T6SS in plant pathogens: unique mechanisms in complex hosts.
Lexie M Matte1, Abigail V Genal1, Emily F Landolt1
1Biology Discipline, Division of Natural and Social Sciences, St. Norbert College, De Pere, Wisconsin, USA.
Infection and Immunity
|August 21, 2024
Summary
Type VI secretion systems (T6SSs) enable bacteria to inject toxins. This review explores T6SSs in plant pathogens, highlighting their role in interbacterial competition and the need to study their plant-targeting mechanisms.
Area of Science:
- Microbiology
- Bacterial Pathogenesis
- Plant-Microbe Interactions
Background:
- Type VI secretion systems (T6SSs) are bacterial macromolecular machines for effector delivery.
- Initially studied in human pathogens, T6SSs are now recognized for interbacterial competition, including in plant environments.
- Genes for T6SSs are prevalent in Gram-negative bacteria, particularly Proteobacteria, which include major plant pathogens.
Purpose of the Study:
- To review the known functions of T6SSs in phytopathogens.
- To discuss T6SS deployment against plant hosts and other organisms.
- To identify knowledge gaps regarding T6SS effector activity against plant cells.
Main Methods:
- Literature review of T6SSs in phytopathogens.
- Analysis of T6SS gene distribution in plant-associated bacteria.
- Synthesis of current understanding of T6SS effector functions.
Main Results:
- T6SSs are widely distributed in phytopathogenic bacteria, often encoded by multiple gene clusters.
- Phytopathogenic bacteria utilize T6SSs for interbacterial competition and colonization.
- Specific T6SS effectors like phospholipases and peptidases have characterized targets in non-plant interactions.
Conclusions:
- T6SSs are versatile tools for bacterial pathogens, including those affecting plants.
- Plant pathogens employ T6SSs for diverse roles during infection.
- Further research is crucial to elucidate the specific mechanisms and targets of T6SS effectors against plant cells.
Keywords:
T6SSType VI secretion systemseffector proteinshost-pathogen interactionspathogenesisphytopathogenMore Related Videos
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