Short Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome

Abstract. Sabdono A, Trianto A, Radjasa OK, Wijayanti DP. 2019. Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome. Biodiversitas 20: 1350-1355. Acroporid White Syndrome (AWS) disease, causing coral death and mortality...

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Autores principales: AGUS SABDONO, AGUS TRIANTO, OCKY KARNA RADJASA, DIAH PERMATA WIJAYANTI
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Publicado: MBI & UNS Solo 2019
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spelling oai:doaj.org-article:bd6925cbd0414874b3ff75910b6e44272021-11-21T21:40:43ZShort Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome1412-033X2085-472210.13057/biodiv/d200526https://doaj.org/article/bd6925cbd0414874b3ff75910b6e44272019-04-01T00:00:00Zhttps://smujo.id/biodiv/article/view/3509https://doaj.org/toc/1412-033Xhttps://doaj.org/toc/2085-4722Abstract. Sabdono A, Trianto A, Radjasa OK, Wijayanti DP. 2019. Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome. Biodiversitas 20: 1350-1355. Acroporid White Syndrome (AWS) disease, causing coral death and mortality, has come out as a serious threat to coral reefs in the Karimunjawa Islands, Java Sea. In the present study, the bacterial community associated with the Acroporid were assessed for their antagonistic activity against bacteria associated with AWS disease. A culture collection of 43 bacteria associated with coral Acroporid was established by plating on Zobell’s 2214E. Isolates were screened using the overlay method. The results showed that five isolates (11.62 %) were able to inhibit the growth of the AWS isolates. These isolates were tested further for their consistency of antagonistic activity by using disc-agar diffused method. Based on their consistency, AU5 isolate was selected for study at advance. Polyphasic and phylogenetic analysis were used to characterized AU5 isolate. The DNA sequence analyses demonstrated that this bacterial isolate affiliated with Firmicutes. The AU5 isolate showed high 16S rDNA sequence identity to Virgibacillus salarius strain muzPC213 (99%). The results demonstrated the existence of bacterial coral symbionts with AWS antipathogenic activity on the coral tissue, possibly performing as biocontrol agent to protect the coral Acroporids against AWS outbreaks.AGUS SABDONOAGUS TRIANTOOCKY KARNA RADJASADIAH PERMATA WIJAYANTIMBI & UNS Soloarticleacropora, acroporid white syndrome, coral bacteria, karimunjawa, polyphasicBiology (General)QH301-705.5ENBiodiversitas, Vol 20, Iss 5 (2019)
institution DOAJ
collection DOAJ
language EN
topic acropora, acroporid white syndrome, coral bacteria, karimunjawa, polyphasic
Biology (General)
QH301-705.5
spellingShingle acropora, acroporid white syndrome, coral bacteria, karimunjawa, polyphasic
Biology (General)
QH301-705.5
AGUS SABDONO
AGUS TRIANTO
OCKY KARNA RADJASA
DIAH PERMATA WIJAYANTI
Short Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome
description Abstract. Sabdono A, Trianto A, Radjasa OK, Wijayanti DP. 2019. Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome. Biodiversitas 20: 1350-1355. Acroporid White Syndrome (AWS) disease, causing coral death and mortality, has come out as a serious threat to coral reefs in the Karimunjawa Islands, Java Sea. In the present study, the bacterial community associated with the Acroporid were assessed for their antagonistic activity against bacteria associated with AWS disease. A culture collection of 43 bacteria associated with coral Acroporid was established by plating on Zobell’s 2214E. Isolates were screened using the overlay method. The results showed that five isolates (11.62 %) were able to inhibit the growth of the AWS isolates. These isolates were tested further for their consistency of antagonistic activity by using disc-agar diffused method. Based on their consistency, AU5 isolate was selected for study at advance. Polyphasic and phylogenetic analysis were used to characterized AU5 isolate. The DNA sequence analyses demonstrated that this bacterial isolate affiliated with Firmicutes. The AU5 isolate showed high 16S rDNA sequence identity to Virgibacillus salarius strain muzPC213 (99%). The results demonstrated the existence of bacterial coral symbionts with AWS antipathogenic activity on the coral tissue, possibly performing as biocontrol agent to protect the coral Acroporids against AWS outbreaks.
format article
author AGUS SABDONO
AGUS TRIANTO
OCKY KARNA RADJASA
DIAH PERMATA WIJAYANTI
author_facet AGUS SABDONO
AGUS TRIANTO
OCKY KARNA RADJASA
DIAH PERMATA WIJAYANTI
author_sort AGUS SABDONO
title Short Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome
title_short Short Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome
title_full Short Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome
title_fullStr Short Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome
title_full_unstemmed Short Communication: Antagonistic activity of bacteria isolated from coral Acropora sp of Karimunjawa Islands, Indonesia against Acroporid White Syndrome
title_sort short communication: antagonistic activity of bacteria isolated from coral acropora sp of karimunjawa islands, indonesia against acroporid white syndrome
publisher MBI & UNS Solo
publishDate 2019
url https://doaj.org/article/bd6925cbd0414874b3ff75910b6e4427
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AT ockykarnaradjasa shortcommunicationantagonisticactivityofbacteriaisolatedfromcoralacroporaspofkarimunjawaislandsindonesiaagainstacroporidwhitesyndrome
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