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Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice

Plants produce strigolactones (SLs) in roots in response to nitrogen or phosphate deficiency. To evaluate SL levels under other mineral deficiencies in rice, we cultivated rice seedlings in hydroponic media without nitrogen, phosphorus, potassium, sulfur, calcium, magnesium, and iron. Tiller bud out...

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Autores principales: Shindo, Masato, Shimomura, Koichiro, Yamaguchi, Shinjiro, Umehara, Mikihisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6508544/
https://www.ncbi.nlm.nih.gov/pubmed/31245716
http://dx.doi.org/10.1002/pld3.50
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author Shindo, Masato
Shimomura, Koichiro
Yamaguchi, Shinjiro
Umehara, Mikihisa
author_facet Shindo, Masato
Shimomura, Koichiro
Yamaguchi, Shinjiro
Umehara, Mikihisa
author_sort Shindo, Masato
collection PubMed
description Plants produce strigolactones (SLs) in roots in response to nitrogen or phosphate deficiency. To evaluate SL levels under other mineral deficiencies in rice, we cultivated rice seedlings in hydroponic media without nitrogen, phosphorus, potassium, sulfur, calcium, magnesium, and iron. Tiller bud outgrowth was stimulated under calcium deficiency because of low SL levels. SL levels increased under sulfur deficiency, in addition to phosphate, and nitrogen deficiencies. To explore which genes are key regulators of SL production under sulfur deficiency, we analyzed the expression of SL‐related genes in sulfur‐sufficient and sulfur‐deficient conditions. An SL biosynthesis gene, DWARF27 (D27), was strongly expressed under sulfur deficiency, and its expression was decreased by sulfur supply. The levels of D10, D17, and OsMAX1 transcripts did not differ between sulfur‐sufficient and sulfur‐deficient conditions. These results suggest that the increased SL levels under sulfur deficiency are due to a high expression of D27. A combination of nitrogen, phosphorus, and sulfur deficiencies had no additive synergistic effect on SL production. Under combined phosphorus and sulfur deficiency, the expression levels of most SL biosynthesis genes were elevated. The number of tiller buds in the d27 mutant was higher than in the wild type, but lower than in other d mutants. Under sulfur deficiency, the chlorophyll content of d27 was lower than those of other d mutants. These results indicate that D27 plays an important role in adaptation to sulfur deficiency in rice.
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spelling pubmed-65085442019-06-26 Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice Shindo, Masato Shimomura, Koichiro Yamaguchi, Shinjiro Umehara, Mikihisa Plant Direct Original Research Plants produce strigolactones (SLs) in roots in response to nitrogen or phosphate deficiency. To evaluate SL levels under other mineral deficiencies in rice, we cultivated rice seedlings in hydroponic media without nitrogen, phosphorus, potassium, sulfur, calcium, magnesium, and iron. Tiller bud outgrowth was stimulated under calcium deficiency because of low SL levels. SL levels increased under sulfur deficiency, in addition to phosphate, and nitrogen deficiencies. To explore which genes are key regulators of SL production under sulfur deficiency, we analyzed the expression of SL‐related genes in sulfur‐sufficient and sulfur‐deficient conditions. An SL biosynthesis gene, DWARF27 (D27), was strongly expressed under sulfur deficiency, and its expression was decreased by sulfur supply. The levels of D10, D17, and OsMAX1 transcripts did not differ between sulfur‐sufficient and sulfur‐deficient conditions. These results suggest that the increased SL levels under sulfur deficiency are due to a high expression of D27. A combination of nitrogen, phosphorus, and sulfur deficiencies had no additive synergistic effect on SL production. Under combined phosphorus and sulfur deficiency, the expression levels of most SL biosynthesis genes were elevated. The number of tiller buds in the d27 mutant was higher than in the wild type, but lower than in other d mutants. Under sulfur deficiency, the chlorophyll content of d27 was lower than those of other d mutants. These results indicate that D27 plays an important role in adaptation to sulfur deficiency in rice. John Wiley and Sons Inc. 2018-04-11 /pmc/articles/PMC6508544/ /pubmed/31245716 http://dx.doi.org/10.1002/pld3.50 Text en © 2018 The Authors. Plant Direct published by American Society of Plant Biologists, Society for Experimental Biology and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Shindo, Masato
Shimomura, Koichiro
Yamaguchi, Shinjiro
Umehara, Mikihisa
Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice
title Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice
title_full Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice
title_fullStr Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice
title_full_unstemmed Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice
title_short Upregulation of DWARF27 is associated with increased strigolactone levels under sulfur deficiency in rice
title_sort upregulation of dwarf27 is associated with increased strigolactone levels under sulfur deficiency in rice
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6508544/
https://www.ncbi.nlm.nih.gov/pubmed/31245716
http://dx.doi.org/10.1002/pld3.50
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