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The Potentiality of Marine Macro-Algae as Bio-Fertilizers to Improve the Productivity and Salt Stress Tolerance of Canola ( Brassica napus L.) Plants

机译:海洋大型藻类作为生物肥料改善油菜(Canola(Brassica napus L.))植物的生产力和耐盐胁迫的潜力

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The present study aimed to evaluate the potentiality of three seaweeds, which belong to different algal taxa (green alga Ulva lactuca Linnaeus, brown alga Cystoseira spp., and red alga Gelidium crinale (Hare ex Turner) Gaillon) as bio-fertilizers to improve the growth and yield of canola ( Brassica napus L.) plants under greenhouse conditions. Furthermore, the impact of seaweeds in alleviating the effects of salt stress (75 and 150 mM NaCl) on canola plants was also investigated. The three examined seaweeds (applied as soil amendments) successfully alleviated the harmful effects of salinity on canola plants by significantly reducing the inhibition of chlorophyll a, b, total carbohydrate accumulation, and growth promoting hormones, while increasing antioxidative compounds, such as phenols, flavonoids, anthocyanin, and osmoprotectants, including total carbohydrates and proline. Phytochemical analysis of the three examined seaweeds suggests that their stimulatory effect on growth and productivity under normal and salinity growth conditions may be linked to their constituents of a wide variety of growth promotive hormones, including indole acetic acid, indole butyric acid, gibberellic acid, cytokinins, total carbohydrates, and phenolic compounds. U. lactuca was found to be the best candidate to be used as a bio-fertilizer to improve canola growth, yield, and salt stress tolerance.
机译:本研究旨在评估属于不同藻类群的三种海藻(绿藻Ulva lactuca Linnaeus,褐藻Cystoseira spp。和红藻Gelidium crinale(Hare ex Turner)Gaillon)作为生物肥料的潜力,以改善这些藻类。温室条件下油菜(甘蓝型油菜)的生长和产量。此外,还研究了海藻对减轻油菜植物盐胁迫(75和150 mM NaCl)的影响。三种经过检查的海藻(作为土壤改良剂)通过显着减少对叶绿素a,b,总碳水化合物的积累和促进生长的激素的抑制作用,同时增加了抗氧化化合物(如酚类,类黄酮),成功减轻了盐渍对油菜植物的有害影响。 ,花色素苷和渗透保护剂,包括总碳水化合物和脯氨酸。对三种海藻的植物化学分析表明,它们在正常和盐分生长条件下对生长和生产力的刺激作用可能与它们的多种生长促进激素的成分有关,包括吲哚乙酸,吲哚丁酸,赤霉素,细胞分裂素,总碳水化合物和酚类化合物。发现U. lactuca是用作改良低芥酸菜子生长,产量和盐胁迫耐受性的生物肥料的最佳人选。

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