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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Analysis of metabolic and nutritional biomarkers in Brassica oleracea L. cv. Bronco plants under alkaline stress
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Analysis of metabolic and nutritional biomarkers in Brassica oleracea L. cv. Bronco plants under alkaline stress

机译:甘蓝型甘蓝型甘蓝型甘蓝醛植物中的代谢和营养生物标志物分析。 Bronco植物在碱性应激下

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摘要

Alkaline stress is caused by accumulation of alkaline salts (such as NaHCO3 and Na2CO3) in the soil. This problem, common in arid and semiarid areas of Spain, results from intensive agriculture, the use of hard water, and cultivation in areas of calcareous rock. The present study examines plant metabolic responses against this stress in Brassica oleracea L. cv. Bronco in order to better understand the systems of resistance that could promote plant growth in alkaline soils, and indicates the most relevant biomarkers of alkalinity toxicity. Alkaline stress causes a sharp reduction in biomass, an accumulation of Na+, and a nutritional deficiency. With this debilitated photosynthetic capacity and the antioxidant activity, superoxide dismutase (SOD) sharply decreases and O-2(center dot-) accumulates, resulting in two of the main causes of stress. Therefore the mechanisms of uptake and compartmentalisation of nutrients and detoxification of O-2(center dot-) systems should be strengthened in order to remedy alkaline stress. In this work, the authors conclude that Na, P, K, Ca, Mg, and Mn ions are the best indicators of alkaline stress, due to their strong correlation with reduced leaf biomass reduction and photosynthetic pigments, together with the greater accumulation of proline and certain antioxidant enzymes such as SOD.
机译:碱性应力是由土壤中碱性盐的积累(如NaHCO 3和Na 2 CO 3)引起的。这个问题,常见于西班牙的干旱和半干旱地区,从集约化农业,使用硬水的使用,以及钙质岩石地区的栽培。本研究检测豆类甘油酸盐糖蛋白酶菌的植物代谢反应。 Bronco为了更好地了解能够促进碱性土壤中植物生长的抗性系统,并表明碱性毒性最相关的生物标志物。碱性应力导致生物质的急剧降低,纳+的积累和营养缺乏。通过这种衰弱的光合能力和抗氧化活性,超氧化物歧化酶(SOD)急剧下降,o-2(中心点)累积,导致两个主要原因的主要原因。因此,应加强对营养素的摄取和分区和O-2(中心点)系统的排毒的机制,以补救碱性应力。在这项工作中,作者得出结论,由于与叶片生物量减少和光合色素的强烈相关,碱性胁迫的最佳指标是碱性应激的最佳指标。和某些抗氧化酶如SOD。

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