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Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1

Complete differentiation of the spikes guarantees the final wheat (Triticum aestivum L.) grain yield. A unique wheat mutant that prematurely terminated spike differentiation (ptsd1) was obtained from cultivar Guomai 301 treated with ethyl methane sulfonate (EMS). The molecular mechanism study on pts...

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Autores principales: Jiao, Zhixin, Li, Junchang, Ni, Yongjing, Jiang, Yumei, Sun, Yulong, An, Junhang, Li, Huijuan, Zhang, Jing, Hu, Xin, Li, Qiaoyun, Niu, Jishan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6770497/
https://www.ncbi.nlm.nih.gov/pubmed/31546802
http://dx.doi.org/10.3390/ijms20184642
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author Jiao, Zhixin
Li, Junchang
Ni, Yongjing
Jiang, Yumei
Sun, Yulong
An, Junhang
Li, Huijuan
Zhang, Jing
Hu, Xin
Li, Qiaoyun
Niu, Jishan
author_facet Jiao, Zhixin
Li, Junchang
Ni, Yongjing
Jiang, Yumei
Sun, Yulong
An, Junhang
Li, Huijuan
Zhang, Jing
Hu, Xin
Li, Qiaoyun
Niu, Jishan
author_sort Jiao, Zhixin
collection PubMed
description Complete differentiation of the spikes guarantees the final wheat (Triticum aestivum L.) grain yield. A unique wheat mutant that prematurely terminated spike differentiation (ptsd1) was obtained from cultivar Guomai 301 treated with ethyl methane sulfonate (EMS). The molecular mechanism study on ptsd1 showed that the senescence-associated genes (SAGs) were highly expressed, and spike differentiation related homeotic genes were depressed. Cytokinin signal transduction was weakened and ethylene signal transduction was enhanced. The enhanced expression of Ca(2+) signal transduction related genes and the accumulation of reactive oxygen species (ROS) caused the upper spikelet cell death. Many genes in the WRKY, NAC and ethylene response factor (ERF) transcription factor (TF) families were highly expressed. Senescence related metabolisms, including macromolecule degradation, nutrient recycling, as well as anthocyanin and lignin biosynthesis, were activated. A conserved tae-miR164 and a novel-miR49 and their target genes were extensively involved in the senescence related biological processes in ptsd1. Overall, the abnormal phytohormone homeostasis, enhanced Ca(2+) signaling and activated senescence related metabolisms led to the spikelet primordia absent their typical meristem characteristics, and ultimately resulted in the phenotype of ptsd1.
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spelling pubmed-67704972019-10-30 Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1 Jiao, Zhixin Li, Junchang Ni, Yongjing Jiang, Yumei Sun, Yulong An, Junhang Li, Huijuan Zhang, Jing Hu, Xin Li, Qiaoyun Niu, Jishan Int J Mol Sci Article Complete differentiation of the spikes guarantees the final wheat (Triticum aestivum L.) grain yield. A unique wheat mutant that prematurely terminated spike differentiation (ptsd1) was obtained from cultivar Guomai 301 treated with ethyl methane sulfonate (EMS). The molecular mechanism study on ptsd1 showed that the senescence-associated genes (SAGs) were highly expressed, and spike differentiation related homeotic genes were depressed. Cytokinin signal transduction was weakened and ethylene signal transduction was enhanced. The enhanced expression of Ca(2+) signal transduction related genes and the accumulation of reactive oxygen species (ROS) caused the upper spikelet cell death. Many genes in the WRKY, NAC and ethylene response factor (ERF) transcription factor (TF) families were highly expressed. Senescence related metabolisms, including macromolecule degradation, nutrient recycling, as well as anthocyanin and lignin biosynthesis, were activated. A conserved tae-miR164 and a novel-miR49 and their target genes were extensively involved in the senescence related biological processes in ptsd1. Overall, the abnormal phytohormone homeostasis, enhanced Ca(2+) signaling and activated senescence related metabolisms led to the spikelet primordia absent their typical meristem characteristics, and ultimately resulted in the phenotype of ptsd1. MDPI 2019-09-19 /pmc/articles/PMC6770497/ /pubmed/31546802 http://dx.doi.org/10.3390/ijms20184642 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiao, Zhixin
Li, Junchang
Ni, Yongjing
Jiang, Yumei
Sun, Yulong
An, Junhang
Li, Huijuan
Zhang, Jing
Hu, Xin
Li, Qiaoyun
Niu, Jishan
Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1
title Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1
title_full Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1
title_fullStr Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1
title_full_unstemmed Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1
title_short Enhanced Senescence Process is the Major Factor Stopping Spike Differentiation of Wheat Mutant ptsd1
title_sort enhanced senescence process is the major factor stopping spike differentiation of wheat mutant ptsd1
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6770497/
https://www.ncbi.nlm.nih.gov/pubmed/31546802
http://dx.doi.org/10.3390/ijms20184642
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