Literature DB >> 30727463

Evaluation of Visible-Near Infrared Reflectance Spectra of Avocado Leaves as a Non-destructive Sensing Tool for Detection of Laurel Wilt.

Sindhuja Sankaran1, Reza Ehsani1, Sharon A Inch2, Randy C Ploetz2.   

Abstract

Laurel wilt, caused by the fungus Raffaelea lauricola, affects the growth, development, and productivity of avocado, Persea americana. This study evaluated the potential of visible-near infrared spectroscopy for non-destructive sensing of this disease. The symptoms of laurel wilt are visually similar to those caused by freeze damage (leaf necrosis). In this work, we performed classification studies with visible-near infrared spectra of asymptomatic and symptomatic leaves from infected plants, as well as leaves from freeze-damaged and healthy plants, both of which were non-infected. The principal component scores computed from principal component analysis were used as input features in four classifiers: linear discriminant analysis, quadratic discriminant analysis (QDA), Naïve-Bayes classifier, and bagged decision trees (BDT). Among the classifiers, QDA and BDT resulted in classification accuracies of higher than 94% when classifying asymptomatic leaves from infected plants. All of the classifiers were able to discriminate symptomatic-infected leaves from freeze-damaged leaves. However, the false negatives mainly resulted from asymptomatic-infected leaves being classified as healthy. Analyses of average vegetation indices of freeze-damaged, healthy (non-infected), asymptomatic-infected, and symptomatic-infected leaves indicated that the normalized difference vegetation index and the simple ratio index were statistically different.

Entities:  

Year:  2012        PMID: 30727463     DOI: 10.1094/PDIS-01-12-0030-RE

Source DB:  PubMed          Journal:  Plant Dis        ISSN: 0191-2917            Impact factor:   4.438


  2 in total

1.  Kiwi Plant Canker Diagnosis Using Hyperspectral Signal Processing and Machine Learning: Detecting Symptoms Caused by Pseudomonas syringae pv. actinidiae.

Authors:  Mafalda Reis-Pereira; Renan Tosin; Rui Martins; Filipe Neves Dos Santos; Fernando Tavares; Mário Cunha
Journal:  Plants (Basel)       Date:  2022-08-19

2.  Metabolomic and Physiological Changes in Fagus sylvatica Seedlings Infected with Phytophthora plurivora and the A1 and A2 Mating Types of P. ×cambivora.

Authors:  Tamara Corcobado; Ivan Milenković; Iñigo Saiz-Fernández; Tomáš Kudláček; Roman Plichta; Tomáš Májek; Aneta Bačová; Henrieta Ďatková; László Benedek Dálya; Miloš Trifković; Davide Mureddu; Vladimír Račko; Monika Kardošová; Jaroslav Ďurkovič; Roman Rattunde; Thomas Jung
Journal:  J Fungi (Basel)       Date:  2022-03-14
  2 in total

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