Plastic potential: how the phenotypes and adaptations of pathogens are influenced by microbial interactions within plants
•Individual plant pathogens respond plastically to within-host microbial interactions.•Within-host microbial interactions may impact pathogen population dynamics.•Cross-level studies will elucidate connection between plastic and genetic responses. Predicting the effects of plant-associated microbes...
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Published in: | Current opinion in plant biology Vol. 38; pp. 78 - 83 |
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01-08-2017
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Abstract | •Individual plant pathogens respond plastically to within-host microbial interactions.•Within-host microbial interactions may impact pathogen population dynamics.•Cross-level studies will elucidate connection between plastic and genetic responses.
Predicting the effects of plant-associated microbes on emergence, spread, and evolution of plant pathogens demands an understanding of how pathogens respond to these microbes at two levels of biological organization: that of an individual pathogen and that of a pathogen population across multiple individual plants. We first examine the plastic responses of individual plant pathogens to microbes within a shared host, as seen through changes in pathogen growth and multiplication. We then explore the limited understanding of how within-plant microbial interactions affect pathogen populations and discuss the need to incorporate population-level observations with population genomic techniques. Finally, we suggest that integrating across levels will further our understanding of the ecological and evolutionary impacts of within-plant microbial interactions on pathogens. |
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AbstractList | Predicting the effects of plant-associated microbes on emergence, spread, and evolution of plant pathogens demands an understanding of how pathogens respond to these microbes at two levels of biological organization: that of an individual pathogen and that of a pathogen population across multiple individual plants. We first examine the plastic responses of individual plant pathogens to microbes within a shared host, as seen through changes in pathogen growth and multiplication. We then explore the limited understanding of how within-plant microbial interactions affect pathogen populations and discuss the need to incorporate population-level observations with population genomic techniques. Finally, we suggest that integrating across levels will further our understanding of the ecological and evolutionary impacts of within-plant microbial interactions on pathogens. •Individual plant pathogens respond plastically to within-host microbial interactions.•Within-host microbial interactions may impact pathogen population dynamics.•Cross-level studies will elucidate connection between plastic and genetic responses. Predicting the effects of plant-associated microbes on emergence, spread, and evolution of plant pathogens demands an understanding of how pathogens respond to these microbes at two levels of biological organization: that of an individual pathogen and that of a pathogen population across multiple individual plants. We first examine the plastic responses of individual plant pathogens to microbes within a shared host, as seen through changes in pathogen growth and multiplication. We then explore the limited understanding of how within-plant microbial interactions affect pathogen populations and discuss the need to incorporate population-level observations with population genomic techniques. Finally, we suggest that integrating across levels will further our understanding of the ecological and evolutionary impacts of within-plant microbial interactions on pathogens. |
Author | O’Keeffe, Kayleigh R Carbone, Ignazio Mitchell, Charles E Jones, Corbin D |
Author_xml | – sequence: 1 givenname: Kayleigh R surname: O’Keeffe fullname: O’Keeffe, Kayleigh R email: kokeeffe@live.unc.edu organization: Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA – sequence: 2 givenname: Ignazio surname: Carbone fullname: Carbone, Ignazio organization: Center for Integrated Fungal Research, Department of Entomology and Plant Pathology, North Carolina State University, Raleigh, NC, USA – sequence: 3 givenname: Corbin D surname: Jones fullname: Jones, Corbin D organization: Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA – sequence: 4 givenname: Charles E surname: Mitchell fullname: Mitchell, Charles E organization: Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC, USA |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/28505582$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_lwt_2022_114301 crossref_primary_10_1098_rspb_2021_1313 crossref_primary_10_3389_fmicb_2022_824211 crossref_primary_10_3390_plants11192664 crossref_primary_10_1002_ecy_3164 crossref_primary_10_3389_fmicb_2018_02462 |
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SubjectTerms | Adaptation, Physiological - genetics Adaptation, Physiological - physiology Biological Evolution Genome, Plant - genetics Host-Pathogen Interactions - genetics Host-Pathogen Interactions - physiology Plants - metabolism Plants - microbiology |
Title | Plastic potential: how the phenotypes and adaptations of pathogens are influenced by microbial interactions within plants |
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