Literature DB >> 31009077

Arabinose biosynthesis is critical for salt stress tolerance in Arabidopsis.

Chunzhao Zhao1,2, Omar Zayed2, Fansuo Zeng3, Chaoxian Liu4, Ling Zhang5, Peipei Zhu6, Chuan-Chih Hsu6, Yunus E Tuncil7, W Andy Tao6, Nicholas C Carpita8,9, Jian-Kang Zhu1,2.   

Abstract

The capability to maintain cell wall integrity is critical for plants to adapt to unfavourable conditions. l-Arabinose (Ara) is a constituent of several cell wall polysaccharides and many cell wall-localised glycoproteins, but so far the contribution of Ara metabolism to abiotic stress tolerance is still poorly understood. Here, we report that mutations in the MUR4 (also known as HSR8) gene, which is required for the biosynthesis of UDP-Arap in Arabidopsis, led to reduced root elongation under high concentrations of NaCl, KCl, NaNO3 , or KNO3 . The short root phenotype of the mur4/hsr8 mutants under high salinity is rescued by exogenous Ara or gum arabic, a commercial product of arabinogalactan proteins (AGPs) from Acacia senegal. Mutation of the MUR4 gene led to abnormal cell-cell adhesion under salt stress. MUR4 forms either a homodimer or heterodimers with its isoforms. Analysis of the higher order mutants of MUR4 with its three paralogues, MURL, DUR, MEE25, reveals that the paralogues of MUR4 also contribute to the biosynthesis of UDP-Ara and are critical for root elongation. Taken together, our work revealed the importance of the Ara metabolism in salt stress tolerance and also provides new insights into the enzymes involved in the UDP-Ara biosynthesis in plants.
© 2019 The Authors. New Phytologist © 2019 New Phytologist Trust.

Entities:  

Keywords:  Arabidopsis; arabinogalactan protein; arabinose; cell wall integrity; root elongation; salt stress

Mesh:

Substances:

Year:  2019        PMID: 31009077     DOI: 10.1111/nph.15867

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


  17 in total

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Review 6.  Root dynamic growth strategies in response to salinity.

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7.  Arabinogalactan-proteins of Zostera marina L. contain unique glycan structures and provide insight into adaption processes to saline environments.

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Review 9.  Arabinogalactan Proteins in Plant Roots - An Update on Possible Functions.

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10.  Plant Cell Wall Hydration and Plant Physiology: An Exploration of the Consequences of Direct Effects of Water Deficit on the Plant Cell Wall.

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