Gene flow in Prunus species in the context of novel trait risk assessment.

Environmental biosafety research Pub Date : 2010-04-01 Epub Date: 2011-02-03 DOI:10.1051/ebr/2010011
S Zahra H Cici, Rene C Van Acker
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引用次数: 11

Abstract

Prunus species are important commercial fruit (plums, apricot, peach and cherries), nut (almond) and ornamental trees cultivated broadly worldwide. This review compiles information from available literature on Prunus species in regard to gene flow and hybridization within this complex of species. The review serves as a resource for environmental risk assessment related to pollen mediated gene flow and the release of transgenic Prunus. It reveals that Prunus species, especially plums and cherries show high potential for transgene flow. A range of characteristics including; genetic diversity, genetic bridging capacity, inter- and intra-specific genetic compatibility, self sterility (in most species), high frequency of open pollination, insect assisted pollination, perennial nature, complex phenotypic architecture (canopy height, heterogeneous crown, number of flowers produced in an individual plant), tendency to escape from cultivation, and the existence of ornamental and road side Prunus species suggest that there is a tremendous and complicated ability for pollen mediated gene movement among Prunus species. Ploidy differences among Prunus species do not necessarily provide genetic segregation. The characteristics of Prunu s species highlight the complexity of maintaining coexistence between GM and non-GM Prunus if there were commercial production of GM Prunus species. The results of this review suggest that the commercialization of one GM Prunus species can create coexistence issues for commercial non-GM Prunus production. Despite advances in molecular markers and genetic analysis in agroecology, there remains limited information on the ecological diversity, metapopulation nature, population dynamics, and direct measures of gene flow among different subgenera represented in the Prunus genus. Robust environmental impact, biosafety and coexistence assessments for GM Prunus species will require better understanding of the mechanisms of gene flow and hybridization among species within the Prunus species complex.

新性状风险评估背景下李属物种的基因流动。
李树是一种重要的商业果树(李子、杏、桃和樱桃)、坚果(杏仁)和观赏树木,在世界范围内广泛种植。本文对李属植物的基因流动和杂交进行了综述。该综述可为花粉介导的基因流动和转基因李释放相关的环境风险评价提供参考。结果表明,李属植物,尤其是李和樱桃具有较高的转基因流动潜力。一系列特征包括:遗传多样性,遗传桥接能力,种间和种内遗传相容性,自育性(在大多数物种中),开放授粉频率高,昆虫辅助授粉,多年生性质,复杂的表型结构(冠层高度,异质树冠,单株开花数量),从栽培中逃脱的倾向,观赏李和路边李的存在表明,李种间花粉介导的基因运动能力巨大而复杂。李属植物的倍性差异并不一定造成遗传分离。李属植物的特性凸显了如果要实现李属植物的商业化生产,维持李属植物的转基因与非转基因共存的复杂性。研究结果表明,一种转基因李树的商业化可能会给非转基因李树的商业化生产带来共存问题。尽管在农业生态学的分子标记和遗传分析方面取得了进展,但对李属不同亚属间的生态多样性、超种群性质、种群动态以及基因流动的直接测量等方面的研究仍然有限。对转基因李树物种进行环境影响、生物安全性和共存评价,需要更好地了解李树物种复合体内物种间的基因流动和杂交机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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