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Chemical imaging reveals diverse functions of tricarboxylic acid metabolites in root growth and development

Tao Zhang, Sarah E. Noll, Jesus T. Peng, Amman Klair, Abigail Tripka, Nathan Stutzman, Casey Cheng, Richard N. Zare, Alexandra J. Dickinson

2023Nature Communications62 citationsDOIOpen Access PDF

Abstract

Understanding how plants grow is critical for agriculture and fundamental for illuminating principles of multicellular development. Here, we apply desorption electrospray ionization mass spectrometry imaging (DESI-MSI) to the chemical mapping of the developing maize root. This technique reveals a range of small molecule distribution patterns across the gradient of stem cell differentiation in the root. To understand the developmental logic of these patterns, we examine tricarboxylic acid (TCA) cycle metabolites. In both Arabidopsis and maize, we find evidence that elements of the TCA cycle are enriched in developmentally opposing regions. We find that these metabolites, particularly succinate, aconitate, citrate, and α-ketoglutarate, control root development in diverse and distinct ways. Critically, the developmental effects of certain TCA metabolites on stem cell behavior do not correlate with changes in ATP production. These results present insights into development and suggest practical means for controlling plant growth.

Topics & Concepts

Citric acid cycleTricarboxylic acidMulticellular organismBiologyMetabolomicsBiochemistryCell biologyMetabolismComputational biologyChemistryCellBioinformaticsMass Spectrometry Techniques and ApplicationsPlant nutrient uptake and metabolismPlant Stress Responses and Tolerance
Chemical imaging reveals diverse functions of tricarboxylic acid metabolites in root growth and development | Litcius