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首页> 外文期刊>BMC Plant Biology >RNA-seq analysis of lignocellulose-related genes in hybrid Eucalyptus with contrasting wood basic density
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RNA-seq analysis of lignocellulose-related genes in hybrid Eucalyptus with contrasting wood basic density

机译:具有不同木材基本密度的杂交桉树木质纤维素相关基因的RNA-seq分析

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Wood basic density (WBD), the biomass of plant cell walls per unit volume, is an important trait for elite tree selection in kraft pulp production. Here, we investigated the correlation between WBD and wood volumes or wood properties using 98 open-pollinated, 2.4 to 2.8?year-old hybrid Eucalyptus (Eucalyptus urophylla x E. grandis). Transcript levels of lignocellulose biosynthesis-related genes were studied. The progeny plants had average WBD of 516?kg/m3 with normal distribution and did not show any correlations between WBD and wood volume or components of α-cellulose, hemicellulose and Klason lignin content. Transcriptomic analysis of two groups of five plants each with high (570–609?kg/m3) or low (378–409?kg/m3) WBD was carried out by RNA-Seq analysis with total RNAs extracted from developing xylem tissues at a breast height. Lignocellulose biosynthesis-related genes, such as cellulose synthase, invertase, cinnamate-4-hydroxylase and cinnamoyl-CoA reductase showed higher transcript levels in the high WBD group. Among plant cell wall modifying genes, increased transcript levels of several expansin and xyloglucan endo-transglycosylase/hydrolase genes were also found in high WBD plants. Interestingly, strong transcript levels of several cytoskeleton genes encoding tubulin, actin and myosin were observed in high WBD plants. Furthermore, we also found elevated transcript levels of genes encoding NAC, MYB, basic helix-loop-helix, homeodomain, WRKY and LIM transcription factors in the high WBD plants. All these results indicate that the high WBD in plants has been associated with the increased transcription of many genes related to lignocellulose formation. Most lignocellulose biosynthesis related genes exhibited a tendency to transcribe at relatively higher level in high WBD plants. These results suggest that lignocellulose biosynthesis-related genes may be associated with WBD.
机译:木材基本密度(WBD)是每单位体积植物细胞壁的生物量,是牛皮纸浆生产中优良树种选择的重要特征。在这里,我们使用98棵开放授粉,2.4至2.8岁的杂交桉(Eucalyptus urophylla x E. grandis)调查了WBD与木材体积或木材特性之间的相关性。研究了木质纤维素生物合成相关基因的转录水平。该子代植物的平均WBD为516?kg / m3,呈正态分布,并且在WBD与木材体积或α-纤维素,半纤维素和Klason木质素含量的组成之间没有任何相关性。通过RNA-Seq分析对五种植物的WBD高(570-609?kg / m3)或低(378-409?kg / m3)的两组进行转录组学分析,从发育中的木质部组织中提取总RNA。乳房的高度。木质纤维素生物合成相关基因,例如纤维素合酶,转化酶,肉桂酸-4-羟化酶和肉桂酰辅酶A还原酶在高WBD组中表现出较高的转录水平。在植物细胞壁修饰基因中,在高WBD植物中还发现了几种弹性蛋白和木葡聚糖内转糖基化酶/水解酶基因的转录水平升高。有趣的是,在高WBD植物中观察到了几种编码微管蛋白,肌动蛋白和肌球蛋白的细胞骨架基因的强转录水平。此外,我们还发现高WBD植物中编码NAC,MYB,基本螺旋-环-螺旋,同源结构域,WRKY和LIM转录因子的基因的转录水平升高。所有这些结果表明,植物中高的WBD与许多与木质纤维素形成有关的基因的转录增加有关。大多数木质纤维素生物合成相关基因在高WBD植物中表现出相对较高水平转录的趋势。这些结果表明,木质纤维素生物合成相关基因可能与WBD相关。

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