Acad. M. Popov, Institute of Plant Physiology, Bulgarian Academy of Sciences, Sofia, Bulgaria.
Plant Biol (Stuttg). 2011 Jan;13(1):22-7. doi: 10.1111/j.1438-8677.2009.00315.x.
The effect of endogenous cytokinins on the pattern of palisade cell division post-germination does not depend on the conditions of cotyledon development -in planta (attached to seedlings) or in vitro (isolated from dry zucchini seeds and cultured on water). In cotyledons originating from 4-day-old seedlings (experimental system 1), exogenous cytokinin temporarily (in the first 2 day of cultivation) enhanced post-mitotic cell enlargement of palisade cells, mainly due to enhanced water uptake and use of cell storage compounds, all of which lead to cotyledon senescence. Cytokinin is not able to resume the completed palisade cell division on day 5. As a result, the number of cells and the final areas of treated and control cotyledons are quite similar. By contrast, the effects of cytokinin on cotyledons isolated from dry seeds (experimental system 2) are better expressed, promoting an increase in number of palisade cells accompanied by additional cotyledon area enlargement. However, the prolonged post-mitotic cell expansion in control cotyledons compensates for the reduced speed of cell growth and division activity and decreases differences in final cotyledon area between treatments. The results define cell division as the primary target of cytokinin stimulation in cotyledon tissues competent for division, and determine the temporal patterns of palisade cell cycling related to cotyledon age. This knowledge permits a better choice of experimental system to study effects on cell proliferation and cell growth, as well as cell enlargement and senescence-related events using physiologically homogeneous material.
内源细胞分裂素对萌发后栅栏组织细胞分裂模式的影响不依赖于子叶发育的条件——在体内(附在幼苗上)或在体外(从干的西葫芦种子中分离出来并在水中培养)。在起源于 4 天大的幼苗的子叶(实验系统 1)中,外源细胞分裂素暂时(在培养的头 2 天)增强了栅栏组织细胞的有丝分裂后细胞增大,主要是由于增强了水分吸收和细胞储存化合物的利用,所有这些都导致子叶衰老。细胞分裂素无法在第 5 天恢复已完成的栅栏组织细胞分裂。因此,处理和对照子叶的细胞数量和最终面积非常相似。相比之下,细胞分裂素对子叶的影响从干种子中分离出来(实验系统 2)表现得更好,促进了栅栏细胞数量的增加,同时增加了子叶面积。然而,对照子叶中细胞分裂后期的延长扩展补偿了细胞生长速度和分裂活性的降低,并减少了处理间最终子叶面积的差异。这些结果将细胞分裂定义为细胞分裂素刺激具有分裂能力的子叶组织的主要目标,并确定了与子叶年龄相关的栅栏细胞循环的时间模式。这一知识允许更好地选择实验系统,以研究使用生理上同质的材料对细胞增殖、细胞生长、细胞增大和衰老相关事件的影响。