Monitoring Meso-Scale Ordering of Cellulose in Intact Plant Cell Walls Using Sum Frequency Generation Spectroscopy1[C][W][OPEN]
暂无分享,去创建一个
Bon-Wook Koo | Yong Bum Park | Sunkyu Park | Bon-wook Koo | Y. Park | D. Cosgrove | Sunkyu Park | Christopher M. Lee | Seong H. Kim | Daniel J Cosgrove | Christopher M Lee | Seong H Kim
[1] Chris Somerville,et al. Cellulose synthesis in higher plants. , 2006, Annual review of cell and developmental biology.
[2] Daniel J. Cosgrove,et al. Comparative structure and biomechanics of plant primary and secondary cell walls , 2012, Front. Plant Sci..
[3] N. Carpita,et al. A rapid method to screen for cell-wall mutants using discriminant analysis of Fourier transform infrared spectra. , 1998, The Plant journal : for cell and molecular biology.
[4] Paul Langan,et al. Crystal structure and hydrogen-bonding system in cellulose Ibeta from synchrotron X-ray and neutron fiber diffraction. , 2002, Journal of the American Chemical Society.
[5] Mark F. Davis,et al. Measuring the crystallinity index of cellulose by solid state 13C nuclear magnetic resonance , 2009 .
[6] Yong Bum Park,et al. Selective detection of crystalline cellulose in plant cell walls with sum-frequency-generation (SFG) vibration spectroscopy. , 2011, Biomacromolecules.
[7] K. A. Gilles,et al. COLORIMETRIC METHOD FOR DETER-MINATION OF SUGAR AND RELATED SUBSTANCE , 1956 .
[8] S. Turner,et al. ARABIDOPSIS : A RICH HARVEST 10 YEARS AFTER COMPLETION OF THE GENOME SEQUENCE Arabidopsis – a powerful model system for plant cell wall research , 2010 .
[9] S. Turner,et al. Interactions among three distinct CesA proteins essential for cellulose synthesis , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[10] Todd Richmond,et al. Higher plant cellulose synthases , 2000, Genome Biology.
[11] R. Reiner,et al. Cellulose I crystallinity determination using FT–Raman spectroscopy: univariate and multivariate methods , 2010 .
[12] M. Vignon,et al. Arabinan-cellulose composite in Opuntia ficus-indica prickly pear spines. , 2004, Carbohydrate research.
[13] Monika S. Doblin,et al. Cellulose biosynthesis in plants: from genes to rosettes. , 2002, Plant & cell physiology.
[14] S. S. Townsend,et al. Phase Matching considerations in Second Harmonic Generation from tissues: Effects on emission directionality, conversion efficiency and observed morphology. , 2008, Optics communications.
[15] D. Cosgrove. Growth of the plant cell wall , 2005, Nature Reviews Molecular Cell Biology.
[16] J. Estevez,et al. Cellulose microfibril crystallinity is reduced by mutating C-terminal transmembrane region residues CESA1A903V and CESA3T942I of cellulose synthase , 2012, Proceedings of the National Academy of Sciences of the United States of America.
[17] R. Zhong,et al. A Battery of Transcription Factors Involved in the Regulation of Secondary Cell Wall Biosynthesis in Arabidopsis , 2008, The Plant Cell Online.
[18] Markus Pauly,et al. Cell-wall carbohydrates and their modification as a resource for biofuels. , 2008, The Plant journal : for cell and molecular biology.
[19] William F. Murphy,et al. Isolated C–H stretching vibrations of n‐alkanes: Assignments and relation to structure , 1984 .
[20] C. Kennedy,et al. Microfibril diameter in celery collenchyma cellulose: X-ray scattering and NMR evidence , 2007 .
[21] David K. Johnson,et al. Cellulose polymorphism study with sum-frequency-generation (SFG) vibration spectroscopy: identification of exocyclic CH2OH conformation and chain orientation , 2013, Cellulose.
[22] Luguang Wu,et al. A xylem-specific cellulose synthase gene from aspen (Populus tremuloides) is responsive to mechanical stress. , 2000, The Plant journal : for cell and molecular biology.
[23] Y. Shen,et al. Surface properties probed by second-harmonic and sum-frequency generation , 1989, Nature.
[24] D. Updegraff. Semimicro determination of cellulose in biological materials. , 1969, Analytical biochemistry.
[25] J. Kubicki,et al. Sum-frequency-generation vibration spectroscopy and density functional theory calculations with dispersion corrections (DFT-D2) for cellulose Iα and Iβ. , 2013, The journal of physical chemistry. B.
[26] V. T. Forsyth,et al. Structure of Cellulose Microfibrils in Primary Cell Walls from Collenchyma1[C][W][OA] , 2012, Plant Physiology.
[27] N. Tuan,et al. Sum Frequency Generation Microscopy Study of Cellulose Fibers , 2011, Applied spectroscopy.
[28] D. Gray,et al. Atomic force microscopy and transmission electron microscopy of cellulose from Micrasterias denticulata; evidence for a chiral helical microfibril twist , 1997, Cellulose.
[29] F. Skoog,et al. A revised medium for rapid growth and bio assays with tobacco tissue cultures , 1962 .
[30] Bryan Bals,et al. Evaluation of ammonia fibre expansion (AFEX) pretreatment for enzymatic hydrolysis of switchgrass harvested in different seasons and locations , 2010, Biotechnology for biofuels.
[31] M. Pauly,et al. Comprehensive Compositional Analysis of Plant Cell Walls (Lignocellulosic biomass) Part II: Carbohydrates , 2010, Journal of visualized experiments : JoVE.
[32] Michael E Himmel,et al. Cellulose crystallinity index: measurement techniques and their impact on interpreting cellulase performance , 2010, Biotechnology for biofuels.
[33] Y. Miyauchi,et al. Selective observation of starch in a water plant using optical sum-frequency microscopy. , 2006, Journal of the Optical Society of America. A, Optics, image science, and vision.
[34] Maureen C. McCann,et al. Direct visualization of cross-links in the primary plant cell wall , 1990 .
[35] Yong Bum Park,et al. Quantification of crystalline cellulose in lignocellulosic biomass using sum frequency generation (SFG) vibration spectroscopy and comparison with other analytical methods. , 2012, Carbohydrate polymers.
[36] J. O. Baker,et al. How Does Plant Cell Wall Nanoscale Architecture Correlate with Enzymatic Digestibility? , 2012, Science.
[37] S. Turner,et al. Multiple Cellulose Synthase Catalytic Subunits Are Required for Cellulose Synthesis in Arabidopsis , 2000, Plant Cell.
[38] Zhan Chen,et al. Studies of polymer surfaces by sum frequency generation vibrational spectroscopy. , 2002, Annual review of physical chemistry.
[39] Markus Pauly,et al. Comprehensive Compositional Analysis of Plant Cell Walls (Lignocellulosic biomass) Part I: Lignin , 2010, Journal of visualized experiments : JoVE.
[40] R. Atalla,et al. Native Cellulose: A Composite of Two Distinct Crystalline Forms , 1984, Science.
[41] B. Muller,et al. Characterization of the Cell-Wall Polysaccharides of Arabidopsis thaliana Leaves , 1995, Plant physiology.
[42] V. T. Forsyth,et al. Nanostructure of cellulose microfibrils in spruce wood , 2011, Proceedings of the National Academy of Sciences.
[43] C. Somerville,et al. Collapsed xylem phenotype of Arabidopsis identifies mutants deficient in cellulose deposition in the secondary cell wall. , 1997, The Plant cell.
[44] Mark Stitt,et al. Circadian control of carbohydrate availability for growth in Arabidopsis plants at night , 2010, Proceedings of the National Academy of Sciences.