Single-cell profiling of the amphioxus digestive tract reveals conservation of endocrine cells in chordates.

Dai, Yichen; Pan, Rongrong; Pan, Qi; Wu, Xiaotong; Cai, Zexin; Fu, Yongheng; Shi, Chenggang; Sheng, Yuyu et al. · Sci Adv · 2024

basic_science · Level V

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Abstract

Despite their pivotal role, the evolutionary origins of vertebrate digestive systems remain enigmatic. We explored the cellular characteristics of the amphioxus (<i>Branchiostoma floridae</i>) digestive tract, a model for the presumed primitive chordate digestive system, using bulk tissue companioned with single-cell RNA sequencing. Our findings reveal segmentation and a rich diversity of cell clusters, and we highlight the presence of epithelial-like, ciliated cells in the amphioxus midgut and describe three types of endocrine-like cells that secrete insulin-like, glucagon-like, and somatostatin-like peptides. Furthermore, <i>Pdx</i>, <i>Ilp1</i>, <i>Ilp2</i>, and <i>Ilpr</i> knockout amphioxus lines revealed that, in amphioxus, <i>Pdx</i> does not influence <i>Ilp</i> expression. We also unravel similarity between amphioxus Ilp1 and vertebrate insulin-like growth factor 1 (Igf1) in terms of predicted structure, effects on body growth and amino acid metabolism, and interactions with Igf-binding proteins. These findings indicate that the evolutionary alterations involving the regulatory influence of Pdx over <i>insulin</i> gene expression could have been instrumental in the development of the vertebrate digestive system.

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