首页> 外文期刊>Environment control in biology >Continuous Long-term UV-B Irradiation Reduces Division and Expansion of Epidermal Cells in True Leaves, but Accelerates Developmental Stages Such as True Leaf Unfolding and Male Flower Bud Production in Cucumber (Cucumis sativus L.) Seedlings
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Continuous Long-term UV-B Irradiation Reduces Division and Expansion of Epidermal Cells in True Leaves, but Accelerates Developmental Stages Such as True Leaf Unfolding and Male Flower Bud Production in Cucumber (Cucumis sativus L.) Seedlings

机译:连续长期UV-B辐射可减少真叶中表皮细胞的分裂和扩展,但可加速黄瓜( Cucumis sativus 。)幼苗的真叶展开和雄花芽生成等发育阶段。

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We examined the effects of 25 d of continuous ultraviolet-B (UV-B) irradiation (0.57 W m~(?2)) on cucumber (Cucumis sativus L.) seedlings. The leaf areas of all unfolded true leaves and the plant height were reduced considerably by 25 d of UV-B irradiation. In each true leaf, both the epidermal cell area and the total epidermal cell number were reduced after UV-B treatment. The expression of five cell cycle-related genes (Cs Cyclin A [CsCycA ], CsCycB, CsCycD3;1, CsCycD3;2 , and Cs Cyclin-dependent kinase A [CsCDKA ]) in the shoot apical meristem (SAM) was reduced within 48 h of UV-B exposure. These results indicate that continuous UV-B irradiation inhibits the cell cycle in the SAM and thus reduces cell division and cell expansion in true leaves. On the other hand, the number of unfolded true leaves increased after exposure to UV-B for 15–25 d. Furthermore, 60% of the plants produced male flower buds after exposure to UV-B for 25 d. Therefore, continuous long-term UV-B irradiation affects the SAM of cucumber seedlings, resulting in reduced plant growth, but does accelerate various developmental stages.
机译:我们检查了连续25 d紫外线(UV-B)辐照(0.57 W m〜(?2))对黄瓜(Cucumis sativus L.)幼苗的影响。 25 d的UV-B辐射使所有未展开的真叶的叶面积和植物高度大大降低。在每片真叶中,UV-B处理后,表皮细胞面积和总表皮细胞数均减少。五个细胞周期相关基因的表达( Cs Cyclin A [ CsCycA], CsCycB,CsCycD3; 1,CsCycD3; 2和 Cs Cyclin依赖性激酶A [在UV-B暴露48小时内,茎尖分生组织(SAM)中的CsCDKA])降低。这些结果表明,连续的UV-B辐射抑制了SAM中的细胞周期,从而减少了真叶中的细胞分裂和细胞膨胀。另一方面,暴露于UV-B 15-25 d后,未折叠的真叶数量增加。此外,60%的植物在暴露于UV-B 25天后产生了雄性花蕾。因此,连续的长期UV-B辐射会影响黄瓜幼苗的SAM,导致植物生长减少,但会加速各个发育阶段。

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