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Overview of principles and implementations to deal with spatial issues in monitoring environmental effects of genetically modified organisms

机译:在监测转基因生物对环境的影响中处理空间问题的原则和实施概述

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摘要

The approval of genetically modified organisms [GMO] for deliberate release and placing on the market requires GMO environmental risk assessment [ERA] and GMO environmental monitoring [EM]. Both GMO ERA and GMO EM are still under discussion. The goal of this article is, firstly, to analyse principles of GMO EM as published in the Association of German Engineers [VDI] Guideline 4330 Part 1, focusing on the characterisation of the receiving environment affected by GMO cultivation and the representativeness of GMO EM to assess large-scale implications of GMO cultivation. Secondly, the article introduces measures to meet these issues by the use of map data and statistics within a geographical information system [GIS]. Finally, three case studies exemplify the application of data and methods. To deal with spatial issues of GMO EM as outlined in the VDI Guideline 4330 Part 1, a GIS-based approach is presented. It relies on both spatial data collected from several sources which were derived from sample point data and geostatistical and multivariate statistical methods within a GIS environment. Data used for describing the receiving environment and for planning and evaluating monitoring schemes comprise information about land use, climate, phenology, soil coverage, species distribution and ecoregions. The case studies deal with (1) ecological land classification for characterisation of GMO-receiving environments and representative EM, (2) selection of representative sites for modelling GMO dispersal, and (3) delineation and mapping of segregation distances. Even a systematic and stepwise-structured risk assessment cannot cover all risk relevant questions, especially large-scale, long-term and combinatory effects which may not occur before the conventional application of the respective GMO. Hence, GMO EM is crucial to deal with unanticipated and undesirable effects. The article gives an overview of a GIS implementation and relevant geodata promoting GMO EM.
机译:批准将转基因生物[GMO]故意释放并投放市场需要进行GMO环境风险评估[ERA]和GMO环境监测[EM]。 GMO ERA和GMO EM仍在讨论中。本文的目的是,首先分析在德国工程师协会[VDI]指南4330第1部分中发布的GMO EM的原理,着重研究受GMO培养影响的接收环境的特征以及GMO EM对评估转基因生物种植的大规模影响。其次,本文介绍了通过在地理信息系统[GIS]中使用地图数据和统计信息来解决这些问题的措施。最后,三个案例研究说明了数据和方法的应用。为了解决VDI指南4330第1部分中概述的GMO EM的空间问题,提出了一种基于GIS的方法。它既依赖于从多个来源收集的空间数据,这些数据是从采样点数据以及GIS环境中的地统计和多元统计方法得出的。用于描述接收环境以及用于计划和评估监控方案的数据包括有关土地使用,气候,物候,土壤覆盖率,物种分布和生态区域的信息。案例研究涉及(1)表征转基因生物接收环境和代表性EM的生态土地分类;(2)选择用于模拟GMO扩散的代表性地点;以及(3)划定和绘制隔离距离。即使是系统的,分步结构的风险评估也无法涵盖所有​​与风险相关的问题,尤其是在常规应用各自的GMO之前可能不会发生的大规模,长期和组合效应。因此,GMO EM对于处理意料之外的不良影响至关重要。本文概述了GIS实施和促进GMO EM的相关地理数据。

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