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首页> 外文期刊>The Plant Cell >Mutation of Arabidopsis BARD1 Causes Meristem Defects by Failing to Confine WUSCHEL Expression to the Organizing Center.
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Mutation of Arabidopsis BARD1 Causes Meristem Defects by Failing to Confine WUSCHEL Expression to the Organizing Center.

机译:拟南芥BARD1突变导致未能分离WUSCHEL表达到组织中心而导致分生组织缺陷。

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Stem cell fate in the Arabidopsis thaliana shoot apical meristem (SAM) is controlled by WUSCHEL (WUS) and CLAVATA. Here, we examine BARD1 (for BRCA1-associated RING domain 1), which had previously been implicated in DNA repair functions; we find that it also regulates WUS expression. We observed severe SAM defects in the knockout mutant bard1-3. WUS transcripts accumulated >238-fold in bard1-3 compared with the wild type and were located mainly in the outermost cell layers instead of the usual organizing center. A specific WUS promoter region was recognized by nuclear protein extracts obtained from wild-type plants, and this protein-DNA complex was recognized by antibodies against BARD1. The double mutant (wus-1 bard1-3) showed prematurely terminated SAM structures identical to those of wus-1, indicating that BARD1 functions through regulation of WUS. BARD1 overexpression resulted in reduced WUS transcript levels, giving a wus-1-like phenotype. Either full-length BARD1 or a clone that encoded the C-terminal domain (BARD1:C-ter;bard1-3) was sufficient to complement the bard1-3 phenotype, indicating that BARD1 functions through its C-terminal domain. Our data suggest that BARD1 regulates SAM organization and maintenance by limiting WUS expression to the organizing center.
机译:拟南芥茎尖分生组织(SAM)中的干细胞命运由WUSCHEL(WUS)和CLAVATA控制。在这里,我们检查了以前与DNA修复功能有关的BARD1(与BRCA1相关的RING域1)。我们发现它也调节WUS表达。我们在敲除突变体bard1-3中观察到严重的SAM缺陷。与野生型相比,WUS转录本在bard1-3中积累的> 238倍,并且主要位于最外层的细胞层,而不是通常的组织中心。从野生型植物获得的核蛋白提取物可识别特定的WUS启动子区域,而此蛋白-DNA复合物可被抗BARD1的抗体识别。双突变体(wus-1 bard1-3)显示出与wus-1相同的提前终止的SAM结构,表明BARD1通过调控WUS发挥功能。 BARD1过表达导致WUS转录水平降低,产生wus-1样表型。全长BARD1或编码C末端域的克隆(BARD1:C-ter; bard1-3)足以补充bard1-3表型,表明BARD1通过其C末端域起作用。我们的数据表明BARD1通过限制WUS表达到组织中心来调节SAM的组织和维护。

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