Spatial Heterogeneity of Metabolic Response to Drought Stress in Medicago lupulina L. Leaves
Xinglin Wang, Ning Lv, Yuyun Xu, Xingpan Meng, Yukun Jin, Hongbin Gao, Fei Li, Yin Yi, Lunxian Liu, Tie Shen

TL;DR
This study shows how different parts of Medicago lupulina leaves respond to drought stress by changing their metabolism in specific regions.
Contribution
The study reveals spatially distinct metabolic responses to drought stress in leaf regions, highlighting localized defense mechanisms.
Findings
TCA cycle metabolites remained stable in central leaf regions under drought stress.
Stressed leaves showed increased internal gradient differences for several metabolites like phenylalanine and tryptophan.
Defensive flavonoid biosynthesis genes were upregulated in leaf margins under drought stress.
Abstract
Background: Drought stress is a primary environmental constraint limiting crop growth and productivity. Current drought-related plant research predominantly focuses on whole-leaf analyses, neglecting the spatial heterogeneity of metabolites within leaf tissues. Methods: This study combined transcriptomic and metabolomic approaches to investigate spatially distinct metabolic responses in marginal versus central regions of Medicago lupulina L. leaves under PEG-simulated drought. Results: Findings demonstrated that TCA cycle metabolites exhibited relative stability between leaf margins and centers under drought conditions, suggesting preserved core metabolic functionality in central tissues to sustain stress tolerance. Additionally, shikimic acid displayed a significantly reduced regional gradient in stressed tissues (PEG Margin vs. PEG Center) compared to controls. Phenylalanine,…
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Taxonomy
TopicsPlant Gene Expression Analysis · Plant Stress Responses and Tolerance · Metabolomics and Mass Spectrometry Studies
