2010Journal of Clinical InvestigationOpen access

Anaplasma phagocytophilum induces Ixodes scapularis ticks to express an antifreeze glycoprotein gene that enhances their survival in the cold

Girish Neelakanta, Hameeda Sultana, Durland Fish, John F. Anderson, Erol Fikrig

Open full text 220 citations

Abstract

In the United States, Ixodes scapularis ticks overwinter in the Northeast and Upper Midwest and transmit the agent of human granulocytic anaplasmosis, Anaplasma phagocytophilum, among other pathogens.We now show that the presence of A. phagocytophilum in I. scapularis ticks increases their ability to survive in the cold.We identified an I. scapularis antifreeze glycoprotein, designated IAFGP, and demonstrated via RNAi knockdown studies the importance of IAFGP for the survival of I. scapularis ticks in a cold environment.Transfection studies also show that IAFGP increased the viability of yeast cells subjected to cold temperature.Remarkably, A. phagocytophilum induced the expression of iafgp, thereby increasing the cold tolerance and survival of I. scapularis.These data define a molecular basis for symbiosis between a human pathogenic bacterium and its arthropod vector and delineate what we believe to be a new pathway that may be targeted to alter the life cycle of this microbe and its invertebrate host. Results A. phagocytophilum-infected ticks survive better at cold temperatures.A. phagocytophilum survives the winter in tissues of I. scapularis.We therefore determined whether this bacterium influences the survival of ticks exposed to cold temperatures.Uninfected or Conflict of interest: The authors have declared that no conflict of interest exists.

Open-access reader

About this research paper

What this paper is about

In the United States, Ixodes scapularis ticks overwinter in the Northeast and Upper Midwest and transmit the agent of human granulocytic anaplasmosis, Anaplasma phagocytophilum, among other pathogens.We now show that the presence of A. phagocytophilum in I. scapularis ticks increases their ability to survive in the cold.We identified an I. scapularis antifreeze glycoprotein, designated IAFGP, and demonstrated via RNAi knockdown studies the importance of IAFGP for the survival of I. scapularis ticks in a cold environment.Transfection studies also show that IAFGP increased the viability of yeast cells subjected to cold temperature.Remarkably, A. phagocytophilum induced the expression of iafgp, thereby increasing the cold tolerance and survival of I. scapularis.These data define a molecular basis for symbiosis between a human pathogenic bacterium and its arthropod vector and delineate what we believe to be a new pathway that may be targeted to alter the life cycle of this microbe and its invertebrate host. Results A. phagocytophilum-infected ticks survive better at cold temperatures.A. phagocytophilum survives the winter in tissues of I. scapularis.We therefore determined whether this bacterium influences the survival of ticks exposed to cold temperatures.Uninfected or Conflict of interest: The authors have declared that no conflict of interest exists.

Why it matters

OpenAlex reports 220 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In the United States, Ixodes scapularis ticks overwinter in the Northeast and Upper Midwest and transmit the agent of human granulocytic anaplasmosis, Anaplasma phagocytophilum, among other pathogens.We now show that the presence of A. phagocytophilum in I. scapularis ticks increases their ability to survive in the cold.We identified an I. scapularis antifreeze glycoprotein, designated IAFGP, and demonstrated via RNAi knockdown studies the importance of IAFGP for the survival of I. scapularis ticks in a cold environment.Transfection studies also show that IAFGP increased the viability of yeast cells subjected to cold temperature.Remarkably, A. phagocytophilum induced the expression of iafgp, thereby increasing the cold tolerance and survival of I. scapularis.These data define a molecular basis for symbiosis between a human pathogenic bacterium and its arthropod vector and delineate what we believe to be a new pathway that may be targeted to alter the life cycle of this microbe and its invertebrate host. Results A. phagocytophilum-infected ticks survive better at cold temperatures.A. phagocytophilum survives the winter in tissues of I. scapularis.We therefore determined whether this bacterium influences the survival of ticks exposed to cold temperatures.Uninfected or Conflict of interest: The authors have declared that no conflict of interest exists.

Key concepts: Ixodes scapularis, Anaplasma phagocytophilum, Biology, Anaplasmosis, Anaplasma, Virology, Tick, Vector (molecular biology)

Related papers

Back to paper searchBrowse research topicsOriginal source
Anaplasma phagocytophilum induces Ixodes scapularis ticks to express an antifreeze glycoprotein gene that enhances their survival in the cold — Research Paper | ScholarLens