Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
LSM-W 2 : Laser scanning microscopy worker for wheat leaf surface morphology. / Zubairova, Ulyana S.; Verman, Pavel Yu; Oshchepkova, Polina A. и др.
в: BMC Systems Biology, Том 13, № Suppl 1, 22, 05.03.2019, стр. 22.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
}
TY - JOUR
T1 - LSM-W 2
T2 - Laser scanning microscopy worker for wheat leaf surface morphology
AU - Zubairova, Ulyana S.
AU - Verman, Pavel Yu
AU - Oshchepkova, Polina A.
AU - Elsukova, Alina S.
AU - Doroshkov, Alexey V.
N1 - Publisher Copyright: © 2019 The Author(s).
PY - 2019/3/5
Y1 - 2019/3/5
N2 - Background: Microscopic images are widely used in plant biology as an essential source of information on morphometric characteristics of the cells and the topological characteristics of cellular tissue pattern due to modern computer vision algorithms. High-resolution 3D confocal images allow extracting quantitative characteristics describing the cell structure of leaf epidermis. For some issues in the study of cereal leaves development, it is required to apply the staining techniques with fluorescent dyes and to scan rather large fragments consisting of several frames. We aimed to develop a tool for processing multi-frame multi-channel 3D images obtained from confocal laser scanning microscopy and taking into account the peculiarities of the cereal leaves staining. Results: We elaborated an ImageJ-plugin LSM-W 2 that allows extracting data on Leaf Surface Morphology from Laser Scanning Microscopy images. The plugin is a crucial link in a workflow for obtaining data on structural properties of leaf epidermis and morphological properties of epidermal cells. It allows converting large lsm-files (laser scanning microscopy) into segmented 2D/3D images or tables with data on cells and/or nuclei sizes. In the article, we also represent some case studies showing the plugin application for solving biological tasks. Namely the plugin is applied in the following cases: defining parameters of jigsaw-puzzle pattern for maize leaf epidermal cells, analysis of the pavement cells morphological parameters for the mature wheat leaf grown under control and water deficit conditions, initiation of cell longitudinal rows, and detection of guard mother cells emergence at the initial stages of the stomatal morphogenesis in the growth zone of a wheat leaf. Conclusion: The proposed plugin is efficient for high-throughput analysis of cellular architecture for cereal leaf epidermis. The workflow implies using inexpensive and rapid sample preparation and does not require the applying of transgenesis and reporter genetic structures expanding the range of species and varieties to study. Obtained characteristics of the cell structure and patterns further could act as a basis for the development and verification for spatial models of plant tissues formation mechanisms accounting for structural features of cereal leaves. Availability: The implementation of this workflow is available as an ImageJ plugin distributed as a part of the Fiji project (FijiisjustImageJ: https://fiji.sc/). The plugin is freely available at https://imagej.net/LSM-Worker, https://github.com/JmanJ/LSM-Worker and http://pixie.bionet.nsc.ru/LSM-WORKER/.
AB - Background: Microscopic images are widely used in plant biology as an essential source of information on morphometric characteristics of the cells and the topological characteristics of cellular tissue pattern due to modern computer vision algorithms. High-resolution 3D confocal images allow extracting quantitative characteristics describing the cell structure of leaf epidermis. For some issues in the study of cereal leaves development, it is required to apply the staining techniques with fluorescent dyes and to scan rather large fragments consisting of several frames. We aimed to develop a tool for processing multi-frame multi-channel 3D images obtained from confocal laser scanning microscopy and taking into account the peculiarities of the cereal leaves staining. Results: We elaborated an ImageJ-plugin LSM-W 2 that allows extracting data on Leaf Surface Morphology from Laser Scanning Microscopy images. The plugin is a crucial link in a workflow for obtaining data on structural properties of leaf epidermis and morphological properties of epidermal cells. It allows converting large lsm-files (laser scanning microscopy) into segmented 2D/3D images or tables with data on cells and/or nuclei sizes. In the article, we also represent some case studies showing the plugin application for solving biological tasks. Namely the plugin is applied in the following cases: defining parameters of jigsaw-puzzle pattern for maize leaf epidermal cells, analysis of the pavement cells morphological parameters for the mature wheat leaf grown under control and water deficit conditions, initiation of cell longitudinal rows, and detection of guard mother cells emergence at the initial stages of the stomatal morphogenesis in the growth zone of a wheat leaf. Conclusion: The proposed plugin is efficient for high-throughput analysis of cellular architecture for cereal leaf epidermis. The workflow implies using inexpensive and rapid sample preparation and does not require the applying of transgenesis and reporter genetic structures expanding the range of species and varieties to study. Obtained characteristics of the cell structure and patterns further could act as a basis for the development and verification for spatial models of plant tissues formation mechanisms accounting for structural features of cereal leaves. Availability: The implementation of this workflow is available as an ImageJ plugin distributed as a part of the Fiji project (FijiisjustImageJ: https://fiji.sc/). The plugin is freely available at https://imagej.net/LSM-Worker, https://github.com/JmanJ/LSM-Worker and http://pixie.bionet.nsc.ru/LSM-WORKER/.
KW - Cereals
KW - Confocal laser scanning microscopy
KW - Growth zone
KW - Image processing
KW - ImageJ plugin
KW - Leaf epidermal pattern
KW - Pavement cells
KW - stomata
KW - ARABIDOPSIS-THALIANA
KW - L.
KW - STOMATAL DEVELOPMENT
KW - DROUGHT STRESS
KW - MOUTHS
KW - EVOLUTION
KW - PATTERN
UR - http://www.scopus.com/inward/record.url?scp=85062538417&partnerID=8YFLogxK
U2 - 10.1186/s12918-019-0689-8
DO - 10.1186/s12918-019-0689-8
M3 - Article
C2 - 30836965
AN - SCOPUS:85062538417
VL - 13
SP - 22
JO - BMC Systems Biology
JF - BMC Systems Biology
SN - 1752-0509
IS - Suppl 1
M1 - 22
ER -
ID: 18816976