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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Far-red light filtering by plastic film, greenhouse-cladding materials: effects on growth and flowering in Petunia and Impatiens.
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Far-red light filtering by plastic film, greenhouse-cladding materials: effects on growth and flowering in Petunia and Impatiens.

机译:塑料薄膜,温室覆盖材料对远红光的过滤:对矮牵牛和凤仙花的生长和开花的影响。

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摘要

Photoselective plastic films with low transmission to far-red (FR) light (700-800 nm) are now available so that plants grown in greenhouses clad with such plastics exhibit reduced stem extension and, consequently, plant height. Here we compare the action of three FR-absorbing polythene films on extension growth of Petunia (Petunia x hybrida) cv. 'Express Blue' and Impatiens walleriana cv. 'Accent Deep Pink' with plants grown under a control polythene film (standard UVI/EVA film). Half of the plants under the control film were treated with a chemical plant growth regulator (PGR; diaminozide, B-Nine) and half were sprayed with water alone. Possible negative effects of such film plastics on flowering, and on fresh and dry weight accumulation, were also quantified. Plants were harvested destructively when all plants in each treatment had reached the first open flower stage. In Petunia, plant height was reduced by all three FR-filtering films and by PGR-treatment. The FR-filtering films giving the highest R:FR ratios also reduced plant height in Impatiens. Leaf number, leaf area and total dry weight in both species were greatest in the controls and smallest under films with the lowest PAR transmission. The film giving the highest R:FR ratio and PAR transmission also produced the most compact Petunia plants; while the film with the lowest PAR transmission produced the least compact plants in both species. There was no significant effect of treatments on time to first flower in Impatiens. However, Petunia plants under low PAR transmission films took longer to flower. Plastic films which filter out FR light to increase the R:FR ratio, combined with high PAR transmission, can therefore be used as an alternative to conventional PGRs.
机译:现在可获得对远红(FR)光(700-800 nm)具有低透射率的光选择性塑料薄膜,这样,在用这种塑料覆盖的温室中生长的植物表现出茎伸长降低,因此植物高度降低。在这里,我们比较了三种吸收FR的聚乙烯薄膜对矮牵牛(Petunia x hybrida)cv延伸生长的作用。 “ Express Blue”和Impatiens walleriana简历。 “ Accent Deep Pink”(深色深粉红色),其植物在对照聚乙烯薄膜(标准UVI / EVA薄膜)下生长。对照膜下的一半植物用化学植物生长调节剂(PGR;二氨基叠氮化物,B-Nine)处理,另一半仅用水喷雾。还定量了这种薄膜塑料对开花以及对鲜重和干重积累的可能负面影响。当每种处理中的所有植物都达到第一个开放花期时,就破坏性地收获植物。在矮牵牛中,通过三个FR过滤膜和PGR处理均降低了株高。具有最高R:FR比的FR过滤膜也降低了凤仙花的株高。两种树种的叶数,叶面积和总干重在对照中最大,而在具有最低PAR透射率的薄膜下最小。具有最高R:FR比和PAR透射率的薄膜也生产出了最紧凑的矮牵牛植物。而具有最低PAR透射率的薄膜在这两个物种中产生的致密植物最少。在凤仙花中,处理对第一朵花的时间没有显着影响。但是,在低PAR透射膜下的矮牵牛植物花的时间更长。因此,可以滤除FR光以提高R:FR比率并结合高PAR透射率的塑料薄膜,作为传统PGR的替代产品。

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