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Federation of European Neuroscience Societies mega6
Mega6, supplied by Federation of European Neuroscience Societies, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Article Title: Dual nuclease activity of a Cas2 protein in CRISPR-Cas subtype I-B of Leptospira interrogans.
Article Snippet: Edited by Renee Tsolis Leptospira interrogans serovar Copenhageni strain Fiocruz L1–130 carries a set of cas genes associated with CRISPR–Cas subtype I-B.. Herein, we report for the first time active transcription of a set of cas genes (cas1 to cas8) of L. interrogans where cas4, cas1, cas2 and cas6, cas3, cas8, cas7, cas5 are clustered together in two independent operons.. As an initial step toward comprehensive understanding of CRISPR–Cas system in spirochete, the biochemical study of one of the core Leptospira Cas2 proteins (Lep_Cas2) showed nuclease activity on both DNA and RNA in a nonspecific manner.



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The EVR1 gene family in Arabidopsis. A, Phylogenetic analysis of EVR1 and EVR1L proteins from Arabidopsis, Glycine max, Oryza sativa, Zea mays, Physcomitrella patens, Chlamydomonas reinhardtii, and Saccharomyces cerevisiae. Proteins sequences were obtained from the National Center for Biotechnology Information and the phylogenetic tree was constructed with the <t>MEGA6</t> program (Tamura et al., 2013). B, Gene structure analysis of EVR1 and EVR1L1. Gene models were drawn as in Fig. 2A. The numbers of coding nucleotides in each exon were marked. C, An alignment of amino acid sequences of EVR1 and EVR1L1. The alignment was generated by the software ClustalW2 (Larkin et al., 2007).
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The EVR1 gene family in Arabidopsis. A, Phylogenetic analysis of EVR1 and EVR1L proteins from Arabidopsis, Glycine max, Oryza sativa, Zea mays, Physcomitrella patens, Chlamydomonas reinhardtii, and Saccharomyces cerevisiae. Proteins sequences were obtained from the National Center for Biotechnology Information and the phylogenetic tree was constructed with the <t>MEGA6</t> program (Tamura et al., 2013). B, Gene structure analysis of EVR1 and EVR1L1. Gene models were drawn as in Fig. 2A. The numbers of coding nucleotides in each exon were marked. C, An alignment of amino acid sequences of EVR1 and EVR1L1. The alignment was generated by the software ClustalW2 (Larkin et al., 2007).
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The EVR1 gene family in Arabidopsis. A, Phylogenetic analysis of EVR1 and EVR1L proteins from Arabidopsis, Glycine max, Oryza sativa, Zea mays, Physcomitrella patens, Chlamydomonas reinhardtii, and Saccharomyces cerevisiae. Proteins sequences were obtained from the National Center for Biotechnology Information and the phylogenetic tree was constructed with the <t>MEGA6</t> program (Tamura et al., 2013). B, Gene structure analysis of EVR1 and EVR1L1. Gene models were drawn as in Fig. 2A. The numbers of coding nucleotides in each exon were marked. C, An alignment of amino acid sequences of EVR1 and EVR1L1. The alignment was generated by the software ClustalW2 (Larkin et al., 2007).
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The EVR1 gene family in Arabidopsis. A, Phylogenetic analysis of EVR1 and EVR1L proteins from Arabidopsis, Glycine max, Oryza sativa, Zea mays, Physcomitrella patens, Chlamydomonas reinhardtii, and Saccharomyces cerevisiae. Proteins sequences were obtained from the National Center for Biotechnology Information and the phylogenetic tree was constructed with the <t>MEGA6</t> program (Tamura et al., 2013). B, Gene structure analysis of EVR1 and EVR1L1. Gene models were drawn as in Fig. 2A. The numbers of coding nucleotides in each exon were marked. C, An alignment of amino acid sequences of EVR1 and EVR1L1. The alignment was generated by the software ClustalW2 (Larkin et al., 2007).
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The EVR1 gene family in Arabidopsis. A, Phylogenetic analysis of EVR1 and EVR1L proteins from Arabidopsis, Glycine max, Oryza sativa, Zea mays, Physcomitrella patens, Chlamydomonas reinhardtii, and Saccharomyces cerevisiae. Proteins sequences were obtained from the National Center for Biotechnology Information and the phylogenetic tree was constructed with the MEGA6 program (Tamura et al., 2013). B, Gene structure analysis of EVR1 and EVR1L1. Gene models were drawn as in Fig. 2A. The numbers of coding nucleotides in each exon were marked. C, An alignment of amino acid sequences of EVR1 and EVR1L1. The alignment was generated by the software ClustalW2 (Larkin et al., 2007).

Journal: Plant Physiology

Article Title: Balance between Cytosolic and Chloroplast Translation Affects Leaf Variegation 1

doi: 10.1104/pp.17.00673

Figure Lengend Snippet: The EVR1 gene family in Arabidopsis. A, Phylogenetic analysis of EVR1 and EVR1L proteins from Arabidopsis, Glycine max, Oryza sativa, Zea mays, Physcomitrella patens, Chlamydomonas reinhardtii, and Saccharomyces cerevisiae. Proteins sequences were obtained from the National Center for Biotechnology Information and the phylogenetic tree was constructed with the MEGA6 program (Tamura et al., 2013). B, Gene structure analysis of EVR1 and EVR1L1. Gene models were drawn as in Fig. 2A. The numbers of coding nucleotides in each exon were marked. C, An alignment of amino acid sequences of EVR1 and EVR1L1. The alignment was generated by the software ClustalW2 (Larkin et al., 2007).

Article Snippet: Proteins sequences were obtained from the National Center for Biotechnology Information and the phylogenetic tree was constructed with the MEGA6 program ( Tamura et al., 2013 ).

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