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Open AccessJournal ArticleDOI

Non-Chemical Treatments for the Pre- and Post-Harvest Elicitation of Defense Mechanisms in the Fungi–Avocado Pathosystem

TLDR
In this article, the authors present the most relevant advances in the use of natural compounds with antifungal and elicitor effects in plant tissues, showing some of them to have elicitor and fungicidal effects that are reflected in the postharvest quality of the fruit and a lower incidence of diseases.
Abstract
The greatest challenge for the avocado (Persea americana Miller) industry is to maintain the quality of the fruit to meet consumer requirements. Anthracnose is considered the most important disease in this industry, and it is caused by different species of the genus Colletotrichum, although other pathogens can be equally important. The defense mechanisms that fruit naturally uses can be triggered in response to the attack of pathogenic microorganisms and also by the application of exogenous elicitors in the form of GRAS compounds. The elicitors are recognized by receptors called PRRs, which are proteins located on the avocado fruit cell surface that have high affinity and specificity for PAMPs, MAMPs, and DAMPs. The activation of defense-signaling pathways depends on ethylene, salicylic, and jasmonic acids, and it occurs hours or days after PTI activation. These defense mechanisms aim to drive the pathogen to death. The application of essential oils, antagonists, volatile compounds, chitosan and silicon has been documented in vitro and on avocado fruit, showing some of them to have elicitor and fungicidal effects that are reflected in the postharvest quality of the fruit and a lower incidence of diseases. The main focus of these studies has been on anthracnose diseases. This review presents the most relevant advances in the use of natural compounds with antifungal and elicitor effects in plant tissues.

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Journal ArticleDOI

Anthracnose Disease Control and Postharvest Quality of Hass Avocado Stored in Biobased PLA/PBAT/Pine Essential Oil/Chitosan Active Packaging Nets

TL;DR: In this article , the authors evaluated the effect of polylactic acid (PLA)/poly (butylene adipate-co-terephthalate) (PBAT) 60/40 biodegradable blends added with pine essential oil (PEO) at 10, 12, 14, and 20% and coated with 1% chitosan (CH).
Journal ArticleDOI

Assessing Copper-Alternative Products for the Control of Pre- and Postharvest Citrus Anthracnose

TL;DR: In this article , the efficacy of 11 commercial alternative products were evaluated in vitro, in growth chamber, in open field and in postharvest environments, and the best alternative product, Biorend, significantly reduced disease incidence and severity, but with lower efficacy than copper.
Book ChapterDOI

Mycorrhizal Association and Plant Disease Protection: New Perspectives

TL;DR: In this article , the authors describe the current status of the role of mycorrhizal-induced resistance (MIR) in plant disease protection and reveal that AMF can suppress pests and plant diseases by the activation of defense regulatory genes.
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