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Rhizobial ecology as affected by the soil environment

J. F. Slattery, D. R. Coventry and W. J. Slattery
41(3) pp.289 - 298


56 articles found in Crossref database.

Proton alleviation of growth inhibition by toxic metals (Al, La, Cu) in rhizobia
Kinraide Thomas B., Sweeney Billie K.
Soil Biology and Biochemistry. 2003 35(2). p.199
Plant‐Environment Interaction (2016)
Egamberdieva Dilfuza, Abdiev Anvar, Khaitov Botir
Yellow-meadow ant (Lasius flavus) mound development determines soil properties and growth responses of different plant functional types
Ehrle Antje, Andersen Alan N., Levick Shaun R., Schumacher Jens, Trumbore Susan E., Michalzik Beate
European Journal of Soil Biology. 2017 81 p.83
Variations in infectivity of indigenous rhizobial isolates of some soils in the rainforest zone of Nigeria
Ojo Abisoye, Dare Michael Olajire, Fagbola Olajire, Babalola Olubukola
Archives of Agronomy and Soil Science. 2015 61(3). p.371
Biserrula pelecinus L. is a promising forage legume for the central Ethiopian highlands
Bekuma Amanuel A., Terpolilli Jason J., Tiwari Ravi P., O'Hara Graham W., Howieson John G.
Grass and Forage Science. 2021 76(1). p.105
Optimizing the growth of forage and grain legumes on low pH soils through the application of superior Rhizobium leguminosarum biovar viciae strains
Yates Ron J., Steel Emma J., Poole Chris M., Harrison Robert J., Edwards Tom J., Hackney Belinda F., Stagg Georgina R., Howieson John G.
Grass and Forage Science. 2021 76(1). p.44
Climate Change and Microbiome Dynamics (2023)
Phour Manisha, Sindhu Satyavir S.
Divergent genes in potential inoculant Sinorhizobium strains are related to DNA replication, recombination, and repair
Penttinen Petri, Greco Dario, Muntyan Victoria, Terefework Zewdu, De Lajudie Philippe, Roumiantseva Marina, Becker Anke, Auvinen Petri, Lindström Kristina
Journal of Basic Microbiology. 2016 56(6). p.680
Impact of agricultural inputs on soil organisms—a review
Bünemann E. K., Schwenke G. D., Van Zwieten L.
Soil Research. 2006 44(4). p.379
Impact of swapping soils on the endophytic bacterial communities of pre-domesticated, ancient and modern maize
Johnston-Monje David, Mousa Walaa Kamel, Lazarovits George, Raizada Manish N
BMC Plant Biology. 2014 14(1).
(2016)
Kunhikrishnan A., Thangarajan R., Bolan N.S., Xu Y., Mandal S., Gleeson D.B., Seshadri B., Zaman M., Barton L., Tang C., Luo J., Dalal R., Ding W., Kirkham M.B., Naidu R.
Prospects for Soil Regeneration and Its Impact on Environmental Protection (2024)
Menon Katherine Georgina, Kondakindi Venkateswar Reddy, Pabbati Ranjit, Vijay P. Paul
The contributions of nitrogen-fixing crop legumes to the productivity of agricultural systems
Peoples M. B., Brockwell J., Herridge D. F., Rochester I. J., Alves B. J. R., Urquiaga S., Boddey R. M., Dakora F. D., Bhattarai S., Maskey S. L., Sampet C., Rerkasem B., Khan D. F., Hauggaard-Nielsen H., Jensen E. S.
Symbiosis. 2009 48(1-3). p.1
Naturalised populations of mesorhizobia in chickpea (Cicer arietinum L.) cropping soils: effects on nodule occupancy and productivity of commercial chickpea
Elias Natalie V, Herridge David F
Plant and Soil. 2015 387(1-2). p.233
Enrichment of Restraint to Endmost Salinity and Outmost pH Circumstance in Common Bean (Phaseolus vulgaris L.) Nodulating Rhizobial Isolates from Eastern Hararghe Lowlands around Babile, Eastern Ethiopia, through Mutagenesis.
Mekonnen Mulugeta, Kebede Ameha
Current Agriculture Research Journal. 2021 9(2). p.130
Marschner's Mineral Nutrition of Higher Plants (2012)
Genetic Resources, Chromosome Engineering, and Crop Improvement (2005)
Redden Bob, Leonforte Tony, Ford Rebecca, Croser Janine, Slattery Jo
Rhizosphere Engineering (2022)
Verma Vivek Chandra, Acharya Somen, Kumar Rajeev, Verma B.C., Singh Archana, Tiwari Vivek Kumar
Sustainable Management of Soil and Environment (2019)
Naseri Bita
Soil Biological Fertility (2004)
McInnes Alison, Haq Krystina
Impact of Crop Production Inputs on Soil Health: A Review
Bitew Yayeh, Alemayehu Melkamu
Asian Journal of Plant Sciences. 2017 16(3). p.109
Miscanthus-Derived Biochar Enhanced Soil Fertility and Soybean Growth in Upland Soil
An Da-Hee, Chang Dong-Chil, Kim Kwang-Soo, Lee Ji-Eun, Cha Young-Lok, Jeong Jae-Hee, Choi Ji-Bong, Kim Soo-Yeon
Agriculture. 2023 13(9). p.1738
Identification and characterization of acidity-tolerant and aluminum-resistant bacterium isolated from tea soil
Ngo Thi Tuong Chau, Le Van Thien, Shinjiro Kanazawa
African Journal of Biotechnology. 2014 13(27). p.2715
Effect of genotypes-Rhizobium-environment interaction on nodulation and productivity of common bean (Phaseolus vulgaris L.) in eastern Ethiopia
Argaw Anteneh, Muleta Daniel
Environmental Systems Research. 2018 6(1).
Endophytic Bacteria Improve Plant Growth, Symbiotic Performance of Chickpea (Cicer arietinum L.) and Induce Suppression of Root Rot Caused by Fusarium solani under Salt Stress
Egamberdieva Dilfuza, Wirth Stephan J., Shurigin Vyacheslav V., Hashem Abeer, Abd_Allah Elsayed F.
Frontiers in Microbiology. 2017 8
Biochar application reduces nodulation but increases nitrogenase activity in clover
Quilliam Richard S., DeLuca Thomas H., Jones Davey L.
Plant and Soil. 2013 366(1-2). p.83
Challenges and Strategies of Dryland Agriculture (2015)
Slattery Jo, Siddique Kadambot H. M., Howieson John
Native soil origin influences the symbiotic N fixation effectiveness of chickpea mesorhizobia grown in Australian soils
Rathjen JR, Zaw M, Ryder MH, Zhou Y, Lai TV, Denton MD
Biology and Fertility of Soils. 2024 60(1). p.137
Biochar improves soil quality and N2-fixation and reduces net ecosystem CO2 exchange in a dryland legume-cereal cropping system
Azeem Muhammad, Hayat Rifat, Hussain Qaiser, Ahmed Mukhtar, Pan Genxing, Ibrahim Tahir Muhammad, Imran Muhammad, Irfan Muhammad, Mehmood-ul-Hassan
Soil and Tillage Research. 2019 186 p.172
The Effect of Different Biochar Characteristics on Soil Nitrogen Transformation Processes: A Review
Davys Donna, Rayns Francis, Charlesworth Susanne, Lillywhite Robert
Sustainability. 2023 15(23). p.16446
The introduced strain Mesorhizobium ciceri USDA 3378 is more competitive than an indigenous strain in nodulation of chickpea in newly introduced areas of China
Zhang J., Li S., Wang N., Chen W., Feng X., Jia B., Zhao Y., Yang T., Zong X.
Letters in Applied Microbiology. 2022 75(5). p.1171
Soybean-Nodulating Rhizobia: Ecology, Characterization, Diversity, and Growth Promoting Functions
Nakei Monica D., Venkataramana Pavithravani B., Ndakidemi Patrick A.
Frontiers in Sustainable Food Systems. 2022 6
Evidence of selection for effective nodulation in the Trifolium spp. symbiosis with Rhizobium leguminosarum biovar trifolii
Yates R. J., Howieson J. G., Real D., Reeve W. G., Vivas-Marfisi A., O'Hara G. W.
Australian Journal of Experimental Agriculture. 2005 45(3). p.189
Multiple Facets of Nitrogen: From Atmospheric Gas to Indispensable Agricultural Input
Kabange Nkulu Rolly, Lee So-Myeong, Shin Dongjin, Lee Ji-Yoon, Kwon Youngho, Kang Ju-Won, Cha Jin-Kyung, Park Hyeonjin, Alibu Simon, Lee Jong-Hee
Life. 2022 12(8). p.1272
The impact of crop residue amendments and lime on microbial community structure and nitrogen-fixing bacteria in the wheat rhizosphere
Nelson Darryl R., Mele Pauline M.
Soil Research. 2006 44(4). p.319
The effect of soil carbon on symbiotic nitrogen fixation and symbioticRhizobiumpopulations in soil withTrifolium repensas host plant
Swanepoel P A, Botha P R, Truter W F, Surridge-Talbot A KJ
African Journal of Range & Forage Science. 2011 28(3). p.121
Symbiotic effectiveness, ecological adaptation and phylogenetic diversity of chickpea rhizobia isolated from a large-scale Australian soil collection
Zaw Myint, Rathjen Judith R., Zhou Yi, Ryder Maarten H., Denton Matthew D.
Plant and Soil. 2021 469(1-2). p.49
Evaluation of MALDI-TOF mass spectrometry for the competitiveness analysis of selected indigenous cowpea (Vigna unguiculata L. Walp.) Bradyrhizobium strains from Kenya
Ndungu Samuel Mathu, Messmer Monika M., Ziegler Dominik, Thuita Moses, Vanlauwe Bernard, Frossard Emmanuel, Thonar Cécile
Applied Microbiology and Biotechnology. 2018 102(12). p.5265
Rhizobial mediation of Acacia adaptation to soil salinity: evidence of underlying trade‐offs and tests of expected patterns
Thrall Peter H., Bever James D., Slattery Jo F.
Journal of Ecology. 2008 96(4). p.746
Marschner's Mineral Nutrition of Plants (2023)
Hungria Mariangela, Nogueira Marco Antonio
Soil Degradation, Conservation and Remediation (2014)
Osman Khan Towhid
Tea leaves biochar as a carrier of Bacillus cereus improves the soil function and crop productivity
Azeem Muhammad, Hassan Tamoor Ul, Tahir Muhammad Ibrahim, Ali Amjad, Jeyasundar Parimala Gnana Soundari Arockiam, Hussain Qaiser, Bashir Saqib, Mehmood Sajid, Zhang Zengqiang
Applied Soil Ecology. 2021 157 p.103732
Sourcing Rhizobium leguminosarum biovar viciae strains from Mediterranean centres of origin to optimize nitrogen fixation in forage legumes grown on acid soils
Yates Ron J., Harrison Robert J., Loi Angelo, Steel Emma J., Edwards Tom J., Nutt Brad J., Porqueddu Claudio, Gresta Fabio, Howieson John G.
Grass and Forage Science. 2021 76(1). p.33
Biological indicators of soil quality in organic farming systems
Stockdale E.A., Watson C.A.
Renewable Agriculture and Food Systems. 2009 24(4). p.308
Screening and field evaluation of white clover rhizobia for New Zealand pastures
Shi Shengjing, Wakelin Steve, Gerard Emily, Young Sandra, van Koten Chikako, Caradus John, Griffiths Andrew G., Ballard Ross A., O’Callaghan Maureen, Denton Matthew
Crop & Pasture Science. 2023 74(12). p.1258
Effectiveness of Rhizobium inoculation on common bean productivity as determined by inherent soil fertility status
Argaw Anteneh
Journal of Crop Science and Biotechnology. 2016 19(4). p.311
Biochar improved nodulation and nitrogen metabolism of soybean under salt stress
Farhangi-Abriz Salar, Torabian Shahram
Symbiosis. 2018 74(3). p.215
Long‐term agricultural management does not alter the evolution of a soybean–rhizobium mutualism
Schmidt Jennifer E., Weese Dylan J., Lau Jennifer A.
Ecological Applications. 2017 27(8). p.2487
Prospects for improving perennial legume persistence in mixed grazed pastures of south-eastern Australia, with particular reference to white clover
Hayes R. C., Ara I., Badgery W. B., Culvenor R. A., Haling R. E., Harris C. A., Li G. D., Norton M. R., Orgill S. E., Penrose B., Smith R. W.
Crop and Pasture Science. 2019 70(12). p.1141
Integrating Green Chemistry and Sustainable Engineering (2019)
Bashandy Shymaa Ryhan, Abd‐Alla Mohamed Hemida, Bagy Magdy Mohamed Khalil
Microbial rhizosphere communities in response to chlorimuron-ethyl herbicide in soils under alfafa crop
Ding Junnan, Li Xin
Revista Brasileira de Ciência do Solo. 2022 46
Test of local adaptation to biotic interactions and soil abiotic conditions in the ant-tended Chamaecrista fasciculata (Fabaceae)
Abdala-Roberts Luis, Marquis Robert J.
Oecologia. 2007 154(2). p.315
The Interaction between Arbuscular Mycorrhizal Fungi and Endophytic Bacteria Enhances Plant Growth of Acacia gerrardii under Salt Stress
Hashem Abeer, Abd_Allah Elsayed F., Alqarawi Abdulaziz A., Al-Huqail Asma A., Wirth Stephan, Egamberdieva Dilfuza
Frontiers in Microbiology. 2016 7
Legumes for Soil Health and Sustainable Management (2018)
Nath Bhowmik Subrata, Das Anup
Nitrogen-fixing Leguminous Symbioses (2007)
Graham P. H.
A quantitative review into the contributions of biological nitrogen fixation to agricultural systems by grain legumes
Palmero Francisco, Fernandez Javier A., Garcia Fernando O., Haro Ricardo J., Prasad P.V. Vara, Salvagiotti Fernando, Ciampitti Ignacio A.
European Journal of Agronomy. 2022 136 p.126514

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