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Echinobase

Profile Publications (14)
ECB-PERS-4156

Publications By Mariko Kondo

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The pentameric hydrocoel lobes organize adult pentameral structures in a sea cucumber, Apostichopus japonicus., Udagawa S, Nagai A, Kikuchi M, Omori A, Tajika A, Saito M, Miura T, Irie N, Kamei Y, Kondo M., Dev Biol. December 1, 2022; 492 71-78.


Genomic insights of body plan transitions from bilateral to pentameral symmetry in Echinoderms., Li Y, Omori A, Flores RL, Satterfield S, Nguyen C, Ota T, Tsurugaya T, Ikuta T, Ikeo K, Kikuchi M, Leong JCK, Reich A, Hao M, Wan W, Dong Y, Ren Y, Zhang S, Zeng T, Uesaka M, Uchida Y, Li X, Shibata TF, Bino T, Ogawa K, Shigenobu S, Kondo M, Wang F, Chen L, Wessel G, Saiga H, Cameron RA, Livingston B, Bradham C, Wang W, Irie N., Commun Biol. July 10, 2020; 3 (1): 371.      


pmar1/phb homeobox genes and the evolution of the double-negative gate for endomesoderm specification in echinoderms., Yamazaki A, Morino Y, Urata M, Yamaguchi M, Minokawa T, Furukawa R, Kondo M, Wada H., Development. February 26, 2020; 147 (4):


A Tropical Composting Operation Unit at São Paulo Zoo as a Source of Bacterial Proteolytic Enzymes., Ramos PL, Kondo MY, Santos SMB, de Vasconcellos SP, Rocha RCS, da Cruz JB, Eugenio PFM, Cabral H, Juliano MA, Juliano L, Setubal JC, da Silva AM, Cappelini LTD., Appl Biochem Biotechnol. January 1, 2019; 187 (1): 282-297.


Regeneration of the digestive tract of an anterior-eviscerating sea cucumber, Eupentacta quinquesemita, and the involvement of mesenchymal-epithelial transition in digestive tube formation., Okada A, Kondo M., Zoological Lett. January 1, 2019; 5 21.                  


Novel phosphorelay-dependent control of ZFP36L1 protein during the cell cycle., Kondo M, Noguchi A, Matsuura Y, Shimada M, Yokota N, Kawahara H., Biochem Biophys Res Commun. June 22, 2018; 501 (2): 387-393.


Weighted gene co-expression network analysis reveals potential genes involved in early metamorphosis process in sea cucumber Apostichopus japonicus., Li Y, Kikuchi M, Li X, Gao Q, Xiong Z, Ren Y, Zhao R, Mao B, Kondo M, Irie N, Wang W., Biochem Biophys Res Commun. January 1, 2018; 495 (1): 1395-1402.


Genome evolution in the allotetraploid frog Xenopus laevis., Session AM, Uno Y, Kwon T, Chapman JA, Toyoda A, Takahashi S, Fukui A, Hikosaka A, Suzuki A, Kondo M, van Heeringen SJ, Quigley I, Heinz S, Ogino H, Ochi H, Hellsten U, Lyons JB, Simakov O, Putnam N, Stites J, Kuroki Y, Tanaka T, Michiue T, Watanabe M, Bogdanovic O, Lister R, Georgiou G, Paranjpe SS, van Kruijsbergen I, Shu S, Carlson J, Kinoshita T, Ohta Y, Mawaribuchi S, Jenkins J, Grimwood J, Schmutz J, Mitros T, Mozaffari SV, Suzuki Y, Haramoto Y, Yamamoto TS, Takagi C, Heald R, Miller K, Haudenschild C, Kitzman J, Nakayama T, Izutsu Y, Robert J, Fortriede J, Burns K, Lotay V, Karimi K, Yasuoka Y, Dichmann DS, Flajnik MF, Houston DW, Shendure J, DuPasquier L, Vize PD, Zorn AM, Ito M, Marcotte EM, Wallingford JB, Ito Y, Asashima M, Ueno N, Matsuda Y, Veenstra GJ, Fujiyama A, Harland RM, Taira M, Rokhsar DS., Nature. October 20, 2016; 538 (7625): 336-343.                          


Halotolerant bacteria in the São Paulo Zoo composting process and their hydrolases and bioproducts., Oliveira LC, Ramos PL, Marem A, Kondo MY, Rocha RC, Bertolini T, Silveira MA, da Cruz JB, de Vasconcellos SP, Juliano L, Okamoto DN., Braz J Microbiol. June 1, 2015; 46 (2): 347-54.    


Unexpected link between polyketide synthase and calcium carbonate biomineralization., Hojo M, Omi A, Hamanaka G, Shindo K, Shimada A, Kondo M, Narita T, Kiyomoto M, Katsuyama Y, Ohnishi Y, Irie N, Takeda H., Zoological Lett. January 13, 2015; 1 3.        


Current Status of Echinoderm Genome Analysis - What do we Know?, Kondo M, Akasaka K., Curr Genomics. April 1, 2012; 13 (2): 134-43.      


Regeneration in crinoids., Kondo M, Akasaka K., Dev Growth Differ. January 1, 2010; 52 (1): 57-68.


Ciona intestinalis and Oxycomanthus japonicus, representatives of marine invertebrates., Sasakura Y, Inaba K, Satoh N, Kondo M, Akasaka K., Exp Anim. October 1, 2009; 58 (5): 459-69.


Molecular mechanism for pore-formation in lipid membranes by the hemolytic lectin CEL-III from marine invertebrate Cucumaria echinata., Kouriki-Nagatomo H, Hatakeyama T, Jelokhani-Niaraki M, Kondo M, Ehara T, Yamasaki N., Biosci Biotechnol Biochem. July 1, 1999; 63 (7): 1279-84.

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