防虫大豆的植物特征。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
ACS Applied Bio Materials Pub Date : 2024-08-01 Epub Date: 2024-06-20 DOI:10.1007/s11248-024-00391-z
Duška Stojšin, Hallison Vertuan, Chen Meng, Roger Effertz, Marcia Jose, Debbie Mahadeo, Augusto Crivellari, Christy Hu, Geraldo Berger
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引用次数: 0

摘要

目前已开发出能产生 Cry1A.105 和 Cry2Ab2 杀虫晶体蛋白的防虫大豆(SIP),以防止目标鳞翅目害虫造成的食害。通常,在转基因作物商业化之前,作为环境风险评估(ERA)的一部分,要进行植物特征描述,并将数据提交给监管机构。这项研究的目标是(a) 比较在植物特性田间试验中含有和不含有 SIP 性状的大豆,以满足提交给全球监管机构的要求,并解决中国的具体问题;(b) 比较不同地区的风险评估结论和田间试验中使用的方法。在美国(2012 年和 2018 年)和巴西(2013/2014 年和 2017/2018 年)进行的多地点重复试验中,种植了温带、热带和亚热带种质中带有和不带有 SIP 性状的大豆。对具有和不具有 SIP 性状的大豆品种的农艺性状、表型、植物竞争力和存活特征进行了评估。无论遗传背景、种植区域、季节或测试方法如何,风险评估结论都是相同的:在农艺学、表型、竞争力和存活特征评估方面,被评估的防虫大豆与常规大豆没有差异,表明植物虫害/杂草潜力没有变化。这些结果强化了在评估转基因作物的环境风险时应考虑的跨全球区域、不同季节、种质和方法的数据可移植性概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Plant characterization of insect-protected soybean.

Plant characterization of insect-protected soybean.

Insect-protected soybean (SIP) that produces the Cry1A.105 and Cry2Ab2 insecticidal crystal proteins has been developed to provide protection from feeding damage caused by targeted lepidopteran insect pests. Typically, as part of environmental risk assessment (ERA), plant characterization is conducted, and the data submitted to regulatory agencies prior to commercialization of genetically modified (GM) crops. The objectives of this research were to: (a) compare soybean with and without the SIP trait in plant characterization field trials designed to fulfill requirements for submissions to global regulatory agencies and address China-specific considerations and (b) compare risk assessment conclusions across regions and the methodologies used in the field trials. The soybean with and without the SIP trait in temperate, tropical, and subtropical germplasm were planted in replicated multi-location trials in the USA (in 2012 and 2018) and Brazil (in 2013/2014 and 2017/2018). Agronomic, phenotypic, plant competitiveness, and survival characteristics were assessed for soybean entries with and without the SIP trait. Regardless of genetic background, growing region, season, or testing methodology, the risk assessment conclusions were the same: the evaluated insect-protected soybean did not differ from conventional soybean in evaluated agronomic, phenotypic, competitiveness, and survival characteristics indicating no change in plant pest/weed potential. These results reinforce the concept of data transportability across global regions, different seasons, germplasm, and methodologies that should be considered when assessing environmental risks of GM crops.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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