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Eight distinct cellulose synthase catalytic subunit genes from Betula luminifera are associated with primary and secondary cell wall biosynthesis

机译:发光桦的八个不同的纤维素合酶催化亚基基因与一次和二次细胞壁的生物合成有关

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Cellulose, a significant proportion of the plant cell wall, is the main determining factor of the wood qualities of a timber tree. Cellulose synthase(CESA), an essential catalyst for cellulose biosynthesis, is encoded by the CesA gene family. We isolated eight full-length CesA cDNAs from Betula luminifera on the basis of transcriptome sequencing. The predicted proteins comprised 985-1,103 amino acids, sharing 85-92 % identity with the corresponding PtiCESAs from Populus trichocarpa. Each protein contained typical motifs of plant CESA proteins. Phylogenetic analysis showed that BlCESA1, BlCESA3 and BlCESA4 belonged to three clades linked to secondary cell wall synthesis, and BlCESA2, BlCESA5, BlCESA6, BlCESA7 and BlCESA8 belonged to three clades associated with primary cell wall synthesis. Quantitative reverse transcription PCR and in situ mRNA hybridization indicated that transcripts of BlCesA1, BlCesA3 and BlCesA4 were most abundant in the xylem of the lignified stem and had similar expression patterns when treated with hormones and sucrose. Thus, the proteins encoded by these three genes might be subunits of the secondary wall CesA complex. However, the expression patterns of BlCesA1, BlCesA3 and BlCesA4 were different in response to mechanical stress. These three genes showed much higher expression levels in the tension wood than in the control, and they showed different expression patterns in the opposite wood, suggesting that these genes play different roles during secondary wall formation. BlCesA2, BlCesA5, BlCesA6 and BlCesA7 were predominantly expressed in the leaf and phloem. BlCesA8, which is most similar to BlCesA6, was strongly expressed in the leaf, phloem and cambium. Interestingly, these two genes showed distinct expression patterns when treated with hormones, sucrose and bending. Thus, in addition to biosynthesis of the primary cell wall, BlCesA8 might have other functions.
机译:纤维素是植物细胞壁的重要组成部分,是决定木本木材品质的主要决定因素。纤维素合酶(CESA)是纤维素生物合成的重要催化剂,由CesA基因家族编码。我们在转录组测序的基础上从桦木中分离了八个全长CesA cDNA。预测的蛋白质包含985-1,103个氨基酸,与来自毛果杨的相应PtiCESA具有85-92%的同一性。每种蛋白质均包含植物CESA蛋白质的典型基序。系统发育分析表明,BlCESA1,BlCESA3和BlCESA4属于与次级细胞壁合成相关的三个进化枝,而BlCESA2,BlCESA5,BlCESA6,BlCESA7和BlCESA8属于与初级细胞壁合成相关的三个进化枝。定量反转录PCR和原位mRNA杂交表明,BlCesA1,BlCesA3和BlCesA4的转录本在木质化茎的木质部中最丰富,并且在用激素和蔗糖处理时具有相似的表达模式。因此,由这三个基因编码的蛋白质可能是次生壁CesA复合体的亚基。但是,BlCesA1,BlCesA3和BlCesA4的表达模式响应于机械应力而不同。这三个基因在张力木材中显示出比对照高得多的表达水平,并且它们在相反木材中显示出不同的表达模式,表明这些基因在次生壁形成过程中发挥了不同的作用。 BlCesA2,BlCesA5,BlCesA6和BlCesA7主要在叶片和韧皮部中表达。与BlCesA6最相似的BlCesA8在叶,韧皮部和形成层中强烈表达。有趣的是,当用激素,蔗糖和弯曲处理时,这两个基因显示出不同的表达模式。因此,除了原代细胞壁的生物合成之外,BlCesA8可能还具有其他功能。

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