Newman Stuart A
Int J Dev Biol. 2009;53(5-6):663-71. doi: 10.1387/ijdb.072553cc.
Stuart A. Newman grew up in New York City. He received a Bachelor of Arts from Columbia University and obtained a Ph.D. in chemical physics from the University of Chicago in 1970. He did post-doctoral studies in several institutions and disciplines with a focus on theoretical and developmental biology. He had a rich experience interacting with people like Stuart Kauffman, Arthur Winfree, Brian Goodwin, and John W. Saunders, Jr. He was also exposed to many interesting experimental models of development. These early experiences fostered his interest in biological pattern formation. He joined the State University of New York at Albany as a junior faculty member when Saunders was still there. With his physical science background, Newmans approach to limb bud patterning was refreshing. In his major Science paper in 1979, he and H.L. Frisch proposed a model showing how reaction-diffusion can produce chemical standing waves to set up limb skeletal patterns. He then used limb bud micromass cultures for further development and testing of the model. Extending earlier ideas, he developed a comprehensive framework for the role of physical mechanisms (diffusion, differential adhesion, oscillation, dynamical multistability, reaction diffusion, mechano-chemical coupling, etc.) in morphogenesis. He also applied these mechanisms to understand the origin of multicellularity and evolution of novel body plans. Here Newman reflects on his intellectual growth, and shares with us his ideas on how pattern formation works, and how generic physical mechanisms interact with genetic mechanisms to achieve the evolution and development of animal forms.
斯图尔特·A·纽曼在纽约市长大。他获得了哥伦比亚大学的文学学士学位,并于1970年在芝加哥大学获得化学物理博士学位。他在多个机构和学科进行了博士后研究,重点是理论生物学和发育生物学。他与斯图尔特·考夫曼、亚瑟·温弗里、布莱恩·古德温以及小约翰·W·桑德斯等人有着丰富的交流经历。他还接触到了许多有趣的发育实验模型。这些早期经历激发了他对生物模式形成的兴趣。当桑德斯还在纽约州立大学奥尔巴尼分校时,他作为初级教员加入了该校。凭借其物理科学背景,纽曼对肢体芽模式形成的研究方法令人耳目一新。在1979年发表于《科学》杂志的主要论文中,他和H.L.弗里施提出了一个模型,展示了反应扩散如何产生化学驻波来建立肢体骨骼模式。然后,他利用肢体芽微团培养对该模型进行进一步的开发和测试。在扩展早期观点的基础上,他为物理机制(扩散、差异黏附、振荡、动态多稳态、反应扩散、机械化学耦合等)在形态发生中的作用建立了一个全面的框架。他还应用这些机制来理解多细胞性的起源和新身体结构的进化。在这里,纽曼回顾了他的知识成长历程,并与我们分享了他关于模式形成如何运作,以及通用物理机制如何与遗传机制相互作用以实现动物形态的进化和发育的观点。