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等离子体处理营养液对不同氮肥水平下生长的芝麻菜[(L.)DC.]产量、色素和矿物质含量的影响。

The effect of plasma-treated nutrient solution on yield, pigments, and mineral content of rocket [ (L.) DC.] grown under different nitrogen fertilization levels.

作者信息

Sodini Mirko, Traversari Silvia, Cacini Sonia, Gonfiotti Irene, Lenzi Anna, Massa Daniele

机构信息

Department of Agricultural, Food, Environmental and Animal Sciences, University of Udine, Udine, Italy.

Research Institute on Terrestrial Ecosystems (IRET), National Research Council (CNR), Pisa, Italy.

出版信息

Front Plant Sci. 2024 Dec 23;15:1511335. doi: 10.3389/fpls.2024.1511335. eCollection 2024.

Abstract

INTRODUCTION

The non-thermal plasma (NTP) technique has been suggested as a sustainable horticultural practice to promote biomass accumulation, nutrient uptake, N metabolism, and disease prevention in plants. In particular, the potentiality of this technique to promote the natural accumulation of nutrients into plants deserve to be explored as input saving is strongly recommended in the horticultural sector.

METHODS

The nutrient solution supplied to a red coloured variety of rocket salad [ (L.) DC. 'Dragon's Tongue'] grown in a hydroponic close loop system was treated with NTP. Low, medium, and high concentrations of N (i.e., 1, 10, and 20 mM) of the nutrient solution were tested in control (no NTP) or NTP treated conditions in two consecutive growing cycles.

RESULTS AND DISCUSSION

Results highlighted a N-dependent effect of NTP treatment showing a biomass stimulation at 10 mM N while negative effects of this technique at 1 and 20mM N. The biomass boosting of NTP found at 10 mMN coupled with an increase in K and Zn showing positive effects also on the nutraceutical aspects. Interestingly, different mechanisms seemed to be involved in the detrimental effects found at low and high N levels, i.e., a lower sensibility to N deficiency at 1 mM and a synergic negative effect of N and NTP in promoting oxidative stress at 20 mM.

摘要

引言

非热等离子体(NTP)技术已被提议作为一种可持续的园艺实践,以促进植物的生物量积累、养分吸收、氮代谢和疾病预防。特别是,由于园艺部门强烈建议节约投入,因此该技术促进养分自然积累到植物中的潜力值得探索。

方法

在水培闭环系统中种植的红色叶用生菜[(L.)DC.‘龙舌’]所供应的营养液用NTP进行处理。在两个连续的生长周期中,在对照(无NTP)或NTP处理条件下测试了低、中、高浓度的氮(即1、10和20 mM)的营养液。

结果与讨论

结果突出了NTP处理的氮依赖性效应,即在10 mM氮时显示出生物量刺激,而在1和20 mM氮时该技术产生负面影响。在10 mM氮时发现NTP促进生物量增加,同时钾和锌增加,这对营养保健方面也显示出积极影响。有趣的是,在低氮和高氮水平下发现的有害影响似乎涉及不同的机制,即在1 mM时对氮缺乏的敏感性较低,而在20 mM时氮和NTP在促进氧化应激方面具有协同负面影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2168/11701140/0b98574fe148/fpls-15-1511335-g001.jpg

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