Selected article for: "multiple sequence alignment and protein sequence"

Author: Damian Kao; Alvina G. Lai; Evangelia Stamataki; Silvana Rosic; Nikolaos Konstantinides; Erin Jarvis; Alessia Di Donfrancesco; Natalia Pouchkina-Stantcheva; Marie Sémon; Marco Grillo; Heather Bruce; Suyash Kumar; Igor Siwanowicz; Andy Le; Andrew Lemire; Michael B. Eisen; Cassandra Extavour; William E. Browne; Carsten Wolff; Michalis Averof; Nipam H. Patel; Peter Sarkies; Anastasios Pavlopoulos; A. Aziz Aboobaker
Title: The genome of the crustacean Parhyale hawaiensis: a model for animal development, regeneration, immunity and lignocellulose digestion
  • Document date: 2016_7_25
  • ID: 57sp9d9l_15
    Snippet: populations of cells and will be further assisted by the resources presented here. Likewise, we expect that 855 For the identification of Dscam in the Parhyale, we used the Dscam protein sequence from crustaceans D. Scientific and thermal cycling was done as the following: 98°C 30s, followed by 30 cycles of 98°C 10s, 878 67°C 30s, 72°C 1m30s, and then 72°C 5m. PCR products were cloned into pGEMT-Easy vector and a 879 total of 81 clones were .....
    Document: populations of cells and will be further assisted by the resources presented here. Likewise, we expect that 855 For the identification of Dscam in the Parhyale, we used the Dscam protein sequence from crustaceans D. Scientific and thermal cycling was done as the following: 98°C 30s, followed by 30 cycles of 98°C 10s, 878 67°C 30s, 72°C 1m30s, and then 72°C 5m. PCR products were cloned into pGEMT-Easy vector and a 879 total of 81 clones were selected and Sanger sequenced and in silico translated in the correct reading frame 880 using Geneious (R7; [173] for multiple sequence alignment.

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