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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Seed germination of medicinal plant, fennel (Foeniculum vulgare Mill), as affected by different priming techniques
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Seed germination of medicinal plant, fennel (Foeniculum vulgare Mill), as affected by different priming techniques

机译:受到不同引发方法影响的药用植物茴香种子的发芽

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Reduced seed germination is among the most important factors adversely affecting crop stand and subsequent plant growth. Fennel (Foeniculum vulgare Mill) is an important medicinal plant with poor seed germination rate, occasionally. It is accordingly pertinent to find methods which can enhance fennel seed germination and remove the barriers of dormancy breaking. The present experiments studied the effects of two different priming (cold moist stratification and osmopriming) and 14 dormancy breaking techniques (hormonal, osmopriming, biopriming, chemical priming, and hydropriming) on the seed germination and seedling growth of two different fennel genotypes under growth chamber conditions. In the first and second experiment, the priming techniques including the time lengths of cold moist stratification (0, 15, 30, and 45 days) and the concentrations of polyethylene glycol 6000 (PEG(6000), osmopriming at -0.99, -1.35, and -2.33 MPa) were used as the main plots. However, in both experiments, the dormancy breaking techniques and fennel genotypes were factorially combined and used as the subplots. Different seed- and seedling-related parameters including germination (%), plumule, radicle and seedling length, average germination time, rate and homogeneity of germination, and seed vigor index were determined. Both priming techniques were efficient on the enhancement of seed germination and seedling growth. Among the dormancy breaking techniques, Aminol Forte (biopriming), kadostim (biopriming), benzyl adenine + kinetin (biopriming), distilled water (hydropriming), gibberellin + kinetin (hormonal priming), and benzyl adenine + kinetin + gibberellin (biopriming) were the most effective ones. The related concentrations were equal to 100 mg/l, 10(-5) M, and 0.4 %. The fennel genotypes reacted significantly different under priming conditions. It is possible to enhance seed germination and seedling growth of fennel using priming and dormancy breaking techniques, which is useful for the increased production of fennel under different conditions. The results indicate that bio and hydropriming techniques were among the most effective ones, which significantly increased seed germination and seedling growth, and removed the seed dormancy barriers.
机译:种子发芽减少是对作物生长和随后植物生长造成不利影响的最重要因素之一。茴香(Foeniculum vulgare Mill)是一种重要的药用植物,有时种子发芽率低。因此,相关的是寻找可以增强茴香种子发芽并消除休眠中断障碍的方法。本实验研究了两种不同的引发(冷湿分层和渗透引发)和14种休眠打破技术(激素,渗透引发,生物引发,化学引发和加水引发)对生长室下两种不同茴香基因型的种子发芽和幼苗生长的影响。条件。在第一个和第二个实验中,启动技术包括冷湿分层的时间长度(0、15、30和45天)和聚乙二醇6000的浓​​度(PEG(6000),渗透启动为-0.99,-1.35,和-2.33 MPa)作为主要曲线图。然而,在两个实验中,休眠打破技术和茴香基因型都被分解结合起来并用作子图。确定了与种子和幼苗相关的不同参数,包括发芽率(%),胚芽,胚根和幼苗的长度,平均发芽时间,发芽率和均匀度以及种子活力指数。两种引发技术均有效地促进了种子发芽和幼苗生长。在打破休眠的技术中,有Aminol Forte(生物引发),kadostim(生物引发),苄基腺嘌呤+激动素(生物引发),蒸馏水(加氢引发),赤霉素+激动素(激素引发)和苄基腺嘌呤+激动素+赤霉素(生物引发)。最有效的。相关浓度等于100 mg / l,10(-5)M和0.4%。在启动条件下,茴香基因型反应显着不同。使用引发和休眠打破技术可以增强茴香的种子发芽和幼苗生长,这对于在不同条件下增加茴香的产量很有用。结果表明,生物和注水技术是最有效的技术之一,可显着提高种子发芽和幼苗生长,并消除种子休眠障碍。

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