End-of-day Far-red Lighting with a Low Daily Light Integral Increases Stem Length But Does Not Promote Early Leaf Expansion for Petunia ×hybrida Seedlings

IF 1.5 3区 农林科学 Q2 HORTICULTURE Hortscience Pub Date : 2023-09-01 DOI:10.21273/hortsci17132-23
Anthony C. Percival, J. Craver
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Abstract

Greenhouse production of high-quality young annual bedding plants (plugs) at northern latitudes often requires supplemental lighting to compensate for a low natural daily light integral (DLI), but radiation interception by plugs is limited by a low leaf area index. Some species show an increase in leaf area in response to growth under a low ratio of red to far-red radiation (R:FR), and an early increase in leaf area may allow for more effective radiation capture by seedlings and a reduction in wasted radiation. Thus, the objective of this study was to examine the effects of end-of-day far-red (EOD-FR) radiation treatments varying in intensity, R:FR (600–700 nm/700–780 nm), and duration on early leaf expansion and plug quality for petunia (Petunia ×hybrida) ‘Wave Purple’ and ‘Dreams Midnight’. Seedlings were grown in 128-cell trays in a common greenhouse environment under a simulated winter DLI (∼5.3 mol·m−2·s−1) and received one of four EOD-FR treatments, control conditions (no EOD-FR or supplemental lighting), or supplemental lighting (target photosynthetic photon flux density of 70 μmol·m−2·s−1). The EOD-FR treatments were provided for 3 weeks on cotyledon emergence and included the following: 10 μmol·m−2·s−1 of far-red radiation for 30 minutes with a R:FR of ∼0.8 (EODFL), 10 or 20 μmol·m−2·s−1 of far-red radiation for 30 minutes with a R:FR of ∼0.15 (EOD10:30 and EOD20:30, respectively), or 20 μmol·m−2·s−1 of far-red radiation for 240 minutes with a R:FR of ∼0.15 (EOD20:240). Destructive data were collected 14 and 21 days after cotyledon emergence. Seedlings that received EOD-FR treatments did not show any increase in leaf area compared with control or supplemental lighting treatments. Stem length generally increased under EOD-FR treatments compared with supplemental lighting and control treatments; greater elongation was observed when the R:FR decreased from 0.8 to 0.15, and when treatment duration increased from 30 minutes to 240 minutes. However, at a R:FR of 0.15 and a treatment duration of 30 minutes, an increase in far-red radiation intensity from 10 to 20 μmol·m−2·s−1 did not promote further stem elongation resulting in similar stem lengths for both cultivars under EOD10:30 and EOD20:30. Results of this study indicate that under low DLIs, EOD-FR radiation applied in the first 3 weeks of seedling production does not promote early leaf area expansion, and generally decreases seedling quality for petunia. As responses to far-red radiation may vary based on study taxa, incident radiation, and DLI, future research examining EOD-FR–induced morphological changes is warranted.
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一天结束时,低日光积分的远红色照明增加了矮牵牛幼苗的茎长,但不促进早期叶片膨胀
在北纬地区,温室生产高质量的年轻一年生床上用品(插塞)通常需要补充照明,以补偿低自然日光积分(DLI),但插塞的辐射拦截受到低叶面积指数的限制。一些物种在较低的红光与远红光辐射(R:FR)比例下表现出对生长的反应,叶面积增加,并且叶面积的早期增加可能允许幼苗更有效地捕获辐射并减少浪费的辐射。因此,本研究的目的是检验不同强度、R:FR(600–700 nm/700–780 nm)和持续时间的日终远红(EOD-FR)辐射处理对矮牵牛(petunia×hybrida)“波浪紫”和“午夜之梦”早期叶片膨胀和插塞质量的影响。在模拟冬季DLI(~5.3 mol·m−2·s−1)下,在普通温室环境中的128个细胞托盘中生长幼苗,并接受四种EOD-FR处理、对照条件(无EOD-FR或补充光照)或补充光照射(目标光合光子通量密度为70μmol·m–2·s–1)中的一种。EOD-FR处理在子叶羽化后持续3周,包括:10μmol·m−2·s−1的远红色辐射30分钟,R:FR为~0.8(EODFL),10或20μmol·m-2·s–1的远红辐射30分钟的R:FR约为0.15(分别为EOD10:30和EOD20:30),或20μmol·m−2·s−1的远红色辐射240分钟,R:FR约为0.15(EOD20:240)。在子叶出芽后14天和21天收集破坏性数据。与对照或补充光照处理相比,接受EOD-FR处理的幼苗的叶面积没有任何增加。与补充光照和对照处理相比,EOD-FR处理下的茎长通常增加;当R:FR从0.8降低到0.15并且当处理持续时间从30分钟增加到240分钟时观察到更大的伸长率。然而,在R:FR为0.15和处理持续时间为30分钟时,远红色辐射强度从10μmol·m−2·s−1增加到20μmol·m-2·s–1并没有促进进一步的茎伸长,导致两个品种在EOD10:30和EOD20:30下的茎长相似。本研究结果表明,在低DLI条件下,在幼苗生产的前3周施加EOD-FR辐射不会促进矮牵牛早期叶面积的扩大,通常会降低矮牵牛的幼苗质量。由于对远红色辐射的反应可能因研究分类群、入射辐射和DLI而异,未来有必要对EOD-FR诱导的形态变化进行研究。
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来源期刊
Hortscience
Hortscience 农林科学-园艺
CiteScore
3.00
自引率
10.50%
发文量
224
审稿时长
3 months
期刊介绍: HortScience publishes horticultural information of interest to a broad array of horticulturists. Its goals are to apprise horticultural scientists and others interested in horticulture of scientific and industry developments and of significant research, education, or extension findings or methods.
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