首页> 外文期刊>Plant Biotechnology Journal >Transcriptome analysis reveals season?¢????specific rbcS gene expression profiles in diploid perennial ryegrass ( Lolium perenne L.)
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Transcriptome analysis reveals season?¢????specific rbcS gene expression profiles in diploid perennial ryegrass ( Lolium perenne L.)

机译:转录组分析揭示了二倍体多年生黑麦草(黑麦草)中的季节特定rbcS基因表达谱。

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Perennial ryegrass ( Lolium perenne L.) is a major grass species used for forage and turf throughout the world, and gains by conventional breeding have reached a plateau. Perennial ryegrass is an outcrossing, self?¢????incompatible diploid (2 n ????=????2 x ????=????14) with a relatively large genome (4067????Mbp/diploid genome; Evans, G.M., Rees, H., Snell, C.L. and Sun, S. (1972) The relation between nuclear DNA amount and the duration of the mitotic cycle. Chrom. Today , 3 , 24?¢????31). Using tissues sourced from active pastures during the peak of the autumn, winter, spring and summer seasons, we analysed the ryegrass transcriptome employing a Serial Analysis of Gene Expression (SAGE?¢???¢) protocol, with the dual goals of understanding the seasonal changes in perennial ryegrass gene expression and enhancing our ability to select genes for genetic manipulation. A total of 159????002 14?¢????mer SAGE?¢???¢ tags was sequenced and mapped to the perennial ryegrass DNA database, comprising methyl?¢????filtered (GeneThresher ???? ) and expressed sequence tag (EST) sequences. The analysis of 14????559 unique SAGE?¢???¢ tags, which were present more than once in our SAGE?¢???¢ library, revealed 964, 1331, 346 and 131 exclusive transcripts to autumn, winter, spring and summer, respectively. Intriguingly, our analysis of the SAGE?¢???¢ tags revealed season?¢????specific expression profiles for the small subunit of ribulose?¢????1,5?¢????bisphosphate carboxylase (Rubisco), LprbcS . The transcript level for LprbcS was highest in spring, and then decreased gradually between summer and winter. Five different copies of LprbcS were revealed in ryegrass, with one possibly producing splice variant transcripts. Two highly expressed LprbcS genes were reported, one of which was not active in autumn. Another LprbcS gene showed an inverse expression profile to the autumn inactive LprbcS in a manner to compensate the expression level.
机译:多年生黑麦草(Lolium perenne L.)是世界范围内用于草料和草皮的主要草种,常规育种的收益已达到稳定水平。多年生黑麦草是异型的,自交不亲和的二倍体(2 n ???? = ??? 2 x ???? = ??? 14),具有相对较大的基因组(4067 ???)。 Mbp /二倍体基因组; Evans,GM,Rees,H.,Snell,CL和Sun,S.(1972)核DNA量与有丝分裂周期持续时间的关系。Chrom。Today,3,24? 31)。我们使用在秋季,冬季,春季和夏季高峰期从活动牧场获得的组织,通过基因表达序列分析(SAGE ???????)方案分析了黑麦草转录组,其双重目标是了解多年生黑麦草基因表达的季节性变化,增强了我们选择基因进行基因操作的能力。对总共159个002 14个SAGE标记进行了测序,并定位到多年生黑麦草DNA数据库中,该数据库包含已过滤的甲基(GeneThresher? )和表达的序列标签(EST)序列。对14个559个唯一SAGE标签的分析(在我们的SAGE库中多次出现)显示,秋季,冬季分别有964、1331、346和131个独家转录本,分别是春季和夏季。有趣的是,我们对SAGE标记的分析揭示了核糖小亚基的季节特异性表达谱,其中1,2,5,5-二磷酸羧化酶(Rubisco ),LprbcS。 LprbcS的转录水平在春季最高,然后在夏季和冬季之间逐渐降低。在黑麦草中发现了五种不同的LprbcS拷贝,其中一个可能产生剪接变体转录本。报道了两个高度表达的LprbcS基因,其中一个在秋天不活跃。另一个LprbcS基因与秋季无活性的LprbcS表现出相反的表达谱,以补偿表达水平。

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