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RML1 and RML2 Arabidopsis genes required for cell proliferation at the root tip.

机译:RML1和RML2是根尖细胞增殖所需的拟南芥基因。

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摘要

New cells are produced from the meristematic tissues located at the shoot and root tip throughout the life of higher plants. To investigate the genetic mechanism regulating meristematic activity, we isolated and characterized four single-gene, recessive mutants in Arabidopsis thaliana called root meristemless (rml). Complementation tests identified two RML loci; RML1 maps to chromosome IV and RML2 maps to chromosome III. These mutants produce normal embryonic roots that either did not undergo or experienced limited cell division following germination, resulting in primary roots of less than 2.0 mm in length. Mutants can produce lateral and adventitious roots, which can grow to a length comparable to the embryonic root and arrest, indicating that the growth arrest is unrelated to the embryonic dormancy process. Neither the addition of growth regulators to the media nor the removal of shoots can rescue mutant roots from growth arrest, indicating that the mutant phenotype is not caused by a shortage of known growth regulators or by a transmissible shoot inhibitor. Normal cell division ability in mutant embryo, shoot, and callus cells indicates that the RML gene functions are not part of the general cell division processes; rather, they are involved specifically in activating the cell division cycle in the root apical cells.
机译:在高等植物的整个生命周期中,新芽都是从位于枝条和根尖的分生组织产生的。为了研究调节分生组织活动的遗传机制,我们在拟南芥中分离并鉴定了四个单基因隐性突变体,称为根分生组织(rml)。互补测试确定了两个RML基因座; RML1映射到染色体IV,RML2映射到染色体III。这些突变体产生正常的胚根,其发芽后未经历或未经历有限的细胞分裂,导致初生根的长度小于2.0 mm。突变体可以产生侧生和不定根,其根长可以与胚胎的根和停滞相当,这表明生长停滞与胚胎的休眠过程无关。向培养基中添加生长调节剂或去除芽都不能从生长停滞中挽救突变体根,这表明突变体表型不是由缺乏已知的生长调节剂或由可传播的芽抑制剂引起的。突变的胚胎,幼芽和愈伤组织细胞的正常细胞分裂能力表明RML基因功能不是一般细胞分裂过程的一部分。相反,它们专门参与激活根尖细胞的细胞分裂周期。

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