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Mapping epistasis and environment × QTX interaction based on four-omics genotypes for the detected QTX loci controlling complex traits in tobacco 被引量:4

Mapping epistasis and environment × QTX interaction based on four-omics genotypes for the detected QTX loci controlling complex traits in tobacco
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摘要 Using newly developed methods and software, association mapping was conducted for chromium content and total sugar in tobacco leaf, based on four-omics datasets. Our objective was to collect data on genotype and phenotype for 60 leaf samples at four developmental stages, from three plant architectural positions and for three cultivars that were grown in two locations. Association mapping was conducted to detect genetic variants at quantitative trait SNP(QTS) loci, quantitative trait transcript(QTT) differences,quantitative trait protein(QTP) variability, and quantitative trait metabolite(QTM) changes,which can be summarized as QTX locus variation. The total heritabilities of the four-omics loci for both traits tested were 23.60% for epistasis and 15.26% for treatment interaction.Epistasis and environment × treatment interaction had important impacts on complex traits at all-omics levels. For decreasing chromium content and increasing total sugar in tobacco leaf, six methylated loci can be directly used for marker-assisted selection, and expression of ten QTTs, seven QTPs and six QTMs can be modified by selection or cultivation. Using newly developed methods and software, association mapping was conducted for chromium content and total sugar in tobacco leaf, based on four-omics datasets. Our objective was to collect data on genotype and phenotype for 60 leaf samples at four developmental stages, from three plant architectural positions and for three cultivars that were grown in two locations. Association mapping was conducted to detect genetic variants at quantitative trait SNP(QTS) loci, quantitative trait transcript(QTT) differences,quantitative trait protein(QTP) variability, and quantitative trait metabolite(QTM) changes,which can be summarized as QTX locus variation. The total heritabilities of the four-omics loci for both traits tested were 23.60% for epistasis and 15.26% for treatment interaction.Epistasis and environment × treatment interaction had important impacts on complex traits at all-omics levels. For decreasing chromium content and increasing total sugar in tobacco leaf, six methylated loci can be directly used for marker-assisted selection, and expression of ten QTTs, seven QTPs and six QTMs can be modified by selection or cultivation.
出处 《The Crop Journal》 SCIE CAS 2013年第2期151-159,共9页 作物学报(英文版)
基金 supported by the National Basic Research Program of China (2011CB109306 and 2009CB118404) the Program of Introducing Talents of Discipline to Universities of China ("111" Project, B06014) Research Programs (CNTC-D2011100, CNTC-[2012]146, NY-[2011]3047, QKHRZ [2013] 02)
关键词 Association MAPPING study Complex trait analysis EPISTASIS effects ENVIRONMENT × treatment INTERACTION Plant architecture control QTX locus MAPPING Association mapping study Complex trait analysis Epistasis effects Environment × treatment interaction Plant architecture control QTX locus mapping
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参考文献11

  • 1LU XiuPing,GUI YiJie,XIAO BingGuang,LI YongPing,TONG ZhiJun,LIU Yun,BAI XueFei,WU WeiRen,XIA Ling,HUTTNER Eric,KILIAN Adrzej,FAN LongJiang.Development of DArT markers for a linkage map of flue-cured tobacco[J].Chinese Science Bulletin,2013,58(6):641-648. 被引量:4
  • 2肖炳光,卢秀萍,焦芳蝉,李永平,孙玉合,郭兆奎.烤烟几种化学成分的QTL初步分析[J].作物学报,2008,34(10):1762-1769. 被引量:23
  • 3Bo Lei,Xue-Hua Zhao,Kai Zhang,Jie Zhang,Wei Ren,Zhu Ren,Yi Chen,Hui-Na Zhao,Wen-Jie Pan,Wei Chen,Hong-Xun Li,Wen-Ya Deng,Fu-Zhang Ding,Kun Lu.Comparative transcriptome analysis of tobacco ( Nicotiana tabacum ) leaves to identify aroma compound-related genes expressed in different cultivated regions[J].Molecular Biology Reports.2013(1)
  • 4Yushuang Guo,Hanhua Liu,Zhixiao Yang,Jing Chen,Yimin Sun,Xueliang Ren.Identification and characterization of miRNAome in tobacco ( Nicotiana tabacum ) by deep sequencing combined with microarray[J].Gene.2012(1)
  • 5L. X. Ku,W. M. Zhao,J. Zhang,L. C. Wu,C. L. Wang,P. A. Wang,W. Q. Zhang,Y. H. Chen.Quantitative trait loci mapping of leaf angle and leaf orientation value in maize (Zea mays L.)[J].Theoretical and Applied Genetics.2010(5)
  • 6Zhenghang Wang,Xianshan Wu,Qian Ren,Xiaoping Chang,Runzhi Li,Ruilian Jing.QTL mapping for developmental behavior of plant height in wheat (Triticum aestivum L.)[J].Euphytica.2010(3)
  • 7CharlesGoulet,CatherineGoulet,Marie‐ClaireGoulet,DominiqueMichaud.2‐DE proteome maps for the leaf apoplast of Nicotiana benthamiana[J].Proteomics.2010(13)
  • 8J Antoni Rafalski.Association genetics in crop improvement[J].Current Opinion in Plant Biology.2010(2)
  • 9Peter Langridge,Delphine Fleury.Making the most of ‘omics’ for crop breeding[J].Trends in Biotechnology.2010(1)
  • 10LIU Wei-qun,GUO Hong-xiang,LI Hao.Proteomics Identification of Differentially Expressed Proteins Relevant for Nicotine Synthesis in Flue-Cured Tobacco Roots Before and After Decapitation[J].Agricultural Sciences in China,2008,7(9):1084-1090. 被引量:4

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