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Akira Hikosaka

Showing results (1-10 of 19) with videos related to

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Genetical Research|January 23, 2008
PCR detection of excision suggests mobility of the medaka fish Tol1 transposable element in the frog Xenopus laevisAkira Hikosaka, Akihiko Koga
Molecular Genetics and Genomics : MGG|November 17, 2009
A systematic search and classification of T2 family miniature inverted-repeat transposable elements (MITEs) in Xenopus tropicalis suggests the existence of recently active MITE subfamiliesAkira Hikosaka, Akira Kawahara
Zoological Letters|June 28, 2018
Multiple massive domestication and recent amplification of <i>Kolobok</i> superfamily transposons in the clawed frog <i>Xenopus</i>Akira Hikosaka, Seigo Konishi
Journal of Molecular Evolution|December 16, 2004
Lineage-specific tandem repeats riding on a transposable element of MITE in Xenopus evolution: a new mechanism for creating simple sequence repeatsAkira Hikosaka, Akira Kawahara
Cytogenetic and Genome Research|June 6, 2015
Distribution of the T2-MITE Family Transposons in the Xenopus (Silurana) tropicalis GenomeAkira Hikosaka, Yoshinobu Uno, Yoichi Matsuda
Roux'S Archives of Developmental Biology : the Official Organ of the EDBO|March 18, 2017
Regulated spatial expression of fusion gene constructs with the 5' upstream region of Halocynthia roretzi muscle actin gene in Ciona savignyi embryosAkira Hikosaka, Noriyuki Satoh, Kazuhiro W Makabe
Endocrinology|June 28, 2008
Unique form and osmoregulatory function of a neurohypophysial hormone in a urochordateKazuyoshi Ukena, Eiko Iwakoshi-Ukena, Akira Hikosaka
Molecular Biology and Evolution|October 16, 2007
Evolution of the Xenopus piggyBac transposon family TxpB: domesticated and untamed strategies of transposon subfamiliesAkira Hikosaka, Toshihiro Kobayashi, Yumiko Saito, et al.
Development, Growth & Differentiation|August 15, 2002
Tissue-specific regulation of type III iodothyronine 5-deiodinase gene expression mediates the effects of prolactin and growth hormone in Xenopus metamorphosisNoriyuki Shintani, Takashi Nohira, Akira Hikosaka, et al.
Development Genes and Evolution|October 18, 2016
Thyroid hormone-dependent repression of α1-microglobulin/bikunin precursor (AMBP) gene expression during amphibian metamorphosisA Kawahara, Akira Hikosaka, T Sasado, et al.
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
Genetical Research|January 23, 2008
PCR detection of excision suggests mobility of the medaka fish Tol1 transposable element in the frog Xenopus laevisAkira Hikosaka, Akihiko Koga
Molecular Genetics and Genomics : MGG|November 17, 2009
A systematic search and classification of T2 family miniature inverted-repeat transposable elements (MITEs) in Xenopus tropicalis suggests the existence of recently active MITE subfamiliesAkira Hikosaka, Akira Kawahara
Zoological Letters|June 28, 2018
Multiple massive domestication and recent amplification of <i>Kolobok</i> superfamily transposons in the clawed frog <i>Xenopus</i>Akira Hikosaka, Seigo Konishi
Journal of Molecular Evolution|December 16, 2004
Lineage-specific tandem repeats riding on a transposable element of MITE in Xenopus evolution: a new mechanism for creating simple sequence repeatsAkira Hikosaka, Akira Kawahara
Cytogenetic and Genome Research|June 6, 2015
Distribution of the T2-MITE Family Transposons in the Xenopus (Silurana) tropicalis GenomeAkira Hikosaka, Yoshinobu Uno, Yoichi Matsuda
Roux'S Archives of Developmental Biology : the Official Organ of the EDBO|March 18, 2017
Regulated spatial expression of fusion gene constructs with the 5' upstream region of Halocynthia roretzi muscle actin gene in Ciona savignyi embryosAkira Hikosaka, Noriyuki Satoh, Kazuhiro W Makabe
Endocrinology|June 28, 2008
Unique form and osmoregulatory function of a neurohypophysial hormone in a urochordateKazuyoshi Ukena, Eiko Iwakoshi-Ukena, Akira Hikosaka
Molecular Biology and Evolution|October 16, 2007
Evolution of the Xenopus piggyBac transposon family TxpB: domesticated and untamed strategies of transposon subfamiliesAkira Hikosaka, Toshihiro Kobayashi, Yumiko Saito, et al.
Development, Growth & Differentiation|August 15, 2002
Tissue-specific regulation of type III iodothyronine 5-deiodinase gene expression mediates the effects of prolactin and growth hormone in Xenopus metamorphosisNoriyuki Shintani, Takashi Nohira, Akira Hikosaka, et al.
Development Genes and Evolution|October 18, 2016
Thyroid hormone-dependent repression of α1-microglobulin/bikunin precursor (AMBP) gene expression during amphibian metamorphosisA Kawahara, Akira Hikosaka, T Sasado, et al.
Pageof 2