<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-temperature response in non-model species. Based on future scenarios of heat increase, Pinus radiata plants were exposed to a temperature of 40°C for a period of 5 days, including recovered plants (30 days after last exposure to 40°C) in the analysis. The analysis of the metabolome using complementary mass spectrometry techniques (GC-MS and LC-Orbitrap-MS) allowed the reliable quantification of 2,287 metabolites. The analysis of identified metabolites and highlighter metabolic pathways across heat time exposure reveal the dynamism of the metabolome in relation to high-temperature response in P. radiata, identifying the existence of a turning po...
Despite great interest, not only from the economic point of view but also in terms of basic science,...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
The integrative omics approach is crucial to identify the molecular mechanisms underlying high-tempe...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Despite great interest, not only from the economic point of view but also in terms of basic science,...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
<p>The integrative omics approach is crucial to identify the molecular mechanisms underlying high-te...
The integrative omics approach is crucial to identify the molecular mechanisms underlying high-tempe...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Despite great interest, not only from the economic point of view but also in terms of basic science,...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...
Lignin contributes to plant resistance to biotic and abiotic stresses and is dominantly regulated by...