[1] Haichar F E, Santaella C, Heulin T A. Root exudates mediated interactions belowground[J]. Soil Biology & Biochemistry, 2014, 77(7):69-80.
[2] 李欣欣, 许锐能, 廖红.大豆共生固氮在农业减肥增效中的贡献及应用潜力[J]. 大豆科学, 2016, 35(4):531-535.
[3] 赵叶舟, 王浩铭, 汪自强.豆科植物和根瘤菌在生态环境中的地位和作用[J]. 农业环境与发展, 2013, 30(4):7-12.
[4] 刘亚柏, 王润芳.氮磷钾对红花草固氮根瘤菌生长及种植后土壤肥力的影响[J]. 中国农学通报, 2015, 31(36):220-225.
[5] 韦革宏, 马占强.根瘤菌-豆科植物共生体系在重金属污染环境修复中的地位、应用及潜力[J]. 微生物学报, 2010, 50(11):1421-1430.
[6] 张爱媛. 根瘤菌与钼肥对大豆养分吸收和产量影响的研究[D]. 哈尔滨:东北农业大学, 2015.
[7] 高俊莲, 孙建光, 陈文新. 斜茎黄芪根瘤菌结瘤基因nodA PCR扩增及PCR-RFLP分析[J]. 微生物学杂志, 2006, 26(4):1-5.
[8] Roche P, Maillet F, Plazanet C, et al. The common nodABC genes of Rhizobium meliloti are host-range determinants[J]. Proceedings of the National Academy of Sciences of the United States of America, 1996, 93(26):15305-15310.
[9] Okazaki S, Tittabutr P, Teulet A, et al. Rhizobium-legume symbiosis in the absence of Nod factors:two possible scenarios with or without the T3SS[J]. ISME Journal, 2016, 10(1):64-74.
[10] Dhole A, Shelat H, Vyas R, et al. Endophytic occupation of legume root nodules by nifH-positive non-rhizobial bacteria, and their efficacy in the groundnut (Arachis hypogaea)[J]. Annals of Microbiology, 2016, 66(4):1397-1407.
[11] Alvarez-Morales A, Hennecke H. Expression of Rhizobium japonicum nifH and nifDK operons can be activated by the klebsiella pneumonia nifA protein but not by the product of ntrC[J]. Molecular & General Genetics:MGG, 1985, 199(2):306-314.
[12] Terakado-Tonooka J, Ohwaki Y, Yamakawa H, et al. Expressed nifH genes of endophytic bacteria detected in Field-Grown sweet potatoes (Ipomoea batatas L.)[J]. Microbes and Environments, 2008, 23(1):89-93.
[13] Chun J S, Goodfellow M. A phylogenetic analysis of the genus Nocardia with 16S rRNA gene sequences[J]. International Journal of Systematic Bacteriology, 1995, 45(2):240-245.
[14] Ntushelo K. Identifying bacteria and studying bacterial diversity using the 16S ribosomal RNA gene-based sequencing techniques:A review[J]. African Journal of Microbiology Research, 2013, 7(49):5533-5540.
[15] Peter M G, Barry G R. Viability of rhizobium bacteroids isolated from soybean nodule protoplasts[J]. Planta, 1978, 142:329-333.
[16] 陈强, 张小平, 李登煜, 等. 从豆科植物的根瘤中直接提取根瘤菌DNA的方法[J]. 微生物学通报, 2002, 29(6):63-67.
[17] Yanagi M, Yamasato K. Phylogenetic analysis of the family Rhizobiaceae and related bacteria by sequencing of 16S rRNA gene using PCR and DNA sequencer[J]. FEMS Microbiology Letters, 1993, 107(1):115-120.
[18] Cardenas L, Feijo J A, Kunkel J G, et al. Rhizobium nod factors induce increases in intracellular free Calcium and extracellular Calcium influxes in bean root hairs[J]. The Plant Journal, 1999, 19(3):347-352.
[19] Azcón R, Rubio R, Barea J M. Selective interactions between different species of mycorrhizal fungi and rhizobium-meliloti strains, and their effects on growth, N2-fixation (N-15) and nutrition of Medicago sativa L.[J]. New Phytologist, 1991, 117(3):399-404.
[20] 高萍,李芳,郭艳娥,等.丛枝菌根真菌和根瘤菌防控植物真菌病害的研究进展[J].草地学报,2017,25(2):236-242. |