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Genome-wide association studies dissect the genetic networks underlying agronomical traits in soybean C Fang, Y Ma, S Wu, Z Liu, Z Wang, R Yang, G Hu, Z Zhou, H Yu, ... Genome biology 18, 1-14, 2017 | 404 | 2017 |
Natural variation at the soybean J locus improves adaptation to the tropics and enhances yield S Lu, X Zhao, Y Hu, S Liu, H Nan, X Li, C Fang, D Cao, X Shi, L Kong, ... Nature genetics 49 (5), 773-779, 2017 | 378 | 2017 |
Stepwise selection on homeologous PRR genes controlling flowering and maturity during soybean domestication S Lu, L Dong, C Fang, S Liu, L Kong, Q Cheng, L Chen, T Su, H Nan, ... Nature Genetics 52 (4), 428-436, 2020 | 310 | 2020 |
Combining structured and unstructured data for predictive models: a deep learning approach D Zhang, C Yin, J Zeng, X Yuan, P Zhang BMC medical informatics and decision making 20, 1-11, 2020 | 246 | 2020 |
A New Dominant Gene E9 Conditions Early Flowering and Maturity in Soybean F Kong, H Nan, D Cao, Y Li, F Wu, J Wang, S Lu, X Yuan, ER Cober, ... Crop Science 54 (6), 2529-2535, 2014 | 205 | 2014 |
Factors affecting the accuracy of genomic selection for agricultural economic traits in maize, cattle, and pig populations H Zhang, L Yin, M Wang, X Yuan, X Liu Frontiers in genetics 10, 189, 2019 | 169 | 2019 |
GmFT2a and GmFT5a redundantly and differentially regulate flowering through interaction with and upregulation of the bZIP transcription factor GmFDL19 in soybean H Nan, D Cao, D Zhang, Y Li, S Lu, L Tang, X Yuan, B Liu, F Kong PloS one 9 (5), e97669, 2014 | 153 | 2014 |
GmFT4, a homolog of FLOWERING LOCUS T, is positively regulated by E1 and functions as a flowering repressor in soybean H Zhai, S Lü, S Liang, H Wu, X Zhang, B Liu, F Kong, X Yuan, J Li, Z Xia PLoS One 9 (2), e89030, 2014 | 150 | 2014 |
Allelic combinations of soybean maturity loci E1, E2, E3 and E4 result in diversity of maturity and adaptation to different latitudes B Jiang, H Nan, Y Gao, L Tang, Y Yue, S Lu, L Ma, D Cao, S Sun, J Wang, ... PloS one 9 (8), e106042, 2014 | 138 | 2014 |
Genetic basis and adaptation trajectory of soybean from its temperate origin to tropics L Dong, C Fang, Q Cheng, T Su, K Kou, L Kong, C Zhang, H Li, Z Hou, ... Nature Communications 12 (1), 5445, 2021 | 108 | 2021 |
Genetic Variation in Soybean at the Maturity Locus E4 Is Involved in Adaptation to Long Days at High Latitudes Y Tsubokura, H Matsumura, M Xu, B Liu, H Nakashima, T Anai, F Kong, ... Agronomy 3 (1), 117-134, 2013 | 100 | 2013 |
Efficiently detecting protein complexes from protein interaction networks via alternating direction method of multipliers L Hu, X Yuan, X Liu, S Xiong, X Luo IEEE/ACM transactions on computational biology and bioinformatics 16 (6 …, 2018 | 93 | 2018 |
Chromosome-scale genome assembly of sweet cherry (Prunus avium L.) cv. Tieton obtained using long-read and Hi-C sequencing J Wang, W Liu, D Zhu, P Hong, S Zhang, S Xiao, Y Tan, X Chen, L Xu, ... Horticulture research 7, 2020 | 88 | 2020 |
GmCOL1a and GmCOL1b Function as Flowering Repressors in Soybean Under Long-Day Conditions D Cao, Y Li, S Lu, J Wang, H Nan, X Li, D Shi, C Fang, H Zhai, X Yuan, ... Plant and Cell Physiology 56 (12), 2409-2422, 2015 | 85 | 2015 |
KAML: improving genomic prediction accuracy of complex traits using machine learning determined parameters L Yin, H Zhang, X Zhou, X Yuan, S Zhao, X Li, X Liu Genome biology 21, 1-22, 2020 | 77 | 2020 |
A soybean quantitative trait locus that promotes flowering under long days is identified as FT5a, a FLOWERING LOCUS T ortholog R Takeshima, T Hayashi, J Zhu, C Zhao, M Xu, N Yamaguchi, T Sayama, ... Journal of Experimental Botany 67 (17), 5247-5258, 2016 | 72 | 2016 |
A variational Bayesian framework for cluster analysis in a complex network L Hu, KCC Chan, X Yuan, S Xiong IEEE Transactions on Knowledge and Data Engineering 32 (11), 2115-2128, 2019 | 71 | 2019 |
Dynamics of traveling pulses in heterogeneous media Y Nishiura, T Teramoto, X Yuan, KI Ueda Chaos: An interdisciplinary journal of nonlinear science 17 (3), 2007 | 69 | 2007 |
Molecular identification of genes controlling flowering time, maturity, and photoperiod response in soybean Z Xia, H Zhai, B Liu, F Kong, X Yuan, H Wu, ER Cober, K Harada Plant Systematics and Evolution 298, 1217-1227, 2012 | 68 | 2012 |