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Article; Agriculture And Environmental Biotechnology

Genetic diversity and marker–trait association analysis for agronomic traits in Aconitum carmichaelii Debeaux

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Pages 905-911 | Received 19 Dec 2016, Accepted 12 Jul 2017, Published online: 19 Jul 2017

References

  • Chan TYK, Tomlinson B, Tse LKK, et al. Aconitine poisoning due to Chinese herbal medicines: a review. Vet Hum Toxicol. 1994;36:452–455.
  • Chan TYK. Aconite poisoning. Clin Toxicol. 2009;47:279–285.
  • Chen J, Chen T. Chinese medical herbology and pharmacology. City of Industry (CA): Art of Medicine Press; 2004.
  • Wang X, Wang H, Zhang A, et al. Metabolomics study on the toxicity of aconite root and its processed products psing ultraperformance liquid-chromatography/electrospray-ionization synapt high-definition mass spectrometry coupled with pattern recognition approach and ingenuity pathways analysis. J Proteome Res. 2012;11(2):1284–1301.
  • Yu Ma, Yang YX, Shu XY, et al. Aconitum carmichaelii Debeaux, cultivated as a medicinal plant in western China. Genet Resour Crop. 2016;63:919–924.
  • Ersoz E, Yu J, Buckler E. Applications of linkage disequilibrium and association mapping in maize. In: Kriz Al, Larkins BA, editors. Molecular genetic approaches to maize improvement. Vol. 63, Biotechnology in agriculture and forestry. Berlin Heidelberg: Springer; 2009. p. 173–195.
  • Sorrells M, Yu J. Linkage disequilibrium and association mapping in the Triticeae. In: Feuillet C, Muehlbauer GJ, editors. Genetics and genomics of the triticeae. Vol. 7, Plant genetics and genomics: crops and models. Berlin Heidelberg: Springer; 2009. p. 655–683.
  • Waugh R, Jannink JL, Muehlbauer GJ, et al. The emergence of whole genome association scans in barley. Curr Opin Plant Biol. 2009;12:218–222.
  • Brachi B, Faure N, Horton M, et al. Linkage and association mapping of Arabidopsis thaliana flowering time in nature. PLoS Genet. 2010 [cited 2017 Feb 09];6(5):e1000940. DOI:10.1371/journal.pgen.1000940
  • Zheng S, Byrne PF, Bai GH, et al. Association analysis reveals effects of wheat glutenin alleles and rye translocations on dough-mixing properties. J Cereal Sci. 2009;50:283–290.
  • Yu LX, Lorenz A, Rutkoski J, et al. Association mapping and gene–gene interaction for stem rust resistance in CIMMYT spring wheat germplasm. Theor Appl Genet. 2011;123:1257–1268.
  • Adhikari TB, Gurung S, Hansen JM, et al. Association mapping of quantitative trait loci in spring wheat landraces conferring resistance to bacterial leaf streak and spot blotch. Plant Genome-US. 2012;5:1–16.
  • Kollers S, Rodemann B, Ling J, et al. Whole genome association mapping of Fusarium head blight resistance in European winter wheat (Triticum aestivum L.). PloS One. 2013 [cited 2017 Feb 09];8:e57500. DOI:10.1371/journal.pone.0057500
  • Neumann K, Kobiljski B, Dencic S, et al. Genome-wide association mapping: a case study in bread wheat (Triticum aestivu m l.). Mol Breeding. 2011;27:37–58.
  • SAS Institute. SAS/STAT user's guide, version 9.1. Cary (NC): SAS Institute; 2003.
  • Yeh FC, Yang RC, Boyle T, et al. POPGENE, the user-friendly shareware for population genetic analysis. Alberta: Molecular Biology and Biotechnology Center, University of Alberta; 1997.
  • Excoffier L, Laval G, Schneider S. Arlequin (version 3.0): an integrated software package for population genetics data analysis. Evol Bioinform Online. 2005;1:47–50.
  • Pritchard JK, Stephens M, Donnelly P. Inference of population structure using multilocus genotype data. Genetics. 2000;155:945–959.
  • Yu JM, Pressoir G, Briggs WH, et al. A unified mixed-model method for association mapping that accounts for multiple levels of relatedness. Nat Genet. 2006;38:203–208.
  • Zhang ZW, Buckler ED, Casstevens TM, et al. Software engineering the mixed model for genome-wide association studies on large samples. Brief Bioinform. 2009;10:664–675.
  • Dong TT, Cui XM, Song ZH, et al. Chemical assessment of roots of Panax notoginseng in China: regional and seasonal variations in its active constituents. J Agric Food Chem. 2003;51:4617–4623.
  • Szakiel A, Paczkowski C, Henry M. Influence of environmental abiotic factors on the content of saponins in plants. Phytochem Rev. 2011;10:471–491.
  • Hou DB, Ren ZL, Shu GM. RAPD analysis of genetic diversity in the wild populations of Aconitum carmichaeli Dexb. (Ranunculaceae) in China. Acta Ecol Sin. 2006;26(6):1833–1841.
  • Hu P, Xia YL, Yang YX, et al. Genetic Diversity among Aconitum carmichaeli Debx. [Germplasm based on RAMP marker]. Southwest China J Agric Sci . 2014;27(3):984–990.
  • Zhao FC, Nie JH, Chen MZ, et al. Assessment of genetic characteristics of Aconitum germplasms in Xinjiang Province (China) by RAPD and ISSR markers. Biotechnol Biotechnol Equip. 2015;29(2):309–314.
  • Nybom H.. Comparison of different nuclear DNA markers for estimating intraspecific genetic diversity in plants. Mol Ecol. 2004;13:1143–1155.
  • Yang XH, Gao SB, Xu ST, et al. Characterization of a global germplasm collection and its potential utilization for analysis of complex quantitative traits in maize. Mol Breeding. 2011;28(4):511–526.
  • Krattinger SG, Lagudah ES, Spielmeyer W, et al. A putative ABC transporter confers durable resistance to multiple fungal pathogens in wheat. Science. 2009;323(5919):1360–1363.
  • Chen JY, Guo L, Ma H, et al. Fine mapping of qHd1, a minor heading date QTL with pleiotropism for yield traits in rice (Oryza sativ a L.). Theor Appl Genet. 2014;127(11):2515–2524.
  • Zhang N, Gibon Y, Wallace JG, et al. Genome-wide association of carbon and nitrogen metabolism in the maize nested association mapping population. Plant Physiol. 2015;168(2):575–583.
  • Cao G, Cai H, Zhang Y, et al. Identification of metabolites of crude and processed Fructus Corni in rats by microdialysis sampling coupled with electrospray ionization linear quadrupole ion trap mass spectrometry. J Pharmaceut Biomed. 2011;56:118–125.