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Polyploidy and Cellular Mechanisms Changing Leaf Size: Comparison of Diploid and Autotetraploid Populations in Two Species of Lolium

机译:改变叶片大小的多倍体和细胞机制:两种黑麦草的二倍体和同源四倍体种群比较

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摘要

• Background and Aims Growth and development of plant organs, including leaves, depend on cell division and expansion. Leaf size is increased by greater cell ploidy, but the mechanism of this effect is poorly understood. Therefore, in this study, the role of cell division and expansion in the increase of leaf size caused by polyploidy was examined by comparing various cell parameters of the mesophyll layer of developing leaves of diploid and autotetraploid cultivars of two grass species, Lolium perenne and L. multiflorum.• Methods Three cultivars of each ploidy level of both species were grown under pot conditions in a controlled growth chamber, and leaf elongation rate and the cell length profile at the leaf base were measured on six plants in each cultivar. Cell parameters related to division and elongation activities were calculated by a kinematic method.• Key Results Tetraploid cultivars had faster leaf elongation rates than did diploid cultivars in both species, resulting in longer leaves, mainly due to their longer mature cells. Epidermal and mesophyll cells differed 20-fold in length, but were both greater in the tetraploid cultivars of both species. The increase in cell length of the tetraploid cultivars was caused by a faster cell elongation rate, not by a longer period of cell elongation. There were no significant differences between cell division parameters, such as cell production rate and cell cycle time, in the diploid and tetraploid cultivars.• Conclusion The results demonstrated clearly that polyploidy increases leaf size mainly by increasing the cell elongation rate, but not the duration of the period of elongation, and thus increases final cell size.
机译:•背景和目的植物器官(包括叶子)的生长和发育取决于细胞的分裂和扩展。较大的细胞倍性会增加叶的大小,但对该作用的机理了解甚少。因此,在这项研究中,通过比较两个草种黑麦草和L的二倍体和同四倍体栽培品种的发育叶片的叶肉层的各种细胞参数,研究了细胞分裂和扩增在多倍体引起的叶大小增加中的作用。方法在一个盆栽条件下,在一个受控的生长室中,将两个物种的每个倍性水平的三个栽培品种进行种植,并在每个栽培品种的六株植物上测量叶片的伸长率和叶基的细胞长度分布。通过运动学方法计算了与分裂和伸长活性相关的细胞参数。•关键结果在两个物种中,四倍体品种的叶片伸长率均比二倍体品种快,导致叶片更长,这主要是由于它们的成熟细胞更长。表皮和叶肉细胞的长度相差20倍,但在两个物种的四倍体品种中都更大。四倍体栽培种的细胞长度增加是由较快的细胞伸长率引起的,而不是由较长的细胞伸长期引起的。在二倍体和四倍体栽培品种中,细胞分裂参数(例如细胞产生速率和细胞周期时间)之间没有显着差异。•结论结果清楚地表明,多倍体主要通过增加细胞伸长率来增加叶片大小,而不是增加持续时间延长期的时间,因此增加了最终的细胞大小。

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