Nanjing Agricultural University, Nanjing, Jiangsu, China.
PLoS One. 2018 Jul 13;13(7):e0199437. doi: 10.1371/journal.pone.0199437. eCollection 2018.
In modern agricultural production, maize is the most successful crop utilizing heterosis. 712C-ms22 is an important male sterile material in maize. In this study, we performed transcriptome sequencing analysis of the V10 stage of male inflorescence. Through this analysis, 27.63 million raw reads were obtained, and trimming of the raw data revealed 26.63 million clean reads, with an average match rate of 94.64%. Using Tophat software, we matched these clean reads to the maize reference genome. The abundance of 39,622 genes was measured, and 35,399 genes remained after filtering out the non-expressed genes across all the samples. These genes were classified into 19 categories by clusters of orthologous groups of protein annotation. Transcriptome sequencing analysis of the male sterile and fertile 712C-ms22 maize revealed some key DEGs that may be related to metabolic pathways. qRT-PCR analysis validated the gene expression patterns identified by RNA-seq. This analysis revealed some of the essential genes responsible for pollen development and for pollen tube elongation. Our findings provide useful markers of male sterility and new insights into the global mechanisms mediating male sterility in maize.
在现代农业生产中,玉米是杂种优势利用最成功的作物。712C-ms22 是玉米中一种重要的雄性不育材料。本研究对玉米雄花序 V10 期进行了转录组测序分析。通过分析,获得了 2763 万条原始reads,对原始数据进行修剪后,得到 2663 万条clean reads,平均匹配率为 94.64%。使用 Tophat 软件,将这些 clean reads 与玉米参考基因组进行匹配。测量了 39622 个基因的丰度,过滤掉所有样本中无表达的基因后,剩余 35399 个基因。这些基因通过蛋白质注释的同源聚类被分为 19 类。对雄性不育和可育的 712C-ms22 玉米进行转录组测序分析,揭示了一些可能与代谢途径相关的关键差异表达基因。qRT-PCR 分析验证了 RNA-seq 鉴定的基因表达模式。该分析揭示了一些负责花粉发育和花粉管伸长的关键基因。我们的研究结果为雄性不育提供了有用的标记,并为玉米中雄性不育的全局机制提供了新的见解。