1.Zhang Z, Bi X, Du X, Liu H, An T, Zhao Y, Yu H, Chen Y, Wen J. Comparative metabolomics reveal the participation of soybean unique rhizosphere metabolites in susceptibility and resistance of host soybean toPhytophthora sojae. Plant and Soil, 2022, Online. (中科院二区Top,4.192)
2.Zhang Z, Zhao Y, An T, Yu H, Bi X, Liu H, Xu Y, Yang Z, Chen Y, Wen J. Maize and common bean seed exudates mediate part of nonhost resistance toPhytophthora sojaeprior to infection. Phytopathology, 2022, 112(2): 335-344. (中科院二区,4.025)
3.Zhang Z,Zhao Y,Yu H,Chen Y,Gu X,Wen J. Pathotypes ofPhytophthora sojaeand their distribution in Jilin, China. Journal of Plant Pathology, 2021, 103(1): 241-248. (中科院四区,1.729)
4.Zhang Z, Liu H, Bi X, Yu H, Chen Y, Yang Z, Wen J. Differential response of Phytophthora sojae zoospores to soybean seed exudates provides evidence of seed exudates participate in host resistance. Plant and Soil, 2020, 452(1): 601-614. (中科院二区Top,4.192)
5.Zhang Z, Xu Y, Song G, et al.Phytophthora sojaezoospores differ in chemotaxis to the root and root exudates of host soybean and nonhost common bean. Journal of General Plant Pathology, 2019(3): 201-210. (中科院四区,1.449)
6.Wen J,Zhang Z, Xu Y, et al. Differential responses ofPhytophthora sojaeto seed exudates of host soybean and non-host maize.东北农业大学学报:英文版,2019(3):1-8.
7.Bi X#,Zhang Z#(共一), Du X, Liu H, An T, Zhao Y, Chen Y, Wen J. Isoflavone phytoalexins in root exudates participate in mediating the resistance of common beanPhaseolus vulgaristoPhytophthora sojae. Plant Pathology, 2022, Online. (中科院二区,2.772)
8.Gao X, Liu H, Yu H,Zhang Z, Bi X, Zhao Y, An T, Wen J. Combination of developmental behaviors and transcriptome reveals differential response mechanisms ofPhytophthora sojaeto aspartic acid and glucose in seed exudates. Phytopathology, 2022, 112(3): 620-629. (中科院二区,4.025)
9.Bi X, Song G, Yu H,Zhang Z, Liu H, Yang Z, Chen Y, Wen J. Changes in biochemistry and cellular ultrastructure support different resistance mechanisms toPhytophthora sojaein nonhost common bean and host soybean. Plant Pathology, 2021, 71(4): 917-926. (中科院二区,2.772)
10.Liu H, An T, Zhao Y, Du X, Bi X,Zhang Z, Chen Y, Wen J. Benzoxazines in the root exudates responsible for nonhost disease resistance of maize toPhytophthora sojae. Phytopathology, 2022, 112(7): 1537-1544. (中科院二区,4.025)
11.宋光梅,徐莹,张卓群,陈宇飞,贾梦瑱,文景芝.非寄主和寄主种子分泌物对大豆疫霉活性的影响.植物保护学报,2019(4):730-737.(中文核心)
12.文景芝,徐莹,张卓群,宋光梅,陈宇飞,赵钰琦,高新颖,贾梦瑱,朱加楠.大豆种子分泌物对大豆疫霉发育行为的影响及其与品种抗病性关系.东北农业大学学报,2018, 49(10): 1-8.
13.文景芝,于涵,张卓群,毕湘琪,刘海旭,杨治月,宋光梅,张湘笛,唐宇,陈宇飞.种子分泌物中酚酸对大豆疫霉菌生长发育及游动孢子趋化性的影响.东北农业大学学报,2021, 52(4): 11-19.
14.文景芝,赵钰琦,高新颖,张卓群,吴羚阁,贾梦瑱.大豆种子分泌物中蛋白质鉴定及其对大豆疫霉的趋化作用.东北农业大学学报,2020, 51(2): 1-9.