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Establishment, cultivation and optimization of hairy roots of Catharanthus roseus for the synthesis of indole alkaloids.

机译:长春花毛状根的建立,培养和优化,用于吲哚生物碱的合成。

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"Hairy" roots hold the potential for economically feasible biotechnological routes to the controlled biosynthesis of complex, plant-derived, 'natural' molecules. A novel transgenic root system of the tropical plant Catharanthus roseus was established and analyzed for the synthesis of indole alkaloids, including the valuable anti-cancer drugs vinblastine and vincristine. A structured approach to developing the biosynthetic potential of hairy roots is presented: transformation, screening, selection, optimization of culture protocols, and product enhancement.; Five hairy root clones with unoptimized doubling times of 3-4 days and vindoline output of 0.005-0.07% dry weight, were screened from 150 transformants. Hairy root morphology likely under the control of rol genes transferred from the Agrobacterium plasmid, was identified as a key determinant of fitness in liquid culture and a target for transgenic design for large-scale bioreactor environments.; The hairy root inoculum was optimized and standardized to facilitate the assessment of culture performance under diverse environmental treatments and in process scale-up. The length of the root tip has a dominant effect on growth, uninfluenced by clonal variability. The optimum inoculum is comprised of 5 root tips, each 35-40 mm long, in 50 mL media.; Long-term dose-response and transient studies examined heterotrophic and photoheterotrophic carbon regimes. These studies are unique in the metabolic adaptation of cultures, and examined the putatively antagonistic kinetics of nutrient utilisation and secondary metabolite accumulation. The activities of the cathenamine and bisindole alkaloid pathways responded, respectively to high and moderate sucrose concentrations. The cultures were nitrogen limited with 2-4% sucrose in B5/2 salt. Organic acids were excreted in the presence of excess sugars. The ordered assimilation of macronutrients--ammonium, phosphate and nitrate--corroborated by changes of extracellular pH, have important implications on fed-batch strategies. Tabersonine accumulation was growth-associated, while serpentine accumulated in a non-growth manner. Ajmalicine, catharanthine, vindoline, and compounds tentatively identified as vinblastine and vincristine, accumulated optimally in the late-exponential or early-stationary phase. Photoheterotrophic conditions incremented peak biomass by 60-300%, doubling times by 60%, and vindoline levels by an order of magnitude, likely due to the anapleurotic activity of PEPCase and the light induction of nitrate reductase and vindoline synthesis.
机译:“多毛的”根具有潜在的经济可行的生物技术路线,可控制复杂的植物来源的“天然”分子的生物合成。建立了热带植物Catharanthus roseus的新型转基因根系,并分析了吲哚生物碱的合成,包括有价值的抗癌药长春碱和长春新碱。提出了开发毛状根生物合成潜力的结构化方法:转化,筛选,选择,优化培养方案和增强产品。从150个转化子中筛选了5个毛状根克隆,未优化的加倍时间为3-4天,长春碱的产量为干重的0.005-0.07%。被确定为从农杆菌质粒转移的rol基因的控制下的毛状根形态被认为是液体培养适应性的关键决定因素,也是大规模生物反应器环境转基因设计的目标。优化并标准化了毛状根接种物,以帮助评估在各种环境处理和工艺放大下的培养性能。根尖的长度对生长起主要作用,不受克隆变异性的影响。最佳接种物由5个根尖组成,在50 mL培养基中,每个根尖长35-40 mm。长期剂量反应和瞬态研究检查了异养和光异养碳方案。这些研究在培养物的代谢适应中是独特的,并检查了养分利用和次级代谢产物积累的假定拮抗动力学。联苯胺和双吲哚生物碱途径的活性分别对高和中等蔗糖浓度作出响应。用在B5 / 2盐中的2-4%蔗糖限制氮的培养物。有机酸在过量糖存在下排出。大量营养素(铵,磷酸盐和硝酸盐)的有序吸收被细胞外pH的变化所证实,对补料分批策略具有重要意义。 Tabersonine积累与生长相关,而蛇纹石以非生长方式积累。阿扎玛利辛,长春氨酸,长春新碱和初步确定为长春碱和长春新碱的化合物,在指数后期或固定平稳期最佳积累。光异养条件可将峰值生物量增加60-300%,增加一倍,增加60%,使长春花碱水平增加一个数量级,这可能是由于PEPCase的无磷缺乏活性以及硝酸还原酶和长春花碱合成的光诱导。

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