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野生和耐除草剂转基因大豆杂交后代的适合度与生态风险

Fitness and Ecological Risk of Hybrid Progenies of Wild and Herbicide-Tolerant Soybeans With Gene.

作者信息

Liu Laipan, Zhang Li, Fu Jianmei, Shen Wenjing, Fang Zhixiang, Dai Ying, Jia Ruizong, Liu Biao, Liang Jingang

机构信息

Key Laboratory on Biosafety of Nanjing Institute of Environmental Sciences, Ministry of Ecology and Environment, Nanjing, China.

State Environmental Protection Scientific Observation and Research Station for Ecology and Environment of Wuyi Mountains, Nanjing Institute of Environmental Sciences, Ministry of Ecology and Environment, Nanjing, China.

出版信息

Front Plant Sci. 2022 Jun 9;13:922215. doi: 10.3389/fpls.2022.922215. eCollection 2022.

Abstract

Exogenous genes of transgenic crops are usually transferred to their wild-type relatives through pollen-mediated gene flow, which may change the ecological fitness and ability to invade wild populations, resulting in the weeding of wild plants and other unpredictable environmental impacts. In this study, the F generation of herbicide-resistant soybeans and wild soybeans was obtained by artificial pollination, F generation seeds were obtained by self-crossing, and the fitness of the parents and their F and F generations were tested. The foreign protein was expressed normally in the hybrid between transgenic and wild soybeans; however, the protein expression was significantly lower than that in transgenic soybeans. The fitness of the F hybrid between transgenic and wild soybeans was significantly lower than that of its parent. Compared with those of the wild soybeans, the F generation soybeans improved in some fitness indices, while the emergence rate, pollen germination rate, and number of full seeds per pod, pods per plant, and full seeds per plant did not significantly differ. The aboveground biomass and 100-seed weight of the F generation were higher than those of wild soybeans. Fitness among the F-negative plants, homozygous, and heterozygous positive plants did not significantly vary. Improved fitness and presence of foreign genes in the F soybean were not significantly correlated. As the F generation of transgenic and wild soybeans had no fitness cost and the flowering stage were overlapped, the foreign gene might still spread in the wild soybean population.

摘要

转基因作物的外源基因通常通过花粉介导的基因流转移到其野生近缘种中,这可能会改变野生种群的生态适合度和入侵能力,导致野生植物灭绝以及其他不可预测的环境影响。在本研究中,通过人工授粉获得了抗除草剂大豆与野生大豆的F1代,通过自交获得了F2代种子,并对亲本及其F1和F2代的适合度进行了测试。外源蛋白在转基因大豆与野生大豆的杂交种中正常表达;然而,蛋白表达量显著低于转基因大豆。转基因大豆与野生大豆的F1杂交种的适合度显著低于其亲本。与野生大豆相比,F2代大豆在一些适合度指标上有所提高,而出苗率、花粉萌发率、每荚饱满种子数、每株荚数和每株饱满种子数没有显著差异。F2代的地上生物量和百粒重高于野生大豆。F2代阴性植株、纯合阳性植株和杂合阳性植株之间的适合度没有显著差异。F2代大豆适合度的提高与外源基因的存在没有显著相关性。由于转基因大豆与野生大豆的F2代没有适合度代价且花期重叠,外源基因可能仍会在野生大豆种群中传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24c3/9224928/913d99706442/fpls-13-922215-g001.jpg

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