Research and Development, Weed Control Chemistry, Bayer AG, Crop Science Division, Industriepark Höchst, 65926 Frankfurt am Main, Germany.
J Agric Food Chem. 2023 Nov 29;71(47):18141-18168. doi: 10.1021/acs.jafc.3c01809. Epub 2023 Jun 5.
Chemical concepts such as isosteres and scaffold hopping have proven to be powerful tools in agrochemical innovation processes. They offer opportunities to modify known molecular lead structures with the aim to improve a range of parameters, including biological efficacy and spectrum, physicochemical properties, stability, and toxicity. While recent biochemical insights into plant-specific receptors and signaling pathways trigger the discovery of the first lead structures, the disclosure of such a new chemical structure sparks a broad range of synthesis activities giving rise to diverse chemical innovation and often a considerable boost in biological activity. Herein, recent examples of isostere concepts in plant-hormone chemistry will be discussed, outlining how synthetic creativity can broaden the scope of natural product chemistry and giving rise to new opportunities in research fields such as abiotic stress tolerance and growth promotion.
化学概念,如等排体和骨架跃迁,已被证明是农业化学创新过程中的有力工具。它们为修改已知的分子先导结构提供了机会,目的是改善一系列参数,包括生物功效和谱、物理化学性质、稳定性和毒性。虽然最近对植物特异性受体和信号通路的生化见解引发了对第一个先导结构的发现,但对这种新化学结构的披露引发了广泛的合成活动,产生了多样化的化学创新,通常会极大地提高生物活性。本文将讨论植物激素化学中的等排体概念的最新实例,概述了合成创造力如何拓宽天然产物化学的范围,并为非生物胁迫耐受和生长促进等研究领域带来新的机遇。