Syngenta Crop Protection, LLC., 9 Davis Drive, Research Triangle Park, NC, 27709, USA.
Rothamsted Research, Harpenden, Hertfordshire, AL5 2JQ, UK.
Plant Sci. 2018 Aug;273:110-119. doi: 10.1016/j.plantsci.2018.01.020. Epub 2018 Feb 5.
Since the dawn of modern biotechnology public and private enterprise have pursued the development of a new breed of drought tolerant crop products. After more than 20 years of research and investment only a few such products have reached the market. This is due to several technical and market constraints. The technical challenges include the difficulty in defining tractable single-gene trait development strategies, the logistics of moving traits from initial to commercial genetic backgrounds, and the disconnect between conditions in farmer's fields and controlled environments. Market constraints include the significant difficulty, and associated costs, in obtaining access to markets around the world. Advances in the biology of plant water management, including response to water deficit reveal new opportunities to improve crop response to water deficit and new genome-based tools promise to usher in the next era of crop improvement. As biotechnology looks to improve crop productivity under drought conditions, the environmental and food security advantages will influence public perception and shift the debate toward benefits rather than risks.
自现代生物技术出现以来,公共和私营企业一直在追求开发新型耐旱作物产品。经过 20 多年的研究和投资,只有少数此类产品进入市场。这是由于几个技术和市场的限制。技术挑战包括难以定义可处理的单一基因特征发展策略,将特征从初始遗传背景转移到商业遗传背景的物流问题,以及农民田间条件和控制环境之间的脱节。市场限制包括获得全球市场准入的巨大困难和相关成本。植物水分管理生物学的进步,包括对水分亏缺的响应,为改善作物对水分亏缺的响应提供了新的机会,新的基于基因组的工具有望开创作物改良的下一个时代。随着生物技术寻求在干旱条件下提高作物生产力,环境和食品安全优势将影响公众的看法,并将辩论转向收益而不是风险。