Agronomic traits; Gene evolution; Gene families; Molecular breeding; SDR protein family

期刊名称: Genet. Resour. Crop. Evol.

ISSN: 0925-9864

年卷期: 2021 年

页码:

收录情况: JCR(2021版)

摘要: Gene identification and evolution and also their impacts on agronomical traits are important variations between related species which are often because of differences in the cumulative actions of multiple gene products. Understanding genetic variability for agronomic traits is important parameter of breeding programs for broadening the gene pool of different crops. The Short-Chain Dehydrogenase/Reductase (SDR) super-family is one of the largest known protein families and comprises thousands of members found in species ranging from bacteria to humans. SDR involvement has been demonstrated in a variety of primary and secondary metabolisms. Quantitative trait locus (QTL) mapping provides a starting point for dissecting complex traits into its component alleles which may help to quantify relative impacts of alleles on the traits and locates genomic regions responsible for marker-trait association, and provide a foundation of marker-assisted selection which expedites the breeding process given the proper estimation of position and the effects of QTLs. In this manuscript we have reviewed, molecular breeding and gene evolution and domestication in crops, and also survey some important reported genes which have notable impact on agronomical traits in various crops. © 2021, The Author(s), under exclusive licence to Springer Nature B.V.

分类号:

  • 相关文献

[1]Comparative Genomics within and across Bilaterians Illuminates the Evolutionary History of ALK and LTK Proto-Oncogene Origination and Diversification. Alex Dornburg,Zheng Wang,Junrui Wang,Elizabeth S Mo,Francesc López-Giráldez,Jeffrey P Townsend. 2021

[2]Segmental Translocation Contributed To The Origin Of The Brassica S-Locus. Cui, YN, Zhuang, M, Wu, J, Liu, JS, Zhang, YY, Zhang, LK, Huang, YL, Cai, X, Liang, JL, Zhang, K, Wang, XW, Cheng, F. 2020

[3]Base-Editing-Mediated Artificial Evolution of OsALS1 In Planta to Develop Novel Herbicide-Tolerant Rice Germplasms. Zhou, Xueping,Zhou, Huanbin,Bin Ren,Zhou, Xueping,Spetz, Carl,Li, Xiangju,Li, Shaofang,Kuang, Yongjie,Zhou, Huanbin,Yan, Fang,Bin Ren. 2020

[4]Positional Cloning Of Pmch1357 Reveals The Origin And Allelic Variation Of The Pm2 Gene For Powdery Mildew Resistance In Wheat. Chen, Fang,Chen, Fang,Guo, Huijuan,Zhang, Xiaojun,Li, Xin,Chang, Zhijian,Powers, Carol,Jia, Haiyan,Yan, Liuling,Zheng, Jun,Jia, Haiyan,Qiao, Linyi. 2019

[5]Development Of Multiple Snp Marker P.anels Affordable To Breeders T hrough Genotyping By Target Sequencing (Gbts) In Maize. Guo, ZF, Wang, HW, Tao, JJ, Ren, YH, Xu, C, Wu, KS, Zou, C, Zhang, JN, Xu, YB. 2019

[6]Identification Of A Novel Seed S.ize Associated Locus Sw9-1 I n Soybean. Li, JJ, Zhao, JH, Li, YH, Gao, YL, Hua, SN, Nadeem, M, Sun, GL, Zhang, WM, Hou, JF, Wang, XB, Qiu, LJ. 2019

[7]Development Of A Maize 55 K. Snp Array With I mproved Genome Coverage For Molecular Breeding. Xu, C, Ren, YH, Jian, YQ, Guo, ZF, Zhang, Y, Xie, CX, Fu, JJ, Wang, HW, Wang, GY, Xu, YB, Li, P, Zou, C. 2017

[8]The Emerging Oilseed Crop Sesamum I.ndicum Enters The Omics E ra. Dossa, K, Diouf, D, Wang, LH, Wei, X, Zhang, YX, Niang, M, Fonceka, D, Yu, JY, Mmadi, MA, Yehouessi, LW, Liao, BS, Zhang, XR, Cisse, N. 2017

[9]Development Of Highly Informative Genome-Wide S.ingle Sequence Repeat Markers F or Breeding Applications In Sesame And Construction Of A Web Resource: Sisatbase. Dossa, K, Yu, JY, Liao, BS, Cisse, N, Zhang, XR. 2017

[10]BoCER1 is essential for the synthesis of cuticular wax in cabbage (Brassica oleracea L. var. capitata). Wenxue Cao,Xin Dong,Jialei Ji,Limei Yang,Zhiyuan Fang,Mu Zhuang,Yangyong Zhang,Honghao Lv,Yong Wang,Peitian Sun,Yumei Liu,Zhansheng Li,Fengqing Han. 2021

[11]Transcriptional and post‐transcriptional regulation of heading date in rice. Shirong Zhou,Shanshan Zhu,Song Cui,Haigang Hou,Haoqin Wu,Benyuan Hao,Liang Cai,Zhuang Xu,Linglong Liu,Ling Jiang,Haiyang Wang,Jianmin Wan. 2021

[12]Genome-Wide Identification Of Microsatellite Markers F.rom Cultivated Peanut (Arachis H ypogaea L.). Lu, Q, Hong, YB, Li, SX, Liu, H, Li, HF, Zhang, JN, Lan, HF, Liu, HY, Li, XY, Wen, SJ, Zhou, GY, Varshney, RK, Jiang, HF, Chen, XP, Liang, XQ. 2019

[13]Enhanced Expression Of Qtl Qll9/Dep1 F.acilitates The Improvement Of L eaf Morphology And Grain Yield In Rice. Fu, X, Xu, J, Zhou, MY, Chen, MM, Shen, L, Li, T, Zhu, YC, Wang, JJ, Hu, J, Zhu, L, Gao, ZY, Dong, GJ, Guo, LB, Ren, DY, Chen, G, Lin, JR, Qian, Q, Zhang, GH. 2019

[14]Patent Analysis Provides Insights Into T.he History Of Cotton M olecular Breeding Worldwide Over The Last 50 Years. He, W, Zhao, HM, Yang, XW, Zhang, R, Wang, JJ. 2019

[15]Impact Of Climate Change On C.rops Adaptation And Strategies T o Tackle Its Outcome: A Review. Raza, A, Razzaq, A, Mehmood, SS, Zou, XL, Zhang, XK, Lv, Y, Xu, JS. 2019

[16]Exploitation of drought tolerance-related genes for crop improvement. 王景一,,李超男,,李龙,,Matthew Reynolds,,毛新国,,景蕊莲. 2021

[17]The developments and prospects of plant super-pangenomes Demands, approaches, and applications. He Wenchuang, Li XiaoXia, Qian Qian, Shang Lianguang. 2025

[18]The Effect Of Alternate Wetting A.nd Severe Drying Irrigation O n Grain Yield And Water Use Efficiency Of Indica-Japonica Hybrid Rice (Oryza Satival.). Chen, Tingting,Chen, Song,Zhang, Xiufu,Wang, Dangying,Xu, Chunmei,Chu, Guang. 2018

[19]Phenotypic characterization and genetic dissection of nine agronomic traits in Tokachi nagaha and its derived cultivars in soybean (Glycine max (L.) Merr.). Liu, Zhangxiong,Li, Huihui,Li, Yinghui,Guan, Rongxia,Guo, Yong,Chang, Ruzhen,Qiu, Li-Juan,Fan, Xuhong,Wang, Shuming,Huang, Wen,Yang, Jiyu,Wen, Zixiang,Wang, Dechun,Chen, Pengyin.

[20]Genetic discovery for oil production and quality in sesame. Zhang, Yanxin,Wang, Linhai,Li, Donghua,Zhu, Xiaodong,Zhu, Xiaofeng,Gao, Yuan,Zhang, Xiurong,Liu, Kunyan,Feng, Qi,Zhao, Yan,Zhao, Qiang,Li, Wenjun,Fan, Danlin,Lu, Yiqi,Zhou, Congcong,Zhu, Chuanrang,Tian, Qilin,Wen, Ziruo,Weng, Qijun,Han, Bin,Huang, Xuehui,Zhang, Xianmei,Liu, Lifeng,Tang, Xiumei,Zhong, Ruichun.

作者其他论文 更多>>