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Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains

Sucrose transport and partitioning are crucial for seed filling. While many plasma-membrane-localised sucrose transporters (SUT1 family members) have been analysed in seeds, the functions of vacuolar SUT2 members are still obscure. In barley grains, expression of HvSUT1 and HvSUT2 overlap temporally...

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Autores principales: Radchuk, Volodymyr, Riewe, David, Peukert, Manuela, Matros, Andrea, Strickert, Marc, Radchuk, Ruslana, Weier, Diana, Steinbiß, Hans-Henning, Sreenivasulu, Nese, Weschke, Winfriede, Weber, Hans
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853522/
https://www.ncbi.nlm.nih.gov/pubmed/28981782
http://dx.doi.org/10.1093/jxb/erx266
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author Radchuk, Volodymyr
Riewe, David
Peukert, Manuela
Matros, Andrea
Strickert, Marc
Radchuk, Ruslana
Weier, Diana
Steinbiß, Hans-Henning
Sreenivasulu, Nese
Weschke, Winfriede
Weber, Hans
author_facet Radchuk, Volodymyr
Riewe, David
Peukert, Manuela
Matros, Andrea
Strickert, Marc
Radchuk, Ruslana
Weier, Diana
Steinbiß, Hans-Henning
Sreenivasulu, Nese
Weschke, Winfriede
Weber, Hans
author_sort Radchuk, Volodymyr
collection PubMed
description Sucrose transport and partitioning are crucial for seed filling. While many plasma-membrane-localised sucrose transporters (SUT1 family members) have been analysed in seeds, the functions of vacuolar SUT2 members are still obscure. In barley grains, expression of HvSUT1 and HvSUT2 overlap temporally and spatially, suggesting concerted functions to regulate sucrose homeostasis. Using HvSUT2-RNAi plants, we found that grains were also deficient in HvSUT1 expression and seemingly sucrose-limited during mid-to-late grain filling. Transgenic endosperms accumulated less starch and dry weight, although overall sucrose and hexose contents were higher. Comprehensive transcript and metabolite profiling revealed that genes related to glycolysis, the tricarboxylic acid cycle, starch and amino acid synthesis, grain maturation, and abscisic acid signalling were down-regulated together with most glycolytic intermediates and amino acids. Sucrose was increased along the sucrose delivery route in the nucellar projection, the endosperm transfer cells, and the starchy endosperm, indicating that suppressed transporter activity diminished sucrose efflux from vacuoles, which generated sugar deficiency in the cytoplasm. Thus, endosperm vacuoles may buffer sucrose concentrations to regulate homeostasis at grain filling. Transcriptional changes revealed that limited endosperm sucrose initiated sugar starvation responses, such as sugar recycling from starch, hemicelluloses and celluloses together with vacuolar protein degradation, thereby supporting formation of nucleotide sugars. Barley endosperm cells can thus suppress certain pathways to retrieve resources to maintain essential cell functions.
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spelling pubmed-58535222018-07-27 Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains Radchuk, Volodymyr Riewe, David Peukert, Manuela Matros, Andrea Strickert, Marc Radchuk, Ruslana Weier, Diana Steinbiß, Hans-Henning Sreenivasulu, Nese Weschke, Winfriede Weber, Hans J Exp Bot Research Papers Sucrose transport and partitioning are crucial for seed filling. While many plasma-membrane-localised sucrose transporters (SUT1 family members) have been analysed in seeds, the functions of vacuolar SUT2 members are still obscure. In barley grains, expression of HvSUT1 and HvSUT2 overlap temporally and spatially, suggesting concerted functions to regulate sucrose homeostasis. Using HvSUT2-RNAi plants, we found that grains were also deficient in HvSUT1 expression and seemingly sucrose-limited during mid-to-late grain filling. Transgenic endosperms accumulated less starch and dry weight, although overall sucrose and hexose contents were higher. Comprehensive transcript and metabolite profiling revealed that genes related to glycolysis, the tricarboxylic acid cycle, starch and amino acid synthesis, grain maturation, and abscisic acid signalling were down-regulated together with most glycolytic intermediates and amino acids. Sucrose was increased along the sucrose delivery route in the nucellar projection, the endosperm transfer cells, and the starchy endosperm, indicating that suppressed transporter activity diminished sucrose efflux from vacuoles, which generated sugar deficiency in the cytoplasm. Thus, endosperm vacuoles may buffer sucrose concentrations to regulate homeostasis at grain filling. Transcriptional changes revealed that limited endosperm sucrose initiated sugar starvation responses, such as sugar recycling from starch, hemicelluloses and celluloses together with vacuolar protein degradation, thereby supporting formation of nucleotide sugars. Barley endosperm cells can thus suppress certain pathways to retrieve resources to maintain essential cell functions. Oxford University Press 2017-07-20 2017-08-24 /pmc/articles/PMC5853522/ /pubmed/28981782 http://dx.doi.org/10.1093/jxb/erx266 Text en © The Author 2017. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Radchuk, Volodymyr
Riewe, David
Peukert, Manuela
Matros, Andrea
Strickert, Marc
Radchuk, Ruslana
Weier, Diana
Steinbiß, Hans-Henning
Sreenivasulu, Nese
Weschke, Winfriede
Weber, Hans
Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains
title Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains
title_full Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains
title_fullStr Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains
title_full_unstemmed Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains
title_short Down-regulation of the sucrose transporters HvSUT1 and HvSUT2 affects sucrose homeostasis along its delivery path in barley grains
title_sort down-regulation of the sucrose transporters hvsut1 and hvsut2 affects sucrose homeostasis along its delivery path in barley grains
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5853522/
https://www.ncbi.nlm.nih.gov/pubmed/28981782
http://dx.doi.org/10.1093/jxb/erx266
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