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  5. Elucidating Drought-Tolerance Mechanisms in Plant Roots through <sup>1</sup>H NMR Metabolomics in Parallel with MALDI-MS, and NanoSIMS Imaging Techniques

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Article
English
2022

Elucidating Drought-Tolerance Mechanisms in Plant Roots through <sup>1</sup>H NMR Metabolomics in Parallel with MALDI-MS, and NanoSIMS Imaging Techniques

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English
2022
Environmental Science & Technology
Vol 56 (3)
DOI: 10.1021/acs.est.1c06772

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Michaela Dippold
Michaela Dippold

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Linnea K. Honeker
Gina Hildebrand
Jane D. Fudyma
+19 more

Abstract

As direct mediators between plants and soil, roots play an important role in metabolic responses to environmental stresses such as drought, yet these responses are vastly uncharacterized on a plant-specific level, especially for co-occurring species. Here, we aim to examine the effects of drought on root metabolic profiles and carbon allocation pathways of three tropical rainforest species by combining cutting-edge metabolomic and imaging technologies in an in situ position-specific 13C-pyruvate root-labeling experiment. Further, washed (rhizosphere-depleted) and unwashed roots were examined to test the impact of microbial presence on root metabolic pathways. Drought had a species-specific impact on the metabolic profiles and spatial distribution in Piper sp. and Hibiscus rosa sinensis roots, signifying different defense mechanisms; Piper sp. enhanced root structural defense via recalcitrant compounds including lignin, while H. rosa sinensis enhanced biochemical defense via secretion of antioxidants and fatty acids. In contrast, Clitoria fairchildiana, a legume tree, was not influenced as much by drought but rather by rhizosphere presence where carbohydrate storage was enhanced, indicating a close association with symbiotic microbes. This study demonstrates how multiple techniques can be combined to identify how plants cope with drought through different drought-tolerance strategies and the consequences of such changes on below-ground organic matter composition.

How to cite this publication

Linnea K. Honeker, Gina Hildebrand, Jane D. Fudyma, L. Erik Daber, David Hoyt, Sarah E Flowers, Juliana Gil-Loaiza, Angelika Kübert, Ines Bamberger, Christopher Anderton, John Cliff, Sarah Leichty, Roya AminiTabrizi, Jürgen Kreuzwieser, Lingling Shi, Xuejuan Bai, Dušan Veličković, Michaela Dippold, S. Nemiah Ladd, Christiane Werner, Laura Meredith, Malak Tfaily (2022). Elucidating Drought-Tolerance Mechanisms in Plant Roots through <sup>1</sup>H NMR Metabolomics in Parallel with MALDI-MS, and NanoSIMS Imaging Techniques. Environmental Science & Technology, 56(3), pp. 2021-2032, DOI: 10.1021/acs.est.1c06772.

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Publication Details

Type

Article

Year

2022

Authors

22

Datasets

0

Total Files

0

Language

English

Journal

Environmental Science & Technology

DOI

10.1021/acs.est.1c06772

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