几丁质酶的系统发育及其对估计转几丁质酶白桦水平基因转移的意义。

Environmental biosafety research Pub Date : 2008-10-01 Epub Date: 2008-10-29 DOI:10.1051/ebr:2008019
Katileena Lohtander, Hanna-Leena Pasonen, Markku K Aalto, Tapio Palva, Ari Pappinen, Jouko Rikkinen
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引用次数: 9

摘要

几丁质酶是一种水解酶,在生物技术中被用来提高植物对真菌病原体的抵抗力。转基因植物引起了人们对转基因基因通过垂直或水平基因转移(HGT)向环境中传播的担忧。本研究从白桦(Betula pendula) est文库中鉴定了几丁质酶样序列,并对其与其他几丁质酶的系统发育关系进行了研究。利用系统发育分析方法估算了几丁质酶基因在植物和其他生物之间的历史基因转移事件的频率,并评价了系统发育分析作为转基因白桦携带甜菜几丁质酶IV基因风险评估的信息来源。从est文库中获得13条部分几丁质酶样序列,长度约为600 bp。该序列属于5个几丁质酶类。来自链霉菌和伯克霍尔德菌的一些细菌几丁质酶,以及来自一种卵生菌——疫霉菌的几丁质酶,与植物的IV类几丁质酶组合在一起,支持了细菌中的一些IV类几丁质酶是通过水平基因转移从真核几丁质酶进化而来的假设。根据我们的分析,几丁质酶IV基因从真核生物到细菌的HGT可能只发生过一次。基于此,几丁质酶IV基因从转基因桦木向其他生物转移的可能性极低。然而,由于风险是事件发生可能性和后果的函数,罕见的高温气候事件的影响将最终决定风险水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Phylogeny of chitinases and its implications for estimating horizontal gene transfer from chitinase-transgenic silver birch (Betula pendula).

Chitinases are hydrolytic enzymes that have been employed in biotechnology in attempts to increase plants' resistance against fungal pathogens. Genetically modified plants have given rise to concerns of the spreading of transgenes into the environment through vertical or horizontal gene transfer (HGT). In this study, chitinase-like sequences from silver birch (Betula pendula) EST-libraries were identified and their phylogenetic relationships to other chitinases were studied. Phylogenetic analyses were used to estimate the frequency of historical gene transfer events of chitinase genes between plants and other organisms, and the usefulness of phylogenetic analyses as a source of information for the risk assessment of transgenic silver birch carrying a sugar beet chitinase IV gene was evaluated. Thirteen partial chitinase-like sequences, with an approximate length of 600 bp, were obtained from the EST-libraries. The sequences belonged to five chitinase classes. Some bacterial chitinases from Streptomyces and Burkholderia, as well as a chitinase from an oomycete, Phytophthora infestans, grouped together with the class IV chitinases of plants, supporting the hypothesis that some class IV chitinases in bacteria have evolved from eukaryotic chitinases via horizontal gene transfer. According to our analyses, HGT of a chitinase IV gene from eukaryotes to bacteria has presumably occurred only once. Based on this, the likelihood for the HGT of chitinase IV gene from transgenic birch to other organisms is extremely low. However, as risk is a function of both the likelihood and consequences of an event, the effects of rare HGT event(s) will finally determine the level of the risk.

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