Register      Login
Crop and Pasture Science Crop and Pasture Science Society
Plant sciences, sustainable farming systems and food quality

Articles citing this paper

Nodulation and growth of Medicago truncatula on acid soils. II. Colonization of acid soils by Rhizobium meliloti

AD Robson and JF Loneragan
21(3) pp.435 - 445


28 articles found in Crossref database.

Early Developmental Responses of White Clover Roothair Lengths to Calcium, Protons, and Aluminum in Solution and Soil Cultures
Brauer David, Staley Tom
Crop Science. 2005 45(4). p.1216
The location and distribution in soil of rhizobia under senesced annual legume pastures
Chatel D.L., Greenwood R.M.
Soil Biology and Biochemistry. 1973 5(6). p.799
Plant-Soil Interactions at Low pH (1991)
Hartel P. G., Bouton J. H.
Soil Acidity and Plant Growth (1989)
COVENTRY D.R., EVANS J.
Attachment to plant roots and nod gene expression are not affected by pH or calcium in the acid-tolerant alfalfa-nodulating bacteria Rhizobium sp. LPU83
Soto María José, Dillewijn Pieter, Martínez-Abarca Francisco, Jiménez-Zurdo José I, Toro Nicolás
FEMS Microbiology Ecology. 2004 48(1). p.71
Nitrogen-fixing Leguminous Symbioses (2007)
Poole P. S., Hynes M. F., Johnston A. W. B., Tiwari R. P., Reeve W. G., Downie J. A.
I. A survey of lines for yield and disease resistance at Kaitaia and Palmerston North
Taylor A. O., Hughes K. A., Hunt B. J., Latch G. C. M.
New Zealand Journal of Experimental Agriculture. 1979 7(2). p.141
Obtention d'un mutant deRhizobium meliloti adapté aux cultures de luzerne en terres acides
Rakotoarisoa R. R., Tailliez R., Guillaume J. B.
Plant and Soil. 1981 60(1). p.99
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
Cultivar and pH effects on competition for nodule sites between isolates of Rhizobium in beans
Vargas Alvaro A. T., Graham Peter H.
Plant and Soil. 1989 117(2). p.195
Calcium affects the growth and survival of rhizobium meliloti
Reeve W.G., Tiwari R.P., Dilworth M.J., Glenn A.R.
Soil Biology and Biochemistry. 1993 25(5). p.581
An Essential Role for actA in Acid Tolerance of Rhizobium Melilotix
Tiwari Ravi P., Reeve Wayne G., Dilworthan Michael J., Glenn Andrew R.
Microbiology . 1996 142(3). p.601
Maintenance of Intracellular pH and Acid Tolerance in Rhizobium meliloti
O'Hara Graham W., Goss Thomas J., Dilworth Michael J., Glenn Andrew R.
Applied and Environmental Microbiology. 1989 55(8). p.1870
The association of necrotrophic fungal pathogens and plant parasitic nematodes with the loss of productivity of annual medic-based pastures in Australia and options for their management
Barbetti M. J., Riley I. T., You M. P., Li Hua, Sivasithamparam K.
Australasian Plant Pathology. 2006 35(6). p.691
Some effects of acidity and heavy metals on the rhizobium — leguminous plant association
Holding A. J., Lowe J. F.
Plant and Soil. 1971 35(1). p.153
Nodulation of lucerne (Medicago sativa L.) in an acid soil: Effects of inoculum size and lime-pelleting
Punenborg Jan W. M., Lie T. A., Zehnder A. J. B.
Plant and Soil. 1991 131(1). p.1
World crops: Cool season food legumes (1988)
Robson A. D.
Survival of Rhizobium meliloti WSM419 in laboratory culture: Effect of combined pH shock and carbon substrate stress
Clarke Louise M., Dilworth Michael J., Glenn Andrew R.
Soil Biology and Biochemistry. 1993 25(9). p.1289
Tropical Forages in Livestock Production Systems (2015)
Graham P. H., Hubbell D. H.
Identification of tolerance to soil acidity in inoculant strains of Rhizobium leguminosarum bv. trifolii
Watkin Elizabeth L.J, O’Hara Graham W, Howieson John G, Glenn Andrew R
Soil Biology and Biochemistry. 2000 32(10). p.1393
The Role of Legumes in the Farming Systems of the Mediterranean Areas (1990)
Robson A. D.
Changing roles for legumes in Mediterranean agriculture: developments from an Australian perspective
Howieson J.G., O’Hara G.W., Carr S.J.
Field Crops Research. 2000 65(2-3). p.107
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
Complete genome sequence of the Medicago microsymbiont Ensifer (Sinorhizobium) medicae strain WSM419
Reeve Wayne, Chain Patrick, O’Hara Graham, Ardley Julie, Nandesena Kemanthi, Bräu Lambert, Tiwari Ravi, Malfatti Stephanie, Kiss Hajnalka, Lapidus Alla, Copeland Alex, Nolan Matt, Land Miriam, Hauser Loren, Chang Yun-Juan, Ivanova Natalia, Mavromatis Konstantinos, Markowitz Victor, Kyrpides Nikos, Gollagher Margaret, Yates Ron, Dilworth Michael, Howieson John
Standards in Genomic Sciences. 2010 2(1). p.77
Plant-Soil Interactions at Low pH: Principles and Management (1995)
Lestari Y., Gibson A. H., Graham R. D.
Selection for acid tolerance inRhizobium meliloti
Howieson J. G., Ewing M. A., D'Antuono M. F.
Plant and Soil. 1988 105(2). p.179
The adaptive acid tolerance response in root nodule bacteria and Escherichia coli
O'Hara Graham W., Glenn Andrew R.
Archives of Microbiology. 1994 161(4). p.286
Plant-Soil Interactions at Low pH (1991)
Howieson J. G., Ewing M. A., Thorn C. W., Revell C. K.

Committee on Publication Ethics


Abstract Export Citation Get Permission