Testing Cultivar-specific Tipburn Sensitivity of Lettuce for Indoor Vertical Farms

IF 1.5 3区 农林科学 Q2 HORTICULTURE Hortscience Pub Date : 2023-10-01 DOI:10.21273/hortsci17313-23
John Ertle, Chieri Kubota
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Abstract

Low evaporative conditions in indoor (vertical) farms reduce mass-flow–driven transport of calcium (Ca), resulting in tipburn of lettuce. Lettuce tipburn symptoms develop along the margins of young leaves and the growing shoot tip, where necrotic tissue forms as a result of Ca deficiency. For indoor farms, lettuce tipburn poses a major economic risk because the crop becomes unmarketable as a result of its appearance. Difference in tipburn sensitivity among cultivars has been thought to be related to differences in growth rate, morphology, or anthocyanin production, whereas most commercial lettuce cultivars have been known to express tipburn symptoms in the indoor farm setting. We created a tipburn-inducing growing condition in walk-in growth chambers that limits plant potential transpiration rate while achieving relatively high growth rates, and examined 10 commercial cultivars selected for tipburn sensitivity. Selected cultivars differ in morphology (butterhead, romaine, and leafy type) and color (red or green; resulting from anthocyanin production). All cultivars expressed visually detectable tipburn symptoms 22 ± 2.6 days after transplanting, and varied tipburn rates of 7% to 41% of all leaves at the time of harvest (28 days after transplanting). Despite cultivar-specific variation, neither lettuce morphology nor anthocyanin content were significantly correlated with the incidence or severity of tipburn. However, cultivars recommended for “indoor” production by seed suppliers had less tipburn severity than those recommended for outdoor or both indoor and outdoor production systems. Although tipburn risk may vary under other environmental conditions, low evaporative conditions in this experiment caused tipburn symptoms in all tested cultivars at varying degrees of severity. Cultivar-specific average yield and tipburn severity were not correlated with the Ca concentrations in the inner leaves, suggesting that the amount of tissue Ca required to prevent tipburn is cultivar specific and not related to yield. Our selected tipburn-inducing condition was found to be effective in comparing tipburn sensitivity of lettuce cultivars for indoor farm settings, and similar fast-growing but low-evaporative conditions should be used to assess cultivars for indoor farm production.
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室内垂直农场莴苣品种特异性烧伤敏感性试验
室内(垂直)农场的低蒸发条件减少了质量流驱动的钙(Ca)运输,导致生菜的枯萎。生菜的尖端烧伤症状沿着嫩叶的边缘和正在生长的茎尖发展,在那里坏死组织形成作为钙缺乏的结果。对于室内农场来说,生菜烧伤会带来重大的经济风险,因为生菜的外观会导致滞销。不同品种间对催熟敏感性的差异被认为与生长速度、形态或花青素产量的差异有关,而大多数商业生菜品种在室内农场环境中都表现出催熟症状。我们在行走式生长室中创造了一个诱导tipburn的生长条件,在获得相对较高的生长速率的同时限制了植物的潜在蒸腾速率,并对10个选择的商业品种进行了tipburn敏感性试验。选择的品种在形态(butterhead, romaine和叶型)和颜色(红色或绿色;产生于花青素的生产)。所有品种在移栽后22±2.6 d均表现出目测到的尖端症状,在收获时(移栽后28 d),所有叶片的尖端率为7% ~ 41%。尽管品种间存在差异,但生菜形态和花青素含量与叶尖烧的发生和严重程度均无显著相关。然而,种子供应商推荐的用于“室内”生产的品种比用于室外或室内外兼用生产系统的品种的烧伤严重程度要低。虽然在其他环境条件下倾倒性风险可能有所不同,但本试验中低蒸发条件导致所有被试品种倾倒性症状的严重程度不同。品种间平均产量和拔尖严重程度与叶片内Ca浓度无关,表明防止拔尖所需的组织Ca量是品种间特有的,与产量无关。我们所选择的诱变条件在比较室内农场环境下生菜品种的诱变敏感性方面是有效的,应该采用类似的快速生长但低蒸发的条件来评估室内农场生产的品种。
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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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