Marco Duenas
marcoaduenas.bsky.social
Marco Duenas
@marcoaduenas.bsky.social
•UC Berkeley PhD @ Merchant Lab
•F31 NIH Fellow
marcoduenas.org
Reposted by Marco Duenas
(6/6) Overall, we found that the “yeast-like” processes of allodiploid hybridisation, mitotic recombination, loss-of-heterozygosity and aneuploidy all occur in an alga, showing the generality of these forces to vegetatively diploid eukaryotes
October 29, 2025 at 6:59 AM
Reposted by Marco Duenas
(5/6) We also saw aneuploidies in two strains and we successfully transformed a trisomic chromosome using an allele-specific construct. We’re hopeful that we can utilise these redundant chromosomes for synthetic biology by sequential introduction of transgenes
October 29, 2025 at 6:59 AM
Reposted by Marco Duenas
(4/6) Most remarkably, our reference strain UTEX 250 is an allodiploid hybrid of two close relatives, A. protothecoides and A. symbiontica, that are distinguished by highly rearranged karyotypes. The UTEX 250 sub-genomes have been further shuffled by rearrangements and recombination
October 29, 2025 at 6:59 AM
Reposted by Marco Duenas
(3/6) Unlike most green algae, Auxenochlorella are vegetatively diploid and their genomes are shaped by evolutionary phenomena that reflect this. While these processes are well-understood in yeast, we were surprised to see extensive mitotic recombination and loss-of-heterozygosity in several strains
October 29, 2025 at 6:59 AM
Reposted by Marco Duenas
(2/6) We introduce selectable markers, inducible promoters and fluorescent reporters for protein localisation, and @marcoaduenas.bsky.social has written a protocol for HR-based transformation: dx.doi.org/10.17504/protocols.io.x54v922mql3e/v1. All credit to a team led by Jeff Moseley here
Transformation Protocol for Targeted Homologous Recombination in Auxenochlorella protothecoides
Detailed instructions for the introduction of targeted gene cassettes into the genome of Auxenochlorella Protothecoides using a lithium acetate transformation method. Following...
dx.doi.org
October 29, 2025 at 6:59 AM
Reposted by Marco Duenas
(1/6) First and foremost, Auxenochlorella spp. are oily green algae that can be readily transformed by homologous recombination, enabling efficient site-specific transformation of the nuclear genome. This is a first for chlorophytes, and we hope that it will facilitate lots of interesting research
October 29, 2025 at 6:59 AM
Reposted by Marco Duenas
You can learn more about the study's lead author, Daniel Wangpraseurt (a marine biologist at Scripps Oceanography), and his research below.
A Scientist’s Life: Marine biologist Daniel Wangpraseurt
YouTube video by Scripps Oceanography
www.youtube.com
May 14, 2025 at 9:13 PM
Go Rory!
March 6, 2025 at 3:46 AM
Thank you for reading our work! We absolutely loved your CDC26-TTM3 paper!
March 1, 2025 at 3:18 PM
On it 👍
February 10, 2025 at 10:24 PM
Congrats on the lab, this was an awesome paper!
January 23, 2025 at 10:27 AM