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Use of uniconazole to control plant height for an industrial/pharmaceutical maize platform.

机译:使用烯康唑控制工业/医药玉米平台的株高。

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A variety of crops and their production systems have been proposed as platforms for plant-made pharmaceuticals (PMPs) and plant-made industrial compounds (PMICs), each with their own advantages and challenges. Maize grown in isolated, confined environments avoids several challenging issues associated with future production of PMPs/PMICs. When grown under optimizing conditions of temperature, nutrition, and water status, however, maize tends to elongate excessively, which contributes to lodging and interferes with delivery of sufficient overhead electric lighting to the inner foliar canopy where ears develop. Suppression of extensive stem elongation without compromising grain yield would help in delivering overhead light into the foliar canopy for efficient grain production. The plant-growth retardant uniconazole (UCZ) was tested for its effects on maize height and grain yield. UCZ reduced plant height effectively, but dosages that strongly suppressed stem elongation also decreased grain yield, ear length, and cob weight. Duration of growth suppression was prolonged at high UCZ concentrations. UCZ also induced branching of maize, which was enhanced as concentrations increased. A range of ear types occurred on branches, with some conversion of ears to tassels at high UCZ concentrations. Minimum stem diameter declined with increasing UCZ concentration. Plant height was reduced from 306 cm to 232 cm (-25%) using a concentration of 1.0 mg/L UCZ without affecting grain yield of 180-200 g per plant. This low UCZ concentration caused 1-2 basal branches to form that would not affect planting density in a cropping situation.
机译:已经提出了多种农作物及其生产系统作为植物药(PMP)和植物工业化合物(PMIC)的平台,每种都有各自的优势和挑战。在隔离,密闭环境中生长的玉米避免了与未来生产PMP / PMIC相关的一些具有挑战性的问题。然而,当在温度,营养和水分状况的最佳条件下生长时,玉米倾向于过度伸长,这有助于倒伏并干扰向耳朵发育的内部叶冠层提供足够的架空电照明。在不损害谷物产量的情况下抑制茎秆的广泛伸长,将有助于将头顶光传递到叶冠层中,以有效地生产谷物。测试了植物生长延缓性烯效唑(UCZ)对玉米高度和谷物产量的影响。 UCZ有效降低了株高,但是强烈抑制茎伸长的剂量也降低了谷物产量,穗长和穗轴重量。在高UCZ浓度下,抑制生长的时间延长了。 UCZ还诱导了玉米的分支,随着浓度的增加玉米分支有所增强。分支中出现了多种类型的耳朵,在较高的UCZ浓度下,耳朵会转变成流苏。最小茎直径随UCZ浓度的增加而降低。在不影响每株植物180-200 g谷物产量的情况下,使用1.0 mg / L UCZ的浓度可使株高从306 cm降至232 cm(-25%)。如此低的UCZ浓度导致形成1-2个基部分支,在种植情况下不会影响种植密度。

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