Jianxin Ma

Affiliations: 
Purdue University, West Lafayette, IN, United States 
Area:
Plant Genetics and Genomics​
Website:
https://ag.purdue.edu/agry/directory/Pages/maj.aspx
Google:
"Jianxin Ma"
Bio:

Research Interests
Comparative and evolutionary genomics: Employing a combination of comparative, computational and experimental genomics approaches to address the mechanistic basis that underlies structural and functional genomic changes in flowering plants, with an emphasis on duplication-driven and transposon-mediated gene and genome evolution.

Genetic dissection of complex traits: Employing a combination of genomics, proteomics, molecular biology and genetics approaches to dissect complex traits of agronomic importance such as soybean plant architecture, yield components, disease resistance, as well as traits underlying soybean domestication.

Genetic diversity and germplasm enhancement: Characterizing and utilizing untapped genetic diversity underlying important agronomic traits from wild soybean to develop pre-breeding lines for enhanced yield, climate-resilience, and adaptability through marker-assisted selection and genomic selection.

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Publications

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Zhuang Y, Wang X, Li X, et al. (2022) Phylogenomics of the genus Glycine sheds light on polyploid evolution and life-strategy transition. Nature Plants
Clark CB, Wang W, Wang Y, et al. (2021) Identification and molecular mapping of a major quantitative trait locus underlying branch angle in soybean. Tag. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik
Wang W, Chen L, Fengler K, et al. (2021) A giant NLR gene confers broad-spectrum resistance to Phytophthora sojae in soybean. Nature Communications. 12: 6263
Chen L, Wang W, Ping J, et al. (2021) Identification and molecular mapping of Rps14, a gene conferring broad-spectrum resistance to Phytophthora sojae in soybean. Tag. Theoretical and Applied Genetics. Theoretische Und Angewandte Genetik
Zhang G, Ge C, Xu P, et al. (2021) Author Correction: The reference genome of Miscanthus floridulus illuminates the evolution of Saccharinae. Nature Plants
Zhang G, Ge C, Xu P, et al. (2021) Author Correction: The reference genome of Miscanthus floridulus illuminates the evolution of Saccharinae. Nature Plants
Zhang G, Ge C, Xu P, et al. (2021) Publisher Correction: The reference genome of Miscanthus floridulus illuminates the evolution of Saccharinae. Nature Plants
Zhang G, Ge C, Xu P, et al. (2021) Publisher Correction: The reference genome of Miscanthus floridulus illuminates the evolution of Saccharinae. Nature Plants
Zhang G, Ge C, Xu P, et al. (2021) The reference genome of Miscanthus floridulus illuminates the evolution of Saccharinae. Nature Plants
Zhang G, Ge C, Xu P, et al. (2021) The reference genome of Miscanthus floridulus illuminates the evolution of Saccharinae. Nature Plants
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