Michael Todd P
Plant Molecular and Cellular Biology Laboratory, The Salk Institute for Biological Studies, La Jolla, CA, 92037-100210, USA.
New Phytol. 2025 Feb;245(4):1403-1410. doi: 10.1111/nph.20382. Epub 2025 Jan 2.
The shift to reductionist biology at the dawn of the genome era yielded a 'parts list' of plant genes and a nascent understanding of complex biological processes. Today, with the genomics era in full swing, advances in high-definition genomics enabled precise temporal and spatial analyses of biological systems down to the single-cell level. These insights, coupled with artificial intelligence-driven in silico design, are propelling the development of the first synthetic plants. By integrating reductionist and systems approaches, researchers are not only reimagining plants as sources of food, fiber, and fuel but also as 'environmental thermostats' capable of mitigating the impacts of a changing climate.
在基因组时代伊始向还原论生物学的转变,产生了一份植物基因的“部件清单”,并对复杂的生物过程有了初步认识。如今,随着基因组学时代全面展开,高清基因组学的进展使得能够在单细胞水平上对生物系统进行精确的时空分析。这些见解,再加上人工智能驱动的计算机模拟设计,正在推动首批合成植物的开发。通过整合还原论方法和系统方法,研究人员不仅将植物重新想象为食物、纤维和燃料的来源,还将其视为能够减轻气候变化影响的“环境恒温器”。