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1 <tool id="augustus" name="Augustus" version="0.3">
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2 <description>gene prediction for eukaryotic genomes</description>
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3 <requirements>
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4 <requirement type="package" version="2.7">augustus</requirement>
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5 </requirements>
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6 <command>
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7 ## please set export AUGUSTUS_CONFIG_PATH=/path_to_augustus/augustus/config
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8 ## or use the --AUGUSTUS_CONFIG_PATH=path if you are not installing through the toolshed
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9 ## Augustus writes the protein and coding sequences as comment into the gff/gtf file an external script is used to extract the sequences into additional files
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10
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11 augustus
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12 --strand=$strand
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13 $noInFrameStop
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14 $gff
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15 $protein
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16 $introns
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17 $start
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18 $stop
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19 $cds
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20 $codingseq
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21 $singlestrand
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22 $input_genome
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23 $mea
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24 $utr
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25 --genemodel=$genemodel
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26 --species=$organism
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27 ##--outfile=$output
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28 | tee $output
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29 #if $protein or $codingseq:
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30 | python extract_features.py
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31 #if $protein:
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32 --protein $protein_output
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33 #if $codingseq:
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34 --codingseq $codingseq_output
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35
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36 </command>
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37 <inputs>
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38 <param name="input_genome" type="data" format="fasta" label="Genome Sequence"/>
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39 <param name="noInFrameStop" type="boolean" label="Don't report transcripts with in-frame stop codons (--noInFrameStop)" truevalue="--noInFrameStop=true" falsevalue="--noInFrameStop=false" checked="false" help="Otherwise, intron-spanning stop codons could occur" />
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40 <param name="singlestrand" type="boolean" label="Predict genes independently on each strand, allow overlapping genes on opposite strands (--singlestrand)" truevalue="--singlestrand=true" falsevalue="--singlestrand=false" checked="false" />
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41 <param name="mea" type="boolean" label="Using the maximum expected accuracy approach (--mea)" truevalue="--mea=1" falsevalue="" checked="false" help="MEA is an alternative decoding approach." />
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42 <param name="utr" type="boolean" label="Predict the untranslated regions in addition to the coding sequence (--UTR)" truevalue="--UTR=on" falsevalue="--UTR=off" checked="false" help="This currently works only for human, galdieria, toxoplasma and caenorhabditis." />
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43
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44 <param name="organism" label="Model Organism" type="select" multiple="false" format="text" help="Choose a specialised trainingset.">
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45 <option value="human">Homo sapiens</option>
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46 <option value="fly">Drosophila melanogaster</option>
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47 <option value="arabidopsis">Arabidopsis thaliana</option>
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48 <option value="brugia ">Brugia malayi</option>
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49 <option value="aedes">Aedes aegypti</option>
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50 <option value="tribolium2012">Tribolium castaneum</option>
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51 <option value="schistosoma">Schistosoma mansoni</option>
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52 <option value="tetrahymena">Tetrahymena thermophila</option>
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53 <option value="galdieria">Galdieria sulphuraria</option>
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54 <option value="maize">Zea mays</option>
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55 <option value="toxoplasma ">Toxoplasma gondii</option>
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56 <option value="caenorhabditis ">Caenorhabditis elegans</option>
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57 <option value="aspergillus_fumigatus">Aspergillus fumigatus</option>
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58 <option value="aspergillus_nidulans ">Aspergillus nidulans</option>
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59 <option value="aspergillus_oryzae ">Aspergillus oryzae</option>
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60 <option value="aspergillus_terreus">Aspergillus terreus</option>
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61 <option value="botrytis_cinerea ">Botrytis cinerea</option>
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62 <option value="candida_albicans ">Candida albicans</option>
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63 <option value="candida_guilliermondii ">Candida guilliermondii</option>
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64 <option value="candida_tropicalis ">Candida tropicalis</option>
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65 <option value="chaetomium_globosum">Chaetomium globosum</option>
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66 <option value="coccidioides_immitis ">Coccidioides immitis</option>
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67 <option value="coprinus ">Coprinus cinereus</option>
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68 <option value="coprinus_cinereus">Coprinus cinereus</option>
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69 <option value="cryptococcus_neoformans_gattii ">Cryptococcus neoformans gattii</option>
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70 <option value="cryptococcus_neoformans_neoformans_B ">Cryptococcus neoformans neoformans</option>
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71 <option value="cryptococcus_neoformans_neoformans_JEC21 ">Cryptococcus neoformans neoformans</option>
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72 <option value="debaryomyces_hansenii">Debaryomyces hansenii</option>
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73 <option value="encephalitozoon_cuniculi_GB">Encephalitozoon cuniculi</option>
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74 <option value="eremothecium_gossypii">Eremothecium gossypii</option>
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75 <option value="fusarium_graminearum ">Fusarium graminearum</option>
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76 <option value="histoplasma_capsulatum ">Histoplasma capsulatum</option>
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77 <option value="(histoplasma)">Histoplasma capsulatum</option>
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78 <option value="kluyveromyces_lactis ">Kluyveromyces lactis</option>
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79 <option value="laccaria_bicolor ">Laccaria bicolor</option>
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80 <option value="lamprey">Petromyzon marinus</option>
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81 <option value="leishmania_tarentolae">Leishmania tarentolae</option>
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82 <option value="lodderomyces_elongisporus">Lodderomyces elongisporus</option>
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83 <option value="magnaporthe_grisea ">Magnaporthe grisea</option>
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84 <option value="neurospora_crassa">Neurospora crassa</option>
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85 <option value="phanerochaete_chrysosporium">Phanerochaete chrysosporium</option>
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86 <option value="pichia_stipitis">Pichia stipitis</option>
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87 <option value="rhizopus_oryzae">Rhizopus oryzae</option>
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88 <option value="saccharomyces_cerevisiae_S288C ">Saccharomyces cerevisiae</option>
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89 <option value="saccharomyces_cerevisiae_rm11-1a_1 ">Saccharomyces cerevisiae</option>
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90 <option value="(saccharomyces)">Saccharomyces cerevisiae</option>
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91 <option value="schizosaccharomyces_pombe">Schizosaccharomyces pombe</option>
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92 <option value="trichinella">Trichinella spiralis</option>
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93 <option value="ustilago_maydis">Ustilago maydis</option>
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94 <option value="yarrowia_lipolytica">Yarrowia lipolytica</option>
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95 <option value="nasonia">Nasonia vitripennis</option>
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96 <option value="tomato">Solanum lycopersicum</option>
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97 <option value="chlamydomonas">Chlamydomonas reinhardtii</option>
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98 <option value="amphimedon">Amphimedon queenslandica</option>
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99 <option value="pneumocystis">Pneumocystis jirovecii</option>
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100 <option value="chicken">Gallus gallus domesticus (chicken)</option>
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101 <option value="cacao">Theobroma cacao (cacao)</option>
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102 <option value="heliconius_melpomene1">Heliconius melpomene</option>
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103 <option value="xenoturbella">Xenoturbella</option>
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104 </param>
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105
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106 <param name="strand" type="select" multiple="false" format="text" help="Report predicted genes on both strands, just the forward or just the backward strand.">
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107 <option value="both">both</option>
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108 <option value="forward">forward</option>
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109 <option value="backward">backward</option>
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110 </param>
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111
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112 <param name="genemodel" label="Gene Model" type="select" multiple="false" format="text" help="Gene Model to predict, for more information please refere to the help.">
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113 <option value="complete">complete</option>
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114 <option value="partial">partial</option>
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115 <option value="intronless">intronless</option>
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116 <option value="atleastone">atleastone</option>
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117 <option value="exactlyone">exactlyone</option>
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118 <option value="bacterium">bacterium (beta version)</option>
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119 </param>
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120
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121 <param name="protein" type="boolean" label="Output predicted protein sequences (--protein)" truevalue="--protein=on" falsevalue="--protein=off" checked="true" />
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122 <param name="codingseq" type="boolean" label="Output coding sequence as comment in the output file (codingseq)" truevalue="--codingseq=on" falsevalue="--codingseq=off" checked="true" />
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123 <param name="introns" type="boolean" label="Output predicted intron sequences (--introns)" truevalue="--introns=on" falsevalue="--introns=off" checked="false" />
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124 <param name="start" type="boolean" label="Output predicted start codons (--start)" truevalue="--start=on" falsevalue="--start=off" checked="false" />
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125 <param name="stop" type="boolean" label="Output predicted stop codons (--stop)" truevalue="--stop=on" falsevalue="--stop=off" checked="false" />
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126 <param name="cds" type="boolean" label="Output CDS region (--cds)" truevalue="--cds=on" falsevalue="--cds=off" checked="true" />
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127 <param name="gff" type="boolean" label="GFF formated output, standard is GTF (--gff3)" truevalue="--gff3=on" falsevalue="--gff3=off" checked="false" />
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128
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129 </inputs>
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130 <outputs>
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131 <data format="gtf" name="output">
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132 <change_format>
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133 <when input="gff" value="--gff3=on" format="gff" />
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134 </change_format>
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135 </data>
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136 <data format="fasta" name="protein_output">
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137 <filter>protein == "--protein=on"</filter>
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138 </data>
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139 <data format="fasta" name="codingseq_output">
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140 <filter>codingseq == "--codingseq=on"</filter>
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141 </data>
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142 </outputs>
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143 <tests>
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144 <test>
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145 <param name="input_genome" value="human_augustus.fa" ftype="fasta" />
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146 <param name="organism" value="human" />
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147 <param name="utr" value="--UTR=on" />
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148 <output name="output" file="human_augustus_utr-on.gtf" ftype="gtf" />
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149 </test>
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150 <test>
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151 <param name="input_genome" value="HS04636_augustus.fa" ftype="fasta" />
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152 <param name="organism" value="human" />
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153 <param name="utr" value="--UTR=on" />
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154 <param name="gff" value="--gff3=on" />
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155 <output name="output" file="human_augustus_utr-on.gff" ftype="gff3" />
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156 </test>
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157 <test>
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158 <param name="input_genome" value="arabidopsis_augustus.fa" ftype="fasta" />
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159 <param name="organism" value="arabidopsis" />
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160 <param name="singlestrand" value="--singlestrand=true" />
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161 <param name="mea" value="--mea=1" />
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162 <output name="output" file="arabidopsis_augustus_utr-off_singlestrand-on_mea-on" ftype="gtf" />
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163 </test>
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164 </tests>
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165 <help>
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166
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167 **What it does**
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168
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169 AUGUSTUS is a gene prediction program for eukaryotes written by Mario Stanke and Oliver Keller.
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170 It can be used as an ab initio program, which means it bases its prediction purely on the
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171 sequence. AUGUSTUS may also incorporate hints on the gene structure coming from extrinsic sources
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172 such as EST, MS/MS, protein alignments and synthenic genomic alignments.
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173
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174 -----
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175
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176 **Parameters**
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177
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178 Gene Model::
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179
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180 partial : allow prediction of incomplete genes at the sequence boundaries (default)
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181 intronless : only predict single-exon genes like in prokaryotes and some eukaryotes
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182 complete : only predict complete genes
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183 atleastone : predict at least one complete gene
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184 exactlyone : predict exactly one complete gene
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185
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186
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187
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188 **Example**
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189
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190 Suppose you have the following DNA formatted sequences::
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191
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192 >Seq1
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193 cccgcggagcgggtaccacatcgctgcgcgatgtgcgagcgaacacccgggctgcgcccg
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194 ggtgttgcgctcccgctccgcgggagcgctggcgggacgctgcgcgtcccgctcaccaag
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195 cccgcttcgcgggcttggtgacgctccgtccgctgcgcttccggagttgcggggcttcgc
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196 cccgctaaccctgggcctcgcttcgctccgccttgggcctgcggcgggtccgctgcgctc
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197 ccccgcctcaagggcccttccggctgcgcctccaggacccaaccgcttgcgcgggcctgg
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198
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199 Running this tool will produce this::
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200
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201 # ----- prediction on sequence number 1 (length = 1992969, name = scaffold1|size1992969) -----
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202 #
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203 # Constraints/Hints:
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204 # (none)
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205 # Predicted genes for sequence number 1 on both strands
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206 # start gene g1
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207 scaffold1|size1992969 AUGUSTUS gene 17453 19382 0.11 + . g6
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208 scaffold1|size1992969 AUGUSTUS transcript 17453 19382 0.11 + . g6.t1
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209 scaffold1|size1992969 AUGUSTUS start_codon 17453 17455 . + 0 transcript_id "g6.t1"; gene_id "g6";
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210 scaffold1|size1992969 AUGUSTUS intron 17615 17660 0.38 + . transcript_id "g6.t1"; gene_id "g6";
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211 scaffold1|size1992969 AUGUSTUS intron 17708 17772 0.54 + . transcript_id "g6.t1"; gene_id "g6";
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212 scaffold1|size1992969 AUGUSTUS intron 17902 18035 0.58 + . transcript_id "g6.t1"; gene_id "g6";
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213 scaffold1|size1992969 AUGUSTUS intron 18313 18367 0.99 + . transcript_id "g6.t1"; gene_id "g6";
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214 scaffold1|size1992969 AUGUSTUS intron 19014 19080 0.44 + . transcript_id "g6.t1"; gene_id "g6";
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215 scaffold1|size1992969 AUGUSTUS CDS 17453 17614 0.55 + 0 transcript_id "g6.t1"; gene_id "g6";
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216 scaffold1|size1992969 AUGUSTUS CDS 17661 17707 0.38 + 0 transcript_id "g6.t1"; gene_id "g6";
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217 scaffold1|size1992969 AUGUSTUS CDS 17773 17901 0.54 + 1 transcript_id "g6.t1"; gene_id "g6";
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218 scaffold1|size1992969 AUGUSTUS CDS 18036 18312 0.52 + 1 transcript_id "g6.t1"; gene_id "g6";
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219 scaffold1|size1992969 AUGUSTUS CDS 18368 19013 0.99 + 0 transcript_id "g6.t1"; gene_id "g6";
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220 scaffold1|size1992969 AUGUSTUS CDS 19081 19379 0.31 + 2 transcript_id "g6.t1"; gene_id "g6";
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221 scaffold1|size1992969 AUGUSTUS stop_codon 19380 19382 . + 0 transcript_id "g6.t1"; gene_id "g6";
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222
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223
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224 **References**
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225
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226 Mario Stanke and Stephan Waack (2003)
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227 Gene Prediction with a Hidden-Markov Model and a new Intron Submodel.
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228 Bioinformatics, Vol. 19, Suppl. 2, pages ii215-ii225
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229
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230
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231 </help>
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232 </tool>
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