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Floral development and bolting of spinach as affected by photoperiod andintegrated photosynthetic photon flux during transplant production

机译:光周期和整合光合光子通量对菠菜花期发育和抽bolt的影响

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We recently showed that spinach (Spinacia oleracea L.) transplants produced under a short photoperiod and low air temperature were characterized by a delay of bolting and short flower-stalk length at harvest (Chun et al., 2000a). The present study was conducted to determine whether these changes are caused by the short photoperiod itself or by the lower integrated photosynthetic photon flux (IPPF). Shoot and root dry weights of transplants increased significantly with increasing IPPF, but were not affected by a change in the photoperiod. However, the floral development indices of transplants were significantly greater under a 16- than under a 10- or 13-hours/day photoperiod, but were not affected by a change in IPPF. The percentage of bolted plants 3 days after transplanting (DAT) increased significantly with increasing photoperiod (from 0% at 10 hours/day to more than 85% at 16 hours/day). Flower-stalk length increased with increasing photoperiod (e.g., at 14 DAT, from 15 mm at the shorter photoperiods to 80 mm at 16 hours/day), but was not affected by a change in IPPF. These results show that the delay of bolting that occurs when the photoperiod is reduced during transplant production is due to the delay of floral development and not to retarded vegetative growth as a result of reduced IPPF.
机译:我们最近发现,在光周期短和空气温度低的情况下生产的菠菜(Spinacia oleracea L.)移植物的特征是收获时的抽穗延迟和花梗长度短(Chun等,2000a)。进行本研究以确定这些变化是由短光周期本身还是由较低的综合光合光子通量(IPPF)引起的。随IPPF的增加,移植的芽和根的干重显着增加,但不受光周期变化的影响。但是,在光周期为16个小时/天的条件下,移植物的花期发育指数明显高于10或13小时/天,但不受IPPF变化的影响。随着光周期的增加,移栽后3天(DAT)的带螺栓植物的百分比显着增加(从10小时/天的0%增加到16小时/天的85%以上)。花茎长度随着光周期的增加而增加(例如,在14 DAT时,从较短光周期的15 mm增加到16小时/天的80 mm),但不受IPPF变化的影响。这些结果表明,在移植生产期间减少光周期时发生的抽delay延迟是由于花期的延迟引起的,而不是由于IPPF降低而阻碍了营养生长。

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