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首页> 外文期刊>Acta Scientiarum. Agronomy >Leaf anatomy of orchids micropropagated with different silicon concentrations
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Leaf anatomy of orchids micropropagated with different silicon concentrations

机译:不同硅浓度微繁殖的兰花的叶片解剖

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Research on anatomical modifications under in vitro culture is essential to the definition and understanding of the development of micropropagated plants. Likewise, such research is essential to improve the steps of the acclimatization process. Accordingly, the objective of the present study is to verify the differences in the leaves anatomical traits of micropropagated orchids under calcium silicate concentrations. Seedlings of in vitro-germinated seeds, measuring 0.5 cm in length, were inoculated in 250 cm3 pots with 60 mL MS culture medium and different silicon concentrations (0, 0.5, 1.0 and 2.0 mg L-1) in different culture environments (natural environment, in a greenhouse and an artificial environment in a growth chamber) and in all statistical combinations. The pH of the culture medium was fixed at 5.8 ± 0.1 and gelified with 5.5 g L-1 of agar before autoclaving at 121oC and 1 atm for 20 min. After 150 days, an anatomical analysis was performed on cross-sections of the plant leaves. A complete randomized design was used. Modifications occurred on the plants of those treatments containing silicon compared to those without silicon, and between environment fo artificial and natural light. Plants showed larger growth at the artificial light treatment with 0.5 and 2.0 mg L-1 of calcium silicate respectively for the native and hybrid plants Treatments without silicate application induced chlorenchyma and epidermis deformation compared to silicon containing treatments, this effect can affect directly or indirectly plant growth at no silicon conditions.
机译:对体外培养下的解剖修饰的研究对于定义和理解微繁殖植物的发育至关重要。同样,此类研究对于改善适应过程的步骤至关重要。因此,本研究的目的是验证在硅酸钙浓度下微繁殖兰花的叶片解剖学特性的差异。将长度为0.5 cm的体外发芽种子的幼苗接种在250 cm3的盆中,该盆中装有60 mL MS培养基和不同培养环境(自然环境)中不同的硅浓度(0、0.5、1.0和2.0 mg L-1) ,在温室和人工环境中的生长室中)以及所有统计组合。培养基的pH值固定在5.8±0.1,并用5.5 g L-1琼脂凝胶化,然后在121oC和1 atm高压灭菌20分钟。 150天后,对植物叶片的横截面进行解剖分析。使用了完整的随机设计。与不含硅的处理相比,含硅处理的植物在植物上进行了修改,并且在人造光和自然光之间进行了修改。对于天然植物和杂种植物,分别在0.5和2.0 mg L-1的硅酸钙的人工光处理下,植物显示出更大的生长,与含硅处理相比,未施用硅酸盐的处理引起的小球藻和表皮变形,这种影响会直接或间接影响植物无硅条件下生长。

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