...
首页> 外文期刊>Environment control in biology >Continuous UV-B Irradiation Induces Endoreduplication and Trichome Formation in Cotyledons, and Reduces Epidermal Cell Division and Expansion in the First Leaves of Pumpkin Seedlings (Cucurbita maxima Duch.×C. moschata Duch.)
【24h】

Continuous UV-B Irradiation Induces Endoreduplication and Trichome Formation in Cotyledons, and Reduces Epidermal Cell Division and Expansion in the First Leaves of Pumpkin Seedlings (Cucurbita maxima Duch.×C. moschata Duch.)

机译:连续的UV-B辐射可诱导子叶的核内复制和节育体形成,并减少南瓜幼苗( Cucurbita maxima Duch。× C。moschata 杜赫)

获取原文
           

摘要

We examined the effects of continuous ultraviolet-B (UV-B) irradiation (0.58 W m~(?2)) for 15 d on pumpkin seedlings. Continuous irradiation for 15 d slightly reduced the expansion of epidermal cell area and leaf area, whereas total epidermal cell number did not change in cotyledons. Only normal trichomes consisting of three cells were observed on the surface of control cotyledons. On the UV-B-irradiated cotyledon surface from 3–7 d, smaller trichomes consisting of single cells were observed along with normal trichomes. The total number of trichomes increased after UV-B irradiation for 5–9 d compared with that of control cotyledons. Expansion of true leaves was disrupted by UV-B irradiation for 15 d. Expansion of epidermal cell area and leaf area was reduced substantially, and the total number of epidermal cells was reduced considerably after UV-B irradiation for 15 d. Thus, continuous UV-B irradiation of pumpkin seedlings induces endoreduplication and trichome formation in tissues lacking active cell division (cotyledons), and reduces cell division in tissues that are actively growing (shoot apical meristem including first leaves).
机译:我们研究了连续15 d紫外线B(UV-B)照射(0.58 W m〜(?2))对南瓜幼苗的影响。连续照射15 d会稍微减少表皮细胞面积和叶面积的膨胀,而子叶中的总表皮细胞数量没有变化。在对照子叶的表面上仅观察到由三个细胞组成的正常毛状体。在3-7 d的UV-B辐射子叶表面上,观察到由单个细胞组成的较小毛线虫和正常的毛线虫。与对照子叶相比,UV-B照射5到9 d后毛状体总数增加。紫外线15 B干扰了真叶的扩张。紫外线-B照射15 d后,表皮细胞面积和叶面积的膨胀显着减少,表皮细胞总数明显减少。因此,对南瓜幼苗进行连续的UV-B照射会在缺乏活性细胞分裂(子叶)的组织中诱导核内复制和毛状体形成,并减少活跃生长的组织中的细胞分裂(拍摄包括第一片叶子的顶端分生组织)。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号