This review synthesizes the current knowledge on the biology and epidemiology of P. cactorum and presents an extensive overview of the available management strategies, including preventive measures, cultural practices, detection tools, chemical and biological control.
Abstract
Phytophthora cactorum is a versatile plant pathogen with a wide host spectrum causing substantial yield losses in various forest and agricultural systems, the most affected being apple, ginseng, and strawberry. This review synthesizes the current knowledge on the biology and epidemiology of P. cactorum and presents an extensive overview of the available management strategies, including preventive measures, cultural practices, detection tools, chemical and biological control. Beyond compiling existing data, this review also highlights emerging conceptual shifts in our understanding of P. cactorum, particularly the transition from viewing it as a single broadly infective generalist to recognizing the presence of partially specialized lineages with host- and organ-specific adaptations. We further link advances in molecular biology, including effector repertoire characterization, with practical implications for disease management in agricultural and nursery systems. By integrating insights across disciplines, we aim to establish a strong foundation for deciphering the mechanisms underlying pathogenicity and to support the development of more effective and sustainable management strategies.
The conditions under which EPF can reliably provide resilient protection of rice are established, linking molecular pathways to population and landscape-scale outcomes in flooded paddy environments.
P. Saba, S. Jeyarani, P. S. Shanmugam et al.· Arthropod-Plant Interactions· 0 citations
Stemphylium vesicarium
is an emerging multi-host fungal pathogen that increasingly threatens European and global horticulture. Initially recognized as the causal agent of brown spot of pear and Stemphylium leaf blight of onion, the pathogen is now associated with diseases of other economically important crops, inc...
M. Cortiello, A. Montorsi, F. Bellameche et al.· European journal of plant pa...· 0 citations
Downy mildew, caused by the oomycete Peronospora sparsa, is a major constraint in rose (Rosa spp.) production, particularly under conditions of prolonged leaf wetness and high humidity. Although substantial progress has been made in understanding pathogen biology, fungicide performance, and detection methods, the trans...
Ayesha Kamal, Muhammad Kamil, Muhamamd Aaqil et al.· Plant Disease· 0 citations
Findings indicate that durable, cost-effective T. tabaci control will depend on investing in resistant cultivars, supporting access to quality biocontrol agents, and embedding monitoring based decision tools in extension and policy frameworks rather than relying on calendar based insecticide use.
Oumaima Moustaid, Dina Zanbot, C. Ramdani et al.· Frontiers in Agronomy· 0 citations
This critical narrative review evaluates technologies that could materially change how nematode risk is detected, prevented and suppressed and concludes the strongest near-term case is not for a stand-alone ‘revolutionary’ product but for an information-led integrated system.
K. Premalatha, J. Meenakshi· Journal of Advances in Biolo...· 0 citations
Fire blight, caused by the Gram-negative bacterium Erwinia amylovora, is one of the most destructive diseases of pome-fruit crops worldwide. Despite decades of research, its management remains challenging because efficient and sustainable control options are limited, and many commercially important apple and pear culti...
A. Prokić, M. Ivanović, N. Kuzmanović et al.· Frontiers in Plant Science· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.