A review on the plant microbiome: Ecology, functions, and emerging trends in microbial application
Обзор микробиома растений: экология, функции и новые тенденции в применении микроорганизмов
2019-03-20
SCID: 54.1/5gqn4gmc
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microbial inoculantsmicrobiome-based agro-managementplant genotype effects on microbiotaplant microbiomeplant-associated bacteria
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Abstract (AI)
Plants have evolved with a plethora of microorganisms having important roles for plant growth and health. A considerable amount of information is now available on the structure and dynamics of plant microbiota as well as on the functional capacities of isolated community members. Due to the interesting functional potential of plant microbiota as well as due to current challenges in crop production there is an urgent need to bring microbial innovations into practice. Different approaches for microbiome improvement exist. On the one hand microbial strains or strain combinations can be applied, however, field success is often variable and improvement is urgently required. Smart, knowledge-driven selection of microorganisms is needed as well as the use of suitable delivery approaches and formulations. On the other hand, farming practices or the plant genotype can influence plant microbiota and thus functioning. Therefore, selection of appropriate farming practices and plant breeding leading to improved plant-microbiome interactions are avenues to increase the benefit of plant microbiota. In conclusion, different avenues making use of a new generation of inoculants as well as the application of microbiome-based agro-management practices and improved plant lines could lead to a better use of the plant microbiome. This paper reviews the importance and functionalities of the bacterial plant microbiome and discusses challenges and concepts in regard to the application of plant-associated bacteria.
Key Findings
1
A combination of next-generation inoculants, microbiome-based agro-management, and improved plant lines could enable better utilization of the plant microbiome.
2
Application of microbial strains or strain combinations can improve crops but field success is often variable, indicating a need for improvement.
3
Farming practices and plant genotype can influence plant microbiota and their functioning, so selecting appropriate practices and breeding for improved plant-microbiome interactions are viable improvement avenues.
4
Plant-associated microbiota play important roles for plant growth and health, with extensive information available on their structure, dynamics, and functional capacities.
5
Smart, knowledge-driven selection of microorganisms and suitable delivery approaches/formulations are required to increase reliability of microbial inoculants.
Research Object
bacterial plant microbiome (plant-associated bacterial communities)
Research Subject
Ecology, functional roles, and application strategies of plant-associated bacteria including microbiome-based inoculants, delivery/formulation methods, farming practices, and plant breeding to improve plant-microbiome interactions and crop outcomes
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2019-03-20
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