biology and biotechnology

(やまだぃちぅ) #1

Cell Wall Kamada M, Omori K, Nishitani K, Hoson T,
Shimazu T, Ishioka N. JAXA space plant research
on the ISS with European Modular Cultivation
System. Biological Sciences in Space.
2007;21(3):62-66. doi: 10.2187/bss.21.62.


JAXA


Cell Wall Koizumi K, Yokoyama R, Kamada M, et al.
Reverse genetic approach to exploring genes
responsible for cell-wall dynamics in supporting
tissues of Arabidopsis thaliana under
microgravity conditions. Biological Sciences in
Space. 2007;21(3):48-55. doi:
10.2187/bss.21.48.


JAXA


Ferulate Wakabayashi K, Soga K, Hoson T. Phenylalanine
ammonia-lyase and cell wall peroxidase are
cooperatively involved in the extensive
formation of ferulate network in cell walls of
developing rice shoots. Journal of Plant
Physiology. February 2012;169(3):262-267. doi:
10.1016/j.jplph.2011.10.002.


JAXA


Ferulate Wakabayashi K, Soga K, Hoson T. Cell wall
oxalate oxidase modifies the ferulate
metabolism in cell walls of wheat shoots.
Journal of Plant Physiology. November
2011;168(16):1997-2000. doi:
10.1016/j.jplph.2011.05.010.


JAXA


Genara-A Mazars C, Briere C, Grat S, et al. Microgravity
induces changes in microsome-associated
proteins of Arabidopsis seedlings grown on
board the International Space Station. PLOS
ONE. March 11, 2014;9(3):e91814. doi:
10.1371/journal.pone.0091814.


ESA


Genara-A Valbuena MA, Manzano AI, van Loon JJ, et al.
Auxin transport and ribosome biogenesis
mutant/reporter lines to study plant cell growth
and proliferation under altered gravity. The
Joint Life Science Symposium, Aberdeen, United
Kingdom; June 18-22, 2012.


ESA


Genara-A Manzano AI, Matia I, Gonzalez-Camacho F, et al.
Germination of arabidopsis seed in space and in
simulated microgravity: Alterations in root cell
growth and proliferation. Microgravity Science
and Technology. 2009;21(4):293-297.


ESA

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