[1]Tissue expression and predicted protein structures of the bovine ANGPTL3 and association of novel SNPs with growth and meat quality traits. Chen, N. B.,Ma, Y.,Fu, W. W.,Xu, Y. J.,Li, F.,Yang, T.,Lin, F.,Li, J. Y.,Gao, S. X..
[2]A candidate recombinant antigen for diagnosis of schistosomiasis japonica in domestic animals. Feng, Jintao,Xu, Rui,Zhang, Xin,Han, Yu,He, Chuanchuan,Lu, Chao,Hong, Yang,Lu, Ke,Li, Hao,Jin, Yamei,Lin, Jiaojiao,Liu, Jinming,Lin, Jiaojiao.
[3]Molecular Detection of Tick-Borne Rickettsiales in Goats and Sheep from Southeastern China. Ge, Yan,Yin, Hongmei,Pan, Weiqing,Rikihisa, Yasuko,Yin, Hong. 2016
[4]A review of the pangenome: how it affects our understanding of genomic variation, selection and breeding in domestic animals?. Ying Gong,Yefang Li,Xuexue Liu,Yuehui Ma,Lin Jiang. 2023
[5]Weighted single-step genome-wide association study identified genomic regions and candidate genes for growth and reproductive traits in Wenchang chicken. Ranran Zhu,Yu Zhang,Yuxiang Jiang,Zihan Xu,Yurong Tai,Ziyi Lian,Zhandeng Li,Xiuping Wang,Na Luo,Guiping Zhao,Xuemei Deng. 2025
[6]Utilizing plasma biochemical indicators to improve prediction of economic traits in crossbred duck population. Jian Hu,Mengdie Wang,Linxi Zhu,Chengming Han,Qinglei Yang,Zhenlin Liu,Jing Song,Zhengkui Zhou,Shuisheng Hou,Wentao Cai. 2025
[7]Ancient DNA analysis of Panicum miliaceum (broomcorn millet) from a Bronze Age cemetery in Xinjiang, China. Li, Chunxiang,Wang, Yingnan,Zhou, Hui,Xu, Yue,Li, Chunxiang,Zhou, Hui,Xu, Yue,Dong, Yu,Dong, Yu,Liu, Minxuan,Lu, Ping,Li, Wenying,Cui, Xiyan.
[8]Genome-wide population affinities and signatures of adaptation in hydruntines, sussemiones and Asian wild asses. Pan, Jianfei,Liu, Xuexue,Baca, Mateusz,Calviere-Tonasso, Laure,Schiavinato, Stephanie,Chauvey, Lorelei,Tressieres, Gaetan,Perdereau, Aude,Aury, Jean-Marc,Oliveira, Pedro H.,Wincker, Patrick,Abdykanova, Aida,Arsuaga, Juan Luis,Bayarsaikhan, Jamsranjav,Belinskiy, Andrey B.,Carbonell, Eudald,Davoudi, Hossein,Lira Garrido, Jaime,Gilbert, Allan S.,Hermes, Taylor,Warinner, Christina,Kalmykov, Alexey A.,Lordkipanidze, David,Mackiewicz, Pawel,Mohaseb, Azadeh F.,Richter, Kristine,Sayfullaev, Nuritdin,Shapiro, Beth,Shnaider, Svetlana,Southon, John,Stefaniak, Krzysztof,Summers, Geoffrey D.,van Asperen, Eline Naomi,Vanishvili, Nikoloz,Hill, Eden A.,Kuznetsov, Pavel,Reinhold, Sabine,Hansen, Svend,Mashkour, Marjan,Berthon, Remi,Taylor, William Timothy Treal,Houle, Jean-Luc,Hekkala, Evon,Popovic, Danijela,Orlando, Ludovic. 2024
[9]Ancient Genome of Broomcorn Millet from Northwest China in Seventh Century CE: Shedding New Light to Its Origin and Dispersal Patterns. Xiaolan Sun,Yifan Wang,Yongxiu Lu,Yongxiang Xu,Bingbing Liu,Yishi Yang,Guoke Chen,Hongru Wang,Zihao Huang,Yuanyang Cai,Zhengquan Gu,Xiaoxia Wang,Guanghui Dong,Yucheng Wang. 2024
[10]Evolution and legacy of East Asian aurochs. Hou, Jiawen,Guan, Xiwen,Xia, Xiaoting,Lyu, Yang,Liu, Xin,Mazei, Yuri,Xie, Ping,Chang, Fengqin,Zhang, Xiaonan,Chen, Jialei,Li, Xinyi,Zhang, Fengwei,Jin, Liangliang,Luo, Xiaoyu,Sinding, Mikkel-Holger S.,Sun, Xin,Achilli, Alessandro,Migliore, Nicola Rambaldi,Zhang, Dongju,Lenstra, Johannes A.,Han, Jianlin,Fu, Qiaomei,Liu, Xinyi,Zhang, Xiaoming,Chen, Ningbo,Lei, Chuzhao,Zhang, Hucai. 2024
[11]Mapping of clubroot (Plasmodiophora brassicae) resistance in canola (Brassica napus). Zhang, H.,Sun, R.,Zhang, H.,Strelkov, S. E.,Feng, J.,Hwang, S. -F.,Falak, I.,Huang, X..
[12]Characterisation of high- and low-molecular-weight glutenin subunit genes in Chinese winter wheat cultivars and advanced lines using allele-specific markers and SDS-PAGE. Yang, F. P.,Wang, L. H.,Wang, J. W.,He, X. Y.,Xia, X. C.,He, Z. H.,Yang, F. P.,Yang, W. X.,Wang, J. W.,Zhang, X. K.,Shang, X. W.,He, Z. H..
[13]Genetic diversity within Oryza rufipogon germplasms preserved in Chinese field gene banks of wild rice as revealed by microsatellite markers. Zhang, Chi-Hong,Li, Dao-Yuan,Pan, Da-Jian,Jia, Ji-Zeng,Dong, Yu-Shen.
[14]Genetic diversity among a founder parent and widely grown wheat cultivars derived from the same origin based on morphological traits and microsatellite markers. Li, X. J.,Xu, X.,Yang, X. M.,Li, X. Q.,Liu, W. H.,Gao, A. N.,Li, L. H.,Li, X. J.,Xu, X..
[15]Discovery, evaluation and distribution of haplotypes of the wheat Ppd-D1 gene. Guo, Zhiai,Song, Yanxia,Zhou, Ronghua,Jia, Jizeng,Guo, Zhiai,Ren, Zhenglong.
[16]SSR marker-based mapping and linkage analysis of Bombyx mori thermotolerance gene. Zhao, Yuan,Wu, Yang-Chun,Zhu, Ya-Hong,Zhao, Yuan,Zhang, Jiang.
[17]Comparative LD mapping using single SNPs and haplotypes identifies QTL for plant height and biomass as secondary traits of drought tolerance in maize. Lu, Yanli,Xu, Jie,Yuan, Zhimin,Lan, Hai,Rong, Tingzhao,Lu, Yanli,Xu, Yunbi,Xu, Yunbi,Shah, Trushar.
[18]Functional markers in wheat: current status and future prospects. Liu, Yanan,He, Zhonghu,Xia, Xianchun,He, Zhonghu,Appels, Rudi.
[19]Molecular Mapping of the Major Resistance Quantitative Trait Locus qHS2.09 with Simple Sequence Repeat and Single Nucleotide Polymorphism Markers in Maize. Weng, Jianfeng,Hao, Zhuanfang,Xie, Chuanxiao,Li, Mingshun,Zhang, Degui,Bai, Li,Liu, Changlin,Zhang, Shihuang,Li, Xinhai,Liu, Xianjun,Wang, Zhenhua,Zhang, Lin,Wang, Jianjun.
[20]Development of STS markers and establishment of multiplex PCR for Glu-A3 alleles in common wheat (Triticum aestivum L.). Wang, Linhai,Xia, Xianchun,He, Zhonghu,Li, Genying,Pena, Roberto J.,He, Zhonghu.