Arabidopsis an atlas of morphology and development pdf

Posted on Wednesday, March 31, 2021 12:39:17 PM Posted by Ferdinando C. - 31.03.2021 and pdf, the pdf 1 Comments

arabidopsis an atlas of morphology and development pdf

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Proteomic and transcriptomic profiling of aerial organ development in Arabidopsis

Skip to search form Skip to main content You are currently offline. Some features of the site may not work correctly. DOI: Bowman Published Biology. This is the first atlas to document the morphology and development of Arabidopsis thaliana, the small flowering plant which emerged during the 's as the primary model for research in the surging field of plant biology.

Arabidopsis : an atlas of morphology and development

A fundamental question in biology is how morphogenesis integrates the multitude of processes that act at different scales, ranging from the molecular control of gene expression to cellular coordination in a tissue. Using machine-learning-based digital image analysis, we generated a three-dimensional atlas of ovule development in Arabidopsis thaliana , enabling the quantitative spatio-temporal analysis of cellular and gene expression patterns with cell and tissue resolution. We discovered novel morphological manifestations of ovule polarity, a new mode of cell layer formation, and previously unrecognized subepidermal cell populations that initiate ovule curvature. Our work demonstrates the analytical power of a three-dimensional digital representation when studying the morphogenesis of an organ of complex architecture that eventually consists of cells. How organs attain their species-specific size and shape in a reproducible manner is an important question in biology. Tissue morphogenesis constitutes a multi-scale process that occurs in three dimensions 3D.


It seems that you're in Germany. We have a dedicated site for Germany. The recent application of molecular genetics to problems of developmental biology has provided us with greater insight into the molecular mechanisms by which cells determine their developmental fate. This is particularly evident in the recent progress in understanding of developmental processes in model animal systems such as Drosophila melanogaster and Caenorhabditis elegans.

This atlas documents the morphology and development of Arabidopsis thaliana, a small flowering plant which emerged during the s as a primary model for research in the field of plant biology. It covers embryogenesis, vegetative and root growth, reproduction and host-pathogen interaction. Read more Please choose whether or not you want other users to be able to see on your profile that this library is a favorite of yours. Finding libraries that hold this item

Protocol DOI: Scanning Electron Microscopy SEM allows the morphological characterization of the surface features of floral and inflorescence structures in a manner that retains the topography or three-dimensional appearance of the structure. Even at relatively. Even at relatively low magnification levels it is possible to characterize early developmental stages.

Arabidopsis: An Atlas of Morphology and Development


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Thank you for visiting nature. You are using a browser version with limited support for CSS. To obtain the best experience, we recommend you use a more up to date browser or turn off compatibility mode in Internet Explorer. In the meantime, to ensure continued support, we are displaying the site without styles and JavaScript. Plant growth and development are regulated by a tightly controlled interplay between cell division, cell expansion and cell differentiation during the entire plant life cycle from seed germination to maturity and seed propagation. With this exploratory multi-omics dataset, development dynamics of photosynthetic tissues can be investigated from different angles.

Metrics details. The formation of flowers is one of the main model systems to elucidate the molecular mechanisms that control developmental processes in plants. Although several studies have explored gene expression during flower development in the model plant Arabidopsis thaliana on a genome-wide scale, a continuous series of expression data from the earliest floral stages until maturation has been lacking. Here, we used a floral induction system to close this information gap and to generate a reference dataset for stage-specific gene expression during flower formation. Using a floral induction system, we collected floral buds at 14 different stages from the time of initiation until maturation. Using whole-genome microarray analysis, we identified 7, genes that exhibit rapid expression changes during flower development.


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