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Genome-wide analysis of gene expression profiles during early ear development of sweet corn under heat stress

机译:热胁迫下甜玉米早期穗发育过程中基因表达谱的全基因组分析

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Heat stress is one of the limiting factors for the production of sweet corn in southern China, influencing ear formation and reducing yield. Identification of relationships between heat responses and genetic regulatory mechanisms is of great significance to breeding for heat tolerance and production of summer planted sweet corn. In this study, DGE (digital gene expression) was used to investigate the global gene expression profiles for early ear development of the sweet corn cultivar Yuetian 13' under heat stress. Results indicated that, in the distribution of total clean tags, high-expression tags with copy numbers larger than 100 were in absolute dominance, whereas low-expression tags with copy numbers smaller than five occupy the majority of distinct tag distributions. Further functional annotation of differentially expressed genes showed that 17893 genes could be categorized into three main groups. Of them, 13.7% were distributed in cell parts, intracellular, organelle, cytoplasm and membrane in cellular component category, 26.6% possessed catalytic, binding, hydrolase, and transferase and oxidoreductase activities in the molecular function category, and 59.7% were involved in metabolic processes, cellular processes, responses to stimuli, and transport and biological regulation in the biological process. A total of 949 significantly differential expression genes were detected, including 705 upregulated and 244 downregulated. Among them, 108 and 40 genes were upregulated and downregulated at least 10-fold. Under heat stress, the genes related to maintenance of cell structure, photosynthesis, signal transduction, transcription factors and response to stress with higher expression levels in the ear might be valuable for understanding early kernel and ear development. Deep research on characterizing differentially expressed genes with unknown functions will lay the foundation for further identification of genetic regulatory mechanisms under heat stress.
机译:热应激是中国南部甜玉米生产的限制因素之一,影响穗形成并降低产量。鉴定热响应与遗传调控机制之间的关系对于育种耐热性和夏季种植甜玉米的生产具有重要意义。在这项研究中,DGE(数字基因表达)被用于研究甜玉米品种悦天13'在热胁迫下早期穗发育的整体基因表达谱。结果表明,在总的干净标签的分布中,拷贝数大于100的高表达标签在绝对优势中占优势,而拷贝数小于5的低表达标签则占据了大部分明显的标签分布。差异表达基因的进一步功能注释表明,可以将17893个基因分为三大类。其中13.7%分布在细胞组成部分的细胞部分,细胞内,细胞器,细胞质和膜中; 26.6%具有分子功能类别的催化,结合,水解酶,转移酶和氧化还原酶活性; 59.7%参与代谢过程,细胞过程,对刺激的反应以及生物过程中的运输和生物调节。共检测到949个显着差异表达基因,包括705个上调和244个下调。其中108和40个基因被上调和下调至少10倍。在热胁迫下,与维持细胞结构,光合作用,信号转导,转录因子和对应激反应相关的基因在耳朵中具有较高的表达水平,可能对于了解早期仁和耳朵的发育非常有价值。深入研究表征未知功能的差异表达基因将为进一步鉴定热胁迫下的遗传调控机制奠定基础。

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