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首页> 外文期刊>Notulae Botanicae Horti Agrobotanici Cluj-Napoca >Effects of Salt and Water Stress on Plant Growth and on Accumulation of Osmolytes and Antioxidant Compounds in Cherry Tomato
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Effects of Salt and Water Stress on Plant Growth and on Accumulation of Osmolytes and Antioxidant Compounds in Cherry Tomato

机译:盐和水分胁迫对樱桃番茄生长及渗透压和抗氧化化合物积累的影响

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摘要

The effects of salt and water stress on growth and several stress markers were investigated in cherry tomato plants. Some growth parameters (stem length and number of leaves) and chlorophyll contents were determined every third day during plant growth, and leaf material was collected after 25 and 33 days of treatment. Both stresses inhibited plant growth; chlorophyll levels, however, decreased only in response to high NaCl concentrations. Proline contents largely increased in leaves of stressed plants, reaching levels high enough to play a major role in cellular osmotic adjustment. Despite reports indicating that tomato does not synthesize glycine betaine, the stress-induced accumulation of this osmolyte was detected in cherry tomato, albeit at lower concentration than that of proline. Therefore, it appears that the plants are able to synthesise glycine betaine as a secondary osmolyte under strong stress conditions. Total sugars levels, on the contrary, decreased in stress-treated plants. Both stress treatments caused secondary oxidative stress in the plants, as indicated by a significant increase in malondialdehyde (MDA) contents. Water stress led to an increase in total phenolics and flavonoid contents and a reduction of carotenoid levels in the leaves; flavonoids also increased under high salinity conditions.
机译:研究了盐和水分胁迫对樱桃番茄植物生长和几种胁迫标记的影响。在植物生长过程中每隔三天确定一些生长参数(茎长和叶片数)和叶绿素含量,并在处理25天和33天后收集叶片材料。两种胁迫都抑制了植物的生长。然而,叶绿素水平仅在高NaCl浓度下才下降。胁迫植物叶片中脯氨酸的含量大大增加,达到足以在细胞渗透调节中起主要作用的水平。尽管有报道表明番茄不能合成甘氨酸甜菜碱,但在樱桃番茄中仍能检测到这种渗透液在压力下的积累,尽管其浓度低于脯氨酸。因此,看来植物能够在强胁迫条件下合成甘氨酸甜菜碱作为次要渗透压。相反,在胁迫处理的植物中总糖水平降低了。两种胁迫处理均导致植物中的二次氧化胁迫,丙二醛(MDA)含量显着增加表明。水分胁迫导致叶片中总酚和类黄酮含量增加,叶片中类胡萝卜素水平降低;在高盐度条件下,类黄酮也增加。

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