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Nitrogen Limitation Alters Biomass Production but Enhances Steviol Glycoside Concentration in Stevia rebaudiana Bertoni

机译:氮限制改变甜叶菊甜菊中甜菊醇糖苷的含量但会提高生物量

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摘要

The need for medicinal and aromatic plants for industrial uses creates an opportunity for farmers to produce alternative crops. Stevia rebaudiana Bertoni, a perennial shrub originating from Paraguay, is of increasing interest as a source of zero-calorie natural sweeteners: the steviol glycosides (SVglys). The aim of this study was to investigate the relevance of nitrogen (N) supply for leaf yield and for SVgly concentrations in leaves, which are the two major components of S. rebaudiana productivity. In this regard, the relationship between leaf N concentration, CO2 assimilation, leaf production and SVgly accumulation was investigated. The experiments were conducted consecutively in growth-chamber (CC: controlled conditions), in greenhouse (SCC: semi-controlled conditions) and in field conditions (FC) on two genotypes. In CC and SCC, three levels of N fertilization were applied. Plants were grown on four locations in the FC experiment. Both N supply (CC and SCC) and location (FC) had a significant effect on N content in leaves. When light was not limiting (SCC and FC) N content in leaves was positively correlated with CO2 assimilation rate and biomass accumulation. Irrespective of the growth conditions, N content in leaves was negatively correlated with SVgly content. However, increased SVgly content was correlated with a decreased ratio of rebaudioside A over stevioside. The evidence that the increased SVgly accumulation compensates for the negative effect on biomass production suggests that adequate SVgly productivity per plant may be achieved with relatively low fertilization.
机译:对用于工业用途的药用和芳香植物的需求为农民创造了生产替代作物的机会。来自巴拉圭的多年生灌木甜叶菊甜叶菊作为零卡路里天然甜味剂:甜菊糖苷(SVglys)的来源,受到越来越多的关注。这项研究的目的是调查氮的供应量对叶片产量和叶片中SVgly浓度的相关性,这是rebaudiana生产力的两个主要组成部分。在这方面,研究了叶片氮浓度,CO2同化,叶片产量与SVgly积累之间的关系。在两种基因型的生长室(CC:受控条件),温室(SCC:半受控条件)和田间条件(FC)中连续进行实验。在CC和SCC中,施用了三个水平的氮肥。在FC实验中,植物在四个位置生长。氮素供应(CC和SCC)和位置(FC)对叶片中N含量都有显着影响。当光不受限制时(SCC和FC),叶片中的N含量与CO2同化率和生物量积累呈正相关。不论生长条件如何,叶片中的氮含量与SVgly含量均呈负相关。但是,增加的SVgly含量与莱鲍迪甙A与甜菊甙的比例降低相关。 SVgly积累增加可以弥补对生物量生产的负面影响,这一证据表明,相对较低的施肥量可以实现每株植物足够的SVgly生产率。

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