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      Perbedaan Green Fluorescent Protein Ikan Sidat pada Fase Glass Eel

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      Date
      2021-06-16
      Author
      Anam, Achmad Choerul
      Riyanto, Mochammad
      Mawardi, Wazir
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      Abstract
      Green Fluorescent Protein (GFP) merupakan protein yang dapat berpendar pada makhluk hidup. GFP yang berikatan dengan bilirubin dapat membuat tubuh sidat berpendar hijau apabila diberi cahaya biru. Dasar pengetahuan ini dapat dimanfaatkan sebagai salah satu solusi alternatif dalam penyortiran, penghitungan dan identifikasi spesies glass eel. Tujuan penelitian ini adalah menentukan metode konversi data yang tepat dalam pengolahan data GFP pada glass eel dan mengidentifikasi perkembangan warna pendar GFP pada glass eel. Penelitian dilakukan di laboratorium dengan metode eksperimental. Analisis data yang digunakan adalah analisis deskriptif dan analisis statistik dengan uji H Kruskal Wallis. Hasil penelitian menunjukkan bahwa fitur Plot profle pada perangkat lunak ImageJ merupakan metode konversi data yang tepat dalam pengolahan data GFP glass eel. Fitur ini menghasilkan nilai deviasi standar dan kesalahan standar dalam rentang 2,83 - 19,43 dan 1,27-8,69 kedua nilai tersebut lebih kecil dari nilai yang dihasilkan fitur Measure dan fitur Histogram. Terdapat perbedaan yang nyata antar data GFP pada ketiga fitur Measure, Plot profile dan Histogram dalam kurun waktu 30 hari (P < 0,05, uji H Kruskal-Wallis). Pergerakan perkembangan data GFP ketiga fitur tersebut berfluktuasi dengan kecenderungan meningkat seiring bertambahnya waktu pemeliharaan glass eel.
       
      Green Fluorescent Protein (GFP) is a protein that can glow in living things. GFP which binds to bilirubin can make the body of the eel glows green when given the blue light. This knowledge base can be used as an alternative solution for sorting, counting, identifying species of glass eels. This study aims to determine the appropriate data conversion method in the processing of GFP data and to identify the development of GFP glow color on glass eels. The study was conducted in the laboratory using experimental methods. Data analysis was performed using descriptive analysis and Kruskal-Wallis H test analysis. The results showed that the Plot Profile feature in ImageJ software was an appropriate data conversion method for processing GFP glass eel data. This feature generates standard deviation and standard error values in the ranges 2.83-19.43 and 1.27- 8.69. Both are smaller than values generated by the Measure and Histogram feature. There were significant differences between GFP data on three processing Measure, Plot profile and Histogram features within 30 days (P<0.05, Kruskal-Wallis H test). The movement of the GFP data development for these three features fluctuated with a tendency to increase as the accruing upkeeping time of glass eels.
       
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      http://repository.ipb.ac.id/handle/123456789/107150
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      • UT - Fisheries Resource Utilization [1891]

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      Indonesia DSpace Group 
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