Javascript must be enabled to continue!
A role for ecophysiology in the ’omics’ era
View through CrossRef
SummaryPlant Ecophysiology is the study on how Plant Physiology is modulated by the environment. This discipline could have benefited greatly from the development of the different ‘omic’ technologies (from genomics to metabolomics). Instead, the overall impression is that ecophysiology and ’omics’ have developed mostly independent each other. Here we provide a literature analysis over the past 20 years which fully confirms this view. Then, we review a few examples of studies in which ecophysiology and ’omics’ studies have combined to different extents to illustrate the potential benefits from their mutualistic interaction. In addition, we debate on the possibilities of working with plants other than Arabidopsis, which is illustrated with some examples of fascinating plants from extreme environments of the world, what we call the ‘sherplants’. Finally, we raise a call to both communities (ecophysiology and ’omics’) to integrate these disciplines to enter an ‘ecophysiolomics era’ to maximize our understanding about plant mechanisms from a multidisciplinary approach.
Title: A role for ecophysiology in the ’omics’ era
Description:
SummaryPlant Ecophysiology is the study on how Plant Physiology is modulated by the environment.
This discipline could have benefited greatly from the development of the different ‘omic’ technologies (from genomics to metabolomics).
Instead, the overall impression is that ecophysiology and ’omics’ have developed mostly independent each other.
Here we provide a literature analysis over the past 20 years which fully confirms this view.
Then, we review a few examples of studies in which ecophysiology and ’omics’ studies have combined to different extents to illustrate the potential benefits from their mutualistic interaction.
In addition, we debate on the possibilities of working with plants other than Arabidopsis, which is illustrated with some examples of fascinating plants from extreme environments of the world, what we call the ‘sherplants’.
Finally, we raise a call to both communities (ecophysiology and ’omics’) to integrate these disciplines to enter an ‘ecophysiolomics era’ to maximize our understanding about plant mechanisms from a multidisciplinary approach.
Related Results
Cometary Physics Laboratory: spectrophotometric experiments
Cometary Physics Laboratory: spectrophotometric experiments
<p><strong><span dir="ltr" role="presentation">1. Introduction</span></strong&...
Benchmarking multi-omics integrative clustering methods for subtype identification in colorectal cancer
Benchmarking multi-omics integrative clustering methods for subtype identification in colorectal cancer
Abstract
Background and objectives
Colorectal cancer (CRC) represents a heterogeneous malignancy that has concerned global burden of incidence and mortality. The tradition...
Exploring the classification of cancer cell lines from multiple omic views
Exploring the classification of cancer cell lines from multiple omic views
Background
Cancer classification is of great importance to understanding its pathogenesis, making diagnosis and developing treatment. The accumulation of extensive o...
Multi-omics Data Integration by Generative Adversarial Network
Multi-omics Data Integration by Generative Adversarial Network
Accurate disease phenotype prediction plays an important role in the treatment of heterogeneous diseases like cancer in the era of precision medicine. With the advent of high throu...
Muon: multimodal omics analysis framework
Muon: multimodal omics analysis framework
AbstractAdvances in multi-omics technologies have led to an explosion of multimodal datasets to address questions ranging from basic biology to translation. While these rich data p...
A benchmark study of deep learning-based multi-omics data fusion methods for cancer
A benchmark study of deep learning-based multi-omics data fusion methods for cancer
Abstract
Background
A fused method using a combination of multi-omics data enables a comprehensive study of complex biological processes and highlig...
Omics in Radiation Biology: Surprised but Not Disappointed
Omics in Radiation Biology: Surprised but Not Disappointed
High-throughput omics platforms have pioneered our approach to understanding biological and cellular processes. Omics technologies provide powerful tools for studying various molec...
Topic Evolution Analysis for Omics Data Integration in Cancers
Topic Evolution Analysis for Omics Data Integration in Cancers
One of the vital challenges for cancer diseases is efficient biomarkers monitoring formation and development are limited. Omics data integration plays a crucial role in the mining ...

