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首页> 外文期刊>PLoS Genetics >Nitrate-responsive OBP4-XTH9 regulatory module controls lateral root development in Arabidopsis thaliana
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Nitrate-responsive OBP4-XTH9 regulatory module controls lateral root development in Arabidopsis thaliana

机译:硝酸盐响应性OBP4-XTH9调节模块控制拟南芥侧根的发育

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Plant root system architecture in response to nitrate availability represents a notable example to study developmental plasticity, but the underlying mechanism remains largely unknown. Xyloglucan endotransglucosylases (XTHs) play a critical role in cell wall biosynthesis. Here we assessed the gene expression of XTH1-11 belonging to group I of XTHs in lateral root (LR) primordia and found that XTH9 was highly expressed. Correspondingly, an xth9 mutant displayed less LR, while overexpressing XTH9 presented more LR, suggesting the potential function of XTH9 in controlling LR development. XTH9 gene mutation obviously alters the properties of the cell wall. Furthermore, nitrogen signals stimulated the expression of XTH9 to promote LRs. Genetic analysis revealed that the function of XTH9 was dependent on auxin-mediated ARF7/19 and downstream AFB3 in response to nitrogen signals. In addition, we identified another transcription factor, OBP4 , that was also induced by nitrogen treatment, but the induction was much slower than that of XTH9 . In contrast to XTH9 , overexpressing OBP4 caused fewer LRs while OBP4 knockdown with OBP4-RNAi or an artificial miRNA silenced amiOBP4 line produced more LR. We further found OBP4 bound to the promoter of XTH9 to suppress XTH9 expression. In agreement with this, both OBP4-RNAi and crossed OBP4-RNAi & 35S :: XTH9 lines led to more LR, but OBP4-RNAi & xth9 produced less LR, similar to xth9 . Based on these findings we propose a novel mechanism by which OBP4 antagonistically controls XTH9 expression and the OBP4 - XTH9 module elaborately sustains LR development in response to nitrate treatment.
机译:响应硝酸盐有效性的植物根系体系结构是研究发育可塑性的一个显着例子,但其潜在机理仍是未知之数。木葡聚糖内转葡糖基化酶(XTH)在细胞壁生物合成中起关键作用。在这里,我们评估了侧根(LR)原基中属于XTHs第一组的XTH1-11的基因表达,发现XTH9高度表达。相应地,xth9突变体显示较少的LR,而过表达XTH9则显示更多的LR,表明XTH9在控制LR发育中的潜在功能。 XTH9基因突变明显改变了细胞壁的特性。此外,氮信号刺激XTH9的表达以促进LRs。遗传分析表明,XTH9的功能依赖于生长素介导的ARF7 / 19和下游AFB3对氮信号的响应。此外,我们鉴定了另一种转录因子OBP4,它也被氮处理诱导,但是诱导的速度比XTH9慢得多。与XTH9相比,过表达OBP4导致更少的LR,而用OBP4-RNAi或人工miRNA沉默的amiOBP4系对OBP4进行敲除则产生了更多的LR。我们进一步发现OBP4绑定到XTH9的启动子以抑制XTH9的表达。与此一致的是,OBP4-RNAi和杂交的OBP4-RNAi&35S :: XTH9品系均导致更多的LR,但OBP4-RNAi和xth9产生的LR较少,类似于xth9。基于这些发现,我们提出了一种新颖的机制,通过该机制,OBP4拮抗XTH9的表达,而OBP4-XTH9模块则通过响应硝酸盐处理而精心维持LR的发育。

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