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首页> 外文期刊>Agriculture >Spinach ( Spinacea oleracea L.) Response to Salinity: Nutritional Value, Physiological Parameters, Antioxidant Capacity, and Gene Expression
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Spinach ( Spinacea oleracea L.) Response to Salinity: Nutritional Value, Physiological Parameters, Antioxidant Capacity, and Gene Expression

机译:菠菜(菠菜)对盐度的响应:营养价值,生理参数,抗氧化能力和基因表达

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Scarcity of good-quality irrigation water is a major impediment to meet food demand for a growing world population. Recycled waters may be available locally more affordably, but their higher salinity is a concern. Salinity effects on spinach mineral composition, antioxidant capacity, photosynthesis, and gene expression have not been established. Spinach cv. Raccoon was greenhouse-grown and irrigated with four levels of water salinity of electrical conductivities (EC iw ) of 1.4 (control) or ranging from 3.6 to 9.4 dS m ?1 , combined with three levels of K (3, 5, and 7 meq L ?1 ). Irrigation waters had 2, 20, 40, and 80 meq L ?1 of NaCl. After 23 treatment days, plants significantly accumulated Na and Cl in shoots and roots with increasing salinity, regardless of the K concentration in the irrigation water. Plants exhibited no visual symptoms of salt toxicity and there were no differences in shoot growth. Plants maintained their overall concentrations of mineral nutrients, physiological parameters, and oxalic acid across salinity treatments. Leaves retained all their antioxidant capacity at 20 meq L ?1 NaCl, and 74% to 66% at 40 and 80 meq L ?1 NaCl, respectively. Expression analyses of ten genes, that play important role in salt tolerance, indicated that although some genes were upregulated in plants under salinity, compared to the control, there was no association between Na or K tissue concentrations and gene expression. Results clearly show that spinach maintains its growth, mineral composition, and antioxidant capacity up to EC iw = 9.4 dS m ?1 . As this salinity is equivalent to a soil salinity of 4.5 dS m ?1 , spinach can tolerate over two-fold its previously-considered salinity threshold. Thus, growers can cultivate spinach using recycled, saline, waters without detriment to shoot biomass accumulation, and nutritional value.
机译:缺乏优质灌溉水是满足日益增长的世界人口粮食需求的主要障碍。回收的水在当地价格更便宜,但是它们的盐度更高。盐度对菠菜矿物质组成,抗氧化能力,光合作用和基因表达的影响尚未确定。菠菜简历浣熊是温室栽培的,灌溉水的电导率盐度(EC iw)的四个水平为1.4(对照),范围为3.6到9.4 dS m?1,三个水平的K(3、5和7 meq) L≤1)。灌溉水中的NaCl为2、20、40和80 meq L?1。处理23天后,无论灌溉水中的K浓度如何,植物都会在茎和根中显着地积累Na和Cl,且盐分会增加。植物没有表现出盐毒性的视觉症状,并且枝条生长没有差异。在盐度处理过程中,植物保持其矿物质营养素,生理参数和草酸的总体浓度。叶片在20 meq L?1 NaCl下保持所有抗氧化能力,在40和80 meq L?1 NaCl下分别保持74%至66%。十个在耐盐性中起重要作用的基因的表达分析表明,尽管与对照相比,盐度下植物中的一些基因上调,但Na或K组织浓度与基因表达之间没有关联。结果清楚地表明,菠菜在EC iw = 9.4 dS m?1的条件下仍能保持其生长,矿物质组成和抗氧化能力。由于该盐度等于4.5 dS m?1的土壤盐度,因此菠菜可以忍受其先前考虑的盐度阈值的两倍。因此,种植者可以使用回收的盐水,水耕种菠菜,而不会损害生物量的积累和营养价值。

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