In Vitro Assay Using Proboscidea parviflora W. and Phaseolus lunatus L. Plant Extracts to Control Pythium amazonianum

Author:

Fuentes Yisa María Ochoa1ORCID,Plancarte Antonio Orozco2ORCID,Chávez Ernesto Cerna1,Díaz Aguilar Rocío de Jesús1

Affiliation:

1. Departamento de Parasitología Agrícola, Universidad Autónoma Agraria Antonio Narro, Calzada Antonio Narro 1923, Col. Buenavista, Saltillo 25315, Coahuila, Mexico

2. CULTA S. A. de C. V. Blvd. Luis Echeverria Álvarez No. 1700, Col. Altavista, CD. Mante 89880, Tamaulipas, Mexico

Abstract

Avocado tree wilt is a disease caused by Phytophthora cinnamomi Rands. Recently, this disease has been associated to Pythium amazonianum, another causal agent. Avocado tree wilt is being currently controlled with synthetic fungicides that kill beneficial microorganisms, polluting the environment and leading to resistance problems in plant pathogens. The current research work aims to provide alternative management using extracts from Proboscidea parviflora W. and Phaseolus lunatus L. to control the development of mycelia in P. amazonianum in vitro. Raw extracts were prepared at UAAAN Toxicology Laboratory, determining the inhibition percentages, inhibition concentrations and inhibition lethal times. Several concentrations of the plant extracts were evaluated using the poisoned medium methodology, showing that both extracts control and inhibit mycelial development, in particular P. lutatus, which inhibits mycelial growth at concentrations lower than 80 mg/L, being lower than P. parviflora extracts. These extracts are promising candidates for excellent control of Pythium amazonianum.

Publisher

MDPI AG

Reference24 articles.

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2. Telíz, O.D., and Mora, A.A. (2007). El Aguacate y su Manejo Integrado Segunda Edición, Editorial Mundi Prensa.

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4. Pythium sp. amazonianum como agente causal de la tristeza del aguacate en Peribán, Michoacán. Memoria de congreso;Ochoa;Rev. Mex. De Fitopatol.,2016

5. Oogonial biometry and phylogenetic analyses of the Pythium vexans species group from woody agricultural hosts in South Africa reveal distinct groups within this taxon;Spies;Fungal Biol.,2010

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