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首页> 外文期刊>Acta Physiologiae Plantarum >Effects of sucrose concentration and exogenous hormones on growth and periplocin accumulation in adventitious roots of Periploca sepium Bunge.
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Effects of sucrose concentration and exogenous hormones on growth and periplocin accumulation in adventitious roots of Periploca sepium Bunge.

机译:蔗糖浓度和外源激素对Periloca sepium Bunge不定根中生长和膜周霉素积累的影响。

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摘要

Periploca sepium adventitious roots were cultured on 0.5 Murashige and Skoog solid media supplemented with exogenous hormones of different types and various concentrations, and with sucrose of different concentrations. Auxins (indole butyric acid (IBA) and naphthalene acetic acid (NAA)) and cytokinins (6-benzylaminopurine (BA) and kinetin (KT)) were selected as exogenous hormones for adventitious root proliferation. Compared with other hormones, IBA was the suitable auxin for adventitious root proliferation. Under this circumstance, every root explant generates 10-15 adventitious roots (1- to 2-cm long) after 30 days. However, nothing but callus was induced on the root explants when NAA was added into the medium and the same result was achieved when auxins (IBA or NAA) were added into the media together with cytokinins (BA or KT). The suitable concentration of IBA for adventitious root proliferation was 1-2 mg/l, when every root explant generated 10-20 adventitious roots (1- to 2-cm long). The optimum concentration of IBA for periplocin accumulation was 1 mg/l, when the periplocin content reached 95.46 micro g/g. With regard to the investigation of sucrose concentration, 2-3% (w/v) sucrose was favorable for adventitious root proliferation as every root explant in this concentration generated 10-20 adventitious roots (1- to 2-cm long). The highest periplocin content (101.56 micro g/g) was achieved at 5% (w/v) sucrose, whereas the periplocin content at 5% (w/v) sucrose did not show significant difference from the periplocin content (95.38 and 98.47 micro g/g, respectively) at 3% (w/v) or 4% (w/v) sucrose.
机译:Periploca sepium 不定根在0.5种Murashige和Skoog固体培养基上培养,固体培养基中添加了不同类型和浓度的外源激素,并添加了不同浓度的蔗糖。选择生长素(吲哚丁酸(IBA)和萘乙酸(NAA))和细胞分裂素(6-苄基氨基嘌呤(BA)和激动素(KT))作为不定根增殖的外源激素。与其他激素相比,IBA是适合不定根增殖的生长素。在这种情况下,每个根外植体在30天后都会产生10-15个不定根(长1至2 cm)。但是,当将NAA添加到培养基中时,除了根部上的愈伤组织都没有被诱导,当将生长素(IBA或NAA)与细胞分裂素(BA或KT)一起添加到培养基中时,获得了相同的结果。当每个根外植体产生10-20个不定根(1-2cm长)时,IBA用于不定根增殖的合适浓度为1-2 mg / l。当骨膜白蛋白含量达到95.46 micro g / g时,IBA最佳浓度为1 mg / l。关于蔗糖浓度的调查,2-3%( w / v )蔗糖有利于不定根增殖,因为在此浓度下每个根外植体均产生10-20个不定根(1-2根) -厘米长)。蔗糖为5%( w / v )时最高的骨膜黏膜素含量(101.56 micro g / g),而蔗糖为5%( w / v )的骨膜黏膜素含量最高在3%(w / v)或4%(w / v)的情况下,与周霉素的含量(分别为95.38和98.47 micro g / g)没有显着差异蔗糖。

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