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AutoFlow: an easy way to build workflows., , , , и . IWBBIO, стр. 342-349. Copicentro Editorial, (2014)Obtaining the Most Accurate de novo Transcriptomes for Non-model Organisms: The Case of Castanea sativa., , , , , и . IWBBIO (2), том 10209 из Lecture Notes in Computer Science, стр. 489-499. (2017)Micro-Variations from RNA-seq Experiments for Non-model Organisms., , , , , и . IWBBIO, том 12108 из Lecture Notes in Computer Science, стр. 542-549. Springer, (2020)BLASSO: integration of biological knowledge into a regularized linear model., , , , , , и . BMC Syst. Biol., 12 (5): 13-26 (2018)Why Assembling Plant Genome Sequences Is So Challenging, , , , , и . Biology, 1 (2): 439--459 (2012)Expression Change Correlations Between Transposons and Their Adjacent Genes in Lung Cancers Reveal a Genomic Location Dependence and Highlights Cancer-Significant Genes., , , и . IWBBIO (1), том 11465 из Lecture Notes in Computer Science, стр. 84-92. Springer, (2019)GENote v.β: A Web Tool Prototype for Annotation of Unfinished Sequences in Non-model Eukaryotes., , , , , , и . JBI, том 6620 из Lecture Notes in Computer Science, стр. 66-71. Springer, (2010)Detecting and correcting mis-assembled reads in contigs., , , и . IWBBIO, стр. 345-351. Copicentro Editorial, (2013)AlignMiner: a Web-based tool for detection of divergent regions in multiple sequence alignments of conserved sequences., , , , и . Algorithms Mol. Biol., (2010)NearTrans Can Identify Correlated Expression Changes Between Retrotransposons and Surrounding Genes in Human Cancer., , , , и . IWBBIO (1), том 10813 из Lecture Notes in Computer Science, стр. 373-382. Springer, (2018)