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Effects of biochar and biofertilizer on cadmium-contaminated cotton growth and the antioxidative defense system

机译:生物炭和生物元化器对镉污染棉花生长和抗氧化防御系统的影响

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Consistent use of large amounts of fertilizers, pesticides, and mulch can cause the accumulation of harmful substances in cotton plants. Among these harmful substances, cadmium (Cd), an undegradable element, stands out as being particularly highly toxic to plants. The objective of this study was to evaluate the ability of biochar (3%) and biofertilizer (1.5%) to decrease Cd uptake, increase cotton dry weight, and modulate the activities of photosynthetic and peroxidase (POD), superoxide dismutase (SOD), catalase enzyme (CAT) in cotton (Gossypium hirsutum L.) grown in Cd-contaminated soil (0, 1, 2, or 4?mg Cd kg?1 soil) in pots. These studies showed that, as expected, exogenous Cd adversely affects cotton chlorophyll and photosynthesis. However, biochar and biofertilizer increased cotton dry weight by an average of 16.82% and 32.62%, respectively. Meanwhile, biochar and biofertilizer decreased the accumulation of Cd in cotton organs, and there was a significant reduction in the amount of Cd in bolls (P??0.05). Biochar and biofertilizer have a positive impact on cotton chlorophyll content, net photosynthesis, stomatal conductance, transpiration rate, and intercellular CO2 concentration. Thus, the addition of biochar and biofertilizer promote cotton growth. However, biochar and biofertilizer increased the SOD activity of leaves (47.70% and 77.21%), CAT activity of leaves (35.40% and 72.82%), SOD activity of roots (33.62% and 39.37%), and CAT activity of roots (36.91% and 60.29%), respectively, and the addition of biochar and biofertilizer decreased the content of MDA and electrolyte leakage rate. Redundancy analyses showed that biochar and biofertilizer also improved SOD and POD activities by reducing the heavy metal-induced oxidative stress in cotton and reducing Cd uptake in cotton organs. Therefore, biochar and biofertilizer have a positive effect on the growth of cotton.
机译:一致使用大量肥料,杀虫剂和覆盖物可导致棉花植物中有害物质的积累。在这些有害物质中,镉(CD),一种不可溶解的元素,脱颖而出为对植物特别高毒性。本研究的目的是评估生物炭(3%)和生物分析器(1.5%)降低Cd吸收,增加棉脂的能力,调节光合和过氧化物酶(POD),超氧化物歧化酶(SOD)的活动,在盆中的CD污染的土壤(0,1,2或4×mg CD kg?1土壤)中生长的棉花(Gossypium hirsutum L.)中的过氧化酶酶(猫)。这些研究表明,正如预期的那样,外源CD对棉花叶绿素和光合作用产生不利影响。然而,Biochar和Biofertier分别将棉干重的增加,平均分别为16.82%和32.62%。同时,Biochar和Biofertiilizer降低了棉质器官中Cd的积累,棉铃中的Cd量显着降低(p?<〜0.05)。生物炭和生物元化器对棉花叶绿素含量,净光合作用,气孔导电,蒸腾率和细胞间CO 2浓度产生正影响。因此,添加生物炭和生物分度器促进棉花生长。然而,生物炭和生物分析器增加了叶子的SOD活性(47.70%和77.21%),猫活性(35.40%和72.82%),根茎的SOD活性(33.62%和39.37%),以及根的猫活性(36.91分别为%和60.29%),添加生物炭和生物元度器的添加降低了MDA和电解质泄漏速率的含量。冗余分析表明,生物炭和生物元化器还通过降低棉花中的重金属诱导的氧化胁迫来提高SOD和POD活性,并降低棉质器官的CD吸收。因此,Biochar和Biofertier对棉花的生长具有积极影响。

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