Quantitative analyses of the plant cytoskeleton reveal underlying organizational principles.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 24920110.
- Also identified by DOI 10.1098/rsif.2014.0362 and PMC identifier 4208369.
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Abstract
The actin and microtubule (MT) cytoskeletons are vital structures for cell growth and development across all species. While individual molecular mechanisms underpinning actin and MT dynamics have been intensively studied, principles that govern the cytoskeleton organization remain largely unexplored. Here, we captured biologically relevant characteristics of the plant cytoskeleton through a network-driven imaging-based approach allowing us to quantitatively assess dynamic features of the cytoskeleton. By introducing suitable null models, we demonstrate that the plant cytoskeletal networks exhibit properties required for efficient transport, namely, short average path lengths and high robustness. We further show that these advantageous features are maintained during temporal cytoskeletal rearrangements. Interestingly, man-made transportation networks exhibit similar properties, suggesting general laws of network organization supporting diverse transport processes. The proposed network-driven analysis can be readily used to identify organizational principles of cytoskeletons in other organisms.
Medical subject headings
- Actin Cytoskeleton
- Arabidopsis
- Microtubules
- Models, Biological