Nile Grass Rats Become New Model for CRISPR Genome Editing

A team of researchers at Michigan State University has discovered a set of methods that enabled the first successful CRISPR-based genome editing in Nile grass rats.

The study, published in BMC Biology, is the first to successfully edit genomes in Nile grass rats. As diurnal rodents, Nile grass rats have similar sleep/awake patterns to humans which could be advantageous in preclinical or translational research.

Currently, preclinical research relies heavily on laboratory mice, which are nocturnal rodents who are active at night and sleep during the day. With these different sleep patterns, diurnal and nocturnal mammals have evolved differently, including having a distinct wiring of neural circuits and gene-regulatory networks.

"The differences between diurnal and nocturnal mammals present a significant translational flaw when applying the research findings obtained from mice to humans. Numerous therapeutic agents such as neuroprotectants proven effective in mouse or rat models of cerebral ischemia have failed in human clinical stroke trials, with mounting evidence suggesting the nocturnal and diurnal differences causing such failures," said Lily Yan, co-author of the study and professor in MSU's Department of Psychology.

Katrina Linning-Duffy and Jiaming Shi, also co-authors on the research, work in Yan's Lab.

Because the differences between diurnal and nocturnal animals are complex, the researchers believe a diurnal model is essential to untangle the relationship between genes and behaviors that are relevant to human health and disease.

The method developed includes a superovulation protocol that can yield nearly 30 eggs per female. They also developed protocols for in vitro -; outside of the body -; embryo culture and manipulation and in vivo -; in the living body -; gene targeting using GONAD, or Genome editing via Oviductal Nucleic Acids Delivery, methods.

The Nile grass rat colony is a unique resource available at MSU. Thanks to the joint efforts of the departments of Psychology and Integrative Biology and the Transgenic and Genome Editing Facility, a Nile grass rat colony was established on campus in 1993.

Research projects at MSU involving Nile grass rats have been continuously funded for more than 30 years. Animals from the MSU grass rat colony have been shared with over 20 research labs in the U.S., Canada, Belgium, China and Japan that study topics including circadian rhythms and sleep, mood and cognition, immune function, metabolic syndromes and evolutionary biology.

Huirong Xie is the program director of MSU's Transgenic and Genome Editing Facility.

We hope that Nile grass rats will eventually become an alternative mammalian model to investigate genes' roles in any biological processes, particularly in which chronotype (diurnal vs. nocturnal) is a critical biological variable. This study will be an essential first step towards the far-reaching goal."

Lily Yan, Professor, Department of Psychology, Michigan State University

Source:
Journal reference:

Xie, H., et al. (2024). CRISPR-based genome editing of a diurnal rodent, Nile grass rat (Arvicanthis niloticus). BMC Biology. doi.org/10.1186/s12915-024-01943-9.

Comments

The opinions expressed here are the views of the writer and do not necessarily reflect the views and opinions of AZoLifeSciences.
Post a new comment
Post

While we only use edited and approved content for Azthena answers, it may on occasions provide incorrect responses. Please confirm any data provided with the related suppliers or authors. We do not provide medical advice, if you search for medical information you must always consult a medical professional before acting on any information provided.

Your questions, but not your email details will be shared with OpenAI and retained for 30 days in accordance with their privacy principles.

Please do not ask questions that use sensitive or confidential information.

Read the full Terms & Conditions.

You might also like...
Innovative Gene Editing Elevates Photosynthetic Efficiency in Food Crops