4.8 Article

Multi-scale spatial heterogeneity of pectic rhamnogalacturonan I (RG-I) structural features in tobacco seed endosperm cell walls

Journal

PLANT JOURNAL
Volume 75, Issue 6, Pages 1018-1027

Publisher

WILEY-BLACKWELL
DOI: 10.1111/tpj.12263

Keywords

Nicotiana tabacum; seed endosperm; cell wall; rhamnogalacturonan-I; pectin

Categories

Funding

  1. UK Biotechnology & Biological Sciences Research Council [BB/G024898/1]
  2. European Union [263916]
  3. BBSRC [BB/G024898/1] Funding Source: UKRI
  4. Biotechnology and Biological Sciences Research Council [BB/G024898/1] Funding Source: researchfish

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Plant cell walls are complex configurations of polysaccharides that fulfil a diversity of roles during plant growth and development. They also provide sets of biomaterials that are widely exploited in food, fibre and fuel applications. The pectic polysaccharides, which comprise approximately a third of primary cell walls, form complex supramolecular structures with distinct glycan domains. Rhamnogalacturonan I (RG-I) is a highly structurally heterogeneous branched glycan domain within the pectic supramolecule that contains rhamnogalacturonan, arabinan and galactan as structural elements. Heterogeneous RG-I polymers are implicated in generating the mechanical properties of cell walls during cell development and plant growth, but are poorly understood in architectural, biochemical and functional terms. Using specific monoclonal antibodies to the three major RG-I structural elements (arabinan, galactan and the rhamnogalacturonan backbone) for in situ analyses and chromatographic detection analyses, the relative occurrences of RG-I structures were studied within a single tissue: the tobacco seed endosperm. The analyses indicate that the features of the RG-I polymer display spatial heterogeneity at the level of the tissue and the level of single cell walls, and also heterogeneity at the biochemical level. This work has implications for understanding RG-I glycan complexity in the context of cell-wall architectures and in relation to cell-wall functions in cell and tissue development.

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