Deciphering contributions of specific cell types to organ function is experimentally challenging. The Drosophila midgut is a dynamic organ with five morphologically and functionally distinct regions (R1-R5), each composed of multipotent intestinal stem cells (ISCs), progenitor enteroblasts (EBs), enteroendocrine cells (EEs), enterocytes (ECs), and visceral muscle (VM). To characterize cellular specialization and regional function in this organ, we generated RNA-sequencing transcriptomes of all five cell types isolated by FACS from each of the five regions, R1-R5. In doing so, we identify transcriptional diversities among cell types and document regional differences within each cell type that define further specialization. We validate cell-s...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...
AbstractAdult intestinal tissues, exposed to the external environment, play important roles includin...
Tissue homeostasis in the adult Drosophila melanogaster intestine is maintained by controlling the p...
SummaryDeciphering contributions of specific cell types to organ function is experimentally challeng...
Deciphering contributions of specific cell types to organ function is experimentally challenging. Th...
Deciphering contributions of specific cell types to organ function is experimentally challenging. Th...
Many organs consist of distinct subregions with specialized physiological roles, but how regional bo...
SummaryAlthough the gut is a central organ of Eumetazoans and is essential for organismal health, ou...
Abstract The Drosophila midgut is maintained throughout its length by superficially similar, multipo...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
Although the gut is a central organ of Eumetazoans and is essential for organismal health, our under...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
The precise and systematic digestion and subsequent absorption of nutrients in food is vitally impor...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...
AbstractAdult intestinal tissues, exposed to the external environment, play important roles includin...
Tissue homeostasis in the adult Drosophila melanogaster intestine is maintained by controlling the p...
SummaryDeciphering contributions of specific cell types to organ function is experimentally challeng...
Deciphering contributions of specific cell types to organ function is experimentally challenging. Th...
Deciphering contributions of specific cell types to organ function is experimentally challenging. Th...
Many organs consist of distinct subregions with specialized physiological roles, but how regional bo...
SummaryAlthough the gut is a central organ of Eumetazoans and is essential for organismal health, ou...
Abstract The Drosophila midgut is maintained throughout its length by superficially similar, multipo...
The intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maintained b...
Although the gut is a central organ of Eumetazoans and is essential for organismal health, our under...
SummaryThe intestinal epithelium is the most rapidly self-renewing tissue in adult animals and maint...
The precise and systematic digestion and subsequent absorption of nutrients in food is vitally impor...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
Epithelial homeostasis requires the precise balance of epithelial stem/progenitor proliferation and ...
SummaryBackgroundEnteroendocrine cells populate gastrointestinal tissues and are known to translate ...
AbstractAdult intestinal tissues, exposed to the external environment, play important roles includin...
Tissue homeostasis in the adult Drosophila melanogaster intestine is maintained by controlling the p...