Liverwort (Pellia epiphylla)

An unprecedented insight into the diverse range of species on the British Isles will be made possible by听Wellcome听funding to the Darwin Tree of Life project.

This project is the start of a transformation for biological research.

Richard Durbin

探花直播拢9.4m funding will support a collaboration of ten research institutes, museums and associated organisations to launch the first phase of sequencing all the species on the British Isles. This will see the teams collect and 鈥榖arcode鈥 around 8,000 key British species of animal, plant and fungi, and deliver high-quality genomes of 2,000 species.听

Exploring the genomes 鈥 the entire DNA - of these species will give an unprecedented insight into how life on Earth evolved. It will uncover new genes, proteins and metabolic pathways to help develop drugs for infectious and inherited diseases.听

At a time when many species are under threat from climate change and human development, the data will also help characterise, catalogue and support conservation of global biodiversity for future generations.

鈥淭his project is the start of a transformation for biological research. It will change our relationship to the natural world by enabling us to understand life as never before,鈥 said Professor Richard Durbin in Cambridge 探花直播鈥檚 Department of Genetics, who will lead the 探花直播鈥檚 involvement in the collaboration. 鈥淚t will create a knowledge resource for others to build on, just as we鈥檝e seen with the Human Genome Project for human health.鈥

From the small fraction of the Earth鈥檚 species that have been sequenced, enormous advances have been made in knowledge and biomedicine. From plants, a number of lifesaving drugs have been discovered and are now being created in the lab 鈥 such as artemisinin for malaria and taxol for cancer.

Assembling the full genetic barcode of each species from the millions of genetic fragments generated in the sequencing process will rely on the 探花直播 of Cambridge鈥檚 expertise in computational analysis.听

鈥淕enome assembly is like doing a very complicated jigsaw puzzle. 探花直播genome revolution is all about information, and our ability to put the sequencing data together is based on cutting-edge computing techniques,鈥 said Dr Shane McCarthy at the 探花直播 of Cambridge, who will work on the project with Professor Durbin.听

探花直播project will identify and collect specimens that will include plants from the Cambridge 探花直播 Botanic Garden. It will set up new pipelines and workflows to process large numbers of species through DNA preparation, sequencing, assembly, gene finding and annotation. New methods will be developed for high-throughput and high-quality assembly of genomes and their annotation, and data will be shared openly through existing data sharing archives and project specific portals.

探花直播10 institutes involved in the project are:听

鈥 探花直播 of Cambridge听
鈥 Earlham Institute (EI)
鈥 探花直播 of Edinburgh
鈥 EMBL鈥檚-European Bioinformatics Institute (EMBL-EBI)
鈥 探花直播Marine Biological Association (Plymouth)听
鈥 Natural History Museum
鈥 Royal Botanic Gardens Kew
鈥 Royal Botanic Garden Edinburgh
鈥 探花直播 of Oxford
鈥 Wellcome Sanger Institute

探花直播consortium ultimately aims to sequence the genetic code of 60,000 species that live in the British Isles. Its work will act as a launchpad for a larger ambition to sequence all species on Earth, as part of the .听

Dr Michael Dunn, Head of Genetics and Molecular Sciences at Wellcome, said, 鈥 探花直播mission to sequence all life on the British Isles is ambitious, but by bringing together this diverse group of organisations we believe that we have the right team to achieve it. We鈥檒l gain new insights into nature that will help develop new treatments for infectious diseases, identify drugs to slow ageing, generate new approaches to feeding the world and create new bio-materials.鈥

Adapted from a press release by Wellcome.



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