PRASETYARTI UTAMI
Program of Biology, Faculty of Sciences and Technology, Universitas Terbuka. Jl. Cabe Raya, Pondok Cabe, South Tangerang 15437, Banten, Indonesia

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Surface ultrastructure of tick (Acari: Ixodidae) on Moa buffalo from Southwest Maluku District, Indonesia PRASETYARTI UTAMI; RONY MARSYAL KUNDA
Biodiversitas Journal of Biological Diversity Vol. 24 No. 6 (2023)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d240617

Abstract

Abstract. Utami P, Kunda RM. 2023. Surface ultrastructure of tick (Acari: Ixodidae) on Moa buffalo from Southwest Maluku District, Indonesia. Biodiversitas 24: 3230-3235. Moa buffalo is one of the local Indonesian buffalo families in the Southwest Maluku District with very limited distribution and is found only on Moa Island. It exhibits distinct characteristics that distinguish it from clumps of mud buffalo and other local breeds, making it a valuable local livestock resource in Indonesia. Meanwhile, ticks are obligatory hematophagous ectoparasites with direct effects on the host, such as blood and weight loss, and their indirect effects are more associated with their role as vectors of disease-carrying pathogens. This study aimed to identify ticks infesting Moa buffalo by analyzing their surface ultrastructure using a Scanning Electron Microscope (SEM) method. This method enabled the establishment of the taxonomic status to obtain comprehensive data regarding the mapping of tick species in Moa buffalo. The samples were manually collected, and the body of the cattle was divided into four regions to determine the preferred attachment sites of ticks. The head, back, tail, and legs were all carefully examined, and each tick was carefully picked from the surface using tweezers or a pair of thumb forceps. Furthermore, the tick samples were collected from three different parts of the Moa buffalo's body, namely the armpit, inguinal region, and perianal area. Based on observations of morphological characters, the ticks found in Moa buffalo were of two species, namely Dermacentor auratus Supino, 1897 and Haemaphysalis bispinosa Neumann, 1897. The Dermacentor genus, specifically D. auratus exhibited specific morphological characteristics, including a pair of eyes located at the coxae II level, an ornate scutum, capitulum, and feet, as well as a short hypostome with 3:3 tooth arrangement. Members of this genus also had festoons, with the size of coxae increasing from I to IV. On the other hand, H. bispinosa was characterized by underdeveloped cornua. The segments of palpal III, for both males and females exhibited posterodorsal and posteroventral protrusions. The posteroventral segment of palpal III formed a wide and blunt triangle in both sexes, while the palpal III section had wide median spurs. These characteristics were keys for the identification of H. bispinosa species.
First metagenome report of Haemaphysalis bispinosa ticks of Moa buffalo from Southwest Maluku District, Indonesia PRASETYARTI UTAMI; RONY MARSYAL KUNDA; YOFIAN ANAKTOTOTY
Nusantara Bioscience Vol. 16 No. 1 (2024)
Publisher : Smujo International

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/nusbiosci/n160116

Abstract

Abstract. Utami P, Kunda RM, Anaktototy Y. 2024. First metagenome report of Haemaphysalis bispinosa ticks of Moa buffalo from Southwest Maluku District, Indonesia. Nusantara Bioscience 16: 130-138. Ticks are vectors of pathogenic organisms such as bacteria, protozoa, and viruses, which are potentially fatal to humans and livestock. The Haemaphysalis bispinosa Neumann, 1897 is a tick species with three mammalian hosts in Asia and Australia, including Indonesia, with the highest infestation in cattle (Bos taurus Linnaeus, 1758) and sheep (Ovis aries Linnaeus, 1758). The H. bispinosa is known to transmit many pathogens, but studies on the profile and structure of the microbiota are still very limited. This study aims to investigate the abundance and diversity of microbiota in H. bispinosa to evaluate the bacterial community's structure and to identify and examine potential zoonotic agents from buffalo. Amplification in this study used primers from the region (V1-V9) of the 16S rRNA gene. Metagenomic analysis shows that the microbiota community structure is dominated by non-zoonotic bacteria (96.83%), and zoonotic bacteria are found in the percentage (3.17%). Zoonotic agents were dominated by members of the genus Rickettsia (71.82%), Ehrlichia (19.19%), Romboutsia (3.16%), Anaplasma (2.43%), Coxiella (2.24%), Staphylococcus (0, 48%) and Streptococcus (0.43%). Overall, 16 species were found in H. bispinosa, i.e., 11 species belonging to the genus Rickettsia, 2 species from the genus Ehrlichia (i.e., Ehrlichia canis and Ehrlichia minasensis), and 1 species each belonging to the genera Anaplasma, Coxiella, and Romboutsia. It was concluded that the abundance of the microbial community in H. bispinosa based on metagenome analysis using the 16S rRNA gene from Moa buffalo in the Southwest Maluku District was classified as having a diverse abundance of species.