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Journal : Jurnal Veteriner

Penentuan Protein Antigen Limfosit Sapi yang Berasal dari Sapi Bali dan Sapi Peranakan Ongole (DETERMINATION OF THE PROTEIN OF BOVINE LYMPHOCYTE ANTIGEN, OF BALI CATTLE AND ONGOLE CROSS BREED CATTLE) Ni Ketut Suwiti; Fedik Abdul Rantam
Jurnal Veteriner Vol 4 No 2 (2003)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

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Deteksi Protein Bovine Major Histocompatibility Complex Klas I dan Klas II pada Sapi Madura Ni Ketut Suwiti; Fedik Abdul Rantam; I Nengah Kerta Besung
Jurnal Veteriner Vol 9 No 3 (2008)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

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A study to detect the presence of bovine major histocompatibility complex (Bo-MHC) in maduracattle has been carried out. Lymphocyte samples were collected from 25 cattle. The protein of lymphocytesamples was analysed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) andtransferred onto nitrocellulose membrane. Bo-MHC proteins on the membrane were detected by monoclonalantibodies (anti-Bo-MHC class I) and BAQ150A (anti-Bo-MHC class II). The proteins of 48 kDa and 11kDa were detected by MAb B5C which appeared to be the alpha and beta chain of Bo-MHC class I. MAbBAQ150A detected protein band of 26 KDa which was likely to be the beta chain of Bo-MHC class II. Bo-MHC class I dan class II were clearly detected in madura cattle by MAbs which provides a basis for furtherinvestigation on the role of the MHC in the susceptibility the animals to many diseases.
An Amino Acids on Bali Cattle and Wagyu Beef Based on Different Function of Muscle (ASAM-ASAM AMINO SAPI BALI DAN DAGING SAPI WAGYU BERDASARKAN FUNGSI OTOT YANG BERBEDA) I Nengah Kerta Besung; Rasdianah Rasdianah; I Wayan Suardana; Ni Ketut Suwiti
Jurnal Veteriner Vol 20 No 2 (2019)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (70.077 KB) | DOI: 10.19087/jveteriner.2019.20.2.228

Abstract

Beef is an essential source of protein and several functional compounds that are very important for human. The quality of beef depends on both genetic and environmental factors like feed, age, sex, and others. This research aimed to determine the composition of amino acids both Bali and Wagyu beef on the different activity of muscle, i.e. active and passive. As many as 5 g of each sample was used in this study. The active beef samples were presented by Biceps femoris, and passive beef samples were presented by Longissimus dorsi. High-Performance Liquid Chromatography (HPLC) method was used in order to an identification of amino acids according to the standard procedure. Results of the study showed that the essential amino acids content both bali cattle and wagyu were higher than non-essential, and amino acids content originated from active muscle was higher than passive muscle. Methionine, phenylalanine, and serine on bali beef cattle were lower than wagyu beef. Overall, the content of amino acids essential was lower than non-essential. In conclusion, there is no significant difference of amino acids content both bali cattle and wagyu beef, but the function of muscle (active or passive) were known contribute to the difference of amino acids content.
Pakan Tambahan dan Anabolik Growth Promoter Meningkatkan Kadar Hormon Pertumbuhan Sapi Bali Ni Made Riska Adnyani; Ni Ketut Suwiti; I Gusti Ayu Agung Suartini; I Nengah Kerta Besung
Jurnal Veteriner Vol 21 No 4 (2020)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (143.64 KB) | DOI: 10.19087/jveteriner.2020.21.4.575

Abstract

This study aims to determine the level of growth hormone given feed supplement and anabolic growth promoter. This research was an experimental research using Complete Random Design (CRD) with three factors. There were feed supplement, anabolic growth promoter, and sampling time. There were 20 youngmale Bali cattle and they were taken care intensively, divided into 4 group, there were control, feed supplement, anabolic growth promoter, and the combination of feed supplement and anabolic growth promoter for five months, and measured the level of growth hormone each month. The level of growth hormone was detected by using competitive Enzyme Linked Immunosorbent Assay method. The result of the research showed that feed supplement and anabolic growth promoter increased the level of bali cattle growth hormone where feed supplement with anabolic growth promoter (P1G1) was not significantlydifferent than given feed supplement without anabolic growth promoter (P1G0). Providing feed supplement optimally by farmers is highly recommended.
Studi Histologi dan Histomorfometri Daging Sapi Bali dan Wagyu (HISTOLOGYCAL AND HISTOMORPHOMETRY STUDY OF BALI CATTLE AND WAGYU BEEF) Ni Ketut Suwiti; I Putu Suastika; Ida Bagus Ngurah Swacita; I Nengah Kerta Besung
Jurnal Veteriner Vol 16 No 3 (2015)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

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The objective of this study was to detect histological structure and histomorphometry of bali cattleand wagyu beef. The samples were collected from rib eye muscle of wagyu and bali cattle. The tissuesamples were fixed, dehydrated and embedded in paraffin and 4-5 mm sections, for histological examinationand stained with Haematoxilin-Eosin (HE). The light binocular microscope was used to identify the samples.The study showed that the beef histological structure consisted of: cells / muscle fibers, fatty and connectivetissues. The muscle fibers of wagyu were observed larger, regular, and longer compared to the Bali cattle.Additionally, intramuscular fat cells and connective tissue interlobulus were found less and thinner thanthe Bali cattle. In the area of muscle where the longitudinal cut was done, its observed that the presence ofI and A bands in Bali cattle beef were clearer compared to the wagyu. The diameter muscle fibers of balicattle beef (45.00 ±1.94 ?m), was smaller (P < 0.01) compared to the wagyu (75.00±1.82 ?m), as well as fatcell size of bali cattle beef (90.10 ±2.13 ?m) and wagyu beef (195.00±2.57?m). In conclusion, the structureof histology and histomorphometry of rib eye muscle in Bali cattle were different to the wagyu.
STRUKTUR HISTOLOGI DUODENUM, JEJENUM, DAN ILEUM SAPI BALI Ni Nyoman Werdi Susari; Ni Luh Eka Setiasih; Ni Ketut Suwiti
Jurnal Veteriner Vol 10 No 1 (2009)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

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A study to find out the histological structures of small intestine (ie. duodenum, jejunum, and ileum) of bali cattle have been carried out. A total of 20 small intestines were collected from the abattoir at Pesanggaran, Denpasar Bali. Histological examinations were performed on Haematoxyline Eosin stained small intestines slides. The duodenum, jejunum and ileum of the small intestines have four mucosa membranes: i) mucosa membrane, ii) sub mucosa membrane, iii) muscular membrane and, iv) serous membrane. The average thickness of mucosa membrane of duodenum, jejunum and ileum was 36,3±13,5 mm; 29,9±3,1 mm; and 38,8±11,9 mm, respectively. Each part has villi with an average length of 27,5±8,3 mm; 20,1±3,7 mm; and 18,5±4,3 mm, respectively. This mucosa membranes consist of single columnar epithelium, muscularis mucosa, and lamina propria. The average thickness of sub mucosa membrane was 47,3±15,3 mm; 10,4±2,6 mm; and 16,9±5,6 mm, respectively. Sub mucosa membrane consisted of connective tissue. The average thickness of muscular membrane was 46,9±8,8 mm; 28,1±5,1 mm; and 62,4±11,3 mm, respectively, which consisted of circular and longitudinal smooth muscle. The average thickness of serous membrane was 19,9±3,1 mm; 11,9 ±3,0 mm; and 12,1±3,6 mm, respectively, which consisted of mainly connective tissue. Goblet cells were seen through all the epithel of small intestines with the highest number seen in the ileum. Specific structure of duodenum, jejunum, and ileum which is Brunner’s glands in the sub mucosa membranes of duodenum, circular plicae in the jejunum and mesenteric gland in the ileum were also observed.
Kadar Hormon Pertumbuhan Sapi Bali Lebih Rendah di Nusa Penida Daripada Daerah Bali Lainnya(LEVELS OF GROWTH HORMONE BALI CATTLE IN NUSA PENIDA LOWER THAN OTHER BALI REGIONS) Ni Ketut Suwiti; I Wayan Masa Tenaya; I Nengah Kerta Besung
Jurnal Veteriner Vol 18 No 2 (2017)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (86.478 KB) | DOI: 10.19087/jveteriner.2017.18.2.226

Abstract

The objective of this research was to compare the levels of growth hormone in bali cattle reared in the purification of Nusa Penida with those from other regions in Bali Province. A total of 320 sera samples were collected from bali cattle reared in Nusa Penida, Klungkung, Tabanan, Buleleng and Bangli. The levels of growth hormone was determined by using sandwich Enzime Linked Immunosorbent Assay (ELISA). The results showed that a diverse levels of growth hormone in Bali cattle were observed in Bali cattle. The lowest growth hormone levels (576.4 pg/mL) was found in Bali cattle reared in Nusa Penida and the highest levels (5044.08 pg/mL) were found in the Buleleng regency. It was concluded that bovine growth hormone levels varies, depending on the regions of rared of Bali cattle. ABSTRAK Penelitian ini bertujuan untuk mendeteksi kadar hormon pertumbuhan sapi bali yang dipelihara di wilayah pemurnian Nusa Penida dan wilayah lainnya di Provinsi Bali. Sebanyak 320 sampel serum sapi bali betina dewasa dikumpulkan dari peternakan rakyat di Nusa Penida Klungkung, Tabanan, Buleleng, dan Kabupaten Bangli. Kadar hormon pertumbuhan dideteksi dengan metode Enzime Linked Immunosorbent Assay (ELISA). Hasil penelitian menunjukkan, kadar hormon pertumbuhan sapi bali terendah (576,4 pg/mL) ditemukan pada sapi bali yang dipelihara di Nusa Penida, sedangkan kadar hormon tertinggi (5044,08 pg/mL) ditemukan pada sapi bali yang dipelihara di Kabupaten Buleleng. Disimpulkan bahwa kadar hormon pertumbuhan sapi bali berbeda-beda, tergantung wilayah tempat pemeliharaan sapi bali.
STRUKTUR DAN MORFOMETRI LIMPA ITIK BALI (Anas sp.) PADA FASE PERTUMBUHAN Winda Ara Yulisa; Ni Luh Eka Setiasih; Luh Gde Sri Surya Heryani; Ni Ketut Suwiti; Ni Nyoman Werdi Susari; I Gede Soma
Jurnal Veteriner Vol 24 No 3 (2023)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19087/jveteriner.2023.24.3.357

Abstract

Limpa merupakan organ yang dikelompokkan ke dalam sistem limfoid sekunder. Limpa memiliki fungsi imunitas terhadap antigen yang masuk ke dalam tubuh dan menghancurkan eritrosit yang rusak. Penelitian ini bertujuan untuk mengetahui struktur dan morfometri limpa itik bali (Anas sp.) pada fase pertumbuhan/grower. Penelitian ini menggunakan 20 ekor itik bali yang dibagi menjadi dua kelompok yaitu jantan dan betina yang masing-masing terdiri atas 10 ekor (umur 2-3 bulan). Hasil data struktur anatomi dan histologi dianalisis secara deskriptif kualitatif, sedangkan data morfometri dan histomorfometri untuk menguji perbedaan antara jantan dan betina digunakan uji Independent sample T-test dengan prosedur analisis menggunakan program SPSS versi 26. Struktur anatomi limpa itik bali berbentuk segitiga piramid dan berwarna cokelat kemerahan, struktur histologi limpa itik bali terdiri atas kapsula, trabekula, pulpa merah dan pulpa putih. Hasil pengukuran morfometri berat limpa itik bali jantan diperoleh 0,68 ± 0,20 g dan berat limpa itik betina 0,66 ± 0,24 g. Volume limpa itik bali jantan dan betina berturut-turut 0,60 ± 0,19 mL dan 0,58 ± 0,23 mL. Hasil pengukuran histomorfometri ketebalan kapsula limpa itik jantan dengan betina adalah 17,97 ± 4,81 ?m; 31,75 ± 6,09 ?m; ketebalan trabekula jantan 17,20 ± 3,26?m ; dan betina 22,54 ± 6,29 ?m; serta diameter pulpa putih jantan adalah 214,69 ± 14,77 ?m; dan diameter pulpa putih betina adalah 199,56 ± 23,58 ?m. Simpulan penelitian ini adalah limpa itik bali jantan dan betina pada fase pertumbuhan/grower memiliki struktur anatomi dan histologi yang sama, morfometri yang tidak berbeda nyata, serta histomorfometri yang menunjukkan perbedaan pada ketebalan kapsula dan trabekula sedangkan diameter pulpa putih tidak jauh berbeda.
Struktur dan Morfometri Ginjal Itik Bali (Anas sp.) pada Fase Pertumbuhan Ni Putu Dewi Setia Sari; Ni Luh Eka Setiasih; Luh Gde Sri Surya Heryani; Ni Ketut Suwiti; Ni Nyoman Werdi Susari; I Ketut Suatha
Jurnal Veteriner Vol 24 No 3 (2023)
Publisher : Faculty of Veterinary Medicine, Udayana University and Published in collaboration with the Indonesia Veterinarian Association

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.19087/jveteriner.2023.24.3.374

Abstract

Ginjal merupakan organ ekskresi yang berperan dalam membuang zat sisa metabolisme yang tidak dibutuhkan lagi di dalam tubuh. Penelitian ini bertujuan untuk mengetahui struktur dan morfometri ginjal itik bali (Anas sp.) dengan jenis kelamin berbeda pada fase pertumbuhan/ grower. Penelitian menggunakan 32 ekor itik bali yang dibagi menjadi dua kelompok jenis kelamin masing-masing 16 ekor (umur 2-3 bulan). Hasil data struktur dianalisis dengan deskriptif kualitatif,sedangkan data morfometri digunakan uji Independent sample T-test dengan program SPSS. Hasil pengukuran ginjal itik bali jantan diperoleh panjang ginjal kanan 7,256 + 0,388 cm, panjang ginjal kiri 7,175 + 0,437 cm, bobot ginjal kanan 3,50 + 0,61 g, bobot ginjal kiri 3,487 + 0,497 g, volume ginjal kanan 0,350 + 0,103 cm3, volume ginjal kiri 0,362 + 0,088 cm3, glomerulus tipe mamalia 34,025 + 2,931 ?m dengan lebar bowman 8,173 + 2,447 ?m, glomerulus tipe reptil 14,777 + 2,300 ?m dengan lebar ruang bowman 6,676 + 1,780 ?m. Hasil pengukuran ginjal itik bali betina diperoleh panjang ginjal kanan 6,812 + 0,263 cm, panjang ginjal kiri 6,781 + 0,299 cm, bobot ginjal kanan 4,012 + 0,464 g, bobot ginjal kiri 3,987 + 0,401 g, volume ginjal kanan 0,418 + 0,116 cm3, volume ginjal kiri 0,393 + 0,106 cm3, glomerulus tipe mamalia 43,443 + 4,686 ?m dengan lebar bowman 9,068 + 3,483 ?m, glomerulus tipe reptil 23,312 + 2,761 ?m dengan lebar ruang 6,390 + 1,995 ?m. Hasil pengujian terhadap panjang bobotginjal dan ginjal menunjukkan berbeda nyata P<0,05, sedangkan volume ginjal tidak berbeda nyata P>0,05. Hasil pengujian terhadap glomerulus tipe mamalia dan glomerulus tipe reptil menunjukkan berbeda nyata P<0,05. Struktur anatomi danhistologi antara ginjal itik bali jantan dan betina adalah sama, sedangkan morfometri anatomi dan histologi ginjal itik bali jantan dengan betina berbeda.
Co-Authors Anak Agung Ananda Septiarini Anak Agung Gde Arjana Anak Agung Sagung Indraswari Anak Agung Sagung Kendran Anjelia Martina Dewi Antaprapta, I Gusti Ngurah Agung Bianca Violanda Junus Brahma Tusta Bhirawa Chandra Yowani chyntia nirmalasari mantrawan Fedik Abdul Rantam Franki Remi Andung I Gede Agus Eva Prawira Adinata I Gede Erik Juliarta I Gede Oka Budiawan I Gede Semarabawa I Gede Soma I Gusti Agung Ayu Suartini I Gusti Ketut Suarjana I K. Berata I Ketut Suatha I Komang Gde Bendesa I Made Kardena I Made Wima Cahyadi I Md Chandra Arya PW I Nengah Kerta Besung I Nyoman Suarsana I Nyoman Suartha I P. Suastika I Putu Cahyadi Putra, I Putu Cahyadi I Putu Indra Parmayoga I Putu Juli Sukariada I Putu Sampurna I Putu Suastika I W BUDIARSA SUYASA I Wayan Gunawan I Wayan Masa Tenaya I Wayan Piraksa I Wayan Suardana I Wayan Sudira Ida Ayu Pasti Apsari Ida Bagus Komang Ardana Ida Bagus Ngurah Swacita IK Sudibia IM Suyana Utama IW. Piraksa K.K Agustina Ketut Tono Pasek Gelgel Komang Ariya Hendrayana Komang Yogie Suryana Putra Luh Gde Sri Surya Heryani Luh Kadek Nanda Laksmi M Windhu M. Oenas Adinugroho Mergayanti Yudanta Eka Putri Muh Amiruddin N. Suparta N.N. Suryani Ni Kadek Rahayu Swari Ni Komang Dian Sri Sujani Ni Luh Eka Setiasih Ni Luh Putu Sriyani Ni Luh Putu Wiardani Astuti Ni Luh Sri Sundari Rahayu Ni Luh Watiniasih Ni Made Riska Adnyani Ni Made Riska Adnyani Ni Nyoman Citra Susilawati Ni Nyoman Tri Pujiastari Ni Nyoman Werdi Susari Ni Putu Dewi Setia Sari Ni Wayan Ayu Rukmini Ni Wayan Ayu Rukmini Ni Wayan Suryanadi Ni Wayan Tatik Inggriati Nyoman Sadra Dharmawan Oktavyan Loys Mami P Sampurna P. Suastika Putu Agus Trisna Kusuma Antara Putu Ayu Santika Putu Dian Purnama Putra Putu Henrywaesa Sudipa Putu Satya Dwipartha Putu Suastika Rasdianah Rasdianah Reny Navtalia Sinlae Sibang, I Nengah Anom Adi Nugraha Sri Milfa Tri Ulfah Arema Yanti Widodo Cipto Subagyo Widyasanti, Ni Wayan Helpina Winda Ara Yulisa