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Biotechnological approaches to control the crop pathogen Fusarium and development of nanotechnology-based diagnostic methods for detection of plant diseases.

机译:控制作物病原镰刀菌的生物技术方法和基于纳米技术的植物病害检测诊断方法的开发。

摘要

The plant fungal pathogen Fusarium is the causal agent of ‘Fusarium wilt’ and results in large losses on a wide range of crops including vegetables, flowers, trees and field crops. Control methods for Fusarium wilt are very limited. Crop rotations are ineffective because F. oxysporum has such a large host range and is able to survive in the soil for long periods of time and genetic resistance is very scarce or on-existent in many crops. I will describe the development of two biotechnological approaches to produce fusarium resistant plants, one of which has produced 100% resistance. I will also present the development of nanotechnology-based diagnostic methods that can be coupled with DNA electrode recognition technology to detect and identify over 100,000 different pathogens in a single diagnostic test.
机译:植物真菌病原体镰刀菌是“枯萎病”的病原体,导致蔬菜,花卉,树木和大田作物等多种农作物遭受重大损失。控制枯萎病的方法非常有限。轮作无效,因为尖孢镰刀菌具有如此大的寄主范围,并且能够在土壤中长期存活,并且遗传抗性在许多农作物中非常稀少或不存在。我将描述两种生物技术方法的发展,以生产抗镰刀菌的植物,其中一种产生了100%的抗性。我还将介绍基于纳米技术的诊断方法的发展,该方法可与DNA电极识别技术结合使用,以在一次诊断测试中检测和识别超过100,000种不同的病原体。

著录项

  • 作者

    Botella José Ramón;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 spa
  • 中图分类
  • 入库时间 2022-08-20 21:06:26

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