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马铃薯对马铃薯Y病毒的病原菌衍生抗性——田间条件下的稳定性和生物安全性方面

Pathogen-derived resistance in potato to Potato virus Y-aspects of stability and biosafety under field conditions.

作者信息

Schubert Jörg, Matousek Jaroslav, Mattern Dirk

机构信息

Institute of Resistance Research and Pathogen Diagnostics, Federal Centre for Breeding Research on Cultivated Plants, Theodor-Roemer-Weg 4, 06449 Aschersleben, Germany.

出版信息

Virus Res. 2004 Mar;100(1):41-50. doi: 10.1016/j.virusres.2003.12.013.

Abstract

Plants of three different potato cultivars/lines were transformed via Agrobacterium tumefaciens with a truncated NIb gene of a necrotic strain of Potato virus Y (PVY(N)) which had been C-terminally fused to enhanced blue-fluorescing protein. Resistance of the resulting transgenic clones was evaluated under glass house conditions using an NTN-strain of PVY. Four clones with the highest levels of resistance were chosen for further experiments. Their type of resistance was either recovery or extreme resistance. These clones and their resistance types were also characterised at the molecular level. Mechanisms other than post-transcriptional gene silencing seemed to be involved in the resistance which was not dependent on sequence homology between transgene and challenging virus. Stability of resistance was tested under field conditions. The plants usually became infected with PVY. Tubers of the clone with extreme resistance did not recover from infection whereas those from clones with the recovery type did. No influence of transgenic potatoes was apparent on aphid population numbers in test plots. Recombination events could not be detected at the RNA level between transgene and challenging virus.

摘要

利用根癌农杆菌将马铃薯Y病毒坏死株系(PVY(N))的截短NIb基因(该基因在C端与增强型蓝色荧光蛋白融合)转化到三种不同马铃薯品种/品系的植株中。在温室条件下,使用PVY的NTN株系对所得转基因克隆的抗性进行评估。选择了四个抗性水平最高的克隆进行进一步实验。它们的抗性类型为恢复抗性或极端抗性。还在分子水平上对这些克隆及其抗性类型进行了表征。除转录后基因沉默外,其他机制似乎也参与了抗性过程,这种抗性不依赖于转基因与攻击病毒之间的序列同源性。在田间条件下测试了抗性的稳定性。这些植株通常会感染PVY。具有极端抗性的克隆的块茎未从感染中恢复,而具有恢复型抗性的克隆的块茎则可以恢复。在试验田中,未发现转基因马铃薯对蚜虫种群数量有明显影响。在RNA水平上未检测到转基因与攻击病毒之间的重组事件。

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