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Bats: Body mass index, forearm mass index, blood glucose levels and SLC2A2 genes for diabetes.


ABSTRACT: Bats have an unusually large volume of endocrine tissue, with a large population of beta cells, and an elevated sensitivity to glucose and insulin. This makes them excellent animal models for studying diabetes mellitus. We evaluated bats as models for diabetes in terms of lifestyle and genetic factors. For lifestyle factors, we generated data sets of 149 body mass index (BMI) and 860 forearm mass index (FMI) measurements for different species of bats. Both showed negative inter-species correlations with blood glucose levels in sixteen bats examined. The negative inter-species correlations may reflect adaptation of a small insectivorous ancestor to a larger frugivore. We identified an 11?bp deletion in the proximal promoter of SLC2A2 that we predicted would disrupt binding sites for the transcription repressor ZNF354C. In frugivorous bats this could explain the relatively high expression of this gene, resulting in a better capacity to absorb glucose and decrease blood glucose levels.

SUBMITTER: Meng F 

PROVIDER: S-EPMC4954980 | biostudies-literature | 2016 Jul

REPOSITORIES: biostudies-literature

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Bats: Body mass index, forearm mass index, blood glucose levels and SLC2A2 genes for diabetes.

Meng Fanxing F   Zhu Lei L   Huang Wenjie W   Irwin David M DM   Zhang Shuyi S  

Scientific reports 20160721


Bats have an unusually large volume of endocrine tissue, with a large population of beta cells, and an elevated sensitivity to glucose and insulin. This makes them excellent animal models for studying diabetes mellitus. We evaluated bats as models for diabetes in terms of lifestyle and genetic factors. For lifestyle factors, we generated data sets of 149 body mass index (BMI) and 860 forearm mass index (FMI) measurements for different species of bats. Both showed negative inter-species correlati  ...[more]

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