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REMOTE SCREENING AND DIRECT CONTROL OF THE BACTERIAL INFECTION OF GARDENS

机译:花园细菌感染的远程筛查和直接控制

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摘要

In last time gardens are often at the dangerous of viruses and bacteria infections. To preserve not only the coming harvest, but, in generally, to provide stability and growing horticultures the development of new generation of the analytical techniques for remote express screening vegetative state arrays and direct control of the appropriate infection if appearance of its maybe expected on the basis of previous surveys are very actually and important. For continuous monitoring we propose the application of the complex of the optical analytical devices as "Floratest" and "Plasmatest" (both produced in Ukraine) which is able to control step by step general situation with vegetable state and verify concrete situation with infection. General screening is accomplished on the control of the intensity of chlorophyll induction (IChF), namely, registration of so called Kautsky curve which testifies about physiological mechanisms of energy generation, accumulation and effective ways of its realization in cells. The measuring may be done by direct way on the number of individual vegetables and remote screening of massive with transferring registered signal direct in the laboratory. Next step of control connected with the application of the surface plasmon resonance (SPR) based immune biosensor which is able to determine concrete bacteria (for example, Erwinia amilovora) with the limit detection about 0.2 μg/ml, the overall time of the analysis within 30 min (5 min of the duration of one measurement). The traditional ELISA-method showed the sensitivity to this pathogen about 0.5 μg/ml, overall time of the analysis several hours and obligatory using additional expensive reagents.
机译:最后一次,花园经常处于病毒和细菌感染的危险中。为了不仅保护即将来临的收获,而且为了总体上提供稳定性和不断发展的园艺栽培,开发了用于远程快速筛选植物状态阵列并直接控制适当感染的新一代分析技术(如果可以预期在植物上出现的话)。先前调查的基础是非常实际和重要的。对于连续监测,我们建议使用光学分析设备的复合物“ Floratest”和“ Plasmatest”(均在乌克兰生产),它们能够逐步控制蔬菜状态的总体情况,并验证受感染的具体情况。一般的筛选是通过控制叶绿素诱导强度(IChF)来完成的,也就是所谓的考茨基曲线的配准,它证明了能量产生,积累及其在细胞中实现的有效途径的生理机制。可以通过直接对单个蔬菜的数量进行测量,并通过直接在实验室中传输注册信号的方式对大量蔬菜进行远程筛选。下一步控制与基于表面等离子体共振(SPR)的免疫生物传感器的应用有关,该传感器能够确定极限浓度约为0.2μg/ ml的具体细菌(例如,欧文氏欧文氏菌),整个分析时间在30分钟(一次测量持续5分钟)。传统的ELISA方法显示对该病原体的敏感性约为0.5μg/ ml,整个分析时间为数小时,并且必须使用其他昂贵的试剂。

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