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首页> 外文期刊>Pesquisa Agropecuária Tropical >Oil quality of canola cultivars in response to water stress and super absorbent polymer application
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Oil quality of canola cultivars in response to water stress and super absorbent polymer application

机译:双低油菜籽品种的油质响应水分胁迫和高吸收性聚合物的应用

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Water stress significantly limits plant growth and crop yield. Hence, the efficient management of soil moisture and the study of metabolic changes which occur in response to drought stress are important for agriculture. The present study was conducted to evaluate the effect of six oilseed rape (Brassica napus L.) genotypes (Rgs003, Sarigol, Option500, Hyola401, Hyola330, and Hyola420), with and without drought stress, and with and without the use of super absorbent polymer, on oil quality and content. A complete randomized blocks design, with a split-plot arrangement, in a 2x2x6 factorial scheme (drought stress x polymer x genotypes), with three replications, was used. The research was carried out in a farm owned by the Seed and Plant Improvement Institute, in Karaj, Iran. Results showed a significant difference for drought stress levels, presence of super absorbent and genotypes on oil content and composition, as well as on glucosinolate content in the oil. Drought stress conditions decreased the oil and linoleic acid contents, but increased the glucosinolate and stearic acid contents. The use of super absorbent polymer increased the linoleic acid content, but decreased other components. It was possible to conclude that, under drought stress conditions, the super absorbent polymer application, for reserving higher amounts of water in itself, increased the soil ability to store water, what increased the plant vegetative period and consequently the oil quality by decreasing saturate fatty acids and increasing unsaturated fatty acids.
机译:水分胁迫严重限制了植物的生长和作物产量。因此,有效控制土壤水分和研究干旱胁迫下发生的代谢变化对农业至关重要。进行本研究以评估在有或没有干旱胁迫以及有无使用超级吸收剂的情况下,六种油菜油菜(甘蓝型油菜)基因型(Rgs003,Sarigol,Option500,Hyola401,Hyola330和Hyola420)的影响。聚合物,对油的质量和含量。使用完整的随机区组设计,采用分裂图布置,采用2x2x6阶乘方案(干旱胁迫x聚合物x基因型),重复三次。该研究是在伊朗卡拉伊种子和植物改良研究所拥有的一个农场中进行的。结果表明,干旱胁迫水平,超级吸收剂和基因型的存在对油含量和组成以及油中芥子油苷含量有显着差异。干旱条件降低了油和亚油酸含量,但增加了芥子油苷和硬脂酸含量。高吸收性聚合物的使用增加了亚油酸含量,但减少了其他组分。可以得出这样的结论:在干旱胁迫条件下,高吸收性聚合物的应用本身就可以保留大量的水,从而提高了土壤的储水能力,这延长了植物的营养期,从而通过降低饱和脂肪减少了油质。酸和增加的不饱和脂肪酸。

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