首页> 美国卫生研究院文献>Annals of Botany >The Production and Release of Living Root Cap Border Cells is a Function of Root Apical Meristem Type in Dicotyledonous Angiosperm Plants
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The Production and Release of Living Root Cap Border Cells is a Function of Root Apical Meristem Type in Dicotyledonous Angiosperm Plants

机译:活的根冠边缘细胞的产生和释放是双子叶被子植物根尖分生组织类型的函数

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摘要

• Background and Aims The root apical meristems (RAM) of flowering plant roots are organized into recognizable pattern types. At present, there are no known ecological or physiological benefits to having one RAM organization type over another. Although there are phylogenetic distribution patterns in plant groups, the possible evolutionary advantages of different RAM organization patterns are not understood. Root caps of many flowering plant roots are known to release living border cells into the rhizosphere, where the cells are believed to have the capacity to alter conditions in the soil and to interact with soil micro-organisms. Consequently, high rates of border cell production may have the potential to benefit plant growth and development greatly, and to provide a selective advantage in certain soil environments. This study reports the use of several approaches to elucidate the anatomical and developmental relationships between RAM organization and border cell production.• Methods RAM types from many species were compared with numbers of border cells released in those species. In addition, other species were grown, fixed and sectioned to verify their organization type and capacity to produce border cells. Root tips were examined microscopically to characterize their pattern and some were stained to determine the viability of root cap cells.• Key Results The first report of a correlation between RAM organization type and the production and release of border cells is provided: species exhibiting open RAM organization produce significantly more border cells than species exhibiting closed apical organization. Roots with closed apical organization release peripheral root cap cells in sheets or large groups of dead cells, whereas root caps with open organization release individual living border cells.• Conclusions This study, the first to document a relationship between RAM organization, root cap behaviour and a possible ecological benefit to the plant, may yield a framework to examine the evolutionary causes for the diversification of RAM organization types across taxa.
机译:•背景和目的开花植物根的根尖分生组织(RAM)被组织为可识别的模式类型。当前,使一种RAM组织类型优于另一种RAM组织类型尚无已知的生态或生理益处。尽管植物群中存在系统发育的分布模式,但不同RAM组织模式的可能进化优势尚不明确。已知许多开花植物根部的根冠都能将活的边界细胞释放到根际中,据信该细胞具有改变土壤条件并与土壤微生物相互作用的能力。因此,较高的边界细胞产量可能具有极大地有益于植物生长和发育的潜力,并在某些土壤环境中具有选择优势。这项研究报告了几种方法的使用,以阐明RAM组织与边界细胞产生之间的解剖学和发育关系。•方法将许多物种的RAM类型与这些物种释放的边界细胞的数量进行了比较。此外,还对其他物种进行了生长,固定和切片,以验证其组织类型和产生边界细胞的能力。显微镜下检查了根尖,以表征其模式,并对根尖进行了染色,以确定根冠细胞的活力。•主要结果提供了有关RAM组织类型与边界细胞产生和释放之间相关性的第一份报告:具有开放RAM的物种与产生封闭的顶端组织的物种相比,组织产生的边界细胞明显多。根部闭合的根在表层​​或大量死细胞中释放周围的根冠细胞,而根部开放的根冠释放单个活的边界细胞。•结论这项研究首次证明了RAM的组织,根冠行为与根系之间的关系。这可能会给植物带来生态效益,可能会产生一个框架来研究整个分类单元中RAM组织类型多样化的进化原因。

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