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首页> 外文期刊>Central European Journal of Biology >The influence of soil salinity on volatile organic compounds emission and photosynthetic parameters of Solanum lycopersicum L. varieties
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The influence of soil salinity on volatile organic compounds emission and photosynthetic parameters of Solanum lycopersicum L. varieties

机译:土壤盐分对枸杞品种挥发性有机物排放及光合参数的影响

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Soil salinity is one of the best known stress factors of plants that can lead to crop yield reduction. Therefore, it is important to identify new tolerance varieties of plants that can grow on saline soils. We have studied the influence of salt on five different tomato varieties from the Western region of Romania and compared them with a commercial hybrid and found that one of them (Rudna) is a very salt-tolerant variety (up to 200 mM NaCl). The assimilation rates and stomata conductance of water vapour are affected by salinity but some of the local varieties of tomato exhibit quite good tolerance. We found that all plants under salinity stress emit (Z)-3-hexenol (a C6, green leaf volatile) and the emission of all terpenes increased in proportion to the salt concentration. The emission of three terpenes, (Z)-beta-ocimene. 2-carene and beta-phellandrene, have been quantitatively correlated with salt concentration.
机译:土壤盐分是导致植物减产的最著名的植物压力因子之一。因此,重要的是确定可以在盐渍土上生长的植物新的耐性品种。我们研究了盐对罗马尼亚西部地区五个不同番茄品种的影响,并将其与商业杂交品种进行比较,发现其中一个(Rudna)是非常耐盐的品种(最高200 mM NaCl)。盐度影响水蒸气的同化率和气孔电导率,但一些当地番茄品种表现出很好的耐受性。我们发现,盐分胁迫下的所有植物均排放(Z)-3-己烯醇(C6,绿叶挥发物),并且所有萜类的排放均与盐浓度成正比。发射出三个萜烯,(Z)-β-罗勒烯。 2-烯丙基和β-芹烯烯已与盐浓度定量相关。

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