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Genome sequence of the acid-tolerant strain Rhizobium sp. LPU83
(Elsevier Science, 2014-03)
Rhizobia are important members of the soil microbiome since they enter into nitrogen-fixing symbiosis with different legume host plants. Rhizobium sp. LPU83 is an acid-tolerant Rhizobium strain featuring a broad-host-range. ...
Arbuscular Mycorrhizal symbiosis in four Al-tolerant wheat genotypes grown in an acidic Andisol
(SOC CHILENA CIENCIA SUELO, 2016)
A metabolomic approach to characterize the acid-tolerance response in Sinorhizobium meliloti
(Springer, 2017-06)
Introduction: Sinorhizobium meliloti establishes a symbiosis with Medicago species where the bacterium fixes atmospheric nitrogen for plant nutrition. To achieve a successful symbiosis, however, both partners need to ...
Does the major aluminium-resistance gene in wheat, TaALMT1, also confer tolerance to alkaline soils?
(2018-03-01)
Aim: A major limitation to plant growth in acid soils is the prevalence of toxic Al3+. Most genotypic variation for acid soil-tolerance in wheat is linked with the Al3+-activated efflux of malate anions from roots which ...
Aluminum-induced organic acids exudation by roots of an aluminum-tolerant tropical maize
(Pergamon-elsevier Science LtdOxfordInglaterra, 1997)
Proteomic Analysis of Rhizobium favelukesii LPU83 in Response to Acid Stress
(American Chemical Society, 2019-08-21)
Acid soils constitute a severe problem for leguminous crops mainly through a disturbance in rhizobium-legume interactions. Rhizobium favelukesii - an acid-tolerant rhizobium able to nodulate alfalfa - is highly competitive ...