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印楝细胞和愈伤组织生长及印楝素产生的新生物学趋势

New biological trends on cell and callus growth and azadirachtin production in .

作者信息

Farjaminezhad Reza, Garoosi Ghasem-Ali

机构信息

Department of Biotechnology, Faculty of Agriculture and Natural Resources, Imam Khomeini International University (IKIU), Qazvin, Islamic Republic of Iran.

出版信息

3 Biotech. 2019 Aug;9(8):309. doi: 10.1007/s13205-019-1836-z. Epub 2019 Jul 27.

Abstract

Azadirachtin is an important secondary metabolite from used as a natural biopesticide. This study is the first comprehensive report concerning the influence of plant growth regulators on callus induction, cell suspension growth, and azadirachtin accumulation and production in cell suspension cultures of . We investigated the effect of plant growth regulators including different types of auxins and cytokinins and their combinations on callus induction, cell suspension growth, and azadirachtin accumulation and production. The highest percentage of callusing (100%) obtained at different combinations of plant growth regulators on MS medium supplemented with 1 mg/L picloram and 2 mg/L kinetin and the highest fresh weight of callus (264.50 mg) was observed in MS medium containing 1.5 mg/L NAA and 3 mg/L kinetin. In cell suspension cultures, the maximum cell density, SCV, and PCV were 2.44 × 10 cells per mL, 97.95%, and 81.46%, respectively, obtained in the MS medium containing 1.5 mg/L 2,4-D and 3 mg/L zeatin riboside. The highest average growth rate (0.25 days) was on MS medium containing 1.5 mg/L NAA and 3 mg/L zeatin riboside. The MS medium supplemented with 1 mg/L picloram and 2 mg/L kinetin produced the highest amount of fresh cell weight (493.02 g/L), dry cell weight (77.27 g/L), azadirachtin accumulation (3.69 mg/gDW), and azadirachtin production (285.64 mg/L). The results showed that all measured indices had positive correlation with together except FCW and DCW with azadirachtin accumulation.

摘要

印楝素是一种重要的次生代谢产物,用作天然生物农药。本研究是关于植物生长调节剂对印楝愈伤组织诱导、细胞悬浮培养生长以及印楝素在印楝细胞悬浮培养物中积累和生产影响的首份综合报告。我们研究了包括不同类型生长素和细胞分裂素及其组合在内的植物生长调节剂对愈伤组织诱导、细胞悬浮培养生长以及印楝素积累和生产的影响。在添加1mg/L毒莠定和2mg/L激动素的MS培养基上,不同植物生长调节剂组合获得了最高的愈伤组织诱导率(100%),在含有1.5mg/L萘乙酸和3mg/L激动素的MS培养基中观察到愈伤组织的最高鲜重(264.50mg)。在细胞悬浮培养中,在含有1.5mg/L 2,4 - D和3mg/L玉米素核苷的MS培养基中分别获得了最大细胞密度、沉降体积和压实体积,分别为每毫升2.44×10个细胞、97.95%和81.46%。最高平均生长速率(0.25天)出现在含有1.5mg/L萘乙酸和3mg/L玉米素核苷的MS培养基上。添加1mg/L毒莠定和2mg/L激动素的MS培养基产生了最高的新鲜细胞重量(493.02g/L)、干细胞重量(77.27g/L)、印楝素积累量(3.69mg/gDW)和印楝素产量(285.64mg/L)。结果表明,除了鲜细胞重量和干细胞重量与印楝素积累外,所有测量指标之间均呈正相关。

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