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首页> 外文期刊>Vegetos: an international journal of plant research >Leaf development and anatomy of in vitro-grown Polygala paniculata L. are affected by light quality, gelling agents, and sucrose
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Leaf development and anatomy of in vitro-grown Polygala paniculata L. are affected by light quality, gelling agents, and sucrose

机译:叶片发育和vitro-grown解剖远志香l .受到光线的影响质量、胶凝剂和蔗糖

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摘要

Plant in vitro growth performance is influenced by environmental, physical, and chemical conditions. The present study evaluated the mutual effect of light, gelling agents, and sucrose concentration on leaf anatomical structure of in vitro-grown Polygala paniculata. Nodal segments were inoculated on agar- or Phytagel~R-gelified medium supplemented with 15 g L~(-1) or 30 g L~(-1) sucrose. Cultures were grown under fluorescent lamps, light-emitting diodes (LEDs) with white light, and LEDs with blue andred light at 56 mumol m~(-2) s~(-1) photon flux. After 45 days of culture, leaf histology was assessed. The leaves of P. paniculata had an uniseriate epidermis and dorsiventral mesophyll. Gelling agents had antagonistic effects in relation to sucrose concentration. Growth on agar and 30 g L~(-1) sucrose induced greater leaf blade thickness, with expanded palisade and spongy parenchyma but looser intercellular spaces. In contrast, growth on Phytagel~R led to significantly thicker palisade parenchyma at15 g L~(-1) sucrose. Fluorescent lamp light favored in vitro leaf development of P. paniculata grown on agar; whereas spectral quality had no effect on leaf blade thickness in Phytagel~R-grown plants. In summary, mutual combinations of gelling agent, light quality, and sucrose concentration influence the establishment and anatomic structure of leaves in P. paniculata plantlets grown in vitro. This result will facilitate studies on in vitro propagation of this important medicinal species.
机译:植物体外生长性能的影响环境、物理和化学条件。本研究评估的相互影响光、胶凝剂和蔗糖浓度在vitro-grown叶的解剖结构远志香。接种于琼脂或Phytagel ~ R-gelified媒介补充15 g L ~(1)或30 g L ~ (1)蔗糖。灯,发光二极管(led)和白色光,发光二极管用蓝色和红56的光mumol m ~ (2) s ~(1)光子通量。文化,叶组织学评估。的香有一个单列的表皮背腹的叶肉。对立的效果与蔗糖浓度。蔗糖诱导更大的叶片厚度、扩大了栅栏和海绵组织宽松的细胞间隙。在Phytagel ~ R导致明显增厚柱状薄壁组织at15 g L ~(1)蔗糖。荧光灯光线青睐体外叶子p .香种植在琼脂的发展;而对叶光谱质量没有影响在Phytagel ~ R-grown植物叶片厚度。总结,胶凝剂的相互组合,光线质量和蔗糖浓度影响建立和解剖结构的叶子在p .香植株在体外生长。研究体外传播的重要药用物种。

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