数字农科院2.0

Single-Nucleotide Polymorphisms, Mapping And Association A.nalysis Of 1-Fft-A1 Gene I n Wheat

文献类型: 外文期刊

作者: 景蕊莲;;毛新国;;李昂;;昌小平

关键词: 1-FFT-A1; single nucleotide polymorphism; association analysis; haplotype; marker development; wheat

期刊名称: JOURNAL OF INTEGRATIVE AGRICULTURE

ISSN: 2095-3119

年卷期: 2016 年 16 卷 4 期

页码:

收录情况: JCR(2021版) ; CSCD(2020-2021年度) ; 农林核心(2020版) ; 科技核心(2020版)

摘要: Fructans are major nonstructural carbohydrates in wheat (Triticum aestivum L.). Fructan 1-fructosyltransferase (1-FFT) is the key enzyme in fructan biosynthesis. In the, present study, 96 sequence variants were detected in the 1-FFT-A1 gene among 26 wheat accessions including UR208, and 15 of them result in amino acid substitutions, forming four haplotypes. Two markers M39 and M2164 were developed based on the InDe121-39 and SNP -2164 polymorphisms to distinguish the three haplotypes in the 1-FFT-A1. 1-FFT-A1 was located on chromosome 4A using marker M2164 and was flanked by markers Xcwm27 and 6-SFT-A1. By association analysis using a natural wheat population consisted of 154 accessions, the results showed that the two markers were significantly associated with water-soluble carbohydrate (WSC) content in the lower internode stem and total stem at the early and middle grain filling stages, 1 000-grain weight (TGW) at different grain filling stages and peduncle length (PLE). Comparison of the effects of three haplotypes on agronomic traits indicated that TGW, PLE and total number of spikelets per spike (TNSS) were significantly influenced by haplotypes. HapIll showed a significant positive effect on TGW, PLE and TNSS.

分类号:

  • 相关文献

[1]Single-Nucleotide Polymorphisms, Mapping And Association A.nalysis Of 1-Fft-A1 Gene I n Wheat. Mao Xin-guo,Yue Ai-qin,Yue Ai-qin,Li Run-zhi,Chang Xiao-ping,Jing Rui-lian,Li Ang. 2017

[2]Elite Haplotypes Of A Protein K.inase Gene Tasnrk2.3 Associated W ith Important Agronomic Traits In Common Wheat. Miao, LL, Mao, XG, Wang, JY, Liu, ZC, Zhang, B, Li, WY, Chang, XP, Reynolds, M, Wang, ZH, Jing, RL. 2017

[3]Transcription Factor TaWRKY51 Is a Positive Regulator in Root Architecture and Grain Yield Contributing Traits. 李玉莹,,张艳菲,,李超男,,陈欣,,杨丽丽,,张洁,,王景一,,李龙,,Matthew P. Reynolds,,景蕊莲,,毛新国,,王晨阳. 2021

[4]Adp-Glucose Pyrophosphorylase Genes, Associated With K.ernel Weight, Underwent Selection D uring Wheat Domestication And Breeding. Hou, J, Li, T, Wang, YM, Hao, CY, Liu, HX, Zhang, XY. 2017

[5]The Circadian Clock Gene, Taprr1, Is Associated With Yield-Related Traits In Wheat (Triticum Aestivum L.). Sun, H, Zhang, WP, Wu, YZ, Gao, LF, Cui, F, Zhao, CH, Guo, ZA, Jia, JZ. 2020

[6]Global Selection on Sucrose Synthase Haplotypes during a Century of Wheat Breeding. Jian Hou, Qiyan Jiang, Chenyang Hao, Yuquan Wang, Hongna Zhang and Xueyong Zhang. 2023

[7]A Dcaps Marker Developed From A. Stress Associated Protein G ene Tasap7-B Governing Grain Size And Plant Height In Wheat. 景蕊莲,,郝晨阳,,昌小平. 2018

[8]dCAPS Markers Developed For Nitrate Transporter Genes Tanrt2L12S Associating With 1000-Grain Weight In Wheat. Huang, JF, Li, L, Mao, XG, Wang, JY, Liu, HM, Li, CN, Jing, RL. 2020

[9]Genome-Wide Association Analysis And Allelic M.ining Of Grain Shape-Related T raits In Rice. Lv, Y, Wang, YY, Jahan, N, Hu, HT, Chen, P, Shang, LG, Lin, HY, Dong, GJ, Hu, J, Gao, ZY, Qian, Q, Zhang, Y, Guo, LB. 2019

[10]Association of TaD14-4D, a Gene Involved in Strigolactone Signaling, with Yield Contributing Traits in Wheat. Ruifang Liu,Jian Hou,Huifang Li,Ping Xu,Zhengbin Zhang,Xueyong Zhang. 2021

[11]Synthetic Hexaploid Wheat: Yesterday, Today, A.nd Tomorrow. Li, AL, Liu, DC, Yang, WY, Kishii, M, Mao, L. 2018

[12]Mapping And Qtl Analysis Of E.arly-Maturity Traits In Tetraploid P otato (Solanum Tuberosum L.). Li, XC, Xu, JF, Duan, SG, Zhang, JJ, Bian, CS, Hu, J, Li, GC, Jin, LP. 2018

[13]A Major And Stable Qtl Controlling Wheat Thousand Grain Weight: Identification, Characterization, And Caps Marker Development. Duan, XX, Yu, HX, Ma, WJ, Sun, JQ, Zhao, Y, Yang, RC, Ning, TY, Li, QF, Liu, QQ, Guo, TT, Yan, M, Tian, JC, Chen, JS. 2020

[14]Selenium distribution, translocation and speciation in wheat (Triticum aestivum L.) after foliar spraying selenite and selenate. Di X., Qin X., Zhao L., Liang X., Xu Y., Sun Y., Huang Q.. 2023

[15]Race And Virulence Analysis Of Puccinia Triticina In China During 2011 To 2013. Zhang, L, Xiao, Y, Gao, Y, Zhao, N, An, YJ, Yang, WX, Meng, QF, Yan, HF, Liu, DQ. 2020

[16]Copy Number Variation Of The Cadm2 Gene And Its Association With Growth Traits In Yak. Ge, Fei,Yan, Ping,Liang, Chunnian,Chu, Min,Jia, Congjun. 2019

[17]Association Mapping Reveals Genetic Loci A.ssociated With Important Agronomic T raits In Lentinula Edodes, Shiitake Mushroom. Nong, Wenyan,Li, Chuang,Xiao, Yang,Zhang, Lin,Yang, Zhiquan,Cheung, Man-Kit,Bian, Yinbing,Gong, Wenbing,Kwan, Hoi-Shan,Gong, Wenbing. 2017

[18]Association Between Ssr Markers And F.ibre Traits In Sea I sland Cotton (Gossypium Barbadense) Germplasm Resources. Ma, Qi,Si, Aijun,Ma, Qi,Zhao, Jing,Lin, Hai,Liu, Ping,Li, Jilian,Ning, Xinzhu,Deng, Fujun. 2017

[19]Dissection Of The Genetic Basis Of Oil Content In Chinese Peanut Cultivars Through Association Mapping. Liu, Nian,Jiang, Huifang,Chen, Yuning,Lei, Yong,Liao, Boshou,Pandey, Manish K.,Varshney, Rajeev K.,Ren, Xiaoping,Huai, Dongxin,Wu, Bei,Huang, Li,Chen, Weigang,Guo, Jianbin,Chen, Haiwen,Luo, Huaiyong,Zhou, Xiaojing. 2020

[20]TaARF4 genes are linked to root growth and plant height in wheat. Wang, Ruitong,Wang, Jingyi,Li, Long,Chang, Xiaoping,Zhang, Xueyong,Mao, Xinguo,Jing, Ruilian. 2019

作者其他论文 更多>>