Almond trunk and branch canker diseases constitute a major cause of tree mortality in California. Numerous fungal pathogens have been associated with these canker diseases and pruning wounds act as major infection courts. Before this study, there were no products registered in California for the management of these diseases. In this study, fungicidal products including synthetic chemistries, biocontrols, paint, and a sealant were evaluated for preventing fungal pathogen infection via pruning wounds. In four field trials conducted over two dormant seasons, 16 pruning wound treatments were tested using handheld spray applications against five almond canker pathogens, namely , , , , and . The fungicide thiophanate-methyl (Topsin M; United Phosphorus, Bandra West, Mumbai, India) provided 82% overall disease prevention against four fungal pathogens. The biological control agent, SC1 (Vintec; Bi-PA, Londerzeel, Belgium), tested at three application rates, resulted in 90 to 93% protection of pruning wounds in field trials, and for individual pathogens ranged from 81 to 100% protection for the three rates. At the time of this publication, Vintec is being considered for registration as a biological control product for the prevention of almond canker diseases, while Topsin M is recommended to growers for the prevention of almond canker diseases. This research indicates that effective protection of pruning wounds from infection by almond canker pathogens can be achieved with a one-time spray application of thiophanate-methyl or the biocontrol . SC1 (recommended 2 g/liter) after pruning.
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http://dx.doi.org/10.1094/PDIS-11-20-2371-RE | DOI Listing |
Plant Dis
January 2025
Instituto Valenciano de Investigaciones Agrarias, Plant Protection and Biotechnology Center, Ctra Moncada-Naquera km 4.5, Moncada, Spain, 46113;
Peach-associated luteovirus (PaLV) belongs to the genus Luteovirus, family Tombusviridae. To date, PaLV has only been reported in peach (Prunus persica) and its presence detected in the Republic of Georgia (Wu et al., 2017), China (Zhou et al.
View Article and Find Full Text PDFFront Plant Sci
October 2024
Department of Sustainable Crop Protection, Andalusian Institute of Agricultural and Fisheries Research and Training (IFAPA), Seville, Spain.
Introduction: Species of fungi are relevant pathogens of almond causing trunk cankers, extensive gumming, necrosis of internal tissues and plant dieback and dead, threatening almond productivity. A novel triplex quantitative real-time PCR (qPCR) assay was designed for the simultaneous detection and quantification of , and the family.
Material And Methods: The method was validated in symptomatic and asymptomatic almond, avocado, blueberry and grapevine plants and in environmental samples, such as cropping soil and rainwater and in artificially inoculated trapped spores, demonstrating the same performance on several matrices.
Plant Dis
September 2024
DISAFA, University of Torino, largo braccini 2, Torino, Italy, 10095;
Plant Dis
May 2024
Kashi University, College of Modern Agriculture College, Kashi, Xinjiang, China;
Euphrates poplar (Populus euphratica Oliv.) constitutes about 61% of the global poplar population, thriving in arid regions of western China (Wu et al. 2023).
View Article and Find Full Text PDFPLoS One
April 2024
Department of Plant Pathology, University of California, Davis, Davis, CA, United States of America.
We sequenced and comprehensively analysed the genomic architecture of 98 fluorescent pseudomonads isolated from different symptomatic and asymptomatic tissues of almond and a few other Prunus spp. Phylogenomic analyses, genome mining, field pathogenicity tests, and in vitro ice nucleation and antibiotic sensitivity tests were integrated to improve knowledge of the biology and management of bacterial blast and bacterial canker of almond. We identified Pseudomonas syringae pv.
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