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转 Bean 金纹花叶病毒 rep 基因普通菜豆上节肢动物的种群调查。

Populational survey of arthropods on transgenic common bean expressing the rep gene from Bean golden mosaic virus.

机构信息

Embrapa Arroz e Feijão; Santo Antônio de Goiás; Goiás, Brazil.

Universidade de Brasília; Brasília, DF, Brazil.

出版信息

GM Crops Food. 2014 Apr-Jun;5(2):139-48. doi: 10.4161/gmcr.29224. Epub 2014 Jun 12.

Abstract

Genetically modified (GM) crops is considered the fastest adopted crop technology in the history of modern agriculture. However, possible undesirable and unintended effects must be considered during the research steps toward development of a commercial product. In this report we evaluated effects of a common bean virus resistant line on arthropod populations, considered as non-target organisms. This GM bean line (named M1/4) was modified for resistance against Bean golden mosaic virus (BGMV) by expressing a mutated REP protein, which is essential for virus replication. Biosafety studies were performed for a period of three years under field conditions. The abundance of some species was significantly higher in specific treatments in a particular year, but not consistently different in other years. A regular pattern was not observed in the distribution of insects between genetically modified and conventional treatments. Data analyses showed that minor differences observed can be attributed to random variation and were not consistent enough to conclude that the treatments were different. Therefore the present study indicates that the relative abundance of species are similar in transgenic and non-transgenic fields.

摘要

转基因作物被认为是现代农业史上采用最快的作物技术。然而,在开发商业产品的研究步骤中,必须考虑可能出现的不良和意外影响。在本报告中,我们评估了一种抗豆科花叶病毒的普通豆类植物品系对节肢动物种群(非目标生物)的影响。这种转基因豆品系(命名为 M1/4)通过表达一种突变的 REP 蛋白来抵抗 Bean golden mosaic virus(BGMV),该蛋白对病毒复制至关重要。在田间条件下进行了为期三年的生物安全研究。在特定年份的某些处理中,一些物种的丰度明显更高,但在其他年份没有一致的差异。在转基因和常规处理之间,昆虫的分布没有规律。数据分析表明,观察到的微小差异可以归因于随机变异,并且不一致到足以得出处理不同的结论。因此,本研究表明,在转基因和非转基因田间,物种的相对丰度相似。

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