Transcriptomic analysis of differentially expressed genes in flower-buds of genetic male sterile and wild type cucumber by RNA sequencing
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作者:
Yike Han
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机构:China Agricultural University,Department of Vegetable Science
Yike Han
Xianyun Wang
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机构:China Agricultural University,Department of Vegetable Science
Xianyun Wang
Fengyue Zhao
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机构:China Agricultural University,Department of Vegetable Science
Fengyue Zhao
Shang Gao
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机构:China Agricultural University,Department of Vegetable Science
Shang Gao
Aimin Wei
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机构:China Agricultural University,Department of Vegetable Science
Aimin Wei
Zhengwu Chen
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机构:China Agricultural University,Department of Vegetable Science
Zhengwu Chen
Nan Liu
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机构:China Agricultural University,Department of Vegetable Science
Nan Liu
Zhenxian Zhang
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机构:China Agricultural University,Department of Vegetable Science
Zhenxian Zhang
Shengli Du
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机构:China Agricultural University,Department of Vegetable Science
Shengli Du
机构:
[1] China Agricultural University,Department of Vegetable Science
[2] Tianjin Kernel Cucumber Research Institute,State Key Laboratory of Vegetable Germplasm Innovation, Tianjin Key Laboratory of Vegetable Breeding Enterprise
[3] Nankai University,College of Life
[4] University of Illinois,The Richard and Loan Hill Department of Bioengineering
来源:
Physiology and Molecular Biology of Plants
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2018年
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24卷
关键词:
Transcriptomics;
RNA-seq;
Genetic male sterility;
Cucumber;
D O I:
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学科分类号:
摘要:
Cucumber (Cucumis sativus L.) pollen development involves a diverse range of gene interactions between sporophytic and gametophytic tissues. Previous studies in our laboratory showed that male sterility was controlled by a single recessive nuclear gene, and occurred in pollen mother cell meiophase. To fully explore the global gene expression and identify genes related to male sterility, a RNA-seq analysis was adopted in this study. Young male flower-buds (1–2 mm in length) from genetic male sterility (GMS) mutant and homozygous fertile cucumber (WT) were collected for two sequencing libraries. Total 545 differentially expressed genes (DEGs), including 142 up-regulated DEGs and 403 down-regulated DEGs, were detected in two libraries (Fold Change ≥ 2, FDR < 0.01). These genes were involved in a variety of metabolic pathways, like ethylene-activated signaling pathway, sporopollenin biosynthetic pathway, cell cycle and DNA damage repair pathway. qRT-PCR analysis was performed and showed that the correlation between RNA-Seq and qRT-PCR was 0.876. These findings contribute to a better understanding of the mechanism that leads to GMS in cucumber.
机构:
Seoul Natl Univ, Interdisciplinary Program Bioinformat, Seoul 151741, South Korea
Seoul Natl Univ, CHO&KIM Genom, Seoul 151919, South KoreaChung Ang Univ, Dept Integrat Plant Sci, Ansung 456756, South Korea
Seo, Minseok
Jang, Yoon-Jeong
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机构:
Chung Ang Univ, Dept Integrat Plant Sci, Ansung 456756, South KoreaChung Ang Univ, Dept Integrat Plant Sci, Ansung 456756, South Korea
Jang, Yoon-Jeong
Cho, Seoae
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机构:
Seoul Natl Univ, CHO&KIM Genom, Seoul 151919, South KoreaChung Ang Univ, Dept Integrat Plant Sci, Ansung 456756, South Korea