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Combined use of Enterobacter sp. MN17 and zeolite reverts the adverse effects of cadmium on growth, physiology and antioxidant activity of Brassica napus

机译:结合使用肠杆菌SP。 MN17和沸石恢复镉对甘蓝型油菜生长,生理学和抗氧化活性的不良反转

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摘要

The objective of the study was to evaluate role of zeolite and Enterobacter sp. MN17 on Cd uptake, growth, physiological and biochemical responses of Brassica napus on Cd-contaminated soil. A sandy clay loam soil in plastic pots was spiked with Cd (0 and 80 mg kg-1) and amended with zeolite (0 and 10 g kg-1). Seeds of B. napus were inoculated with Enterobacter sp. MN17. Both inoculated and non-inoculated seeds of B. napus were sown and plants were harvested after 60 days of growth and data were collected. Although sole application of zeolite and seed inoculation reverted adverse effects of Cd in B. napus plants, the combined use resulted in even higher growth and physiological responses compared to control plants. The combined use under Cd stress increased plant height, root length, dry biomass of shoot and root up to 32%, 57%, 42% and 64%, respectively compared to control. The different physiological attributes (photosynthetic rate, chlorophyll content, transpiration rate, stomatal conductance) of B. napus were improved from 6% to 137%. Moreover, combined use of zeolite and seed inoculation on Cd-contaminated soil reduced the stress to plants as antioxidant activities decreased up to 25-64%, however enzyme activities were still higher than plants grown on normal soil. Root and shoot analysis of B. napus for Cd content depicted that zeolite and bacterium decreased Cd uptake from soil. It is concluded that combined use of zeolite and strain MN17 reduces Cd uptake from soil and improves physiological and biochemical responses of B. napus which is helpful to alleviate Cd toxicity to plants.
机译:该研究的目的是评估沸石和肠杆菌SP的作用。 CD污染土壤CD吸收,生长,生理和生化反应的CD吸收,生长学和生化反应。塑料盆中的砂质粘土壤土土壤掺入CD(0和80mg KG-1)并用沸石(0和10g Kg-1)进行。用肠杆菌SP接种B. Napus的种子。 MN17。播种和非接种的B. Napus的种子被播种,并且在60天的生长和收集数据后收获植物。虽然沸石和种子接种的唯一应用在B. Napus植物中的CD伴有不良反应,但与对照植物相比,联合用途导致甚至更高的生长和生理反应。 CD胁迫下的综合用途增加了植物高度,根长,干生物量芽,根部可分别与对照相比高达32%,57%,42%和64%。 B. Napus的不同的生理属性(光合速率,叶绿素含量,蒸腾率,气孔导率,气孔导率提高了6%至137%。此外,沸石和种子接种对CD污染土壤的结合使用将植物的应力降低,因为抗氧化活性降低至25-64%,但酶活性仍然高于在普通土壤上生长的植物。 B. NAPUS的CD含量的根和芽分析描绘了沸石和细菌降低了土壤的CD摄取。结论是,沸石和菌株MN17的结合使用降低了土壤中的CD摄取,提高了B. Napus的生理和生化反应,这有助于缓解植物的CD毒性。

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