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Study of water deficit conditions and beneficial microbes on the oil quality and agronomic traits of canola (Brassica napus L.)

机译:水赤字条件研究对油菜籽油质量和农艺性状的研究( Brassica Napus L.)

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Water deficit stress is one of the major limiting factors that adversely affect plant growth and yield production. Some rhizosphere bacteria are known to promote plant growth in such stressful conditions. To study the response of quantifying canola growth, yield and yield components, to root colonization by two spe-cies of mycorrhizal fungi, a two-year field experiment was conducted at the research farm of Zanjan University. The main plot conditions were irrigation at 85% (S1), 70% (S2) and 55% (S3) of field capacity which were defined as no stress, mild and severe stress. The subplot treatments included three levels of mycorrhizal inoculation: non inoculation (control), G. Mosseae and G. Intraradices. The results showed that regardless of water deficit stress, colonized plants produced more biomass, seed and oil yield than non inoculated plants. Water deficit stress reduced the RWC and oil percentage of the seeds, although mycorrhizal improved these traits. Water deficit strikingly decreased the linoleic acid content in the seeds in contrast with increased stearic, oleic, arachidic and linolenic acids in the canola seeds. The presence of bacteria increased the seed oil percentage, oleic and linoleic contents. However, it decreased arachidic, particularly when the plants were subjected to water deficit stress.
机译:水赤字压力是对植物生长和产量产生产生不利影响的主要限制因素之一。已知一些根际细菌可促进这种压力条件下的植物生长。为了研究量化油菜生长,产量和产量组分的反应,通过两种菌根真菌的菌根殖民化,在Zanjan大学的研究场所进行了两年的田间实验。将主图条件为85%(S1),70%(S2)和55%(S3)的现场能力,其定义为没有应力,轻度和严重的应力。该子舱治疗包括三种菌根接种:非接种(对照),G.Mosseae和G. Minrayices。结果表明,无论水缺陷应力如何,殖民化植物都会产生比非接种植物更多的生物质,种​​子和油产量。虽然菌根改善了这些特征,但水缺陷应力降低了种子的rwc和油百分比。与油菜籽中的硬脂酸,油酸,恶毒,亚麻酸增加相比,水缺陷令人惊讶地降低了种子中的亚油酸含量。细菌的存在增加了种子油百分比,油酸和亚油含量。然而,它减少了花生,特别是当植物受水缺陷应激时。

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