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      Rhizobial inoculation in black wattle plantation ( Acacia mearnsii De Wild.) in production systems of southern Brazil

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          Abstract

          Black wattle ( Acacia mearnsii De Wild.) is a tree legume native to southeast Australia, but present in all continents. Today it covers about 142,400 ha in Brazil, with plantations concentrated in the southern region of the country. Black wattle may form nodules and establish rhizobial symbiosis capable of fixing N 2, but rhizobial inoculation is not done in commercial plantations. About 40 kg ha −1 of urea is applied during seedling transplantation. In this review, evidences by which rhizobial inoculation affects monoculture, mixed cultivation, and agroforestry black wattle production systems were searched in literature. Previous measurements in cultivated forests have indicated that biological nitrogen fixation in black wattle may provide up to 200 kg of N ha −1 year −1 to the soil. Therefore, rhizobia inoculation may bring several opportunities to improve black wattle production systems. Black wattle is not a very selective partner in the rhizobial symbiosis, but the genus Bradyrhizobium dominates the rhizobial diversity of black wattle nodules. Investigation on rhizobial diversity in soils where the crop is cultivated may represent an opportunity to find more effective rhizobia strains for inoculants. The successful history of biological nitrogen fixation in grain legumes must inspire the history of tree legumes. Microbiology applied to forestry must overcome challenges on the lack of trained professionals and the development of new application technologies.

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          Author and article information

          Contributors
          rmonteiroef@gmail.com
          glaciela.kaschuk@gmail.com
          etienne.winagraski@gmail.com
          celso.auer@embrapa.br
          antonio.higa@gmail.com
          Journal
          Braz J Microbiol
          Braz. J. Microbiol
          Brazilian Journal of Microbiology
          Springer International Publishing (Cham )
          1517-8382
          1678-4405
          29 August 2019
          October 2019
          : 50
          : 4
          : 989-998
          Affiliations
          [1 ] GRID grid.20736.30, ISNI 0000 0001 1941 472X, Departamento de Engenharia Florestal, , Universidade Federal do Paraná, ; Av. Prefeito Lothário Meissner, 632, Jardim Botânico, Curitiba, Paraná 80210-170 Brazil
          [2 ] GRID grid.20736.30, ISNI 0000 0001 1941 472X, Departamento de Solos e Engenharia Agrícola, , Universidade Federal do Paraná, ; Rua dos Funcionários, 1540, Curitiba, Paraná 80035-050 Brazil
          [3 ] GRID grid.460200.0, ISNI 0000 0004 0541 873X, Embrapa Florestas, ; Cx. Postal 319, Colombo, Paraná 83411-000 Brazil
          Author notes

          Responsible Editor: Ieda Carvalho Mendes

          Author information
          http://orcid.org/0000-0002-8993-6563
          Article
          PMC6863320 PMC6863320 6863320 148
          10.1007/s42770-019-00148-5
          6863320
          31463869
          8b270c17-fd2a-4c8f-8b47-48544f056b7c
          © Sociedade Brasileira de Microbiologia 2019
          History
          : 18 January 2019
          : 22 August 2019
          Categories
          Environmental Microbiology - Review
          Custom metadata
          © Sociedade Brasileira de Microbiologia 2019

          Bradyrhizobium japonicum ,Biological nitrogen fixation,Agroforestry systems,Black acacia,Nutrient cycling

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