Disruption of a BTB-ZF transcription factor causes female sterility and melanization in the larval body of the silkworm, Bombyx mori
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[1] Silvio C. E. Tosatto,et al. InterPro in 2022 , 2022, Nucleic Acids Res..
[2] E. Westhof,et al. High-resolution silkworm pan-genome provides genetic insights into artificial selection and ecological adaptation , 2022, Nature Communications.
[3] T. Cheng,et al. Abnormal overexpression of SoxD enhances melanin synthesis in the Ursa mutant of Bombyx mori. , 2022, Insect biochemistry and molecular biology.
[4] P. Andolfatto,et al. Allele-specific knockouts reveal a role for apontic-like in the evolutionary loss of larval pigmentation in the domesticated silkworm, Bombyx mori , 2022, bioRxiv.
[5] Tzumin Lee,et al. Hormone-controlled changes in the differentiation state of post-mitotic neurons , 2022, Current Biology.
[6] R. Bernardi,et al. PML isoforms: a molecular basis for PML pleiotropic functions. , 2022, Trends in biochemical sciences.
[7] T. Kiuchi,et al. SilkBase: an integrated transcriptomic and genomic database for Bombyx mori and related species , 2022, Database J. Biol. Databases Curation.
[8] H. Kimura,et al. A truncated form of a transcription factor Mamo activates vasa in Drosophila embryos , 2019, Communications Biology.
[9] H. Bono,et al. Reference transcriptome data in silkworm Bombyx mori , 2019, bioRxiv.
[10] Tzumin Lee,et al. Mamo decodes hierarchical temporal gradients into terminal neuronal fate , 2019, eLife.
[11] F. Dai,et al. Genome-wide identification and expression profiling of the C2H2-type zinc finger protein genes in the silkworm Bombyx mori , 2019, PeerJ.
[12] A. Fujiyama,et al. High-quality genome assembly of the silkworm, Bombyx mori. , 2019, Insect biochemistry and molecular biology.
[13] Liyuan Liu,et al. The evolutionary road from wild moth to domestic silkworm , 2018, Nature Ecology & Evolution.
[14] Kimiko Yamamoto,et al. Toll ligand Spätzle3 controls melanization in the stripe pattern formation in caterpillars , 2017, Proceedings of the National Academy of Sciences.
[15] F. Dai,et al. Comparative analysis of the integument transcriptomes of the black dilute mutant and the wild-type silkworm Bombyx mori , 2016, Scientific Reports.
[16] F. Dai,et al. Aspartate Decarboxylase is Required for a Normal Pupa Pigmentation Pattern in the Silkworm, Bombyx mori , 2015, Scientific Reports.
[17] Hidemasa Bono,et al. CRISPRdirect: software for designing CRISPR/Cas guide RNA with reduced off-target sites , 2014, Bioinform..
[18] K. Mita,et al. The transcription factor Apontic-like controls diverse colouration pattern in caterpillars , 2014, Nature Communications.
[19] M. Schartl,et al. Design, evaluation, and screening methods for efficient targeted mutagenesis with transcription activator‐like effector nucleases in medaka , 2014, Development, growth & differentiation.
[20] D. Grunwald,et al. Efficient identification of TALEN‐mediated genome modifications using heteroduplex mobility assays , 2013, Genes to cells : devoted to molecular & cellular mechanisms.
[21] K. Mita,et al. Periodic Wnt1 expression in response to ecdysteroid generates twin-spot markings on caterpillars , 2013, Nature Communications.
[22] Ze Zhang,et al. Melanin and urate act to prevent ultraviolet damage in the integument of the silkworm, Bombyx mori. , 2013, Archives of insect biochemistry and physiology.
[23] Thomas R. Gingeras,et al. STAR: ultrafast universal RNA-seq aligner , 2013, Bioinform..
[24] H. Fujiwara,et al. siRNAs Induce Efficient RNAi Response in Bombyx mori Embryos , 2011, PloS one.
[25] Colin N. Dewey,et al. RSEM: accurate transcript quantification from RNA-Seq data with or without a reference genome , 2011, BMC Bioinformatics.
[26] Z. Xiang,et al. Evidence of selection at melanin synthesis pathway loci during silkworm domestication. , 2011, Molecular biology and evolution.
[27] G. Wagner,et al. The pleiotropic structure of the genotype–phenotype map: the evolvability of complex organisms , 2011, Nature Reviews Genetics.
[28] Dong Li,et al. Identification and characterization of Sox genes in the silkworm, Bombyx mori , 2011, Molecular Biology Reports.
[29] Muwang Li,et al. Disruption of an N-acetyltransferase gene in the silkworm reveals a novel role in pigmentation , 2010, Development.
[30] M. DePristo,et al. The Genome Analysis Toolkit: a MapReduce framework for analyzing next-generation DNA sequencing data. , 2010, Genome research.
[31] R. Futahashi,et al. Caterpillar color patterns are determined by a two‐phase melanin gene prepatterning process: new evidence from tan and laccase2 , 2010, Evolution & development.
[32] Mark D. Robinson,et al. edgeR: a Bioconductor package for differential expression analysis of digital gene expression data , 2009, Bioinform..
[33] T. Asano,et al. Cuticle laccase of the silkworm, Bombyx mori: purification, gene identification and presence of its inactive precursor in the cuticle. , 2009, Insect biochemistry and molecular biology.
[34] Kazuei Mita,et al. The genome of a lepidopteran model insect, the silkworm Bombyx mori. , 2009, Insect biochemistry and molecular biology.
[35] T. Shimada,et al. yellow and ebony Are the Responsible Genes for the Larval Color Mutants of the Silkworm Bombyx mori , 2008, Genetics.
[36] Satoru Kobayashi,et al. MAMO, a maternal BTB/POZ-Zn-finger protein enriched in germline progenitors is required for the production of functional eggs in Drosophila , 2007, Mechanisms of Development.
[37] Jianzhi Zhang,et al. Toward a Molecular Understanding of Pleiotropy , 2006, Genetics.
[38] J. M. Lee,et al. Micropylar structure of chorion of the female sterile mutation, bd, in Bombyx mori , 2006 .
[39] Y. Tanaka,et al. A study of Mendelian factors in the Sikworm, Bombyx Mori , 1914, Zeitschrift für induktive Abstammungs- und Vererbungslehre.
[40] Jerilyn A. Walker,et al. Preparation of PCR-quality mouse genomic DNA with hot sodium hydroxide and tris (HotSHOT). , 2000, BioTechniques.
[41] N. Perrimon,et al. Use of a yeast site-specific recombinase to produce female germline chimeras in Drosophila. , 1992, Genetics.
[42] K. Kiguchi,et al. Ecdysteroid levels and developmental events during larval moulting in the silkworm, Bombyx mori , 1981 .
[43] K. Shimizu,et al. Genetical studies on the dilute-black fertile, a new mutant at the dilute black locus of Bombyx mori , 1978 .
[44] H. Doira,et al. Contributions to genetics of Bombyx 5 , 1972 .
[45] M. Kogure,et al. The Influence Of Light And Temperature On Certain Characters Of The Silkworm, Bombyx Mori , 1933 .
[46] T. Kiuchi,et al. Functional Characterization of Silkworm PIWI Proteins by Embryonic RNAi. , 2022, Methods in molecular biology.