Literature DB >> 23834713

Multiplex micro-respiratory measurements of Arabidopsis tissues.

Yun Shin Sew1,2, Elke Ströher1,2, Cristián Holzmann1,3, Shaobai Huang1,2, Nicolas L Taylor1,2, Xavier Jordana3, A Harvey Millar1,2.   

Abstract

Researchers often want to study the respiratory properties of individual parts of plants in response to a range of treatments. Arabidopsis is an obvious model for this work; however, because of its size, it represents a challenge for gas exchange measurements of respiration. The combination of micro-respiratory technologies with multiplex assays has the potential to bridge this gap, and make measurements possible in this model plant species. We show the adaptation of the commercial technology used for mammalian cell respiration analysis to study three critical tissues of interest: leaf sections, root tips and seeds. The measurement of respiration in single leaf discs has allowed the age dependence of the respiration rate in Arabidopsis leaves across the rosette to be observed. The oxygen consumption of single root tips from plate-grown seedlings shows the enhanced respiration of root tips and their time-dependent susceptibility to salinity. The monitoring of single Arabidopsis seeds shows the kinetics of respiration over 48 h post-imbibition, and the effect of the phytohormones gibberellic acid (GA3 ) and abscisic acid (ABA) on respiration during seed germination. These studies highlight the potential for multiplexed micro-respiratory assays to study oxygen consumption in Arabidopsis tissues, and open up new possibilities to screen and study mutants and to identify differences in ecotypes or populations of different plant species.
© 2013 The Authors. New Phytologist © 2013 New Phytologist Trust.

Entities:  

Keywords:  Arabidopsis; leaves; mitochondria; respiration; root tips; seeds

Mesh:

Substances:

Year:  2013        PMID: 23834713     DOI: 10.1111/nph.12394

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  13 in total

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4.  Protein Degradation Rate in Arabidopsis thaliana Leaf Growth and Development.

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7.  Loss of Mitochondrial Malate Dehydrogenase Activity Alters Seed Metabolism Impairing Seed Maturation and Post-Germination Growth in Arabidopsis.

Authors:  Yun Shin Sew; Elke Ströher; Ricarda Fenske; A Harvey Millar
Journal:  Plant Physiol       Date:  2016-04-12       Impact factor: 8.340

Review 8.  The role of photosynthesis and amino acid metabolism in the energy status during seed development.

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Journal:  Plant Methods       Date:  2017-03-21       Impact factor: 4.993

10.  Iron insufficiency in floral buds impairs pollen development by disrupting tapetum function.

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Journal:  Plant J       Date:  2021-08-10       Impact factor: 7.091

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