ƒoƒCƒIƒ}ƒXŒ`‘ԏξ•ρ•ͺ–μ
‚²Π‰ξ
Œ€‹†“ΰ—e
Œ€‹†ŽΊŠΒ‹«
Œ€‹†ŽΊsŽ–
iŠwŒ©ŠwˆΔ“ΰ
‘S‘‹€“―—˜—pŒ€‹†
ήŠΔ’²ΈŽΊ
ƒgƒbƒvƒy[ƒW
ŠO•”ƒŠƒ“ƒN
ƒAƒNƒZƒX
Œ€‹†“ΰ—e ƒgƒsƒbƒNƒX ƒ|ƒXƒhƒN‚Ζ‰@Ά‚ΜŒ€‹†ƒe[ƒ} Žε‚ΘŒ€‹†•ρ
Žε‚ΘŒ€‹†•ρ
2000”N‚ΜŒ€‹†˜_•Ά
[1998] [1999] 2000
[2001] [2002] [2003] [2004] [2005] [2006] [2007] [2008] [2009] [2010]
[2011] [2012] [2013] [2014]
Suzuki, K., Kitamura S., Kato Y. and Itoh T.: Highly substituted glucuronoarabinoxylans (hsGAXs) and low-branched xylans show a distinct localization pattern in the tissues of Zea mays L., Plant & Cell Physiol., 41(8), 948-959 (2000).

Fujino, T., Sone Y., Mitsuishi Y. and Itoh T.: Characterization of cross-links between cellulose microfibrils, and their occurrence during elongation growth in pea epicotyl, Plant &Cell Physiol., 41(4), 486-494 (2000).

Matsumura, H., Sugiyama, J., Glasser, W.G.: Cellulosic nanocomposites. I. Thermally deformable@cellulose hexanoates from heterogeneous reaction. J. Appl. Polym. Sci. 78, 2242-2253 (2000).

Baker, A.A., Helbert, W., Sugiyama, J., Miles, M.J.: New insight into cellulose structure by atomic force microscopy shows the I a crystal phase at near-atomic resolution, Biophys. J. 79, 1139-1145 (2000).

K. Baba, T. Asada, T. Hayashi: Relation between developmental changes on anatomical structure and on protein in differentiating xylem of tension wood. J. Wood Sci., 46, 1-7 (2000).