Identification of an algal xylan synthase indicates that there is functional orthology between algal and plant cell wall biosynthesis
Summary Insights into the evolution of plant cell walls have important implications for comprehending these diverse and abundant biological structures. In order to understand the evolving structure–function relationships of the plant cell wall, it is imperative to trace the origin of its different...
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Veröffentlicht in: | The New phytologist 2018-02, Vol.218 (3) |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Summary
Insights into the evolution of plant cell walls have important implications for comprehending these diverse and abundant biological structures. In order to understand the evolving structure–function relationships of the plant cell wall, it is imperative to trace the origin of its different components.
The present study is focused on plant 1,4‐β‐xylan, tracing its evolutionary origin by genome and transcriptome mining followed by phylogenetic analysis, utilizing a large selection of plants and algae. It substantiates the findings by heterologous expression and biochemical characterization of a charophyte alga xylan synthase.
Of the 12 known gene classes involved in 1,4‐β‐xylan formation,
XYS
1/
IRX
10 in plants,
IRX
7,
IRX
8,
IRX
9,
IRX
14 and
GUX
occurred for the first time in charophyte algae. An
XYS
1/
IRX
10 ortholog from
Klebsormidium flaccidum
, designated
K. flaccidum
XYLAN SYNTHASE
‐1 (
Kf
XYS
1), possesses 1,4‐β‐xylan synthase activity, and 1,4‐β‐xylan occurs in the
K. flaccidum
cell wall.
These data suggest that plant 1,4‐β‐xylan originated in charophytes and shed light on the origin of one of the key cell wall innovations to occur in charophyte algae, facilitating terrestrialization and emergence of polysaccharide‐based plant cell walls. |
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ISSN: | 0028-646X 1469-8137 |