New Growth-Related Features of Wheat Grain Pericarp Revealed by Synchrotron-Based X-ray Micro-Tomography and 3D Reconstruction
暂无分享,去创建一个
D. Legland | A. Chateigner-Boutin | C. Girousse | Camille Alvarado | Thang Duong Quoc Le | T. D. Q. Le
[1] D. Jayas,et al. Synchrotron tomography applications in agriculture and food sciences research: a review , 2022, Plant methods.
[2] D. Legland,et al. Synchrotron Based X-ray Microtomography Reveals Cellular Morphological Features of Developing Wheat Grain , 2022, Applied Sciences.
[3] I. Chaban,et al. Morphological and Ultrastructural Features of Formation of the Skin of Wheat (Triticum aestivum L.) Kernel , 2021, Plants.
[4] Yi Ren,et al. Development and structure of four different stamens in Clematis macropetala (Ranunculaceae): particular emphasis on staminodes and staminal nectary , 2021, Protoplasma.
[5] M. Devaux,et al. The endosperm cavity of wheat grains contains a highly hydrated gel of arabinoxylan. , 2021, Plant science : an international journal of experimental plant biology.
[6] Yuling Jiao,et al. Epidermal restriction confers robustness to organ shapes. , 2020, Journal of integrative plant biology.
[7] Jaime Herrera,et al. Pericarp growth dynamics associate with final grain weight in wheat under contrasting plant densities and temperature. , 2020, Annals of botany.
[8] Ahui Xu,et al. Comprehensive comparison and applications of different sections in investigating the microstructure and histochemistry of cereal kernels , 2020, Plant Methods.
[9] N. Kunishima,et al. Visualization of internal 3D structure of small live seed on germination by laboratory-based X-ray microscopy with phase contrast computed tomography , 2020, Plant Methods.
[10] N. Provart,et al. The Transcriptional Landscape of Polyploid Wheats and Their Diploid Ancestors during Embryogenesis and Grain Development[OPEN] , 2019, Plant Cell.
[11] D. Legland,et al. Use of X-ray micro computed tomography imaging to analyze the morphology of wheat grain through its development , 2019, Plant Methods.
[12] S. Mooney,et al. Mesophyll porosity is modulated by the presence of functional stomata , 2019, Nature Communications.
[13] B. Bakan,et al. Ferulate and lignin cross-links increase in cell walls of wheat grain outer layers during late development. , 2018, Plant science : an international journal of experimental plant biology.
[14] Marie-Françoise Devaux,et al. Quantitative imaging of plants: multi-scale data for better plant anatomy , 2018, Journal of experimental botany.
[15] U. Baumann,et al. Unfertilized ovary pushes wheat flower open for cross-pollination , 2017, Journal of experimental botany.
[16] D. Calderini,et al. Trade-off between grain weight and grain number in wheat depends on GxE interaction: A case study of an elite CIMMYT panel (CIMCOG) , 2018 .
[17] J. Snape,et al. Increased pericarp cell length underlies a major quantitative trait locus for grain weight in hexaploid wheat. , 2017, The New phytologist.
[18] A. Furtado,et al. New evidence for grain specific C4 photosynthesis in wheat , 2016, Scientific Reports.
[19] C. Hawes,et al. Serial block face scanning electron microscopy and the reconstruction of plant cell membrane systems , 2016, Journal of microscopy.
[20] Françoise Peyrin,et al. Fast virtual histology using X-ray in-line phase tomography: application to the 3D anatomy of maize developing seeds , 2015, Plant Methods.
[21] F. Schreiber,et al. Metabolic Architecture of the Cereal Grain and Its Relevance to Maximize Carbon Use Efficiency1[OPEN] , 2015, Plant Physiology.
[22] P. Shewry,et al. The contribution of wheat to human diet and health , 2015, Food and energy security.
[23] Etienne Belin,et al. Multiscale imaging of plants: current approaches and challenges , 2015, Plant Methods.
[24] Chen Xinyu,et al. Structural development of wheat nutrient transfer tissues and their relationships with filial tissues development , 2015, Protoplasma.
[25] F. Cejudo,et al. Programmed cell death (PCD): an essential process of cereal seed development and germination , 2014, Front. Plant Sci..
[26] J. Thiel. Development of endosperm transfer cells in barley , 2014, Front. Plant Sci..
[27] B. Bakan,et al. The Wheat Grain Contains Pectic Domains Exhibiting Specific Spatial and Development-Associated Distribution , 2014, PloS one.
[28] A. Xiong,et al. Structural and physiological characterization during wheat pericarp development , 2013, Plant Cell Reports.
[29] Johannes E. Schindelin,et al. Fiji: an open-source platform for biological-image analysis , 2012, Nature Methods.
[30] Zhong Wang,et al. Contrast observation and investigation of wheat endosperm transfer cells and nucellar projection transfer cells , 2011, Plant Cell Reports.
[31] J. Verdeil,et al. High-contrast three-dimensional imaging of the Arabidopsis leaf enables the analysis of cell dimensions in the epidermis and mesophyll , 2010, Plant Methods.
[32] Simon Griffiths,et al. A Genetic Framework for Grain Size and Shape Variation in Wheat[C][W] , 2010, Plant Cell.
[33] X. C. Lizana,et al. Expansins expression is associated with grain size dynamics in wheat (Triticum aestivum L.) , 2010, Journal of experimental botany.
[34] Alejandro F Frangi,et al. Computational cardiac atlases: from patient to population and back , 2009, Experimental physiology.
[35] John Runions,et al. High-Resolution Whole-Mount Imaging of Three-Dimensional Tissue Organization and Gene Expression Enables the Study of Phloem Development and Structure in Arabidopsis[W] , 2008, The Plant Cell Online.
[36] K J Niklas,et al. The epidermal-growth-control theory of stem elongation: an old and a new perspective. , 2007, Journal of plant physiology.
[37] Winfriede Weschke,et al. Analysis of barley (Hordeum vulgare) grain development using three-dimensional digital models. , 2007, The Plant journal : for cell and molecular biology.
[38] P. Dayanandan,et al. Structural and histochemical studies on grain-filling in the caryopsis of rice (Oryza sativa L.) , 2003, Journal of Biosciences.
[39] J. Doonan,et al. Three-dimensional modelling of wheat endosperm development. , 2005, The New phytologist.
[40] Philippe Andrey,et al. Free-D: an integrated environment for three-dimensional reconstruction from serial sections , 2005, Journal of Neuroscience Methods.
[41] Jan Flusser,et al. Image registration methods: a survey , 2003, Image Vis. Comput..
[42] W. Stuppy,et al. Three-dimensional analysis of plant structure using high-resolution X-ray computed tomography. , 2003, Trends in plant science.
[43] Tony Evers,et al. Cereal Grain Structure and Development: Some Implications for Quality , 2002 .
[44] W. Werr,et al. Gene expression patterns in the maize caryopsis: clues to decisions in embryo and endosperm development. , 2001, Gene.
[45] Gray,et al. Technical Advance: Confocal measurement of the three-dimensional size and shape of plant parenchyma cells in a developing fruit tissue. , 1999, The Plant journal : for cell and molecular biology.
[46] G. Slafer,et al. Effect of temperature and carpel size during pre-anthesis on potential grain weight in wheat , 1999, The Journal of Agricultural Science.
[47] U. Grenander,et al. Computational anatomy: an emerging discipline , 1998 .
[48] Karl J. Friston,et al. Spatial registration and normalization of images , 1995 .
[49] Y. Pomeranz,et al. Microscopic structure of the wheat grain. , 1988 .
[50] Marshall,et al. Effects of grain shape and size on milling yields in wheat. II: Experimental studies , 1986 .
[51] D. R. Lee,et al. Water loss from the developing caryopsis of wheat (Triticum aestivum) , 1984 .
[52] Marshall,et al. Effects of grain shape and size on milling yields in wheat. I. Theoretical analysis based on simple geometric models , 1984 .
[53] P. Wall,et al. A Quantitative Scale of Spike Initial and Pistil Development in Barley and Wheat , 1983 .
[54] M. Cochrane,et al. Morphology and ultrastructure of immature cereal grains in relation to transport. , 1979 .
[55] Henry Fuchs,et al. Optimal surface reconstruction from planar contours , 1977, CACM.
[56] I. N. Morrison. The Structure of the Chlorophyll-Containing Cross Cells and Tube Cells of the Inner Pericarp of Wheat During Grain Development , 1976, Botanical Gazette.
[57] I. M. Cull,et al. Structure of the mature wheat kernel. I. Gross anatomy and relationships of parts , 1956 .
[58] THE AMERICAN ASSOCIATION OF CEREAL CHEMISTS. , 1942, Science.