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Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots

In cucumber seedlings, gravitropism interferes with hydrotropism, which results in the nearly complete inhibition of hydrotropism under stationary conditions. However, hydrotropic responses are induced when the gravitropic response in the root is nullified by clinorotation. Columella cells in the ro...

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Autores principales: Fujii, Nobuharu, Miyabayashi, Sachiko, Sugita, Tomoki, Kobayashi, Akie, Yamazaki, Chiaki, Miyazawa, Yutaka, Kamada, Motoshi, Kasahara, Haruo, Osada, Ikuko, Shimazu, Toru, Fusejima, Yasuo, Higashibata, Akira, Yamazaki, Takashi, Ishioka, Noriaki, Takahashi, Hideyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764274/
https://www.ncbi.nlm.nih.gov/pubmed/29324818
http://dx.doi.org/10.1371/journal.pone.0189827
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author Fujii, Nobuharu
Miyabayashi, Sachiko
Sugita, Tomoki
Kobayashi, Akie
Yamazaki, Chiaki
Miyazawa, Yutaka
Kamada, Motoshi
Kasahara, Haruo
Osada, Ikuko
Shimazu, Toru
Fusejima, Yasuo
Higashibata, Akira
Yamazaki, Takashi
Ishioka, Noriaki
Takahashi, Hideyuki
author_facet Fujii, Nobuharu
Miyabayashi, Sachiko
Sugita, Tomoki
Kobayashi, Akie
Yamazaki, Chiaki
Miyazawa, Yutaka
Kamada, Motoshi
Kasahara, Haruo
Osada, Ikuko
Shimazu, Toru
Fusejima, Yasuo
Higashibata, Akira
Yamazaki, Takashi
Ishioka, Noriaki
Takahashi, Hideyuki
author_sort Fujii, Nobuharu
collection PubMed
description In cucumber seedlings, gravitropism interferes with hydrotropism, which results in the nearly complete inhibition of hydrotropism under stationary conditions. However, hydrotropic responses are induced when the gravitropic response in the root is nullified by clinorotation. Columella cells in the root cap sense gravity, which induces the gravitropic response. In this study, we found that removing the root tip induced hydrotropism in cucumber roots under stationary conditions. The application of auxin transport inhibitors to cucumber seedlings under stationary conditions suppressed the hydrotropic response induced by the removal of the root tip. To investigate the expression of genes related to hydrotropism in de-tipped cucumber roots, we conducted transcriptome analysis of gene expression by RNA-Seq using seedlings exhibiting hydrotropic and gravitropic responses. Of the 21 and 45 genes asymmetrically expressed during hydrotropic and gravitropic responses, respectively, five genes were identical. Gene ontology (GO) analysis indicated that the category auxin-inducible genes was significantly enriched among genes that were more highly expressed in the concave side of the root than the convex side during hydrotropic or gravitropic responses. Reverse transcription followed by quantitative polymerase chain reaction (RT-qPCR) analysis revealed that root hydrotropism induced under stationary conditions (by removing the root tip) was accompanied by the asymmetric expression of several auxin-inducible genes. However, intact roots did not exhibit the asymmetric expression patterns of auxin-inducible genes under stationary conditions, even in the presence of a moisture gradient. These results suggest that the root tip inhibits hydrotropism by suppressing the induction of asymmetric auxin distribution. Auxin transport and distribution not mediated by the root tip might play a role in hydrotropism in cucumber roots.
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spelling pubmed-57642742018-01-23 Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots Fujii, Nobuharu Miyabayashi, Sachiko Sugita, Tomoki Kobayashi, Akie Yamazaki, Chiaki Miyazawa, Yutaka Kamada, Motoshi Kasahara, Haruo Osada, Ikuko Shimazu, Toru Fusejima, Yasuo Higashibata, Akira Yamazaki, Takashi Ishioka, Noriaki Takahashi, Hideyuki PLoS One Research Article In cucumber seedlings, gravitropism interferes with hydrotropism, which results in the nearly complete inhibition of hydrotropism under stationary conditions. However, hydrotropic responses are induced when the gravitropic response in the root is nullified by clinorotation. Columella cells in the root cap sense gravity, which induces the gravitropic response. In this study, we found that removing the root tip induced hydrotropism in cucumber roots under stationary conditions. The application of auxin transport inhibitors to cucumber seedlings under stationary conditions suppressed the hydrotropic response induced by the removal of the root tip. To investigate the expression of genes related to hydrotropism in de-tipped cucumber roots, we conducted transcriptome analysis of gene expression by RNA-Seq using seedlings exhibiting hydrotropic and gravitropic responses. Of the 21 and 45 genes asymmetrically expressed during hydrotropic and gravitropic responses, respectively, five genes were identical. Gene ontology (GO) analysis indicated that the category auxin-inducible genes was significantly enriched among genes that were more highly expressed in the concave side of the root than the convex side during hydrotropic or gravitropic responses. Reverse transcription followed by quantitative polymerase chain reaction (RT-qPCR) analysis revealed that root hydrotropism induced under stationary conditions (by removing the root tip) was accompanied by the asymmetric expression of several auxin-inducible genes. However, intact roots did not exhibit the asymmetric expression patterns of auxin-inducible genes under stationary conditions, even in the presence of a moisture gradient. These results suggest that the root tip inhibits hydrotropism by suppressing the induction of asymmetric auxin distribution. Auxin transport and distribution not mediated by the root tip might play a role in hydrotropism in cucumber roots. Public Library of Science 2018-01-11 /pmc/articles/PMC5764274/ /pubmed/29324818 http://dx.doi.org/10.1371/journal.pone.0189827 Text en © 2018 Fujii et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Fujii, Nobuharu
Miyabayashi, Sachiko
Sugita, Tomoki
Kobayashi, Akie
Yamazaki, Chiaki
Miyazawa, Yutaka
Kamada, Motoshi
Kasahara, Haruo
Osada, Ikuko
Shimazu, Toru
Fusejima, Yasuo
Higashibata, Akira
Yamazaki, Takashi
Ishioka, Noriaki
Takahashi, Hideyuki
Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots
title Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots
title_full Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots
title_fullStr Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots
title_full_unstemmed Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots
title_short Root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots
title_sort root-tip-mediated inhibition of hydrotropism is accompanied with the suppression of asymmetric expression of auxin-inducible genes in response to moisture gradients in cucumber roots
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5764274/
https://www.ncbi.nlm.nih.gov/pubmed/29324818
http://dx.doi.org/10.1371/journal.pone.0189827
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