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Harnessing nature's arsenal: sustainable plant-based strategies for phytopathogen control. [PDF]

open access: yesFront Microbiol
Calefi GG   +4 more
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Proteases from phytopathogenic fungi and their importance in phytopathogenicity

Journal of General Plant Pathology, 2016
Phytopathogenic fungi, causal agents of some of the world’s most serious plant diseases, can significantly reduce yields during large-scale agricultural production. Among the numerous hydrolytic enzymes they produce for nutritional and/or pathogenicity purposes, hydrolases and proteases are required for their growth and survival.
Murugesan Chandrasekaran   +3 more
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Pathogenesis mechanisms of phytopathogen effectors

WIREs Mechanisms of Disease, 2023
AbstractPlants commonly face the threat of invasion by a wide variety of pathogens and have developed sophisticated immune mechanisms to defend against infectious diseases. However, successful pathogens have evolved diverse mechanisms to overcome host immunity and cause diseases. Different cell structures and unique cellular organelles carried by plant
Lifan Sun   +3 more
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Insights into the evolution of phytopathogens

Trends in Microbiology, 2004
Although not as well-represented in genome sequencing projects as human pathogens, phytopathogens are extremely important because of their economic impact in the field of agriculture. Our understanding of the diversity and mechanisms of virulence in plant pathogens has increased following two recent reports on the sequencing and analysis of Erwinia ...
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Phytopathogenic Bacteria

2014
A few hundred bacterial species, belonging to the Proteobacteria, Mollecutes and Actinomycetes cause a large number of different plant diseases, some of which are devastating for agricultural crops. Symptoms of bacterial plant diseases are diverse and include necrosis, tissue maceration, wilting, and hyperplasia.
van der Wolf, J.M., de Boer, S.H.
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Uronate Oxidation by Phytopathogenic Pseudomonads

Nature, 1959
THE pathway by which D-galacturonic and D-glucuronic acids are utilized by phytopathogenic Pseudomonas species is apparently quite different from the uronic isomerase–keturonic reductase system found in three genera of the Enterobacteriaceae1–5. In this new pathway of uronic acid catabolism, mucic acid has been isolated and identified as the initial ...
W W, KILGORE, M P, STARR
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