Biodiversitas Journal of Biological Diversity
Vol. 23 No. 7 (2022)

Screening of yeast isolates for the biocontrol of Sclerotium rolfsii

NURHALIMAH NURHALIMAH (Department of Plant Pests and Diseases, Faculty of Agriculture, Universitas Brawijaya. Jl. Veteran, Malang 65145, East Java, Indonesia)
ANTON MUHIBUDDIN (Department of Plant Pests and Diseases, Faculty of Agriculture, Universitas Brawijaya. Jl. Veteran, Malang 65145, East Java, Indonesia)
MUHAMMAD AKHID SYIB’LI (Department of Plant Pests and Diseases, Faculty of Agriculture, Universitas Brawijaya. Jl. Veteran, Malang 65145, East Java, Indonesia)



Article Info

Publish Date
15 Jul 2022

Abstract

Abstract. Nurhalimah, Muhibuddin A, Syib’li MA. 2022. Screening of yeast isolates for the biocontrol of Sclerotium rolfsii. Biodiversitas 23: 3820-3826. Sclerotium rolfsii is a fungal pathogen that can reduce peanut production. Biological control with yeast antagonist offers an environment friendly control for this pathogen. The aim of this study was to isolate and identify yeast antagonists, and to study their antagonistic mechanism and potential to control the peanut disease caused by S. rolfsii. The study was conducted from October 2020 to May 2021. The study consisted of four stages: isolation and identification of yeasts, yeasts antagonist testing against S. rolfsii, molecular identification of yeast NH4, and scanning electron microscope observation of NH4 against S. rolfsii. Based on the research, four different yeast isolates were isolated, identified, and found able to be developed as a biological control agent to inhibit the growth of S. rolfsii. Identification showed that NH1 was Saccharomyces sp. with inhibitory percentage of 9,26%, NH2 was Candida sp. with 22,21% inhibition of, NH3 Pichia sp. with 11,11% inhibition of, and NH4 was Wickerhamomyces sp. with an inhibitory percentage of 32,96%. The results of the yeast antagonism mechanism showed that NH1 (Saccharomyces sp.) and NH3 (Pichia sp) had not showed any mechanism while, NH2 (Candida sp.) had a competition and NH4 (Wickerhamomyces sp.) had an antibiosis mechanism. NH4 can suppress the growth of S. rolfsii by more than 30%, which has been identified as species of Wickerhamomyces sp. (NH4) with 99.84% homology with Wickerhamomyces anomalus CBS 5759 with accession number MH545921.1.

Copyrights © 2022






Journal Info

Abbrev

biodiv

Publisher

Subject

Agriculture, Biological Sciences & Forestry Biochemistry, Genetics & Molecular Biology

Description

The Biodiversitas Journal was first published in 2000 by the Department of Biology, FMNS, Universitas Sebelas Maret, Surakarta, Indonesia, then in 2006 it was co-published by the Society for Indonesian Biodiversity and that department; since 2017 it was also hosted by Smujo. From 2003-2012 it was ...