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Rastogi, L.

Publications and source records attributed to Rastogi, L..

2 recordsLinked to original sources

The role of MYB46 in modulating polysaccharide acetylation by mediating the transcriptional regulation of cell wall-related genes in Arabidopsis

Understanding the mechanism behind the transcriptional regulation of polysaccharide O-acetylation remains a key challenge that might be regulated through transcription factors. Our earlier work revealed the upregulation of AtGELP7 in MYB46 overexpression lines, prompting us to investigate how MYB46 transcriptionally controls AtGELP7 including other cell wall acetylation pathway genes in Arabidopsis. In MYB46 overexpression lines, we observed alteration in acetylation levels on xylan, xyloglucan and pectin in different tissue types, which suggests complex and tight regulation of acetylation homeostasis in the cell wall. Further, our transcriptomic data revealed the simultaneous upregulation of both AtGELP7 (acetyl xylan esterase) and xylan-specific TBLs (xylan O-acetyltransferases) indicating sophisticated regulation of cell wall acetylation homeostasis. Using transactivation studies in Nicotiana and pAtGELP7::GUS stable lines, we found that MYB46 enhances AtGELP7 expression probably through downstream regulators which could be either MYB103 or other MYBs. In addition, extensive cell wall analysis of MYB46 overexpression lines showed differential sugar distribution, preferably to major cell wall components such as cellulose, xyloglucan, and xylan across different tissue types of different developmental stages. Moreover, the integration of RNA-sequencing and ChIP-sequencing data uncovered previously unknown, novel probable direct gene targets of MYB46 that may be involved in polysaccharide acetylation and cell wall remodeling.

plant biology↗

Arabidopsis AtGELP53 modulates polysaccharide acetylation and defense response through oligosaccharide-mediated signaling

O-acetylation is a crucial substitution found in hemicelluloses and pectin which are necessary for maintaining the flexibility and structural integrity of the cell. A balanced polysaccharide O-acetylation level is maintained by cell wall acetyl transferases and esterases present in different cell organelles. Specifically, the role of esterases in cell wall acetylation metabolism is less explored. Therefore, we investigated the role of AtGELP53 from the GELP family of esterases or lipases. Here, we show that AtGELP53 is localized in the plasma membrane. Analysis of AtGELP53 overexpressing independent transgenic lines revealed a decrease in xyloglucan acetylation, changes in other polysaccharide acetylation and alteration in cell wall composition. The series of elicitor-based, transcriptomic and proteomic analyses in AtGELP53 overexpressing lines suggested that oligosaccharide-mediated signalling activates the cell wall and defence-related genes primarily because of xyloglucan deacetylation. Furthermore, AtGELP53 overexpression plants showed resistance against Pseudomonas syringae and Ralstonia solanacearum through activation of elicitor-mediated defense response. Overall, our findings outline the role of AtGELP53 in polysaccharide acetylation, cell wall remodelling and defense through the activation of plant cell wall integrity.

plant biology↗