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用于人工林种植的基因工程树木:环境风险评估的关键考虑因素。

Genetically engineered trees for plantation forests: key considerations for environmental risk assessment.

机构信息

Department of Biology, University of Oulu, Oulu, Finland.

出版信息

Plant Biotechnol J. 2013 Sep;11(7):785-98. doi: 10.1111/pbi.12100. Epub 2013 Aug 5.

Abstract

Forests are vital to the world's ecological, social, cultural and economic well-being yet sustainable provision of goods and services from forests is increasingly challenged by pressures such as growing demand for wood and other forest products, land conversion and degradation, and climate change. Intensively managed, highly productive forestry incorporating the most advanced methods for tree breeding, including the application of genetic engineering (GE), has tremendous potential for producing more wood on less land. However, the deployment of GE trees in plantation forests is a controversial topic and concerns have been particularly expressed about potential harms to the environment. This paper, prepared by an international group of experts in silviculture, forest tree breeding, forest biotechnology and environmental risk assessment (ERA) that met in April 2012, examines how the ERA paradigm used for GE crop plants may be applied to GE trees for use in plantation forests. It emphasizes the importance of differentiating between ERA for confined field trials of GE trees, and ERA for unconfined or commercial-scale releases. In the case of the latter, particular attention is paid to characteristics of forest trees that distinguish them from shorter-lived plant species, the temporal and spatial scale of forests, and the biodiversity of the plantation forest as a receiving environment.

摘要

森林对世界的生态、社会、文化和经济福祉至关重要,但森林的可持续供应商品和服务越来越受到压力的挑战,如对木材和其他森林产品的需求不断增长、土地转换和退化以及气候变化。采用最先进的树木育种方法(包括基因工程 (GE) 的应用)进行集约化管理、高生产力的林业具有在更少的土地上生产更多木材的巨大潜力。然而,GE 树木在人工林中的部署是一个有争议的话题,人们特别关注对环境的潜在危害。本文由一组国际林业、林木育种、森林生物技术和环境风险评估 (ERA) 专家于 2012 年 4 月召开会议编写,探讨了用于转基因作物的 ERA 范例如何应用于用于人工林的转基因树木。它强调了区分 GE 树木的封闭田间试验的 ERA 和非封闭或商业规模释放的 ERA 的重要性。在后一种情况下,特别关注的是森林树木区别于寿命较短的植物物种的特征、森林的时间和空间尺度以及种植林作为接收环境的生物多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a35/3823068/03cef0dfda5d/pbi0011-0785-f1.jpg

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