Pediatric Genomics Discovery Program, Department of Pediatrics and Genetics, Yale University School of Medicine, New Haven, CT 06510, USA.
Section of Endocrinology, Department of Internal Medicine, Yale University, New Haven, CT 06510, USA.
Development. 2024 Jun 15;151(12). doi: 10.1242/dev.202937. Epub 2024 Jun 24.
The field of developmental metabolism is experiencing a technological revolution that is opening entirely new fields of inquiry. Advances in metabolomics, small-molecule sensors, single-cell RNA sequencing and computational modeling present new opportunities for exploring cell-specific and tissue-specific metabolic networks, interorgan metabolic communication, and gene-by-metabolite interactions in time and space. Together, these advances not only present a means by which developmental biologists can tackle questions that have challenged the field for centuries, but also present young scientists with opportunities to define new areas of inquiry. These emerging frontiers of developmental metabolism were at the center of a highly interactive 2023 EMBO workshop 'Developmental metabolism: flows of energy, matter, and information'. Here, we summarize key discussions from this forum, emphasizing modern developmental biology's challenges and opportunities.
发育代谢领域正经历着一场技术革命,开辟了全新的研究领域。代谢组学、小分子传感器、单细胞 RNA 测序和计算建模方面的进展为探索细胞特异性和组织特异性代谢网络、器官间代谢通讯以及基因-代谢物相互作用提供了新的机会。这些进展不仅为发育生物学家提供了一种解决困扰该领域数百年的问题的手段,也为年轻科学家提供了定义新研究领域的机会。这些发育代谢的新兴前沿是 2023 年 EMBO 研讨会“发育代谢:能量、物质和信息的流动”的核心议题。在这里,我们总结了该论坛的关键讨论,强调了现代发育生物学的挑战和机遇。