1997Critical Reviews in Plant SciencesRequires access

Factors Influencing Nodule Occupancy by Inoculant Rhizobia

Katrien Vlassak, Jos Vanderleyden, Peter Graham

Open publisher page 142 citations

Abstract

Inoculation of legumes under field conditions with superior nitrogen-fixing rhizobia does not always result in the desired yield increase. Often it is observed that the inoculum strain fails to occupy a significant proportion of the nodules. The introduced inoculant strains have to compete with the indigenous, often ineffective, nitrogen-fixing rhizobial population at different levels. The success of inoculation depends to a large extent on the ratio of the inoculant cells to indigenous rhizobia. However, intrinsic characteristics of the inoculant and indigenous rhizobia, and their responses to abiotic and biotic environmental variables, also influence the outcome of inoculation. In this review, the genetic basis for “efficient host-bacteria interaction” is reviewed. In addition, environmental factors that influence competition and saprophytic competence of rhizobia are discussed.

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What this paper is about

Inoculation of legumes under field conditions with superior nitrogen-fixing rhizobia does not always result in the desired yield increase. Often it is observed that the inoculum strain fails to occupy a significant proportion of the nodules. The introduced inoculant strains have to compete with the indigenous, often ineffective, nitrogen-fixing rhizobial population at different levels. The success of inoculation depends to a large extent on the ratio of the inoculant cells to indigenous rhizobia. However, intrinsic characteristics of the inoculant and indigenous rhizobia, and their responses to abiotic and biotic environmental variables, also influence the outcome of inoculation. In this review, the genetic basis for “efficient host-bacteria interaction” is reviewed. In addition, environmental factors that influence competition and saprophytic competence of rhizobia are discussed.

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Available abstract

Inoculation of legumes under field conditions with superior nitrogen-fixing rhizobia does not always result in the desired yield increase. Often it is observed that the inoculum strain fails to occupy a significant proportion of the nodules. The introduced inoculant strains have to compete with the indigenous, often ineffective, nitrogen-fixing rhizobial population at different levels. The success of inoculation depends to a large extent on the ratio of the inoculant cells to indigenous rhizobia. However, intrinsic characteristics of the inoculant and indigenous rhizobia, and their responses to abiotic and biotic environmental variables, also influence the outcome of inoculation. In this review, the genetic basis for “efficient host-bacteria interaction” is reviewed. In addition, environmental factors that influence competition and saprophytic competence of rhizobia are discussed.

Key concepts: Rhizobia, Microbial inoculant, Biology, Abiotic component, Nitrogen fixation, Inoculation, Population, Rhizobiaceae

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