Michael Borg

217 posts

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Michael Borg

Michael Borg

@dr_borg

Exploring the weird and wonderful world of red algae @MPI_Bio

Tübingen, Deutschland شامل ہوئے Eylül 2012
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Michael Borg
Michael Borg@dr_borg·
🚨Preprint 🚨 I'm really happy to finally share our exploits in red algae and introduce the wider community to Bostrychia, the new model system we have been developing to tackle the molecular biology of red algae. Isn't she a beauty? Thread below 🧵 1/8 biorxiv.org/content/10.110…
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Nature Plants
Nature Plants@NaturePlants·
New Letter: "Sporophyte-directed gametogenesis in Arabidopsis" rdcu.be/ed0V0 In flowering plants the gametophyte develops within the sporophyte. Male gametophyte development in Arabidopsis is directed by the sporophyte through repression of gametogenesis genes.
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Chuan Ku
Chuan Ku@chuanku_·
Our new work @MolBioEvol How old are viruses? Here we developed a host-calibrated dating method and inferred the evolutionary timescale of #giantvirus, which have large genomes and infect various eukaryotes, incl. animals, algae, and many others. academic.oup.com/mbe/article/42…
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Iñaki Ruiz-Trillo
Iñaki Ruiz-Trillo@multicellgenome·
So needed: red algae is one of the first eukaryotic lineages to evolve #multicellularity, but genomic data is still scarce. Here a a chromosome-level genome assembly of Bostrychia moritziana is presented. The authors find a significant genome size expansion in Bostrychia compared to other red algae, largely driven by the proliferation of giant Plavaka DNA #transposons. Congrats @dr_borg @PetrollRomy and all authors! #redalgae
Iñaki Ruiz-Trillo tweet media
Michael Borg@dr_borg

🚨Preprint 🚨 I'm really happy to finally share our exploits in red algae and introduce the wider community to Bostrychia, the new model system we have been developing to tackle the molecular biology of red algae. Isn't she a beauty? Thread below 🧵 1/8 biorxiv.org/content/10.110…

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Michael Borg
Michael Borg@dr_borg·
The red algal transition to multicellularity is among the oldest across eukaryotes. Given the common evolutionary origin of red seaweeds and plants, we provide new insight into the evolution of complex multicellularity and highlight this fascinating but overlooked lineage. 7/8
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Michael Borg
Michael Borg@dr_borg·
🚨Preprint 🚨 I'm really happy to finally share our exploits in red algae and introduce the wider community to Bostrychia, the new model system we have been developing to tackle the molecular biology of red algae. Isn't she a beauty? Thread below 🧵 1/8 biorxiv.org/content/10.110…
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Michael Borg
Michael Borg@dr_borg·
@NickDesnoyer @hendersi And I would push back at the idea that red algae aren’t plants, but perhaps that’s best discussed over a beer 😄
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Nick Desnoyer
Nick Desnoyer@NickDesnoyer·
@hendersi Some pigments harvest green light for photosynthesis! For example, phycoerythrin found in red algae absorbs green light rather than red light because it can penetrate deeper into the ocean. Though, red algae are not classified as plants..
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Ian Henderson
Ian Henderson@hendersi·
Question from a student that I couldn’t answer - why are plants green? Why not have pigments that harvest the green light too?
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Michael Borg
Michael Borg@dr_borg·
@NickDesnoyer @hendersi Phycobilin proteins like phycoerythrin are part of phycobilisome complexes of red algal plastids. Not so simple to engineer in land plants I imagine as we don’t understand the machinery responsible to form phycobilisomes (yet).
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André Marques
André Marques@marques_et_al·
🥳Happy 🥳to share the final version now officially published in @NatureComms Repeat-based holocentromeres of the woodrush Luzula sylvatica reveal insights into the evolutionary transition to holocentricity nature.com/articles/s4146… Awesome work from @YMata_Sucre and Marie Krátká
André Marques@marques_et_al

🔥Thrilled to announce our recent work🔥 Repeat-based holocentromeres of the woodrush Luzula sylvatica reveal new insights into the evolutionary transition from mono- to holocentricity Now on bioRxiv: biorxiv.org/content/10.110… Congrats on great work from @YMata_Sucre @KratkaMarie

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Hajk-Georg Drost
Hajk-Georg Drost@HajkDrost·
Does the aggregation of complex multicellularity follow a universal developmental pattern across the eukaryotic tree of life? Thrilled to announce that we found a convergently evolved transcriptomic hourglass pattern in brown algal development. @Nature 👉nature.com/articles/s4158…
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Ronan O'Malley
Ronan O'Malley@omalley_ronan·
New preprint! An atlas of conserved TF binding sites across flowering plants generated with multiplexed DAP-seq. When integrated with multi-species snRNA- and snATAC-seq reveals how TF activity shapes development and stress responses at the cellular level.biorxiv.org/cgi/content/sh…
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Peter Andersen
Peter Andersen@PRAndersen·
1/ Our lab’s first preprint found a wonderful journal home! 🎉 Our paper explores the role of testis-specific transcription factors in Drosophila and reveals broad functional connections between tissue-specific paralog proteins. 📝: genesdev.cshlp.org/content/early/…
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Santi Priego
Santi Priego@Santyy31·
Happy to see the 2nd manuscript of my thesis on bioRxiv! We explore the subdivision of the withanolide BGC in Physalis into two sub-clusters with tissue-specific expression linked to chromatin differences. biorxiv.org/content/10.110…
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