TY - JOUR
T1 - Isotopic analysis on nanogram quantities of carbon from dissolved insect cuticle
T2 - a method for paleoenvironmental inferences
AU - Zhao, Yongtao
AU - Nelson, David M.
AU - Clegg, Benjamin F.
AU - An, Cheng Bang
AU - Hu, Feng Sheng
N1 - Funding Information:
This study is supported by NSF grant ARC‐1023477 (FSH). We would like to thank James Berry and Robin Paulman for analytical assistance. Arndt Schimmelmann, Melissa Chipman, and the members of the Hu Lab provided critical feedback during the planning stages and/or data analysis of this project. Our sincere thanks are also extended to three reviewers for helpful comments and constructive suggestions that greatly improved this manuscript.
Publisher Copyright:
Copyright © 2017 John Wiley & Sons, Ltd.
PY - 2017/11/15
Y1 - 2017/11/15
N2 - Rationale: Carbon isotope (δ13C) data from arthropod cuticles provide invaluable information on past and present biogeochemical processes. However, such analyses typically require large sample sizes that may mask important variation in δ13C values within or among species. Methods: We have evaluated a spooling-wire microcombustion (SWiM) device and isotope ratio mass spectrometry (IRMS) to measure the δ13C values of carbon dissolved from the cuticle of chitinous aquatic zooplankton. The effects of temperature, pH, and reaction time on the δ13C values of acid-dissolved bulk cuticle and purified chitin fractions obtained from a single species of chironomid from four commercial suppliers were assessed. These results were compared with baseline δ13C values obtained on solid cuticle using conventional EA (elemental analyzer)/IRMS. Results: The results indicate differential, time-dependent dissolution of chitin, lipid and protein fractions of cuticle concomitant with slow depolymerization and deacetylation of chitin. Isotopic offsets between dissolved bulk head capsules and a purified chitin fraction suggest the contributions of other isotopically lighter components of the bulk head capsules to bulk chitin extracts. The SWiM/IRMS δ13C results obtained on dissolved cuticle using a treatment of 4 N HCl at 25 °C for 24 h produced generally stable δ13C values, large sample/blank CO2 yields and a positive correlation with conventional EA/IRMS results on unprocessed cuticle. Conclusions: The SWiM/IRMS system offers a reliable method to determine δ13C values on nanogram quantities of carbon from dissolved insect cuticle, thus reducing sample size requirements and providing new opportunities to use δ13C variation among/within species for reconstructing paleo-biogeochemical processes.
AB - Rationale: Carbon isotope (δ13C) data from arthropod cuticles provide invaluable information on past and present biogeochemical processes. However, such analyses typically require large sample sizes that may mask important variation in δ13C values within or among species. Methods: We have evaluated a spooling-wire microcombustion (SWiM) device and isotope ratio mass spectrometry (IRMS) to measure the δ13C values of carbon dissolved from the cuticle of chitinous aquatic zooplankton. The effects of temperature, pH, and reaction time on the δ13C values of acid-dissolved bulk cuticle and purified chitin fractions obtained from a single species of chironomid from four commercial suppliers were assessed. These results were compared with baseline δ13C values obtained on solid cuticle using conventional EA (elemental analyzer)/IRMS. Results: The results indicate differential, time-dependent dissolution of chitin, lipid and protein fractions of cuticle concomitant with slow depolymerization and deacetylation of chitin. Isotopic offsets between dissolved bulk head capsules and a purified chitin fraction suggest the contributions of other isotopically lighter components of the bulk head capsules to bulk chitin extracts. The SWiM/IRMS δ13C results obtained on dissolved cuticle using a treatment of 4 N HCl at 25 °C for 24 h produced generally stable δ13C values, large sample/blank CO2 yields and a positive correlation with conventional EA/IRMS results on unprocessed cuticle. Conclusions: The SWiM/IRMS system offers a reliable method to determine δ13C values on nanogram quantities of carbon from dissolved insect cuticle, thus reducing sample size requirements and providing new opportunities to use δ13C variation among/within species for reconstructing paleo-biogeochemical processes.
UR - http://www.scopus.com/inward/record.url?scp=85030867304&partnerID=8YFLogxK
U2 - 10.1002/rcm.7965
DO - 10.1002/rcm.7965
M3 - Article
C2 - 28833668
AN - SCOPUS:85030867304
SN - 0951-4198
VL - 31
SP - 1825
EP - 1834
JO - Rapid Communications in Mass Spectrometry
JF - Rapid Communications in Mass Spectrometry
IS - 21
ER -