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首页> 外文期刊>Physiology and Molecular Biology of Plants >Characterization of biomass sorghum for copper phytoremediation: photosynthetic response and possibility as a bioenergy feedstock from contaminated land
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Characterization of biomass sorghum for copper phytoremediation: photosynthetic response and possibility as a bioenergy feedstock from contaminated land

机译:铜植物化生物量高粱的表征:污染土地生物能源原料的光合反应及可能性

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In order to decrease the concentration of toxic metals in contaminated lands, phytoextraction can be suitable considering the use of plant species with high potential for biomass production, such as biomass sorghum (Sorghum bicolor L.). We assessed abiomass sorghum (BRS716) potential as a copper phytoextractor as well as the physiological stability under this stressful condition. A completely randomized experimental design was used for a greenhouse experiment in which sorghum plants were submitted to a range of Cu~(2+) concentrations: 2.3, 10.9, 19.6, 30.5, 37.6 and 55.6 mg dm~(-3). The plant growth was not affected by increasing Cu~(2+) concentrations, suggesting that this species is tolerant to copper. There was a decrease in photosynthetic rateaccording to the increase in Cu~(2+) concentration, but not at a level that could disturb plant metabolism and eventual death. The values obtained for transfer index ranged from 0.62 to 0.11 which evidenced the restriction of Cu~(2+) transport to the aerial parts. The more Cu~(2+) available in soil, the smaller the amount of Cu~(2+) transported to aerial parts of sorghum. So, our results show that biomass sorghum has potential to be used for Cu~(2+) phytoextraction in concentration of up to 20 mg dm~(-3). Also, in heavily Cu~(2+) polluted sites, it can beused to produce biomass for bioenergy purpose, promoting a low rate of Cu~(2+) extraction.
机译:为了降低污染的土地中有毒金属的浓度,植物萃取物可以适用于考虑使用具有高潜力的生物量产生的植物物种,如生物量高粱(高粱双子石L.)。我们评估了Abiomass高粱(BRS716)潜力作为铜植物申请者以及这种压力条件下的生理稳定性。一种完全随机的实验设计用于温室实验,其中高粱植物被提交至Cu〜(2+)浓度的范围:2.3,10.9,19.6,30.5,37.6和55.6mg DM〜(-3)。植物生长不受Cu〜(2+)浓度的影响,表明该物种耐受铜。光合率下降到Cu〜(2+)浓度的增加,但不能处于可能扰乱植物代谢和最终死亡的水平。用于转移指数获得的值范围为0.62至0.11,其证明了Cu〜(2+)运输到空中部件的限制。土壤中可用的Cu〜(2+)越多,Cu〜(2+)的量越小,高粱的空中零件。因此,我们的结果表明,生物质高粱具有浓度高达20mg DM〜(-3)的Cu〜(2+)植物萃取的潜力。此外,在大量Cu〜(2+)污染的位点,它可以被抛弃以产生生物能量目的的生物质,促进Cu〜(2+)提取的低速率。

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