甜叶菊的生理和形态特征表明,甜叶菊的盐胁迫是基于非气孔限制而非气孔限制

Angela Castillejo-Morales, A. Jarma-Orozco, M. Pompelli
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引用次数: 4

摘要

甜菊糖是一种非常广泛分布在世界各地的植物,由于生产二萜甜菊醇糖苷,具有很高的甜味,在浓度为0.4% (w/v)时比糖甜300倍。在哥伦比亚加勒比地区,研究的重点是评估商业基因型和实验品系的适应和管理,然而,它们对土壤盐碱化的行为尚不清楚。本研究的目的是评价两个有潜力的基因型对盐胁迫的一些生理和形态特征的响应。气体交换、叶绿素a荧光和生长参数之间的关系是NaCl浓度的函数。虽然气孔导度和排汗对盐分水平没有响应,但净光合作用随盐度的增加而减少与气孔效应无关,而是与电子传递速率的下降有关,电子传递速率与光能的吸收及其转化为光同化物有关。因此,可以推断,盐胁迫下的沙蚕对非气孔限制比气孔限制更敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Physiological and morphological features denote that salt stress in Stevia rebaudiana is based on nonstomatic instead of stomatic limitation
Stevia rebaudiana is a very widespread plant throughout the world, due to the production of diterpenic steviol glycosides, with high sweetening power, being up to 300 times sweeter than sugar at a concentration of 0.4% (w/v). In the Colombian Caribbean, research has focused on evaluating the adaptation and management of commercial genotypes and experimental lines, however, their behavior against soil salinization is unknown. The objective of this research was to evaluate the response of some physiological and morphological characteristics of two promising genotypes against salt stress. The relationship between gas exchange, chlorophyll a fluorescence, and growth parameters was modulated as a function of the NaCl concentration. Although stomatal conductance and perspiration did not show a response to salt levels, the reduction in net photosynthesis as salinity increased was not associated with stomatal effects, but rather with a drop in the rate of electron transport, which articulates the absorption of light energy and its conversion into photoassimilates. Therefore, it could be inferred that salinity-stressed S. rebaudiana plants are more sensitive to non-stomatal limitation than to stomatal limitation.
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