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首页> 外文期刊>Scientia horticulturae >Phosphorus restriction influences P efficiency and ornamental quality of poinsettia and chrysanthemum
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Phosphorus restriction influences P efficiency and ornamental quality of poinsettia and chrysanthemum

机译:磷的限制影响P一品红和菊花的效率和观赏品质

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摘要

Better synchronization of plant-available phosphorus (P) with crop P requirement is required to reduce P losses to the environment and to improve resource-efficiency of the exploitation of non-renewable phosphate rock. In horticultural plant production, a restricted availability of P may limit stem length and improve compactness, which are desirable characters for many ornamental plants. In the present study, we investigated the effect of reduced availability of P on plant quality, biomass production and phosphorus efficiency of poinsettia (Euphorbia pulcherrima cv. 'Mira Red') and chrysanthemum (Chrysanthemum x morifolium cv. 'Breeze Cassis'). Five P concentrations (6, 12, 18, 24 or 48 mg L-1)were applied as starter Pin the peat-based potting substrate as well as in the nutrient solution given during the experiment. Stem length of both plant species was strongly restricted at 6 mg P L-1 but was not significantly affected by higher P levels. For poinsettia, the optimum bract diameter was obtained at 18 mg P L-1. For maximum shoot dry biomass, branching and plant diameter, however, 24 mg L-1 was needed. Optimal plant diameter and shoot biomass of chrysanthemum was obtained at 18 mg P L-1 while 24 mg L-1 was required for maximum flower number. Increasing the P supply to 48 mg L-1 did not improve shoot dry matter, branching or flowering of either species, but induced luxury uptake of P. Total shoot P uptake increased linearly over the P fertilizer range tested. For optimal plant biomass combined with optimal ornamental quality, shoot P concentrations at 90 DAP was in the range of 0.30-0.35 % for poinsettia and 0.25-0.30 % for chrysanthemum. Chrysanthemum showed a higher phosphorus efficiency than poinsettia at low P levels, mainly related to a higher internal P utilization efficiency. The P acquisition efficiency was in the range of 55-60 0 /0 for both species, and was not significantly affected by the total amount of P applied. In conclusion, with the P fertilization strategy used, P restriction could not be used for plant height restriction of poinsettia "Mira Red" or chrysanthemum "Breeze Cassis" without negative effects on plant quality. However, P fertilization could be markedly reduced without negative effects on plant growth and development, improving phosphorus efficiency and recovery.
机译:植物可用磷(P)与作物P要求更好地同步,以减少对环境的P损失,提高不可再生磷酸盐岩的利用资源效率。在园艺植物生产中,P的限制可用性可能限制茎长,提高紧凑性,这是许多观赏植物的理想性状。在本研究中,我们研究了降低P的植物质量,生物量产量和一品红的磷效率的效果(大戟属Red')和Chrysanthemum(Chrysanthemum X Morifolium CV。'微风Cassis')。将5个P浓度(6,12,18,24或48mg L-1)施用为起动器销,泥炭基灌封基材以及在实验期间给出的营养溶液中。两种植物物种的茎长受到6mg P L-1的强烈限制,但不能显着受P水平的显着影响。对于一品红,最佳苞片直径在18mg P L-1获得。对于最大芽干生物质,支化和植物直径,需要24mg L-1。在18mg P L-1获得最佳植物直径和叶片生物量,而最大花序需要24mg L-1。增加P供应到48 mg L-1未改善芽干燥物质,两种物种的分支或开花,但诱导豪华摄取的P.全芽P肥料在P肥料范围内线性增加。对于最佳植物生物质与最佳装饰品质结合,为90个DAP的芽P浓度为0.30-0.35%,对于菊花为0.25-0.30%。菊花在低P水平下的一品红呈磷效率较高,主要与较高的内部P使用效率有关。 P获取效率在两种物种的范围为55-60 0/0,并且对所施加的P总量没有显着影响。总之,利用所使用的P施肥策略,P限制不能用于一品红的“米拉红”或菊花“微风卡西斯”的植物高度限制,对植物质量产生负面影响。然而,可以显着降低P施肥而没有对植物生长和发育的负面影响,提高磷效率和恢复。

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