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March 16, 2026Virulence3 citationsOpen Access

Functional regulation and cross-talk of type III and Type VI secretion systems in Salmonella

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XLXingyi LiYDY. DingYSYu Xiang Sun

Key Points

  • The aim is to summarize the regulation and crosstalk between type III and type VI secretion systems in Salmonella.
  • Review existing literature on T3SS and T6SS in Salmonella.
  • Analyze the roles of regulatory components in secretion systems.
  • Discuss potential mechanisms of crosstalk and functional adaptation.
  • T3SS-1 aids in host invasion, while T3SS-2 facilitates systemic infection.
  • T6SS improves fitness by targeting competing bacteria in the gut.
  • Regulatory components like PhoP-PhoQ and PmrA-PmrB are shared between T3SS and T6SS.

Abstract

In Salmonella, the type III and type VI secretion systems (T3SS and T6SS) play critical roles in pathogenicity. The bacterium harbors two distinct T3SSs: T3SS-1, encoded by SPI-1, promotes host cell invasion, whereas T3SS-2 (located within SPI-2) facilitates systemic infection. Both systems translocate effector proteins that disrupt normal host cell functions. Meanwhile, the T6SS enhances competitive fitness in the gut by targeting rival bacteria and supports evasion of host immune response. Recent evidence indicates that these secretion systems share common regulatory components, including the PhoP-PhoQ and PmrA-PmrB two-component systems, as well as signaling molecules such as cyclic di-GMP (c-di-GMP), allowing coordinated activation and functional adaptation during infection. However, the precise mechanisms governing their crosstalk remain poorly understood. This review summarizes the current knowledge of the composition, function, and regulation of T3SS and T6SS in Salmonella, examines their interplay, and provides perspectives for future research into pathogenesis.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69b79e398166e15b153ab340https://doi.org/10.1080/21505594.2026.2645873
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