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[1]Li LK, Zou Y, Wang YH, Chen FJ*, Xing GN*. Effects of corn intercropping with soybean/peanut/millet on the biomass and yield of corn under fertilizer reduction. Agriculture-BASEL, 2022, 12, 151(*通讯作者)[2]Li YW, Chu L, Liu XF, Zhang NN, Xu YF, Karikari B, Wang Y, Chang FG, Liu Z, Tan LM, Yue H, Xing GN*, Zhao TJ*. Genetic architecture and candidate genes for pubescence length and density and its relationship with resistance to common cutworm in soybean. Frontiers in Plant Science, 2022, 12: 771850(*通讯作者)[3]Li M, Chen LL, Zeng J, Razzaq MK, Xu XC, Xu YF, Wang WB, He JB, Xing GN*, Gai JY*. Identification of additive–epistatic QTLs conferring seed traits in soybean using recombinant inbred lines. Frontiers in Plant Science, 2020, 11: 566056(*通讯作者)[4]Ali MJ#, Xing GN#, He JB, Zhao TJ, GaiJY. Detecting the QTL-allele system controlling seed-flooding tolerance in a nested association mapping population of soybean. The Crop Journal, 2020, 781-792(#同等贡献)[5]Zhu JH, Zhu YH, Li M, Zhao SY, Yan T, Zhai YT, Hu ZZ, Ding Q, Lu W, Gai JY, Wang L*, XingGN*. Boundary insect damage detection and dimension and color measurement of detached soybean leaf. International Agricultural Engineering Journal, 2019, 28(3): 433-442(*通讯作者)[6]Zhang YF, Dai Y, Wan GJ, Liu B, Xing GN*and Chen FJ*. Effects of elevated CO2and resistant soybean on plant chemistry, growth, yield and feeding of a target Lepidoptera pest, Spodoptera litura. Environmental Entomology, 2018, 47(4): 848–856(*通讯作者)[7]Zhang YF, Wan GJ, Liu B, Zhang XG, Xing GN*, Chen FJ*. Elevated CO2and temperature alter development and food utilization of Spodoptera liturafed on resistant soybean. Journal of Applied Entomology, 2018, 142: 250–262.(*通讯作者)[8]Xing GN#, Liu K#, Gai JY*. A high-throughput phenotyping procedure for evaluation of antixenosisagainst common cutworm at early seedling stage in soybean. Plant methods, 2017, 13:66(#同等贡献)[9]Xing GN, Zhou B, Wang YF, Zhao TJ, Yu DY, Chen SY, Gai JY. Genetic components and major QTL confer resistance to bean pyralid (Lamprosema indicataFabricius) under multiple environments in four RIL populations of soybean. Theor Appl Genet, 2012, 125:859-875[10]Kim HJ#, Xing GN#, He JB, Zhao TJ, Yang SP, Li Y, Palmer RG, Gai JY. Environment-differential association analysis of antibiosis to common cutworm in Chinese soybean germplasm population and optimization of cross design. Mol Breeding, 2015, 35: 76(#同等贡献)[11]Kim HJ, Xing GN, Wang YF, Zhao TJ, Yu DY, Yang SP, Li Y, Chen SY, Palmer RG, Gai JY. Constitution of resistance to common cutworm in terms of antibiosis and antixenosis in soybean RIL populations. Euphytica, 2014,196:137-154[12]曾健, 徐先超, 徐昱斐, 王秀成, 于海燕, 冯贝贝, 邢光南*. 利用动态转录组学挖掘大豆百粒重候选基因. 作物学报,2021,47(11): 2121-2133.[13]胡壮壮, 徐先超, 潘霖, 李蒙, 曾健, Razzaq MK, 邢光南*, 盖钧镒*.不同生殖生长期大豆器官对斜纹夜蛾抗性的比较分析. 大豆科学, 2020, 39(6): 932-939[14]胡壮壮, 师毅, 李拥虎, 薛建光, 王吴彬, 钱海涛, 邢光南*, 盖钧镒*. 不同聚集信息素诱芯及诱捕器对大豆田间点蜂缘蝽诱捕效果的研究. 大豆科学, 2020, 39(2): 288-296[15]丁琦, 徐伟, 李蒙, 王秀成, 卢伟, 盖钧镒, 王玲*, 邢光南*. 基于分水岭和统计矩的大豆籽粒形态参数测量方法. 大豆科学, 2019, 38(6): 960-967[16]李剑桥, 张逢凯, 邢光南*, 盖钧镒*. 不同生育阶段剪叶量对大豆品种南农99-6农艺和品质性状的影响. 大豆科学, 2018,37(5): 715-722[17]邢光南, 管荣展, 盖钧镒. 生物统计与试验设计互动式教学与教学资源建设并进模式初探. 高校实验室工作研究, 2018, 3: 7-10[18]邢光南, 管荣展, 盖钧镒. 科研反哺教学在生物统计与试验设计课程中的初探. 中国农业教育, 2017, 5: 67-70+95[19]邢光南, 管荣展, 赵团结, 盖钧镒. 比较法在生物统计实验教学中的应用. 生物学杂志, 2017, 34(2): 112-115[20]杨莹, 邢光南*, 盖钧镒*. 我国野生大豆对斜纹夜蛾的抗生性鉴定及资源遴选. 大豆科学, 2016,35(3): 448-454[21]邢光南, 刘泽稀楠, 谭连美, 岳汉, 王宇峰, KIM Hyun-Jee, 赵团结, 盖钧镒. 大豆叶面茸毛密度和长度的QTL定位. 作物学报, 2013,39(1):12-20[22]邢光南, 谭连美, 刘泽稀楠, 岳汉, 张寒竹, 史鸿飞, 赵团结, 盖钧镒.大豆地方品种叶片叶柄茸毛性状的形态变异及其与豆卷叶螟抗性的相关分析. 大豆科学, 2012, 31(5):691-696[23]邢光南, 赵团结,盖钧镒.用SAS程序模拟抽样绘制t、F和χ2分布. 中国卫生统计, 2011, 28(2) :197-198,201[24]邢光南,赵团结,盖钧镒. 生物统计教学中用SAS程序讲解抽样分布. 农业网络信息,2010,3:107-110[25]邢光南, 赵团结, 王柬人, 盖钧镒.大豆叶茸毛着生状态的变异及其与豆卷叶螟抗性的相关性. 大豆科学, 2009,28(5):768-773[26]邢光南,周斌,赵团结,喻德跃,邢邯,陈受宜,盖钧镒. 大豆抗筛豆龟蝽Megacota cribraria (Fabricius)的QTL分析. 作物学报, 2008, 34(3):361-368[27]邢光南,赵团结,盖钧镒. Mapmaker/Exp (3.0) 遗传作图中标记分群和排序实施技术的讨论. 作物学报, 2008, 34(2):217-223[28]邢光南,赵团结,盖钧镒. 大豆对豆卷叶螟Lamprosema indicata (Fabricius)抗性的遗传分析. 作物学报, 2008, 34(1):8-16[29]邢光南,赵团结,盖钧镒. 大豆资源的筛豆龟蝽[Megacopta Cribraria (Fabricius)]抗性鉴定. 作物学报, 2006, 32(4): 491-496