4.6 Review

Genomic and Pathogenicity Mechanisms of the Main Theobroma cacao L. Eukaryotic Pathogens: A Systematic Review

Journal

MICROORGANISMS
Volume 11, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/microorganisms11061567

Keywords

Moniliophthora; Phytophthora; Ceratocystis cacaofunesta; witches' broom disease; black pod disease; Ceratocystis wilt; frosty pod rot

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A set of diseases caused by fungi and oomycetes lead to significant losses in global cocoa production. Managing the impact of these diseases is challenging due to the lack of a common solution for different pathogens. This study systematically organizes and summarizes the omics studies of T. cacao eukaryotic pathogens, focusing on plant-pathogen interaction and production dynamics. The findings provide valuable insights into T. cacao diseases, including molecular characteristics and common mechanisms of pathogenicity.
A set of diseases caused by fungi and oomycetes are responsible for large losses in annual world cocoa production. Managing the impact caused by these diseases is very complex because a common solution has yet to be found for different pathogens. In this context, the systematic knowledge of Theobroma cacao L. pathogens' molecular characteristics may help researchers understand the possibilities and limitations of cocoa disease management strategies. This work systematically organized and summarized the main findings of omics studies of T. cacao eukaryotic pathogens, focusing on the plant-pathogen interaction and production dynamics. Using the PRISMA protocol and a semiautomated process, we selected papers from the Scopus and Web of Science databases and collected data from the selected papers. From the initial 3169 studies, 149 were selected. The first author's affiliations were mostly from two countries, Brazil (55%) and the USA (22%). The most frequent genera were Moniliophthora (105 studies), Phytophthora (59 studies) and Ceratocystis (13 studies). The systematic review database includes papers reporting the whole-genome sequence from six cocoa pathogens and evidence of some necrosis-inducing-like proteins, which are common in T. cacao pathogen genomes. This review contributes to the knowledge about T. cacao diseases, providing an integrated discussion of T. cacao pathogens' molecular characteristics, common mechanisms of pathogenicity and how this knowledge is produced worldwide.

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