biology and biotechnology

(やまだぃちぅ) #1

BRIC- 16 Kwon T, Sparks JA, Nakashima J, Allen SN, Tang
Y, Blancaflor E. Transcriptional response of
Arabidopsis seedlings during spaceflight reveals
peroxidase and cell wall remodeling genes
associated with root hair development.
American Journal of Botany. January 1,
2015;102:21-35. doi: 10.3732/ajb.1400458.


NASA


BRIC- 16 Zupanska AK, Denison FD, Ferl RJ, Paul A.
Spaceflight engages heat shock protein and
other molecular chaperone genes in tissue
culture cells of Arabidopsis thaliana. American
Journal of Botany. 2013;100(1):235-248. doi:
10.3732/ajb.1200343.


NASA


BRIC- 16 Paul A, Zupanska AK, Ostrow DT, et al.
Spaceflight Transcriptomes: Unique responses
to a novel environment. Astrobiology. January
2012;12(1):40-56. doi: 10.1089/ast.2011.0696.


NASA


BRIC- 16 Millar KD, Johnson CM, Edelmann RE, Kiss JZ. An
endogenous growth pattern of roots is revealed
in seedlings grown in microgravity.
Astrobiology. October 2011;787-797(8):1-12.
doi: 10.1089/ast.2011.0699.


NASA


Cell Wall Kamada M, Omori K, Nishitani K, et al.
Germination and growth test in four strains of
Arabidopsis thaliana in the reference model of
European Modular Cultivation System. Japan
Society of Microgravity Application.
2009;26(3):249-254.


JAXA


Cell Wall Koizumi K, Yokoyama R, Nishitani K. Mechanical
load induces upregulation of transcripts for a
set of genes implicated in secondary wall
formation in the supporting tissue of
Arabidopsis thaliana. Journal of Plant Research.
July 7, 2009;122(6):651-659. doi:
10.1007/s10265- 009 - 0251 - 7.


JAXA


Cell Wall Nishitani K, Yokoyama R, Koizumi K. Cell wall-
related genes involved in supporting tissue
formation and transcriptional regulation in
Arabidopsis thaliana. Biological Sciences in
Space. 2009;23(3):121-129.


JAXA

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