SciELO - Scientific Electronic Library Online

 
vol.13 número3Cultivos de cobertura asociados a quinua (Chenopodium quinoa Willd) en el Altiplano peruano: Reducción de la erosión, mejora de la salud del suelo y rendimiento agrícolaMulti-objective optimization through artificial intelligence for designing of an Agave angustifolia leaf shredder índice de autoresíndice de assuntospesquisa de artigos
Home Pagelista alfabética de periódicos  

Serviços Personalizados

Journal

Artigo

Indicadores

  • Não possue artigos citadosCitado por SciELO

Links relacionados

  • Não possue artigos similaresSimilares em SciELO

Compartilhar


Scientia Agropecuaria

versão impressa ISSN 2077-9917

Resumo

QUISPE-QUISPE, Edwin; MOREIRA-MORRILLO, Anthony A.  e  GARCES-FIALLOS, Felipe R.. A review about biocontrollers of Phytophthora capsici and its impact on Capsicum plants: A perspective from outside to inside the plant. Scientia Agropecuaria [online]. 2022, vol.13, n.3, pp.275-289.  Epub 08-Ago-2022. ISSN 2077-9917.  http://dx.doi.org/10.17268/sci.agropecu.2022.025.

Phytophthora capsiciis an oomycete that causes various symptoms, such as root, neck, stem, fruit rot, and leaf blight, in different plant species, including the genusCapsicum. One of the tools to counteract this biotic problem, which may be more profitable and respectful to the environment in the long term, is using biocontrollers such asBacillus,Pseudomonas,Streptomyces(bacteria), and Trichoderma (fungus). It seems that each of these microorganisms has different mechanisms that allow them to inhibit and reduce the growth ofP. capsici, negatively affecting the development of sporangia, germination and motility of zoospores, and expansion of germ tube. Although this direct biocontrol action on the phytopathogen correlates with the reduction of symptoms in Capsicum plants or other plant species, this would also involve the activation of defense responses in plants against P. capsici induced by microorganisms. The activity of several enzymes related to the isoflavonoid pathways and reactive oxygen species, as well as the expression of different genes that encode proteins related to pathogenesis and other proteins that can activate the jasmonic acid, salicylic acid, or ethylene signaling pathways. Despite the few existing works related to the biochemical and molecular interaction ofCapsicum-P. capsici-biocontroller, in this review, we outlined and elucidated the possible effects and metabolic pathways related to this tripartite pathosystem.

Palavras-chave : chili pepper; pepper; biostimulants; biologic control; resistance induction.

        · resumo em Espanhol     · texto em Espanhol     · Espanhol ( pdf )