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Phase Shift in the Circadian Rhythm of Floral Promotion by Far Red Energy in Hordeum vulgare L.

机译:远红外能量在大麦中促进花的昼夜节律中的相移。

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摘要

Eight-day-old barley seedlings (Hordeum vulgare L. cv. Wintex) were pretreated with a single 24-hour daylight fluorescent photoperiod that was supplemented with sufficient far-red energy (FR) to produce a relative red (R)/FR ratio of 0.5. These plants undergo floral initiation about a week after they are returned to 12-hour daylight fluorescent photoperiods (R/FR ratio, 5.5), but floral development does not begin for an additional 2 weeks. Addition of FR light to a subsequent 12-hour photoperiod decreases the lag period between initiation and development by 10 days without affecting the rate of development. Extending the photoperiod to 24 hours has the same effect on the lag period, but this treatment also increases the rate of development. FR present during the second half of this 24-hour photoperiod only further increases the rate of development. Thus, the presence of FR during the first half of the photoperiod appears to affect the time of onset of floral development, while its presence during the second half of the photoperiod affects the rate of this development.When a 6-hour pulse of FR was given at various times during a 72- to 96-hour continuous daylight fluorescent period, the response varied rhythmically and was maximal during the second half of each 24-hour cycle. When one 6-hour FR pulse, given at a point of maximal response, is followed by a second 6-hour FR pulse at various times relative to the first, the phase of this rhythm is advanced by about 12 hours. This suggests that FR has two separate but concomitant effects. It causes (a) earlier and/or more rapid flowering and (b) it alters the phase of the endogenous circadian rhythm that regulates the ability of the plant to respond.
机译:对8天大麦大麦幼苗(Hordeum vulgare L. cv。Wintex)进行单天24小时荧光日光照射,并补充足够的远红能量(FR)以产生相对红色(R)/ FR比为0.5。这些植物返回到12小时的日光荧光灯周期(R / FR比,5.5)后大约一周进行花期萌芽,但是花期没有再持续2周。在随后的12小时光周期中添加FR光可将起始和发育之间的延迟时间减少10天,而不会影响发育速率。将光周期延长至24小时对延迟期具有相同的效果,但是这种处理也可以提高显影速度。在这24小时的光周期后半段出现的FR仅进一步提高了显影速度。因此,在光周期的前半段中FR的存在似乎会影响花发育的开始时间,而在光周期的后半段中FR的存在会影响该花的发育速度。在连续72到96小时的日光荧光灯期间的不同时间给予,响应有节奏地变化,并且在每个24小时周期的后半段达到最大。当在最大响应点给出一个6小时FR脉冲,然后在相对于第一个不同时间的第二个6小时FR脉冲之后,此节律的相位提前约12小时。这表明FR具有两个单独但同时的作用。它导致(a)较早和/或较快地开花,并且(b)改变内源性昼夜节律的相位,从而调节植物的反应能力。

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