UCL Cell and Developmental Biology

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UCL Cell and Developmental Biology The Research Department of Cell and Developmental Biology is part of the UCL Division of Biosciences in the Faculty of Life Sciences.

Our mission is to gain mechanistic insight into biological processes spanning from cells to tissues to whole organisms.

CDB is seeking applications for independent research fellows. Deadline 5pm 09/06/2023. For details see:
17/05/2023

CDB is seeking applications for independent research fellows. Deadline 5pm 09/06/2023. For details see:

CDB is committed to supporting fellows with the aim of securing a permanent position through a ‘tenure-track’ route.

Current Biology paper shows that mechanical differences in dinosaur skulls led to their success.A new paper shows that t...
13/01/2023

Current Biology paper shows that mechanical differences in dinosaur skulls led to their success.

A new paper shows that the skulls of early plant-eating dinosaurs – although they superficially looked similar – performed mechanically in very different ways, and potentially set up these groups of dinosaurs for their later spectacular success and diversity.

Dr Laura Porro (UCL CDB Centre for Integrative Anatomy) is among the authors of the exciting new paper in the journal Current Biology.

The extent to which evolution is deterministic is a key question in biology, with intensive debate on how adaptation and constraints might canalize solutions to ecological challenges. Alternatively, unique adaptations and phylogenetic contingency may render evolution fundamentally unpredictable. Information from the fossil record is critical to this debate, but performance data for extinct taxa are limited. This knowledge gap is significant, as general morphology may be a poor predictor of biomechanical performance. High-fiber herbivory originated multiple times within ornithischian dinosaurs, making them an ideal clade for investigating evolutionary responses to similar ecological pressures. However, previous biomechanical modeling studies on ornithischian crania have not compared early-diverging taxa spanning independent acquisitions of herbivory. Here, the authors perform finite-element analysis on the skull of five early-diverging members of the major ornithischian clades to characterize morphofunctional pathways to herbivory.

Original research paper (free article): https://www.sciencedirect.com/science/article/pii/S0960982222019194

CDB and the Centre for Integrative Anatomy are seeking a part-time 0.5 FTE Centre Assistant to join our Professional Ser...
20/12/2022

CDB and the Centre for Integrative Anatomy are seeking a part-time 0.5 FTE Centre Assistant to join our Professional Services team. For details and to apply visit:

UCL is consistently ranked as one of the top ten universities in the world (QS World University Rankings 2010-2022) and is No.2 in the UK for research power (Research Excellence Framework 2021).

Anatomical Society Image Prize awarded to CDB PhD student Adam Moverley.Congratulations to CDB PhD student Adam Moverley...
28/11/2022

Anatomical Society Image Prize awarded to CDB PhD student Adam Moverley.

Congratulations to CDB PhD student Adam Moverley (Stern Lab), whose research image 'Somite rostrocaudal identity' (shown below) has won the Anatomical Society's Best Image Award 2022.

Adam's image shows a 3D maximum projection of a whole mount chicken embryo at stage HH11 constructed from a confocal stack. Hybridization chain reaction shows Uncx4.1 (green) and EphA4 (magenta) alongside DAPI (cyan). This reveals the rostral (EphA4) and caudal (Uncx4.1) identity of cells in newly forming somites.

Adam was joined amongst the winners by former CDB postdoc, Dr Marc Jones (Natural History Museum). Marc's image 'Fossil salamander face on' won joint runners-up prize.

More information on the prize and its previous winners can be found at the Anatomical Society website: https://www.anatsoc.org.uk/funding-and-awards/prizes/anatomical-society-best-image-prize

Join us for a free talk by Johannes Jaeger - Chasing Windmills – The Quixotic Quest for a 21st Century Philosophical Bio...
10/10/2022

Join us for a free talk by Johannes Jaeger - Chasing Windmills – The Quixotic Quest for a 21st Century Philosophical Biology - on Thurs, 20 Oct @ 12pm. Details at:

Title: Chasing Windmills – The Quixotic Quest for a 21st Century Philosophical Biology

16/09/2022

The Prof Barbara Conradt lab seeks a Research Fellow to assist in the BBSRC funded project, “Asymmetric mitochondrial inheritance: Charting mechanism(s) and function(s) during animal development.” Deadline for applications is 14/10/2022. For full details and to apply visit:

12/09/2022

Applications are sought for a lecturer (teaching) 0.5 FTE. The successful candidate will take an active role in the Department, conducting teaching and training of undergraduate students. Deadline for applications 22/09/2022. For full details and to apply: https://atsv7.wcn.co.uk/search_engine/jobs.cgi?amNvZGU9MTg4NzAxNCZ2dF90ZW1wbGF0ZT05NjUmb3duZXI9NTA0MTE3OCZvd25lcnR5cGU9ZmFpciZicmFuZF9pZD0wJmpvYl9yZWZfY29kZT0xODg3MDE0JnBvc3RpbmdfY29kZT0yMjQ%3D&jcode=1887014&vt_template=965&owner=5041178&ownertype=fair&brand_id=0&job_ref_code=1887014&posting_code=224

Oldest European salamander fossil, discovered in Scotland, informs amphibian originsFossils discovered in Scotland repre...
13/07/2022

Oldest European salamander fossil, discovered in Scotland, informs amphibian origins

Fossils discovered in Scotland represent some of the world’s oldest salamanders, according to a new study led by UCL researchers Dr Marc Jones and Prof Susan Evans (UCL Research Department of Cell and Developmental Biology).

The research team analysed 166-million-year-old fossils of a type of animal called Marmorerpeton, found in Middle Jurassic rocks on the Isle of Skye. They found that it has several key salamander traits, but is not part of the modern group of salamanders. Their results are reported in Proceedings of the National Academy of Sciences (PNAS). The specimen is believed to be the oldest salamander fossil found in Europe.

Marmorerpeton was first described 30 years ago, but only a few isolated fossil vertebrae and partial jaw bones were found, making it somewhat enigmatic. The new Scottish material adds a wealth of new data, and it also represents a new species: Marmorerpeton wakei, named after the late Professor David Wake, a leading American authority on salamander evolution.

Lead-author Dr Marc Jones (UCL Cell & Developmental Biology) said: “The fossil is definitely a salamander but unlike anything alive today. It highlights the importance of the fossil record for preserving combinations of anatomical features that do not exist in any living animal.”

Salamanders, which include newts, are a type of amphibian. Unlike frogs they have a tail and are more variable in size and shape. There are over 700 species found across the northern hemisphere in various freshwater and woodland habitats. They are renowned for their ability to regrow limbs and organs.

This new Scottish fossil salamander had a wide, shallow frog-like head but powerful jaws and distinctive, prominent projections behind the eyes. The skull roof bones show that it was ornamented like that of a crocodile, setting them apart from modern salamanders. The limb bones and deep tail of Marmorerpeton wakei suggest this salamander was aquatic, perhaps using its wide jaws to catch prey by suction feeding, similar to the lifestyle seen in the modern hellbender of North America.

Commenting on the appearance of Marmorerpeton wakei, Dr Jones said: “The big bony projections behind the eye were a bit unexpected but smaller projections do exist in fossil salamanders from slightly younger rocks. Their purpose remains unknown.”

Modern salamanders have been extensively studied to understand development, regeneration, and toxins. However, their early evolution is still very poorly understood. The study included a detailed survey of modern salamander anatomy which informed the subsequent analyses.

Many previous studies of fossil salamanders have relied heavily on fossils from the Late Jurassic period, found in Russia, belonging to the genus Karaurus. As new fossils are found that predate this – such as Marmorerpeton – they provide a more complete understanding of how early salamanders evolved.

Senior-author Professor Susan Evans (UCL Cell & Developmental Biology) said: “The origin and early history of modern amphibian groups remains mysterious and new fossils like this one are key to developing a better understanding of amphibian evolution. “In theory, the Skye salamander should give us a clue as to what the ancestors of modern salamanders looked like. However, it could be that they are a highly specialised off-shoot.” Senior co-author Professor Roger Benson (University of Oxford) said: “The fossil site on Skye is proving to be a treasure trove for our understanding of the Middle Jurassic fauna and ecosystems, and is helping to fill gaps in the fossil record of many animal lineages including mammals, reptiles and amphibians.”

Dr Jones added: “Several fossil salamanders are known from the Jurassic and Cretaceous of China. These were thought to represent early members of modern groups, but our new analyses suggest they might not be part of specific groups as some of their characteristics are found more widely than previously thought.”

The details of the new Scottish fossils of Marmorerpeton wakei were only revealed thanks to microCT scanning, which was used to digitise the bones embedded within in the rock. This techonology provides a powerful tool in revealing bones hidden for millions of years. One specimen, collected in 2016, was found to be part of a specimen collected in 1971 but left undescribed until now. The digital models are now freely available for others to examine or 3D print.

The study involved researchers from UCL, the University of Oxford, Saint Petersburg State University, Oxford University Museum of Natural History, and National Museums of Scotland.

Funding was provided by the Leverhulme Trust. The John Muir Trust provided access to the Elgol Coast Site of Special Scientific Interest, and NatureScot granted permits for fossil collection.

Research article:

Marc E. H. Jones, Roger BJ Benson, Pavel Skutschas, Lucy Hill, Elsa Panciroli, Armin Schmitt, Stig Walsh, Susan Evans, ‘Middle Jurassic fossils document an early stage in salamander evolution’, Proceedings of the National Academy of Sciences

Join us on Thurs, 7th July at 4:00pm BST for a seminar by Prof Leanne Jones of UCSF "Age-related changes to intestinal s...
27/06/2022

Join us on Thurs, 7th July at 4:00pm BST for a seminar by Prof Leanne Jones of UCSF "Age-related changes to intestinal stem cells and the stem cell niche." Details and seminar link at:

Title: Age-related changes to intestinal stem cells and the stem cell niche

Dr Laura Porro named as UKRI Future Leaders Fellow.Laura Porro (UCL Cell and Developmental Biology) is one of four UCL a...
17/06/2022

Dr Laura Porro named as UKRI Future Leaders Fellow.

Laura Porro (UCL Cell and Developmental Biology) is one of four UCL academics who have been awarded UKRI Future Leaders Fellowships in recognition of the potentially world-changing and transformative nature of their research.

Recipients are among 84 of the “most promising scientists and researchers” in the UK identified for government funding this year to help them develop their ideas from the lab and lecture theatre to the market, creating workable solutions to major global problems.

The announcement, made by Science Minister George Freeman as part of London Tech Week, will see researchers benefit from a total of £97.8m, with grants spanning between four and seven years.

Dr Porro is an evolutionary biomechanist studying how the forces of evolution have shaped reptile skulls over 300 million years. Using cutting-edge techniques including 3D imaging, experiments, and biomechanical computer modelling, she is exploring how the diverse range of reptile skull shapes, both living and fossilised, are adapted for feeding, communication and protecting vital organs.

https://www.ukri.org/news/84-new-future-leaders-fellows-and-100m-for-next-round-announced/

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