A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake

Abstract Water uptake is the fundamental requirement for the initiation and completion of seed germination that is a vital phase in the life cycle of seed plants. We found that seeds produced under four nitrogen levels showed significantly different germination speed. The objective of this study was...

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Main Authors: Daxing Wen, Haicheng Xu, Liuyong Xie, Mingrong He, Hongcun Hou, Chunqing Zhang
Format: Article
Language:English
Published: Nature Publishing Group 2017-06-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-03333-4
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spelling doaj-150a6c6411d84828baa0b4b8f74cf3ce2020-12-08T01:34:00ZengNature Publishing GroupScientific Reports2045-23222017-06-017111110.1038/s41598-017-03333-4A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptakeDaxing Wen0Haicheng Xu1Liuyong Xie2Mingrong He3Hongcun Hou4Chunqing Zhang5State Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural UniversityState Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural UniversityState Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural UniversityState Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural UniversityState Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural UniversityState Key Laboratory of Crop Biology, Agronomy College, Shandong Agricultural UniversityAbstract Water uptake is the fundamental requirement for the initiation and completion of seed germination that is a vital phase in the life cycle of seed plants. We found that seeds produced under four nitrogen levels showed significantly different germination speed. The objective of this study was to study the mechanism of rapid seed germination and explore which pathways and genes play critical roles in radicle protrusion. Anatomical data revealed that seed protein content affected endosperm structure of seeds. Moreover, scanning electron microscope maps showed that faster germinated seeds had a looser endosperm structure compared with other seeds. Subsequently, high throughout RNA-seq data were used to compare the transcriptomes of imbibed seeds with different germination speed. Gene ontology (GO) term enrichment analysis revealed that cell wall metabolism related genes significantly up-regulated in faster germinated seeds. In these genes, the top four were chitinase that had about fourfold higher expression in faster germinated seeds. Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analysis showed that faster germinated seeds had enhanced expression in glutathione metabolism. By combining these results, we propose a model for nitrogen fertilizer affects germination speed of wheat seed, which provide new insights into seed germination.https://doi.org/10.1038/s41598-017-03333-4
collection DOAJ
language English
format Article
sources DOAJ
author Daxing Wen
Haicheng Xu
Liuyong Xie
Mingrong He
Hongcun Hou
Chunqing Zhang
spellingShingle Daxing Wen
Haicheng Xu
Liuyong Xie
Mingrong He
Hongcun Hou
Chunqing Zhang
A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake
Scientific Reports
author_facet Daxing Wen
Haicheng Xu
Liuyong Xie
Mingrong He
Hongcun Hou
Chunqing Zhang
author_sort Daxing Wen
title A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake
title_short A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake
title_full A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake
title_fullStr A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake
title_full_unstemmed A loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake
title_sort loose endosperm structure of wheat seed produced under low nitrogen level promotes early germination by accelerating water uptake
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-06-01
description Abstract Water uptake is the fundamental requirement for the initiation and completion of seed germination that is a vital phase in the life cycle of seed plants. We found that seeds produced under four nitrogen levels showed significantly different germination speed. The objective of this study was to study the mechanism of rapid seed germination and explore which pathways and genes play critical roles in radicle protrusion. Anatomical data revealed that seed protein content affected endosperm structure of seeds. Moreover, scanning electron microscope maps showed that faster germinated seeds had a looser endosperm structure compared with other seeds. Subsequently, high throughout RNA-seq data were used to compare the transcriptomes of imbibed seeds with different germination speed. Gene ontology (GO) term enrichment analysis revealed that cell wall metabolism related genes significantly up-regulated in faster germinated seeds. In these genes, the top four were chitinase that had about fourfold higher expression in faster germinated seeds. Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analysis showed that faster germinated seeds had enhanced expression in glutathione metabolism. By combining these results, we propose a model for nitrogen fertilizer affects germination speed of wheat seed, which provide new insights into seed germination.
url https://doi.org/10.1038/s41598-017-03333-4
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