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首页> 外文期刊>Plant Biotechnology >ATL54, a RING-H2 domain protein selected by a gene co-expression network analysis, is associated with secondary cell wall formation mArabidopsis
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ATL54, a RING-H2 domain protein selected by a gene co-expression network analysis, is associated with secondary cell wall formation mArabidopsis

机译:通过基因共表达网络分析选择的RING-H2域蛋白ATL54与次级细胞壁形成拟南芥有关

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Biosynthesis of plant secondary cell walls is controlled by several master transcription factors. Ubiquitin ligases, which mediate ubiquitination of proteins, including transcription factors in the protein degradation pathway, are also believed to regulate secondary wall biosynthesis; however, the exact ubiquitin ligases involved in secondary wall formation have not yet been identified. We conducted a gene co-expression network analysis and found that ATL54, annotated as a RING-finger protein, was highly co-expressed with several transcription factor and enzyme genes involved in secondary wall formation. A recombinant ATL54 protein showed ubiquitin ligase activity. The expression of several biosynthetic genes of cellulose, lignin, and xylan in apical portions of inflorescence stems was up-regulated by ATL54 knock-out. The expression of Xylem Cysteine Peptidase 1 (XCP1), which participates in the programmed cell death process of xylem tracheary elements, was down-regulated in middle stem portions ofboth ATL54-knock-out and ATL54-overexpressed mutants. Alteration of ATL54 expression levels did not, however, affect lignin and polysaccharide content and composition in whole mature stems. Our results suggest that ATL54 is an E3 ubiquitin ligase involved in secondary wall biosynthesis and programmed cell death during xylogenesis.
机译:植物次级细胞壁的生物合成受几个主转录因子控制。泛素连接酶介导蛋白质的泛素化,包括蛋白质降解途径中的转录因子,也被认为可调节次生壁的生物合成。然而,尚未确定参与次生壁形成的确切泛素连接酶。我们进行了基因共表达网络分析,发现被标注为RING手指蛋白的ATL54与涉及次级壁形成的几种转录因子和酶基因高度共表达。重组ATL54蛋白显示泛素连接酶活性。纤维素,木质素和木聚糖的几个生物合成基因在花序茎的顶端部分的表达被ATL54敲除上调。木质部半胱氨酸肽酶1(XCP1)的表达,参与了木质部气管元件的程序性细胞死亡过程,在ATL54基因敲除和ATL54过表达的突变体的中间茎部分被下调。然而,ATL54表达水平的改变并不影响整个成熟茎中木质素和多糖的含量和组成。我们的结果表明,ATL54是一种E3泛素连接酶,参与了次生壁的生物合成和木糖生成过程中的程序性细胞死亡。

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