In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan

Sheath Brown Rot (SBR) caused by Pseudomonas fuscovaginae is a devastating bacteria rice disease, currently getting an attention from researchers and government from various countries. Such a control management is on how to control the disease from spread and become more serious. Hence, the aim for...

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Main Author: Hasan, Nurul Basyeroh
Format: Student Project
Published: Faculty of Plantation and Agrotechnology 2018
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/22823/
id uitm-22823
recordtype eprints
spelling uitm-228232019-05-14T08:45:27Z http://ir.uitm.edu.my/id/eprint/22823/ In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan Hasan, Nurul Basyeroh S Agriculture (General) Coconut Pests and diseases Pest control and treatment of diseases. Plant protection Sheath Brown Rot (SBR) caused by Pseudomonas fuscovaginae is a devastating bacteria rice disease, currently getting an attention from researchers and government from various countries. Such a control management is on how to control the disease from spread and become more serious. Hence, the aim for study, is to screening antimicrobial activity of fermented coconut water extracted with different solvents against pathogen of SBR and to determine Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal Concentration (MBC) of fermented matured coconut water extracted with different solvents. The inhibition zone was determined using agar well difussion method and the result showed that the aqoues and methanol extraction give a reaction to the pathogen. The highest inhibition zone was on methanol extraction with the mean of inhibition zone diameter where recorded is 2.02 cm. Meanwhile, for determination of MIC and MBC for methanol extract, it was discovered that 20% concentraction of the exctract was enough to inhibit the growth the pathogen and 30% concentraction could kill the pathogen. This study suggested that methanol extract could be used as formulation for fermented mature coconut water in controlling SBR. Faculty of Plantation and Agrotechnology 2018 Student Project NonPeerReviewed Hasan, Nurul Basyeroh (2018) In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan. [Student Project] (Unpublished)
repository_type Digital Repository
institution_category Local University
institution Universiti Teknologi MARA
building UiTM Institutional Repository
collection Online Access
topic S Agriculture (General)
Coconut
Pests and diseases
Pest control and treatment of diseases. Plant protection
spellingShingle S Agriculture (General)
Coconut
Pests and diseases
Pest control and treatment of diseases. Plant protection
Hasan, Nurul Basyeroh
In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan
description Sheath Brown Rot (SBR) caused by Pseudomonas fuscovaginae is a devastating bacteria rice disease, currently getting an attention from researchers and government from various countries. Such a control management is on how to control the disease from spread and become more serious. Hence, the aim for study, is to screening antimicrobial activity of fermented coconut water extracted with different solvents against pathogen of SBR and to determine Minimum Inhibitory Concentration (MIC) and Minimum Bactericidal Concentration (MBC) of fermented matured coconut water extracted with different solvents. The inhibition zone was determined using agar well difussion method and the result showed that the aqoues and methanol extraction give a reaction to the pathogen. The highest inhibition zone was on methanol extraction with the mean of inhibition zone diameter where recorded is 2.02 cm. Meanwhile, for determination of MIC and MBC for methanol extract, it was discovered that 20% concentraction of the exctract was enough to inhibit the growth the pathogen and 30% concentraction could kill the pathogen. This study suggested that methanol extract could be used as formulation for fermented mature coconut water in controlling SBR.
format Student Project
author Hasan, Nurul Basyeroh
author_facet Hasan, Nurul Basyeroh
author_sort Hasan, Nurul Basyeroh
title In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan
title_short In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan
title_full In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan
title_fullStr In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan
title_full_unstemmed In vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / Nurul Basyeroh Hasan
title_sort in vitro study of antimicrobial activity of fermented coconut water extrected with different solvents against pseudomonas fuscovaginae, causal agent of sheath brown rot of rice / nurul basyeroh hasan
publisher Faculty of Plantation and Agrotechnology
publishDate 2018
url http://ir.uitm.edu.my/id/eprint/22823/
first_indexed 2023-09-18T23:09:29Z
last_indexed 2023-09-18T23:09:29Z
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