Javascript must be enabled to continue!
Pair-wise multicomparison and OPLS analyses of cold-acclimation phases in Siberian spruce
View through Europeana Collections
Analysis of metabolomics data often goes beyond the task of discovering biomarkers and can be aimed at recovering other important characteristics of observed metabolomic changes. In this paper we explore different methods to detect the presence of distinctive phases in seasonal-responsive changes of metabolomic patterns of Siberian spruce (Picea obovata) during cold acclimation occurred in the period from mid-August to January. Multivariate analysis, specifically orthogonal projection to latent structures discriminant analysis (OPLSDA), identified time points where the metabolomic patterns underwent substantial modifications as a whole, revealing four distinctive phases during acclimation. This conclusion was re-examined by a univariate analysis consisting of multiple pair-wise comparisons to identify homogeneity intervals for each metabolite. These tests complemented OPLS-DA, clarifying biological interpretation of the classification: about 60% of metabolites found responsive to the cold stress indeed changed at one or more of the time points predicted by OPLS-DA. However, the univariate approach did not support the proposed division of the acclimation period into four phases: less than 10% of metabolites altered during the acclimation had homogeneous levels predicted by OPLS-DA. This demonstrates that coupling the classification found by OPLS-DA and the analysis of dynamics of individual metabolites obtained by pair-wise multicomparisons reveals a more correct characterization of biochemical processes in freezing tolerant trees and leads to interpretations that cannot be deduced by either method alone. The combined analysis can be used in other ‘omics’-studies, where response factors have a causal dependence (like the time in the present work) and pairwise multicomparisons are not conservative.
Uppsala University
Title: Pair-wise multicomparison and OPLS analyses of cold-acclimation phases in Siberian spruce
Description:
Analysis of metabolomics data often goes beyond the task of discovering biomarkers and can be aimed at recovering other important characteristics of observed metabolomic changes.
In this paper we explore different methods to detect the presence of distinctive phases in seasonal-responsive changes of metabolomic patterns of Siberian spruce (Picea obovata) during cold acclimation occurred in the period from mid-August to January.
Multivariate analysis, specifically orthogonal projection to latent structures discriminant analysis (OPLSDA), identified time points where the metabolomic patterns underwent substantial modifications as a whole, revealing four distinctive phases during acclimation.
This conclusion was re-examined by a univariate analysis consisting of multiple pair-wise comparisons to identify homogeneity intervals for each metabolite.
These tests complemented OPLS-DA, clarifying biological interpretation of the classification: about 60% of metabolites found responsive to the cold stress indeed changed at one or more of the time points predicted by OPLS-DA.
However, the univariate approach did not support the proposed division of the acclimation period into four phases: less than 10% of metabolites altered during the acclimation had homogeneous levels predicted by OPLS-DA.
This demonstrates that coupling the classification found by OPLS-DA and the analysis of dynamics of individual metabolites obtained by pair-wise multicomparisons reveals a more correct characterization of biochemical processes in freezing tolerant trees and leads to interpretations that cannot be deduced by either method alone.
The combined analysis can be used in other ‘omics’-studies, where response factors have a causal dependence (like the time in the present work) and pairwise multicomparisons are not conservative.
Related Results
From cold acclimation to thermomorphogenesis: a phosphoproteomics approach to decipher acclimation across the temperature spectrum
From cold acclimation to thermomorphogenesis: a phosphoproteomics approach to decipher acclimation across the temperature spectrum
Climate change is leading to more irregular weather patterns, such as heat waves and cold spells, which negatively affect ecosystems and agriculture. The resulting temperature extr...
Cold Hardiness of Weigela (Weigela florida Bunge) Cultivars
Cold Hardiness of Weigela (Weigela florida Bunge) Cultivars
Abstract
Factual information regarding the low-temperature tolerances of weigela (Weigela florida Bunge) cultivars is essential for identifying cultivars to grow and sell i...
P258 Pharmacometabolomics analysis of plasma and urine to identify clopidogrel exposure metabolic biomarkers
P258 Pharmacometabolomics analysis of plasma and urine to identify clopidogrel exposure metabolic biomarkers
Abstract
Funding Acknowledgements
This research was funded by Universiti Sains Malaysia
...
Long-term acclimation to different stress types: revealing tradeoffs between mesophyll and stomatal conductance
Long-term acclimation to different stress types: revealing tradeoffs between mesophyll and stomatal conductance
AbstractZiziphus spina-christi, a thermophilic tree, became more abundant in the Mediterranean, presumably due to increased winter temperatures. In order to predict the plant accli...
Adjustments in control of mitochondrial respiratory capacity while facing temperature fluctuations
Adjustments in control of mitochondrial respiratory capacity while facing temperature fluctuations
As the world's climate changes, life faces an evolving thermal environment. Mitochondrial oxidative phosphorylation (OXPHOS) is critical to ensure sufficient cellular energy produc...
Light acclimation in leaves of the juvenile and adult life phases of ivy (Hedera helix)
Light acclimation in leaves of the juvenile and adult life phases of ivy (Hedera helix)
Hoflacher, H. and Bauer, H. 1982. Light acclimation in leaves of the juvenile and adult life phases of ivy (Hedera helix). – Physiol. Plant. 56: 177–182.Light acclimation was inves...
Lipoprotein lipase in adipose tissues of exercise-trained, cold-acclimated rats
Lipoprotein lipase in adipose tissues of exercise-trained, cold-acclimated rats
The combined effects of exercise training and cold acclimation on serum lipids and on the activity of lipoprotein lipase (LPL) in epididymal white (WAT) and interscapular brown adi...
Vegetation map of the “Lindulovskaya Roshcha” nature reserve
Vegetation map of the “Lindulovskaya Roshcha” nature reserve
The article presents the vegetation map of the “Lindulovskaya Roshcha” Nature Reserve (Fig. 1, 2), which is located in the Vyborg district, Leningrad Region (Karelian Isthmus). The...

