Jump to HeaderJump to Main ContentJump to Footer
Michigan State University
MSUTODAY
  • Browse Stories By

    Topics

    Explore stories by subject area

    • Arts and Culture
    • Business and Economy
    • Climate and Environment
    • Education and Learning
    • Engineering, Science and Technology
    • Government and Society
    • Health and Medicine
    • Media and Communications
    • MSU Leadership and Impact
    • Sports and Recreation
    • Student and Campus Experience
    View All Stories

    Collections

    Curated story series

    • Turfgrass
    • Ask the Expert
    • Big Ideas
    • Climate solutions
    • Water at MSU
    • Mobility
    • Spartan Perspectives
    • Student views
    • Graduate voices
    • Faculty voices
    View All Collections

    Featured

    Editor's picks

    • 9 reasons to love being a Spartan

      Aug. 28, 2026

      9 reasons to love being a Spartan

    • NIH awards multi-university team over $4M to improve women’s health

      Sept. 15, 2026

      NIH awards multi-university team over $4M to improve women’s health

MSUTODAY
  • Browse Stories By

< Browse Stories By

Topics

Explore stories by subject area

  • Arts and Culture
  • Business and Economy
  • Climate and Environment
  • Education and Learning
  • Engineering, Science and Technology
  • Government and Society
  • Health and Medicine
  • Media and Communications
  • MSU Leadership and Impact
  • Sports and Recreation
  • Student and Campus Experience
  • View All Stories

Collections

Curated story series

  • Turfgrass
  • Ask the Expert
  • Big Ideas
  • Climate solutions
  • Water at MSU
  • Mobility
  • Spartan Perspectives
  • Student views
  • Graduate voices
  • Faculty voices
  • View All Collections

Featured

Editor's picks

  • 9 reasons to love being a Spartan

    Aug. 28, 2026

    9 reasons to love being a Spartan

  • NIH awards multi-university team over $4M to improve women’s health

    Sept. 15, 2026

    NIH awards multi-university team over $4M to improve women’s health

  • For Media
  • Experts
  • Releases and Statements
  • Sign Up
  • Update Information

Resources

  • A to Z Index
  • Find People
  • Maps
  • Email
  • Student Information System (SIS)
  • D2L
  • Libraries
  • Tech Support
  • MSU Misconduct Hotline
  • Social Media Directory
  • Events Calendar
  • For Media
Michigan State University
MSUToday
  • For Media
  • Experts
  • Releases and Statements
  • Sign Up
  • Update Information

Oct. 7, 2019

Identifying a cyanobacterial gene family that helps control photosynthesis

A new Michigan State University study has identified a family of genes in cyanobacteria that help control carbon dioxide fixation. 

The discovery furthers our basic knowledge of photosynthesis. It also opens new doors to design systems for sustainable biotech production. 

The research is published in the journal, New Phytologist.

Cyanobacteria and plants share an enzyme in common, rubisco, which captures carbon dioxide from the atmosphere. Carbon capture is the first in a series of reactions that turn carbon into high-energy molecules that feed the planet’s organisms.

In plants, rubisco is often blocked from working by small molecules that attach to it. In response, the protein, Rubisco activase, comes to the rescue, removing the unwanted molecules so rubisco can work again.

Recent advances in bioinformatics have allowed the lab of Cheryl Kerfeld to identify a cyanobacterial gene that looks like the one that encodes plant rubisco activase.

The new gene encodes what the lab is calling, activase-like cyanobacterial protein, or ALC.

“This gene is widespread in many taxonomic groups of cyanobacteria. Those include various unicellular and multi-cellular, filamentous species,” said Sigal Lechno-Yossef, research assistant professor in the Kerfeld lab.

The cyanbacterial ALC’s function remains unknown. The scientists tried mixing the ALC from a model cyanobacterium, Fremyella diplosiphon, with inhibited rubisco from the same organism, in a test tube. The ALC did not relieve rubisco from inhibition by small molecules.

However, in the cell, the protein is physically close to rubisco, just like its plant counterpart is. That is one reason Lechno-Yossef thinks they might work together.

“We also have bioinformatic evidence that shows ALC evolving along with rubisco in cyanobacteria. This finding is further support for interaction between these two proteins,” Lechno-Yossef said.

So if ALC does not unblock rubisco, what does it do?

“We saw ALC causing rubisco proteins to aggregate,” Lechno-Yossef said. “This function is similar to that of another cyanobacterial protein, which is known to contribute to rubisco regulation and localization in the cell.”

There is also evidence ALC helps its host detect CO2 levels in order to adjust photosynthesis rates. When the team deleted the ALC gene in a lab cyanobacterium, the organism did not experience dramatic changes in their growth. (In plants, deleting the analogous rubisco activase causes them to starve for carbon, a crucial nutrient).

However, those same strains experienced morphological changes when grown in CO2-rich environments.

The new research holds promise for the biotech field. In plants, rubisco activase is the focus of much study, as part of efforts to increase rubisco performance. Improving rubisco would lead to plants with higher nutrition contents, and higher crop yields. But such efforts have gone unrewarded so far.

“Cyanobacterial researchers also want to increase energy yield from photosynthesis,” Lechno-Yossef said. “The goal would be to rewire cyanobacteria’s photosynthetic machine to produce renewable energy compounds or materials for use in medicine or industry.”

“Now we know that cyanobacteria have an enzyme that supports rubisco, we could try making more robust cyanobacteria for industrial applications,” said Lechno-Yossef.

Latest News

MSUToday Weekly Update

The MSUToday Weekly Update email showcases how Spartans are making a difference through academic excellence, research impact and community outreach. Get inspired by these stories of innovation, collaboration and determination. Plus, enjoy photos and videos of campus and more MSU content to help keep you connected to the Spartan community.

Sign UpUpdate My Information

Connect With Us

Visit our Facebook pageVisit our page on XVisit our Instagram pageVisit our LinkedIn pageVisit our YouTube pageVisit our TikTok page

Health and Safety

  • MSU Police and Public Safety
  • Olin Health Center
  • Counseling & Psychiatric Services (CAPS)
  • University Health and Wellbeing
  • MSU Health Care
  • Civil Rights and Title IX
  • Our Commitment
  • Center for Survivors
  • Security & Fire Safety Report
  • University Policy on Relationship Violence and Sexual Misconduct
  • Notice of Non-Discrimination, Anti-Harassment and Non-Retaliation
  • Health Care Non-Discrimination Notice

Support Services

  • Disability Resources
  • Supportive Services
  • Learning Resources

Working at MSU

  • Human Resources
  • EBS Login
  • Job Postings
  • Employee Assistance Program

Reports

  • CARES Act Funding
  • Student Achievement and Outcomes

Contact us

517-355-1855

Address

Michigan State University 426 Auditorium Road East Lansing, MI 48824

Follow Us

  • Visit our Facebook page
  • Visit our page on X
  • Visit our Instagram page
  • Visit our TikTok page
  • Visit our LinkedIn page
  • Visit our YouTube page

If you're having accessibility issues, please let us know.

Know More: Campus Safety Information and ResourcesTransparency Reporting: Budget & Salary/Compensation
  • Contact Information|
  • Site Map|
  • Privacy Statement|
  • Site Accessibility|
  • Call MSU: (517) 355-1855|
  • Visit: msu.edu|
  • Notice of Nondiscrimination|

SPARTANS WILL|© Michigan State University|