scholarly journals Budidaya Udang Vannamei (Litopenaeus vannamei) Semiintensif Dengan Metode Sirkulasi Tertutup Untuk Menghindari Serangan Virus [The Semiintensive Culture Of Litopenaeus vannamei By Closed Circulation Method To Prevent Virus Attack]

2019 ◽  
Vol 1 (2) ◽  
pp. 121 ◽  
Author(s):  
Slamet Subyakto, Dede Sutende, Moh. Afandi, Sofiat

AbstractThe failure of vannamei shrimp culture often caused by virus attack, i.e. WSSV, TSV and IMNV. So that it need an alternative method like closed circulation method and probiotic application. Closed circulation is culture method without water circulation where as an additional water will do to change loss water, caused by evaporation and culture waste water. This kinds of probiotic ar Bacillus subtilis, Nitrosomonas, Nitrobacter, Saccaromyces, Rhodobacter and Rhodococcus. The aim of these research are preventing virus attack through closed circulation method and probiotic 2 2application. These culture used two culture ponds (3000 m , density 60 species/m ) and two reservoir ponds 2(2000 m ) for 105 days. The first culture pond (A) produced 2895 kg of vannamei shrimp (size 60, SR 96.5 % and FCR 1.3). The second culture pond (B) produced 3025 kg of vannamei shrimp (size 58, SR 97.4 % and FCR 1.28).

2018 ◽  
Vol 12 (4) ◽  
pp. 361 ◽  
Author(s):  
Bunga Rante Tampangallo ◽  
Herlinah Herlinah ◽  
Muhammad Chaidir Undu

Plankton di tambak super-intensif dalam berbagai bentuk seperti mikroalga, rotifer, dan kopepoda seringkali merupakan agen pembawa virus bintik putih atau white spot syndrome virus (WSSV) yang sangat potensial. Penelitian bertujuan untuk mengetahui insidensi dan prevalensi infeksi WSSV pada plankton di tambak budidaya udang vaname, Litopenaeus vannamei, super-intensif di Kabupaten Barru, Sulawesi Selatan. Penelitian ini dilakukan dari bulan Januari sampai dengan Desember 2015. Sampel plankton dikoleksi dari sumber pemasukan air tambak superintensif (inlet), outlet, instalasi pengolahan air limbah tambak yang sedang melakukan kegiatan budidaya. Hasil penelitian ini menunjukkan bahwa insidensi infeksi WSSV terjadi di bulan Januari, Oktober, dan November. Pada bulan Januari, plankton yang terdeteksi mengalami infeksi WSSV adalah dari petakan tambak P1, outlet-1, outlet dan inlet tambak-3, serta inlet hatchery. Selanjutnya pada bulan Oktober, plankton yang terinfeksi WSSV adalah dari petakan tambak P2, P7, P8, dan IPAL. Pada bulan November, WSSV hanya terdeteksi pada plankton di inlet petakan tambak P3 dan inlet hatchery. Prevalensi WSSV tertinggi diperoleh pada plankton di bulan November (66,67%); bulan Januari (62,5%); dan Oktober (40,00%). Plankton dalam petakan tambak cenderung lebih sensitif terhadap infeksi WSSV sehingga berpotensi sebagai vektor dalam tambak pembesaran udang.Plankton, found as microalgae, rotifer, and copepods, in super intensive ponds are potential disease agents of white spot syndrome virus (WSSV). This study aims to evaluate the incidence and prevalence of WSSV on plankton in super intensive Litopenaeus vannamei shrimp ponds in Barru Regency, South Sulawesi. The study was conducted for one year from January to December 2015. Plankton were collected from the inlets, outlets, and waste water management plant of the super intensive ponds which were running of culturing shrimps. The results showed that the incidences of WSSV infection on plankton were occurred in January, October, and November of 2015. The detected plankton with WSSV infection occurred in January and were collected from pond PI, outlet-I, outlets and inlets of pond-3 as well as the inlets of the hatchery. In October, the identified plankton infected with WSSV were collected from ponds P2, P7, P8, and their waste water management plant. In November, WSSV was only detected on plankton found in the inlets of pond-3 and the inlets of the hatchery. The highest WSSV prevalence was obtained on plankton isolated in November (66.67%) followed by plankton isolated in January (62.5%), and in October (40%). The study found that plankton in pond tend to be more sensitive to WSSV infection which could potentially serve as WWSV vectors in shrimp culture.


2019 ◽  
Vol 4 (2) ◽  
pp. 128
Author(s):  
Adnan Kharisma, Abdul Manan

Abstract The abundance of bacteria is an activity that aims to determine the distribution and the abundance of bacteria in a water area, so an effort to control and prevent against these bacteria can be made to avoid it’s wide spread. The function of this monitoring activities is for an early detection of animal health conditions that is the white leg shrimp due to bacterial attack. Given the importance of health level in the cultivation of white leg shrimp, then the monitoring activity in bacterial abundance should be done because the number of bacteria found in aquatic environments shouldn’t exceed the minimum threshold number of bacteria that is 104 CFU/ml. The purpose of this study case is to know the abundance of Vibrio sp. on white leg shrimp water augmentation. Because the Vibrio sp. bacteria is known as the opportunistic pathogen of white leg shrimp, which can cause disease if the environmental conditions are bad. Working methods used is descriptive method of data collection techniques include primary and secondary data. The stage of the monitoring activity include: (1) Preparation phase which includes the preparation of equipment and materials and sterilization equipment and media. (2) Phase of making trisalt solvent and bacterial culture media. (3) Phase of retrieval and delivery the water samples. (4) Phase planting the water samples. (5) Phase counting the bacteria. (6) Interpretation the results of the calculation. Based on the results of monitoring the abundance of bacteria in white leg shrimp water augmentation activity, the conclusion is the abundance of Vibrio sp. on white leg shrimp water augmentation has exceeds the minimum threshold number of bacteria that is 104 CFU/ml, so the white leg shrimp culture is susceptible againts these Vibriosis disease.


Aquaculture ◽  
2018 ◽  
Vol 488 ◽  
pp. 114-122 ◽  
Author(s):  
Juliana A. Interaminense ◽  
Joana L. Vogeley ◽  
Carolina K. Gouveia ◽  
Rogério W.S. Portela ◽  
José P. Oliveira ◽  
...  

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