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- W4315783959 abstract "Abstract Microalgae are a renewable and promising biomass for large-scale biofuel, food and nutrient production. However, their efficient exploitation depends on our knowledge of the cell wall composition and organization as it can limit access to high-value molecules. Here we provide an atomic-level model of the non-crystalline and insoluble glycoprotein-rich cell wall of Chlamydomonas reinhardtii . Using in situ solid-state and sensitivity-enhanced nuclear magnetic resonance, we reveal unprecedented details on the protein and carbohydrate composition and their nanoscale heterogeneity, as well as the presence of spatially segregated protein- and glycan-rich regions with different dynamics and hydration levels. We show that mannose-rich lower-molecular-weight proteins contribute to the cell wall cohesion by crosslinking high-molecular weight protein components, and that water provides plasticity to the cell-wall architecture. The methodology used here is transposable to study other microorganisms and plant materials – including those rich in cellulose – and their responses to contaminants and stresses." @default.
- W4315783959 created "2023-01-13" @default.
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- W4315783959 date "2023-01-12" @default.
- W4315783959 modified "2023-10-01" @default.
- W4315783959 title "Molecular-Level Architecture of Chlamydomonas reinhardtii’s Glycoprotein-Rich Cell Wall" @default.
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- W4315783959 doi "https://doi.org/10.21203/rs.3.rs-2371207/v1" @default.
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