4.6 Review

White Rot Fungi (Hymenochaetales) and Esca of Grapevine: Insights from Recent Microbiome Studies

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Review Plant Sciences

Biogenic volatile organic compounds in the grapevine response to pathogens, beneficial microorganisms, resistance inducers, and abiotic factors

Valentina Lazazzara et al.

Summary: The synthesis of volatile organic compounds (VOCs) in grapevines is triggered in response to various stimuli, with specific VOC emission patterns potentially involved in plant defense responses. VOCs with inhibitory activities against pathogens, responsible for inducing plant resistance, and serving as biomarkers of resistance have been identified, showing potential applications.

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Plant resilience and physiological modifications induced by curettage of Esca-diseased grapevines

Celine Cholet et al.

Summary: The study shows that grapevines affected by Esca disease, after undergoing curettage treatment, may recover lower vigour and fertility compared to healthy plants, but their grape berry quality is comparable to healthy plants. This cultural practice of curettage has been effective in helping Esca-symptomatic grapevines recover and compensate for the disease's impact on berry quality over time.

OENO ONE (2021)

Article Microbiology

Bacteria associated with wood tissues of Esca-diseased grapevines: functional diversity and synergy with Fomitiporia mediterranea to degrade wood components

Rana Haidar et al.

Summary: The study found that bacteria inhabiting grapevine wood can influence the ability of the fungus Fmed to degrade wood. Some bacteria may have a synergistic interaction with Fmed, enhancing wood degradation. This suggests the possibility of a synergistic interaction between Fmed and certain bacterial strains, promoting grapevine wood degradation.

ENVIRONMENTAL MICROBIOLOGY (2021)

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Fomitiporia mediterranea M. Fisch., the historical Esca agent: a comprehensive review on the main grapevine wood rot agent in Europe

Samuele Moretti et al.

Summary: Fomitiporia mediterranea is a basidiomycete fungus capable of degrading lignocellulosic biomass and is considered the main pathogen of Esca disease complex. It can be treated with curettage or specific products, and its relationship with Grapevine Leaf Stripe Disease has been studied.

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Sap Flow Disruption in Grapevine Is the Early Signal Predicting the Structural, Functional, and Genetic Responses to Esca Disease

Loris Ouadi et al.

Summary: This study found that fungal species causing Esca can lead to grapevine wood necrosis, disrupting the plant's physiological processes and eventually causing grapevine death. The study also showed that the impact of Esca on grapevines primarily affects leaf symptoms and genetic plant responses. Sap flow dynamics were identified as a useful tool in predicting plant disorders due to Esca.

FRONTIERS IN PLANT SCIENCE (2021)

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Factors Involved on Tiger-Stripe Foliar Symptom Expression of Esca of Grapevine

Francesco Calzarano et al.

Summary: The study on grapevine leaves found that untreated asymptomatic diseased vines had high calcium contents for most of the vegetative season, while treated asymptomatic diseased vines showed higher contents of calcium, magnesium, and sodium before fruit set, with better physiological efficiency. The results confirmed the strong response of the plant to symptom expression development and the possibility of limiting this response through calcium and magnesium applications.

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Impacts of Sodium Arsenite on Wood Microbiota of Esca-Diseased Grapevines

Emilie Bruez et al.

Summary: The study on the effects of sodium arsenite on grapevines in different regions of France found significant differences in fungal microbiota composition between treated and untreated vines, particularly in relation to the pathogenic fungus Fomitiporia mediterranea. Sodium arsenite treatment was shown to significantly reduce the abundance of F. mediterranea in white-rot necrotic tissues, allowing saprobic fungi to colonize these tissues.

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Trunk Surgery as a Tool to Reduce Foliar Symptoms in Diseases of the Esca Complex and Its Influence on Vine Wood Microbiota

Andrea Pacetti et al.

Summary: Trunk surgery has emerged as an effective method for reducing foliar symptoms associated with Esca complex diseases, with the mechanical removal of decayed wood leading to lower symptom re-expression. Different changes in microbiota post-surgery were observed based on wood types, with a notable decrease in Fomitiporia mediterranea abundance. The reduction of LS symptoms after trunk surgery could be attributed to a shift in microbiota affecting a shared biochemical pathway involved in symptom expression.

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Fomitiporia punicata and Phaeoacremonium minimum associated with Esca complex of grapevine in China

Qingtong Ye et al.

Summary: This study provides the first detailed report of the Esca complex in China, identifying new pathogens associated with the disease. The results offer new insights into the knowledge of the Esca complex.

PHYTOPATHOLOGY RESEARCH (2021)

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Role of basidiomycete fungi in the grapevine trunk disease esca

A. A. Brown et al.

PLANT PATHOLOGY (2020)

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Endophytic microbial assemblage in grapevine

E. Deyett et al.

FEMS MICROBIOLOGY ECOLOGY (2020)

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Sodium arsenite effect on Vitis vinifera L. Physiology

Aurelie Songy et al.

JOURNAL OF PLANT PHYSIOLOGY (2019)

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Exploring the Hydraulic Failure Hypothesis of Esca Leaf Symptom Formation

Giovanni Bortolami et al.

PLANT PHYSIOLOGY (2019)

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Temporal Dynamics of the Sap Microbiome of Grapevine Under High Pierce's Disease Pressure

Elizabeth Deyett et al.

FRONTIERS IN PLANT SCIENCE (2019)

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Differential susceptibility responses of Greek olive cultivars to Fomitiporia mediterranea

Emmanouil A. Markakis et al.

EUROPEAN JOURNAL OF PLANT PATHOLOGY (2019)

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Differential phenolic production in leaves of Vitis vinifera cv. Alvarinho affected with esca disease

Marta R. M. Lima et al.

PLANT PHYSIOLOGY AND BIOCHEMISTRY (2017)

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Impact of grafting type on Esca foliar symptoms

Séverine Mary et al.

OENO One (2017)

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Phaeoacremonium: From esca disease to phaeohyphomycosis

David Gramaje et al.

FUNGAL BIOLOGY (2015)

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Volatile affairs in microbial interactions

Ruth Schmidt et al.

ISME JOURNAL (2015)

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Fungal Endophytic Communities in Grapevines (Vitis vinifera L.) Respond to Crop Management

Michael Pancher et al.

APPLIED AND ENVIRONMENTAL MICROBIOLOGY (2012)

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What if esca disease of grapevine were not a fungal disease?

Valerie Hofstetter et al.

FUNGAL DIVERSITY (2012)

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Systemic damage in leaf metabolism caused by esca infection in grapevines

C. Valtaud et al.

AUSTRALIAN JOURNAL OF GRAPE AND WINE RESEARCH (2011)

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Leaf stripe form of esca induces alteration of photosynthesis and defence reactions in presymptomatic leaves

Maryline Magnin-Robert et al.

FUNCTIONAL PLANT BIOLOGY (2011)

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NMR metabolomics of esca disease-affected Vitis vinifera cv. Alvarinho leaves

Marta R. M. Lima et al.

JOURNAL OF EXPERIMENTAL BOTANY (2010)

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Esca in young and mature vineyards, and molecular diagnosis of the associated fungi

G. Romanazzi et al.

EUROPEAN JOURNAL OF PLANT PATHOLOGY (2009)

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Pathogenicity testing of lesser-known vascular fungi of grapevines

F. Halleen et al.

AUSTRALASIAN PLANT PATHOLOGY (2007)

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Pathogenicity of fungi associated with a decay of kiwifruit

S Di Marco et al.

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