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The synthesis of xyloglucan, an abundant plant cell wall polysaccharide, requires CSLC function

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dc.contributor.author Chandrasekar, Balakumaran
dc.date.accessioned 2021-09-09T03:20:18Z
dc.date.available 2021-09-09T03:20:18Z
dc.date.issued 2020-08-18
dc.identifier.uri https://www.pnas.org/content/117/33/20316
dc.identifier.uri http://dspace.bits-pilani.ac.in:8080/xmlui/handle/123456789/1941
dc.description.abstract Xyloglucan (XyG) is an abundant component of the primary cell walls of most plants. While the structure of XyG has been well studied, much remains to be learned about its biosynthesis. Here we employed reverse genetics to investigate the role of Arabidopsis cellulose synthase like-C (CSLC) proteins in XyG biosynthesis. We found that single mutants containing a T-DNA in each of the five Arabidopsis CSLC genes had normal levels of XyG. However, higher-order cslc mutants had significantly reduced XyG levels, and a mutant with disruptions in all five CSLC genes had no detectable XyG. The higher-order mutants grew with mild tissue-specific phenotypes. Despite the apparent lack of XyG, the cslc quintuple mutant did not display significant alteration of gene expression at the whole-genome level, excluding transcriptional compensation. The quintuple mutant could be complemented by each of the five CSLC genes, supporting the conclusion that each of them encodes a XyG glucan synthase. Phylogenetic analyses indicated that the CSLC genes are widespread in the plant kingdom and evolved from an ancient family. These results establish the role of the CSLC genes in XyG biosynthesis, and the mutants described here provide valuable tools with which to study both the molecular details of XyG biosynthesis and the role of XyG in plant cell wall structure and function. en_US
dc.publisher PNAS en_US
dc.subject Biology en_US
dc.subject Arabidopsis en_US
dc.subject Cell wall en_US
dc.subject Xyloglucan en_US
dc.subject Glucan synthase en_US
dc.subject CSLC en_US
dc.title The synthesis of xyloglucan, an abundant plant cell wall polysaccharide, requires CSLC function en_US
dc.type Article en_US


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