Solid-state NMR reveals differential carbohydrate utilization in diapausing Culex pipiens.

Sci Rep

Departments of Chemistry and Biochemistry, Baylor University, One Bear Place #97348, Waco, TX 76706, USA.

Published: November 2016

AI Article Synopsis

  • Culex pipiens, a mosquito species that spreads West Nile Virus, enters a state called diapause in response to shorter days and cooler temperatures, requiring energy storage for survival over winter.
  • A study using 13C solid-state NMR analyzed how different carbohydrates (sucrose and glucose) affect glycogen and lipid biosynthesis in these diapausing mosquitoes.
  • Results revealed that while sucrose primarily increases glycogen storage, glucose contributes to both glycogen and lipid accumulation, with each carbohydrate being metabolized differently, highlighting the complexity of insect metabolism during challenging environmental conditions.

Article Abstract

Culex pipiens is the mosquito that vectors West Nile Virus and other human-pathogenic flavivruses in North America. In response to shortened day length and lower temperatures, female Cx. pipiense prepares for the diapause by actively feeding on carbohydrates to increase the biosynthesis of glycogen and lipid to store energy for overwintering. The effect of feeding different carbohydrates on glycogen and lipid biosynthesis in diapausing mosquitoes was investigated in vivo using 13C solid-state NMR. Diapause-destined adult females and nondiapausing counterparts after adult eclosion were fed with three different carbohydrate sources for 7 days: 1) 10% sucrose, 2) 10% D-[C]glucose, and 3) 1% D-[C]glucose co-provisioned with 10% sucrose. NMR measurements show that sucrose and glucose are metabolized differently in diapausing mosquitoes. Mosquitoes fed on sucrose primarily accumulate glycogen with increased branching structures, but less of lipids. In contrast, mosquitoes fed exclusively on glucose show accumulation of both glycogen and lipid with increased aliphatic chain length. Glucose is exclusively metabolized for the biosynthesis of triacylglyceride when mosquitoes were co-fed with sucrose. Our findings provide novel insights into the insect carbohydrate metabolism that governs glycogen and lipid biosynthesis during diapause, which is fundamental for the insect survival during inimical environments.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5112589PMC
http://dx.doi.org/10.1038/srep37350DOI Listing

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