Page 23 - AJWEP-22-6
P. 23

Soybean with bacteria and humics

                Development 2025,” held at the Latvia University of Life   11.  Kucey  RMN,  Snitwongse  P,  Chaiwanakupt  P,  et al.
                Sciences and Technologies (LBTU) in Jelgava, Latvia,    Nitrogen  fixation  ( N  dilution)  with  soybeans  under
                                                                                        15
                from 14 to 16 May 2025. The event was conducted in a    Thai field conditions. Plant Soil. 1988;106(1):87-92.
                hybrid format—with over 250 participants attending in      doi: 10.1007/BF02370103
                person and approximately 150 participating online.  12.  Maluk  M,  Giles  M,  Wardell  GE,  et al.  Biological
                                                                        nitrogen  fixation  by  soybean  in  Scotland  requires

                References                                              inoculation  with  non-native  Bradyrhizobium.  Front
                                                                        Agron. 2023;5:1196873.
                                                                        doi: 10.3389/fagro.2023.1196873
                1.  Ishaq Z, Machido DA, Atta HI. Isolation and enumeration   13.  Praharaj C, Dhingra K. Growth and nitrogen fixation in
                   of Bradyrhizobium species dwelling in the root nodules of   soybean under Bradyrhizobium inoculation and nitrogen
                   soybean plant. UMYU J Microbiol Res. 2020;5(2):17-25.  schedules. Indian J Agron. 2001;46(1):110-116.
                   doi: 10.47430/ujmr.2052.003                      14.  Keyser   HH,   Li   F.   Potential   for   increasing
                2.  Da Silva  MSR,  dos Santos  BM,  Chávez  DW,  et al.   biological  nitrogen  fixation  in  soybean.  Plant  Soil.
                   K-humate  as  an  agricultural  alternative  to  increase   1992;141(1-2):119-135.
                   nodulation of soybeans inoculated with Bradyrhizobium.      doi: 10.1007/BF00011313
                   Biocatal Agric Biotechnol. 2021;36:102129.       15.  Barros  Carvalho  GA,  Hungria  M,  Lopes  FM,  et al.
                   doi: 10.1016/j.bcab.2021.102129                      Brazilian  adapted  soybean  Bradyrhizobium strains
                3.  Campo  RJ, Araujo  RS,  Hungria  M.  Nitrogen  fixation   uncover IS elements impacting nitrogen fixation. FEMS
                   with the soybean crop in Brazil: compatibility between   Microbiol Lett. 2019;366(11):fnz046.
                   seed  treatment  with  fungicides  and  Bradyrhizobial      doi: 10.1093/femsle/fnz046
                   inoculants. Symbiosis. 2009;48(1-3):154-163.     16.  Delamuta  JRM,  Ribeiro  RA,  Ormeño  Orrillo  E,  et al.
                   doi: 10.1007/BF03179994                              Bradyrhizobium tropiciagri sp. nov. and Bradyrhizobium
                4.  Syromiatnykov Y, Khalilov N, Troyanovskaya I, et al.   embrapense sp. nov.  Int J Syst Evol Microbiol.
                   Dynamics  of  agrophysical  parameters  and  corn  yield   2015;65(12):4424-4433.
                   under minimum  tillage  in Samarkand region.  Acta      doi: 10.1099/ijsem.0.000592
                   Technol Agric. 2025;28(2):80-87.                 17.  Bender FR, Nagamatsu S, Delamuta JRM, et al. Genetic
                   doi: 10.2478/ata-2025-0011                           variation in symbiotic islands of Bradyrhizobium strains.
                5.  Erniyani K. Effectiveness of Bradyrhizobium japonicum   Microb Genom. 2022;8(11):000795.
                   Strains Isolated from Several  Locations  in Ende on      doi: 10.1099/mgen.0.000795
                   Nodule  Formation  and  Nitrogen  Fixation  in  Soybean   18.  Abaidoo RC, Keyser HH, Singleton PW, Dashiell KE,
                   (Glycine max L.). AGRIFOR. 2020;3(2):138-150.        Sanginga N. Population size and symbiotic characteristics
                   doi: 10.37478/agr.v3i2.501                           of indigenous  Bradyrhizobium spp.  Appl  Soil  Ecol.
                6.  Kurdali F, Nabulsi I, Mirali N. Nitrogen fixation in mutant   2007;35(1):57-67.
                   soybean  lines  inoculated  with  two  Bradyrhizobium      doi: 10.1016/j.apsoil.2006.05.006
                   japonicum strains. Agrochimica. 2005;49(5-6):233-245.  19.  Syromyatnikov  Y,  Troyanovskaya  I, Zagidullin  R,
                7.  Pashchenko VF,  Syromyatnikov YUN. The  transporting   Tikhonov E, Orekhovskaya  A. Soil density  in
                   ability of the rotor of the soil cultivating loosening and   traditional  mouldboard tillage.  Acta  Technol Agric.
                   separating vehicle. Tractors Agric Mach. 2019;86(2):67-74.  2023;26(3):159-165.
                   doi: 10.31992/0321-4443-2019-2-67-74                 doi: 10.2478/ata-2023-0021
                8.  Perin J, Bertéli MBD, Valle JS, et al. Characterization   20.  Syromiatnykov  Y,  Ishniyazova  S,  Voinash  S,  et al.
                   of  aapP  and  nopP  genes  related  to  nitrogen  fixation   Effectiveness  of  compositions  based  on  thiosulfonates
                   efficiency with soybean in Bradyrhizobium japonicum.   and  biosurfactants  for plant  protection  against
                   Genet Mol Res. 2018;17(3):gmr16039867.               phytopathogens. E3S Web Conf. 2025;613:e02002.
                   doi: 10.4238/GMR16039867                             doi: 10.1051/e3sconf/202561302002
                9.  Klepa  MS,  diCenzo  G,  Hungria  M.  Comparative   21.  Zahran  HH.  Rhizobium-legume  symbiosis  and
                   genomic  analysis of  Bradyrhizobium  strains  with   nitrogen fixation under stress. Microbiol Mol Biol Rev.
                   natural variability in nitrogen fixation. Microbiol Spectr.   1999;63(4):968-989.
                   2024;12(2):e00260-24.                                doi: 10.1128/MMBR.63.4.968989.1999
                   doi: 10.1128/spectrum.00260-24                   22.  Giller  KE.  Nitrogen Fixation  in Tropical Cropping
                10.  Agoyi EE, Afutu E, Chadare FJ, et al. Ureide assay to   Systems. Wallingford, UK: CABI Publishing; 2001.
                   assess N  fixation abilities of soybean genotypes under      doi: 10.1079/9780851994178.0000
                          2
                   different Bradyrhizobium strains. J Crop Sci Biotechnol.   23.  Syromyatnikov  YN,  Orekhovskaya AA,  Dzjasheev A,
                   2017;20(2):65-72.                                    et  al. Cultivator  points  of  the  rotary  tillage  loosening
                   doi: 10.1007/s12892-016-0132-0                       and separating machine of the stratifier. J Phys Conf Ser.



                Volume 22 Issue 6 (2025)                        17                           doi: 10.36922/AJWEP025230190
   18   19   20   21   22   23   24   25   26   27   28