首页> 外文期刊>Natural product research >Influence of growth regulators and sucrose concentrations on growth and rosmarinic acid production in calli and suspension cultures of Coleus blumei.
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Influence of growth regulators and sucrose concentrations on growth and rosmarinic acid production in calli and suspension cultures of Coleus blumei.

机译:生长调节剂和蔗糖浓度对蓝叶愈伤组织和悬浮培养物中生长和迷迭香酸产生的影响。

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Rosmarinic acid, which is reported to have adstringent, antibacterial, antiviral and antioxidant activities, is one of the most prominent secondary compounds in Coleus blumei (Lamiaceae). Rosmarinic acid (RA) production in different hybrids of C. blumei was estimated by HPLC. Conditions for HPLC were as follows: column, 150 x 4.6 mm; solvent system, methanol -0.1% phosphate (45 : 55); flow rate, 0.9 mL/min; detection: 325 nm. Two out of four hybrids of C. blumei (hy1; hy2) contain better rosmarinic acid production (0.9 and 1.0% dry weight, respectively) and the leaves have the highest rosmarinic acid production, followed by stems and roots. The hydroxyphenylpyruvate reductase (HPPR) gene expression levels were analysed by semi-quantitative RT-PCR. Hy3 shows highest level of HPPR gene expression out of four hybrids on genotype-specific patterns, and stems represent the highest level of HPPR gene expression among leaves, roots and stems. This was probably a result of the fact that the RA biosynthetic pathway was regulated by interactions of several enzymes necessary for biosynthesis. The explants from the hy1 leaves were used in subsequent studies on the effect of different growth regulators (2.0 mg L(-1) 6-benzyl-aminopurine (6-BA), different 2,4-dichlorophenxyaretic acid (2,4-D) and alpha-naphthaleneacetic (NAA) concentrations) and sucrose contents (1, 2, 3, 4, 5 or 6%) on culture growth and rosmarinic acid accumulation. On the effect of different growth regulators, the best result is obtained when the B5-medium supplemented is with 2.0 mg L(-1) 6-BA, 0.5 mg L(-1) NAA, 0.8 mg L(-1) 2,4-D and 2% sugar, and solidified with 0.8% agar. In this case, both growth index and rosmarinic acid accumulation reach a maximum, which is 49.7 and 25.3% (dry weight), respectively. The optimal medium for suspension culture growth contains 2.0 mg L(-1) 6-BA, 0.5 mg L(-1) NAA, 0.8 mg L(-1) 2,4-D, 600 mg L(-1) inositel and 2% sugar, and the rosmarinic acid production is 1.7% (dry weight). The rosmarinic acid accumulation is enhanced by the sucrose concentrations. When the sucrose content is 6%, the calli and cell culture accumulate 33.7% (dry weight) and 10.1% (dry weight) rosmarinic acid, respectively. Higher sucrose content (>or=5%) has a negative influence on culture growth. B5-medium supplemented with 2.0 mg L(-1) 6-BA, 0.5 mg L(-1) NAA, 0.8 mg L(-1) 2,4-D, 4% sugar and 0.8% agar is best for both culture growth and rosmarinic acid accumulation. On the basis of the above results, we can establish a two-phase culture system by calli of C. blumei for the biosynthesis of RA. In the growth phase, the calli grow well, but with lower RA production in a modified B5-1A medium with 2% sucrose. The calli are then subcultured to B5-1A medium with 6% sucrose where the calli start to accumulate RA, but grow slowly.
机译:迷迭香酸据报道具有束缚,抗菌,抗病毒和抗氧化活性,是七叶锦蛇科(菊科)中最重要的次要化合物之一。通过HPLC估计在布鲁氏梭菌的不同杂种中的迷迭香酸(RA)产生。 HPLC的条件如下:柱,150×4.6mm; m / z。溶剂体系,甲醇-0.1%磷酸盐(45:55);流速0.9 mL / min;检测:325nm。布鲁姆梭菌(hy1; hy2)的四个杂种中有两个包含较好的迷迭香酸产量(分别为干重的0.9%和1.0%),并且叶子的迷迭香酸产量最高,其次是茎和根。通过半定量RT-PCR分析羟苯丙酮酸还原酶(HPPR)基因的表达水平。 Hy3以基因型特异性模式显示了四个杂种中HPPR基因表达的最高水平,茎代表叶,根和茎中HPPR基因表达的最高水平。这可能是由于RA生物合成途径受到生物合成必需的几种酶的相互作用所调节这一事实的结果。来自hy1叶片的外植体用于随后的研究,研究了不同的生长调节剂(2.0 mg L(-1)6-苄基氨基嘌呤(6-BA),不同的2,4-二氯苯并邻苯二甲酸(2,4-D )和α-萘乙酸(NAA)浓度)和蔗糖含量(1、2、3、4、5或6%)对培养物生长和迷迭香酸积累的影​​响。在不同生长调节剂的作用下,当B5培养基添加2.0 mg L(-1)6-BA,0.5 mg L(-1)NAA,0.8 mg L(-1)2时,可获得最佳结果。 4-D和2%的糖,并用0.8%的琼脂固化。在这种情况下,生长指数和迷迭香酸积累均达到最大值,分别为49.7和25.3%(干重)。悬浮培养生长的最佳培养基包含2.0 mg L(-1)6-BA,0.5 mg L(-1)NAA,0.8 mg L(-1)2,4-D,600 mg L(-1)inositel和2%的糖,迷迭香酸的产量为1.7%(干重)。迷迭香酸的积累通过蔗糖浓度增加。当蔗糖含量为6%时,愈伤组织和细胞培养物分别积聚33.7%(干重)和10.1%(干重)的迷迭香酸。较高的蔗糖含量(> == 5%)对培养物的生长有负面影响。补充有2.0 mg L(-1)6-BA,0.5 mg L(-1)NAA,0.8 mg L(-1)2,4-D,4%糖和0.8%琼脂的B5-培养基最适合两种培养生长和迷迭香酸积累。根据以上结果,我们可以建立由蓝花愈伤组织形成的两相培养体系,用于RA的生物合成。在生长期,愈伤组织生长良好,但在含2%蔗糖的改良B5-1A培养基中,RA的产量较低。然后将愈伤组织继代培养到含6%蔗糖的B5-1A培养基中,在那里愈伤组织开始积累RA,但生长缓慢。

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