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An integrated isotopic labeling and freeze sampling apparatus (ILSA) to support sampling leaf metabolomics at a centi-second scale
by
Tang, Qiming
, Shi, Zai
, Zhu, Xinguang
, Ni, Xiaoxiang
, Chen, Genyun
, Song, Qingfeng
in
Analysis
/ Arabidopsis thaliana
/ Assimilation
/ Biological Techniques
/ Biomedical and Life Sciences
/ Carbon dioxide
/ Chamber
/ Fluxes
/ Freeze sampling
/ Gene expression
/ High-performance liquid chromatography
/ HPLC-MS/MS
/ Intermediates
/ Isotopes
/ Isotopic labeling
/ Labeling
/ Leaves
/ Life Sciences
/ Light
/ Liquid chromatography
/ Measurement methods
/ Metabolic flux
/ metabolic flux analysis
/ Metabolism
/ Metabolites
/ Metabolomics
/ Methodology
/ Nitrogen
/ Photosynthesis
/ physiological state
/ Physiology
/ Plant Sciences
/ Radioactive labeling
/ Respiration
/ rice
/ Sampling
/ time series analysis
/ Turnover time
2022
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An integrated isotopic labeling and freeze sampling apparatus (ILSA) to support sampling leaf metabolomics at a centi-second scale
by
Tang, Qiming
, Shi, Zai
, Zhu, Xinguang
, Ni, Xiaoxiang
, Chen, Genyun
, Song, Qingfeng
in
Analysis
/ Arabidopsis thaliana
/ Assimilation
/ Biological Techniques
/ Biomedical and Life Sciences
/ Carbon dioxide
/ Chamber
/ Fluxes
/ Freeze sampling
/ Gene expression
/ High-performance liquid chromatography
/ HPLC-MS/MS
/ Intermediates
/ Isotopes
/ Isotopic labeling
/ Labeling
/ Leaves
/ Life Sciences
/ Light
/ Liquid chromatography
/ Measurement methods
/ Metabolic flux
/ metabolic flux analysis
/ Metabolism
/ Metabolites
/ Metabolomics
/ Methodology
/ Nitrogen
/ Photosynthesis
/ physiological state
/ Physiology
/ Plant Sciences
/ Radioactive labeling
/ Respiration
/ rice
/ Sampling
/ time series analysis
/ Turnover time
2022
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An integrated isotopic labeling and freeze sampling apparatus (ILSA) to support sampling leaf metabolomics at a centi-second scale
by
Tang, Qiming
, Shi, Zai
, Zhu, Xinguang
, Ni, Xiaoxiang
, Chen, Genyun
, Song, Qingfeng
in
Analysis
/ Arabidopsis thaliana
/ Assimilation
/ Biological Techniques
/ Biomedical and Life Sciences
/ Carbon dioxide
/ Chamber
/ Fluxes
/ Freeze sampling
/ Gene expression
/ High-performance liquid chromatography
/ HPLC-MS/MS
/ Intermediates
/ Isotopes
/ Isotopic labeling
/ Labeling
/ Leaves
/ Life Sciences
/ Light
/ Liquid chromatography
/ Measurement methods
/ Metabolic flux
/ metabolic flux analysis
/ Metabolism
/ Metabolites
/ Metabolomics
/ Methodology
/ Nitrogen
/ Photosynthesis
/ physiological state
/ Physiology
/ Plant Sciences
/ Radioactive labeling
/ Respiration
/ rice
/ Sampling
/ time series analysis
/ Turnover time
2022
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An integrated isotopic labeling and freeze sampling apparatus (ILSA) to support sampling leaf metabolomics at a centi-second scale
Journal Article
An integrated isotopic labeling and freeze sampling apparatus (ILSA) to support sampling leaf metabolomics at a centi-second scale
2022
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Overview
Background
Photosynthesis close interacts with respiration and nitrogen assimilation, which determine the photosynthetic efficiency of a leaf. Accurately quantifying the metabolic fluxes in photosynthesis, respiration and nitrogen assimilation benefit the design of photosynthetic efficiency improvement. To accurately estimate metabolic fluxes, time-series data including leaf metabolism and isotopic abundance changes should be collected under precisely controlled environments. But for isotopic labelled leaves under defined environments the, time cost of manually sampling usually longer than the turnover time of several intermediates in photosynthetic metabolism. In this case, the metabolic or physiological status of leaf sample would change during the sampling, and the accuracy of metabolomics data could be compromised.
Results
Here we developed an
i
ntegrated isotopic
l
abeling and freeze
s
ampling
a
pparatus (ILSA), which could finish freeze sampling automatically in 0.05 s. ILSA can not only be used for sampling of photosynthetic metabolism measurement, but also suit for leaf isotopic labeling experiments under controlled environments ([CO
2
] and light). Combined with HPLC–MS/MS as the metabolic measurement method, we demonstrated: (1) how pool-size of photosynthetic metabolites change in dark-accumulated rice leaf, and (2) variation in photosynthetic metabolic flux between rice and
Arabidopsis thaliana
.
Conclusions
The development of ILSA supports the photosynthetic research on metabolism and metabolic flux analysis and provides a new tool for the study of leaf physiology.
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