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首页> 外文期刊>International Journal of Agriculture and Biology >Identification of Photoperiod Responsive Genes in Wheat Cultivar Jing 841 by Transcriptome Sequencing
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Identification of Photoperiod Responsive Genes in Wheat Cultivar Jing 841 by Transcriptome Sequencing

机译:转录组测序鉴定小麦品种Jing 841的光周期响应基因

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The photoperiod pathway is crucial for flowering induction of plants, especially for most of annual plants. Photoperiod response is one of the essential developmental characteristics of wheat, which determines the flowering time of wheat and has an important impact on the ecological distribution, yield and quality of wheat. Therefore, the research on the molecular regulation mechanism of wheat photoperiod response is of great significance for the directional improvement of wheat varieties. The purpose of this research was to identify the photoperiod response genes in wheat Jing 841 by comparing the transcriptome data and the digital gene expression (DGE) profile of photoperiod sensitive wheat cultivar Jing 841 and photoperiod-insensitive wheat cultivar Liaochun 10 under different photoperiod conditions. For each cultivar, seedlings treated with different photoperiods were collected and sequenced by Solexa/Illumina sequencing, and a total of 89,702 unigenes were obtained. Some photoperiodic response genes in Jing 841 were verified through the quantitative reverse transcription polymerase chain reaction (qRT-PCR). According to the functional comment, a total of six categories with 92 DEGs were further identified which were specifically expressing in Jing 841. During a whole light/dark cycle (16 h/8 h and 6 h/18 h light/dark, respectively), three genes showed different expression patterns. The photoperiod response genes specifically expressed in Jing 841 may participate in the photoperiod regulation of wheat and exert an important role. The results provide critical information for the molecular mechanism of photoperiod regulation in wheat, which lays a significant foundation for further research on the development of wheat photoperiod.
机译:光周期途径对于植物的开花诱导至关重要,特别是对于大多数一年生植物而言。光周期响应是小麦的基本发育特征之一,它决定了小麦的开花时间,并对小麦的生态分布,产量和品质产生重要影响。因此,研究小麦光周期反应的分子调控机制对指导小麦品种的定向改良具有重要意义。本研究的目的是通过比较光周期敏感的小麦品种Jing 841和对光周期不敏感的小麦品种辽春10在不同光周期条件下的转录组数据和数字基因表达(DGE)谱来鉴定小麦Jing 841的光周期反应基因。对于每个品种,收集用不同光周期处理的幼苗,并通过Solexa / Illumina测序进行测序,共获得89,702个单基因。通过定量逆转录聚合酶链反应(qRT-PCR)验证了Jing 841中的一些光周期反应基因。根据功能评论,进一步鉴定出总共六种类别,其中有92个DEG专门在Jing 841中表达。在整个明/暗周期(分别为16 h / 8 h和6 h / 18 h亮/暗)中,三个基因表现出不同的表达方式。荆841特异表达的光周期反应基因可能参与小麦的光周期调控,并发挥重要作用。研究结果为小麦光周期调控的分子机制提供了重要信息,为进一步研究小麦光周期发展奠定了重要基础。

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