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Astrobiology|March 26, 2020
Microgravity Affects the Level of Matrix Polysaccharide 1,3:1,4-β-Glucans in Cell Walls of Rice Shoots by Increasing the Expression Level of a Gene Involved in Their BreakdownKazuyuki Wakabayashi, Kouichi Soga, Takayuki Hoson, et al.Journal of Radiation Research|March 1, 2012
Expression of p53-regulated proteins in human cultured lymphoblastoid TSCE5 and WTK1 cell lines during spaceflightAkihisa Takahashi, Hiromi Suzuki, Katsunori Omori, et al.NPJ Microgravity|June 23, 2020
Characterization of amyloid β fibril formation under microgravity conditionsMaho Yagi-Utsumi, Saeko Yanaka, Chihong Song, et al.Uchu Seibutsu Kagaku|May 12, 2004
Optical microscopy of Arabidopsis seedlings fixed in non-fresh FAA using Kennedy Fixation TubesYoshihiro Honma, Izumi Nakabayashi, Daisuke Tamaoki, et al.Uchu Seibutsu Kagaku|August 25, 2005
Short-term hypergravity does not affect protein-ubiquitination and proliferation in rat L6 myoblastic cellsKatsuya Hirasaka, Takeshi Nikawa, Yuki Asanoma, et al.International Journal of Radiation Oncology, Biology, Physics|August 24, 2010
p53-dependent adaptive responses in human cells exposed to space radiationsAkihisa Takahashi, Xiaoming Su, Hiromi Suzuki, et al.Physiologia Plantarum|June 3, 2017
Persistence of plant hormone levels in rice shoots grown under microgravity conditions in space: its relationship to maintenance of shoot growthKazuyuki Wakabayashi, Kouichi Soga, Takayuki Hoson, et al.Life Sciences in Space Research|July 29, 2020
Microarray profile of gene expression in etiolated Pisum sativum seedlings grown under microgravity conditions in space: Relevance to the International Space Station experiment "Auxin Transport"Motoshi Kamada, Mariko Oka, Kensuke Miyamoto, et al.Life Sciences in Space Research|February 25, 2019
Polar auxin transport is essential to maintain growth and development of etiolated pea and maize seedlings grown under 1 g conditions: Relevance to the international space station experimentKensuke Miyamoto, Akinori Inui, Eiji Uheda, et al.Microscopy (Oxford, England)|July 15, 2021
Visualization of Arabidopsis root system architecture in 3D by refraction-contrast X-ray micro-computed tomographyTomofumi Kurogane, Daisuke Tamaoki, Sachiko Yano, et al.Pageof 5