TY - JOUR
T1 - The human and non-human primate developmental GTEx projects
AU - Non-Human Primate (NHP)-dGTEX: U24HG012483
AU - Laboratory, Data Analysis, and Coordinating Center (LDACC)-Yale: U24HG012108
AU - Laboratory, Data Analysis, and Coordinating Center (LDACC)-Broad: U24HG012090
AU - Biospecimen Procurement Center (BPC) and Organ Procurement Organizations (OPOs): U24HD106537
AU - the dGTEx Consortium
AU - National Institutes of Health (NIH)
AU - Coorens, Tim H.H.
AU - Guillaumet-Adkins, Amy
AU - Kovner, Rothem
AU - Linn, Rebecca L.
AU - Roberts, Victoria H.J.
AU - Sule, Amrita
AU - Van Hoose, Patrick M.
AU - Zou, Sige
AU - Ramos, Erin
AU - Price, Amanda
AU - Parisi, Melissa
AU - Minear, Mollie
AU - Miller, Daniel
AU - Lockhart, Nicole C.
AU - Jose, Sheethal
AU - Ilekis, John V.
AU - Felsenfeld, Adam
AU - Dayal, Jyoti
AU - Baroch, Jacob J.
AU - Arguello, Alexander
AU - Zhang, Qiangge
AU - Zaniewski, Heather
AU - Wessel, Brady
AU - de Castro, Samia Silva
AU - Roberts, Victoria
AU - Okhovat, Mariam
AU - Moore, Samantha
AU - Mahyari, Eisa
AU - Lima, Ana Cristina
AU - Lewis, Anne
AU - Lacey, Ariah
AU - Hennebold, Jon
AU - Held, Madison
AU - del Rosario, Ricardo
AU - Castro, Jenna
AU - Carbone, Lucia
AU - Boucher, Magalie
AU - Brady, Fritzie
AU - Feng, Guoping
AU - Conrad, Donald F.
AU - Zhao, Hongyu
AU - Zhang, Menglei
AU - Yates, Chris
AU - Xia, Yan
AU - Salamon, Iva
AU - Pochareddy, Sirisha
AU - Petrosyan, Varduhi
AU - Park, Saejeong
AU - Ni, Pengyu
AU - Nadkarni, Anandita
N1 - Publisher Copyright:
© Springer Nature Limited 2025.
PY - 2025/1/16
Y1 - 2025/1/16
N2 - Many human diseases are the result of early developmental defects. As most paediatric diseases and disorders are rare, children are critically underrepresented in research. Functional genomics studies primarily rely on adult tissues and lack critical cell states in specific developmental windows. In parallel, little is known about the conservation of developmental programmes across non-human primate (NHP) species, with implications for human evolution. Here we introduce the developmental Genotype-Tissue Expression (dGTEx) projects, which span humans and NHPs and aim to integrate gene expression, regulation and genetics data across development and species. The dGTEx cohort will consist of 74 tissue sites across 120 human donors from birth to adulthood, and developmentally matched NHP age groups, with additional prenatal and adult animals, with 126 rhesus macaques (Macaca mulatta) and 72 common marmosets (Callithrix jacchus). The data will comprise whole-genome sequencing, extensive bulk, single-cell and spatial gene expression profiles, and chromatin accessibility data across tissues and development. Through community engagement and donor diversity, the human dGTEx study seeks to address disparities in genomic research. Thus, dGTEx will provide a reference human and NHP dataset and tissue bank, enabling research into developmental changes in expression and gene regulation, childhood disorders and the effect of genetic variation on development.
AB - Many human diseases are the result of early developmental defects. As most paediatric diseases and disorders are rare, children are critically underrepresented in research. Functional genomics studies primarily rely on adult tissues and lack critical cell states in specific developmental windows. In parallel, little is known about the conservation of developmental programmes across non-human primate (NHP) species, with implications for human evolution. Here we introduce the developmental Genotype-Tissue Expression (dGTEx) projects, which span humans and NHPs and aim to integrate gene expression, regulation and genetics data across development and species. The dGTEx cohort will consist of 74 tissue sites across 120 human donors from birth to adulthood, and developmentally matched NHP age groups, with additional prenatal and adult animals, with 126 rhesus macaques (Macaca mulatta) and 72 common marmosets (Callithrix jacchus). The data will comprise whole-genome sequencing, extensive bulk, single-cell and spatial gene expression profiles, and chromatin accessibility data across tissues and development. Through community engagement and donor diversity, the human dGTEx study seeks to address disparities in genomic research. Thus, dGTEx will provide a reference human and NHP dataset and tissue bank, enabling research into developmental changes in expression and gene regulation, childhood disorders and the effect of genetic variation on development.
UR - https://www.scopus.com/pages/publications/85218626760
UR - https://www.scopus.com/pages/publications/85218626760#tab=citedBy
U2 - 10.1038/s41586-024-08244-9
DO - 10.1038/s41586-024-08244-9
M3 - Article
C2 - 39815096
AN - SCOPUS:85218626760
SN - 0028-0836
VL - 637
SP - 557
EP - 564
JO - Nature
JF - Nature
IS - 8046
ER -