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在浮根系统水培生菜中作为生长促进剂的潜力。

Potential of as a Growth Promoter in Hydroponic Lettuce Cultivated in a Floating-Root System.

作者信息

Gutiérrez-Chávez Aldo, Robles-Hernández Loreto, Guerrero Brenda I, González-Franco Ana Cecilia, Medina-Pérez Gabriela, Acevedo-Barrera Angélica Anahí, Hernández-Huerta Jared

机构信息

Department of Agrotechnological Sciences, Autonomous University of Chihuahua, Campus 1, Av. Pascual Orozco S/N, Chihuahua 31350, Mexico.

Institute of Agricultural Sciences, Autonomous University of the State of Hidalgo, Tulancingo de Bravo 43000, Mexico.

出版信息

Plants (Basel). 2025 Jan 26;14(3):382. doi: 10.3390/plants14030382.

Abstract

The genus is widely used in agriculture as a biological agent and biofertilizer, enhancing crop yield and quality. However, its use in hydroponic systems is limited. This study evaluated the potential of as a growth promoter for lettuce ( L.) cv. Starfighter RZ in a floating-root hydroponic system (FHS). strains (TaMFP1 and TaMFP2) were isolated from soil and identified morphologically and molecularly. The experiment used a completely randomized design with the following four treatments ( = 4): root spraying with TaMFP1, TaMFP2, (Trichospore), and uninoculated plants (control). After 30 days, morphological, biochemical, and quality parameters were analyzed. All treatments significantly increased plant height (19.0%), root length (25.7%), total fresh biomass (76.4%), total dry biomass (82.63%), and number of leaves (18.18%). The nitrate levels in leaves were unaffected by TaMFP1 and TaMFP2, while Trichospore reduced the nitrate content by 24.94%. The foliar nitrogen content increased with specific treatments, though the phosphorus and magnesium levels decreased. Visual quality traits, including appearance and firmness, remained unchanged. strains TaMFP1 and TaMFP2 enhanced vegetative growth without compromising quality, demonstrating their potential as sustainable tools for hydroponic lettuce production in controlled environments.

摘要

该属作为一种生物制剂和生物肥料在农业中被广泛使用,可提高作物产量和品质。然而,其在水培系统中的应用有限。本研究评估了[属名]作为生菜([生菜学名])品种“星际战斗机RZ”在浮根水培系统(FHS)中生长促进剂的潜力。从土壤中分离出[菌株名]菌株(TaMFP1和TaMFP2),并进行了形态学和分子鉴定。实验采用完全随机设计,设置以下四种处理(n = 4):用TaMFP1、TaMFP2、[某种物质名](Trichospore)对根部进行喷雾处理,以及未接种的植株(对照)。30天后,分析形态、生化和品质参数。所有接种处理均显著提高了株高(19.0%)、根长(25.7%)、总鲜生物量(76.4%)、总干生物量(82.63%)和叶片数(18.18%)。TaMFP1和TaMFP2对叶片中的硝酸盐水平没有影响,而[某种物质名](Trichospore)使硝酸盐含量降低了24.94%。特定处理使叶片氮含量增加,不过磷和镁水平有所下降。包括外观和硬度在内的视觉品质性状保持不变。TaMFP1和TaMFP2菌株促进了营养生长且不影响品质,表明它们有潜力成为可控环境下水培生菜生产的可持续工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/daf0/11821087/d322d715b071/plants-14-00382-g002.jpg

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