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Titlebook: Seed-Borne Diseases of Agricultural Crops: Detection, Diagnosis & Management; Ravindra Kumar,Anuja Gupta Book 2020 Springer Nature Singapo

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Contribution of Individuals and Organizations in the Development of Seed Pathologyd organizations. Paul Neergaard made great contribution in the development of seed pathology, and hence he is considered as the father of seed pathology. Three primary organizations publish standardized seed health testing methods, and these are the International Seed Testing Association (ISTA), the
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Ancient, Mid-Time, and Recent History of Seed Pathology bacteria, viruses, nematodes, and physiological defects which may affect any member of the plant kingdom. The various aspects, viz., seed health, management of seed-borne diseases, seed treatments, and their detection and diagnosis techniques, were developed with the time. The systematic applicatio
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Diagnosis and Detection of Seed-Borne Fungal Phytopathogenseaction (PCR) has emerged as a tool for the detection of microorganisms from diverse environments. Thus far, it is clear that nucleic acid-based detection protocols exhibit higher level of sensitivity than conventional methods. Unfortunately, PCR-based seed tests require the extraction of PCR-qualit
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Detection of Seed and Propagating Material-Borne Bacterial Diseases of Economically Important Crops reaction (PCR) has more potential to improve bacterial pathogen detection in seeds as well as planting materials. There are advanced techniques like BIO-PCR, immunomagnetic separation-PCR (IMS-PCR), and magnetic capture hybridization-PCR (MCH-PCR) which reduce inhibitory compounds during PCR, which
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Detection and Diagnosis of Seed-Borne Viruses and Virus-Like Pathogensrted to detect seed-transmitted viral load in various crops. Recently, loop-mediated isothermal amplification (LAMP) and next-generation sequencing (NGS) have been explored for their application in diagnostics of seed-borne viruses. Briefly, the present chapter outlines and discusses the conventiona
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