• HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
Sunday, March 29, 2026
BIOENGINEER.ORG
No Result
View All Result
  • Login
  • HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
        • Lecturer
        • PhD Studentship
        • Postdoc
        • Research Assistant
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
  • HOME
  • NEWS
  • EXPLORE
    • CAREER
      • Companies
      • Jobs
        • Lecturer
        • PhD Studentship
        • Postdoc
        • Research Assistant
    • EVENTS
    • iGEM
      • News
      • Team
    • PHOTOS
    • VIDEO
    • WIKI
  • BLOG
  • COMMUNITY
    • FACEBOOK
    • INSTAGRAM
    • TWITTER
No Result
View All Result
Bioengineer.org
No Result
View All Result
Home NEWS Science News Biology

Discovery of the photosensor for yellow-green light-driven photosynthesis in cyanobacteria

Bioengineer by Bioengineer
May 9, 2019
in Biology
Reading Time: 2 mins read
0
IMAGE
Share on FacebookShare on TwitterShare on LinkedinShare on RedditShare on Telegram

IMAGE

Credit: COPYRIGHT (C) TOYOHASHI UNIVERSITY OF TECHNOLOGY. ALL RIGHTS RESERVED.

Cyanobacteria, a type of bacteria that performs photosynthesis, utilize a photosensor that regulates green and red light-harvesting antenna proteins for photosynthesis. A joint research team from Toyohashi University of Technology, the University of Tokyo, and the National Institute for Physiological Science found a new photosensor that regulates yellow-green light-harvesting antenna protein in cyanobacteria. Further analysis of the cyanobacterial genomes revealed that this photosensor emerged about 2.1 billion years ago or more and evolved through genetic exchange (horizontal gene transfer) between cyanobacteria.

Photosynthesis is a reaction that converts light energy into chemical energy and, it is an important reaction that supports all organisms living on the earth. Cyanobacteria are prokaryotes that perform oxygenic photosynthesis and are found in all kinds of environments throughout the world. Cyanobacteria have three types of major antenna proteins for harvesting lights: phycocyanin (PC) for absorbing red light, phycoerythrin (PE) for absorbing green light, and phycoerythrocyanin (PEC) for absorbing yellow-green light. To date, it has been known that the amount of PC and PE are regulated by a photosensor of phytochrome-class, but no research has been reported on the regulation of PEC.

Assistant Professor Yuu Hirose at the Department of Applied Chemistry and Life Sciences, Toyohashi University of Technology, in a joint research project with the University of Tokyo and the National Institute for Physiological Science, discovered a new photosensor regulating the amount of PEC. By searching through the genome database, the research team identified several cyanobacteria strains that harbors both PEC and the photosensor genes. Furthermore, they cultured one of the cyanobacteria strains and showed that the amount of PEC depends on the color of the light (Fig. 1).

Further analysis of about 450 cyanobacteria genomes revealed that this photosensor regulating PEC emerged only once about 2.1 billion years ago or more and evolved through a genetic exchange between cyanobacteria strains (Fig. 2 and 3), which is a process called horizontal gene transfer. The photosensor was preferentially distributed among filamentous and multicellular strains but not unicellular strains. These cyanobacteria strains may utilize different light colors for photosynthesis between cells and share limited light energy.

PC and PE are currently used as natural food color additives in some foods. The result of this research can be applied to the mass production of PEC and the development of new food products. This finding may also be applied to the improvement of light energy conversion of photosynthesis and applied to research fields for the regulation of genetic functions using light illumination.

###

Reference:

Diverse Chromatic Acclimation Processes Regulating Phycoerythrocyanin and Rod-Shaped Phycobilisome in Cyanobacteria.

Hirose Y., Chihong S., Watanabe M., Yonekawa C., Murata K., Ikeuchi M., Eki T.

Molecular Plant (2019) Feb 26. in press. doi: 10.1016/j.molp.2019.02.010.

Media Contact
Yuko Ito
[email protected]

Related Journal Article

http://dx.doi.org/10.1016/j.molp.2019.02.010

Tags: BiologyEcology/EnvironmentGeneticsMicrobiologyMolecular BiologyPlant Sciences
Share13Tweet8Share2ShareShareShare2

Related Posts

How to sway group opinions: Encourage opponents to stay undecided

How to sway group opinions: Encourage opponents to stay undecided

March 23, 2026
Deep Learning Model Maps How Individual Cells Shape Disease Outcomes

Deep Learning Model Maps How Individual Cells Shape Disease Outcomes

March 20, 2026

Removing only 15 female sharks annually could endanger the entire population, scientists warn

March 20, 2026

Scientists Urge Fragrance Industry to Transition from Sustainability Talk to Active Funding of Plant Conservation

March 20, 2026
Please login to join discussion

POPULAR NEWS

  • blank

    Revolutionary AI Model Enhances Precision in Detecting Food Contamination

    96 shares
    Share 38 Tweet 24
  • Imagine a Social Media Feed That Challenges Your Views Instead of Reinforcing Them

    1004 shares
    Share 397 Tweet 248
  • Uncovering Functions of Cavernous Malformation Proteins in Organoids

    54 shares
    Share 22 Tweet 14
  • Promising Outcomes from First Clinical Trials of Gene Regulation in Epilepsy

    51 shares
    Share 20 Tweet 13

About

We bring you the latest biotechnology news from best research centers and universities around the world. Check our website.

Follow us

Recent News

In-Sensor Cryptography Links Physical Process to Digital Identity

Can Psychosocial Factors Influence Cancer Risk?

Depression Factors in Elderly: Pre vs. Post-COVID Analysis

Subscribe to Blog via Email

Enter your email address to subscribe to this blog and receive notifications of new posts by email.

Join 78 other subscribers
  • Contact Us

Bioengineer.org © Copyright 2023 All Rights Reserved.

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In
No Result
View All Result
  • Homepages
    • Home Page 1
    • Home Page 2
  • News
  • National
  • Business
  • Health
  • Lifestyle
  • Science

Bioengineer.org © Copyright 2023 All Rights Reserved.