首页> 外文期刊>Canadian Journal of Plant Science >Greenhouse production of Echinacea purpurea (L.) and E. angustifolia using different growing media, NO3-/NH4+ ratios and watering regimes.
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Greenhouse production of Echinacea purpurea (L.) and E. angustifolia using different growing media, NO3-/NH4+ ratios and watering regimes.

机译:使用不同的生长介质,NO3- / NH4 +比率和浇水制度,紫锥菊和紫锥菊的温室生产。

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Current field cultivation and wild-harvest methods for the medicinal-plant Echinacea are struggling to meet the requirements for a high-quality, uniformly produced crop for human consumption. To help meet this challenge, the potential of using a greenhouse production system for Echinacea production was explored. Echinacea purpurea (L.) Moench and angustifolia DC. var. angustifolia plants were grown in three types of greenhouse production systems: (1) deep flow solution culture (D), (2) pots with either Pro-Mix (P) or (3) sand (S). Plants were irrigated with one of three nutrient solutions containing NO3-/NH4+ ratios of 7:1, 5:1 or 3:1, respectively. The plants grown in the Pro-Mix and the sand systems were either well-watered or subjected to periodical water stress. The results obtained after 12 wk of growth showed that Echinacea root production in the greenhouse systems was comparable with or better than that in the field. Based on root and total biomass production, the Pro-Mix system was the best production system for both E. angustifolia and E. purpurea. In most cases, the NO3-/NH4+ ratio did not have significant effects on the growth of either species. When effects were seen, however, higher NO3-/NH4+ levels generally resulted in greater leaf area, root and total biomass, and a higher root/shoot ratio. Mild periodic water stress did not affect the root/shoot ratio or the root biomass in either species. The application of a periodic water stress reduced leaf area of both species, but a reduction in total biomass was only observed in E. purpurea..
机译:当前用于药用植物紫锥菊的田间栽培和野生收获方法正努力满足对供人类消费的高质量,均匀生产的作物的要求。为了帮助应对这一挑战,探索了使用温室生产系统进行紫锥菊生产的潜力。紫锥菊(L.)Moench和angustifolia DC。变种桔梗植物在三种类型的温室生产系统中生长:(1)深流溶液培养(D),(2)带有Pro-Mix(P)或(3)沙子(S)的盆。用分别含有比例为7:1、5:1或3:1的NO3- / NH4 +的三种营养液之一灌溉植物。 Pro-Mix和沙土系统中生长的植物浇水充足或受到周期性水分胁迫。生长12周后获得的结果表明,温室系统中紫锥菊的根系产量与田间相当或更好。基于根和总生物量的生产,Pro-Mix系统是对虾和紫花苜蓿的最佳生产系统。在大多数情况下,NO3- / NH4 +比例对这两种物种的生长都没有显着影响。但是,当看到效果时,较高的NO3- / NH4 +水平通常会导致较大的叶面积,根和总生物量,以及较高的根/茎比。轻微的周期性水分胁迫不会影响两种物种的根/茎比或根生物量。周期性水分胁迫的施用减少了两个物种的叶面积,但是仅在紫癜中观察到总生物量的减少。

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