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Mutte, S. K.

Publications and source records attributed to Mutte, S. K..

2 recordsLinked to original sources

Distinct subcellular localizations of DUF1218 proteins in Marchantia polymorpha and Nicotiana benthamiana reveal two different plasmodesmata-targeting mechanisms

Plasmodesmata are membrane-lined channels connecting plant cells to facilitate intercellular transport of molecules. Although many plasmodesmata-localized proteins have evolved throughout plant evolution, whether they use a conserved targeting system remains unclear. In the bryophyte Marchantia polymorpha, we identified two DUF1218-domain proteins homologous to the Arabidopsis plasmodesmata-localized AtTVA. When ectopically expressed, MpDUF1218-1 localized to plasmodesmata in both Nicotiana benthamiana and M. polymorpha, whereas MpDUF1218-2 formed cytoplasmic puncta in both species. Unexpectedly, AtTVA formed cytoplasmic puncta rather than localizing to plasmodesmata in M. polymorpha. Domain-swap analyses revealed that the first helix of MpDUF1218-1 is crucial for plasmodesmata localization in N. benthamiana, while the first two helices are required in M. polymorpha. In contrast, the second and third helices of AtTVA contribute to its plasmodesmata localization in N. benthamiana. Further domain dissection indicated that other regions of MpDUF1218-1 also contribute to accurate targeting by regulating its distribution among the ER, cytoplasmic puncta, and plasma membrane. Together, our findings suggest that MpDUF1218-1 is targeted by a mechanism shared between the two species, whereas AtTVA relies on a distinct mechanism present in N. benthamiana but absent in M. polymorpha, suggesting the emergence of alternative plasmodesmata-targeting pathways during land plant evolution.

plant biology↗

Assessment of infant outgrowth of cow's milk allergy in relation to the faecal microbiome and metaproteome

Previous studies provide evidence for an association between modifications of the gut microbiota in early life and the development of food allergies. We studied the faecal microbiota composition (16S rRNA gene amplicon sequencing) and faecal microbiome functionality (metaproteomics) in a cohort of 40 infants diagnosed with cows milk allergy (CMA) when entering the study. Some of the infants showed outgrowth of CMA after 12 months, while others did not. Faecal microbiota composition of infants was analysed directly after CMA diagnosis (baseline) as well as 6 and 12 months after entering the study. The aim was to gain insight on gut microbiome parameters in relation to outgrowth of CMA. The results of this study show that microbiome differences related to outgrowth of CMA can be mainly identified at the taxonomic level of the 16S rRNA gene, and to a lesser extent at the protein-based microbial taxonomy and functional protein level. At the 16S rRNA gene level outgrowth of CMA is characterized by lower relative abundance of Lachnospiraceae at baseline and lower Bacteroidaceae at visit 12 months.

microbiology↗