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Evaluation of Grafted Tomatoes with Different Levels of Resistance of Rootstocks to TYLCV by Analyzing the Growth Characteristics, Leaf-macronutrient Content, and Chlorophyll Fluorescence

HORTICULTURAL SCIENCE & TECHNOLOGY(2023)

Korea Natl Univ Agr & Fisheries | Natl Inst Hort & Herbal Sci | Jeonbuk Natl Univ | Bunongseed Co Ltd

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Abstract
The grafting technique has widely been used with fruits and vegetables in an effort to increase productivity for long-term cultivation. For long-term cultivation, the result is increased vigor provided by the rootstock, which allows the scion to grow longer, even in the presence of a virus. This study was conducted to evaluate the performance of rootstocks having different TYLCVresistance levels by comparatively analyzing the growth, yield, nutrient concentration in the petiole sap, and chlorophyll fluorescence in tomatoes grown via a hydroponics system. The domestic cultivars 'HSF4' and 'BWM' were used as the TYLCV-susceptible rootstocks, and '21LM' and '21A701' were used as the TYLCV-resistant rootstocks. The tomato variety 'Red250' was used as the TYLCV-resistant scion and the non-grafted control plants. The tomato plants were infected overall with TYLCV at ten weeks after transplanting. Grafted tomatoes on the TYLCVresistant rootstocks '21A701' and '21LM' were vigorous, and the yields were 7,999g and 7,754g respectively, correspondingly higher by 25% and 22% than those using the TYLCV-susceptible rootstock 'BWM'. Moreover, the growth strength of '21A701' was highest compared to the others. The NO3-N concentration of '21A701' was highest at 1,211mg center dot L-1, and that of 'BWM' was lowest at 835mg center dot L-1 at 36 weeks after transplanting. The K+ concentration of '21A701' was highest at 4,050mg center dot L-1, and the non-grafted case was lowest at 3,350mg center dot L-1. The maximum quantum yield of the primary PSII photochemistry (FV/FM) and the performance index based on the absorption (PIABS) of '21LM' were highest at 0.803 and 2.990, respectively. The non-grafted samples were lowest at 0.739 and 1.422, respectively. The grafted plants on the TYLCV-resistant rootstocks had high vigor of the root system and greater mineral and water uptake levels, leading to an increased yield, likely due to the high concentrations of nutrients reaching the leaves and the high photosynthetic efficiency. The use of TYLCV-resistant rootstocks was required to improve the yields up to the late harvest stage. We concluded that tomato grafting onto TYLCV-resistant rootstocks can increase the uptake of mineral nutrition and the photosynthetic and the fruit
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growth strength,nutrient uptake,photosynthetic efficiency,plant vigor,Solanum lycopersicum L
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要点】:本研究评估了不同TYLCV抗性水平的嫁接番茄的性能,通过分析生长特性、叶柄大量元素含量和叶绿素荧光,发现嫁接在TYLCV抗性根stock上的番茄具有更高的生长活力和产量。

方法】:通过水培系统种植番茄,并使用感病根stock 'HSF4'和'BWM'以及抗病根stock '21LM'和'21A701',以TYLCV抗性接穗'Red250'和未嫁接植物为对照,分析生长、产量、叶柄汁液营养浓度和叶绿素荧光。

实验】:番茄植物在移植后十周被感染TYLCV,嫁接在'TYLCV抗性根stock '21A701'和'21LM'上的番茄生长旺盛,产量分别为7,999g和7,754g,分别比使用感病根stock 'BWM'的产量高出25%和22%。实验使用了水培系统,具体数据集名称未提及,但通过对比分析得出,使用TYLCV抗性根stock可提高矿物营养吸收、光合效率和果实产量。