MbrlCatalogueTitleDetail

Do you wish to reserve the book?
Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles
Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles
Hey, we have placed the reservation for you!
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles
Oops! Something went wrong.
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Title added to your shelf!
Title added to your shelf!
View what I already have on My Shelf.
Oops! Something went wrong.
Oops! Something went wrong.
While trying to add the title to your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles
Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles

Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
How would you like to get it?
We have requested the book for you! Sorry the robot delivery is not available at the moment
We have requested the book for you!
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles
Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles
Dissertation

Marine Viruses Infecting the Cyanobacterium Prochlorococcus Exhibit Rhythmic Infection Patterns Under Light-dark Cycles

2019
Request Book From Autostore and Choose the Collection Method
Overview
The marine cyanobacterium Prochlorococcus is one of the most abundant unicellular photosynthetic organisms in the oceans, being a major contributor to carbon fixation in aquatic environments. Cyanophages are viruses that infect cyanobacteria and release cellular components into the marine ecosystem, contributing greatly to global biogeochemical cycles. As an adaptation to the daily light-dark (diel) cycle, cyanobacteria exhibit diurnal rhythms of gene expression and cell cycle. The light-dark cycle also affects the life cycle of cyanophages. Recent metatranscriptomic studies revealed transcriptional rhythms of field cyanophage populations. However, the underlying mechanism remains to be determined, as cyanophage laboratory cultures have not been shown to exhibit diurnal transcriptional rhythms. Here, before studying cyanophage infection under light-dark cycles, I first characterized synchronized Prochlorococcus, and showed a three-dimensional (3D) organization dynamics of the cell division protein FtsZ during the cell cycle. Then, I studied variation in infection patterns and gene expression of Prochlorococcus phages in laboratory culture conditions as a function of light. I found three distinct diel-dependent life history traits in dark conditions (diel traits): no adsorption (cyanophage P-HM2), adsorption but no replication (cyanophage P-SSM2), and replication (cyanophage P-SSP7). Under light-dark cycles, each cyanophage exhibited rhythmic transcript abundance, and the cyanophages P-HM2 and P-SSM2 also exhibited rhythmic adsorption patterns. I further showed evidence to link the diurnal transcriptional rhythm of cyanophages to the photosynthetic activity of the host, thus providing a mechanistic explanation for the field observations of cyanophage transcriptional rhythms. Finally, I compared the relative fitness of cyanophages that showed different life history traits; I allowed laboratory-cultured cyanophages that showed different life history traits to compete and measured the relative abundance of cyanophages with different life history traits that were isolated from the South China Sea. I found that with limited bench culture, P-HM2 had a fitness advantage over P-SSP7 under light-dark cycles and that P-SSM2 outcompeted P-HM2 under continuous light and under light-dark cycles. However, among the field-isolated cyanophages, P-SSP7–like cyanophages had the highest relative fitness. The results suggested a potential coexistence mechanism for the three life history traits. My study identifies that cultured viruses can exhibit diurnal rhythms during infection, which might impact cyanophage population-level dynamics in the oceans.
Publisher
ProQuest Dissertations & Theses
ISBN
9798377643029