首页> 外文期刊>Environmental Science and Pollution Research >Morphophysiological characteristic analysis demonstrated the potential of sweet sorghum (Sorghum bicolor (L.) Moench) in the phytoremediation of cadmium-contaminated soils
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Morphophysiological characteristic analysis demonstrated the potential of sweet sorghum (Sorghum bicolor (L.) Moench) in the phytoremediation of cadmium-contaminated soils

机译:形态生理学特征分析表明甜高粱(Sorghum bicolor(L.)Moench)在镉污染土壤的植物修复中具有潜力

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Cadmium (Cd) contamination is a worldwide environmental problem, and remediation of Cd pollution is of great significance for food production as well as human health. Here, the responses of sweet sorghum cv. 'M-81E' to cadmium stress were studied for its potential as an energy plant in restoring soils contaminated by cadmium. In hydroponic experiments, the biomass of 'M-81E' showed no obvious change under 10 mu M cadmium treatment. Cadmium concentration was the highest in roots of seedlings as well as mature plants, but in agricultural practice, the valuable and harvested parts of sweet sorghum are shoots, so promoting the translocation of cadmium to shoots is of great importance in order to improve its phytoremediation capacity. Further histochemical assays with dithizone staining revealed that cadmium was mainly concentrated in the stele of roots and scattered in intercellular space of caulicles. Moreover, the correlation analysis showed that Cd had a negative relationship with iron (Fe), zinc (Zn), and manganese (Mn) in caulicles and leaves and a positive relationship with Fe in roots. These results implied that cadmium might compete with Fe, Zn, and Mn for the transport binding sites and further prevent their translocation to shoots. In addition, transmission electron microscopic observations showed that under 100 mu M cadmium treatment, the structure of chloroplast was impaired and the cell wall of vascular bundle cells in leaves and xylem and phloem cells in roots turned thicker compared to control. In summary, morphophysiological characteristic analysis demonstrated sweet sorghum can absorb cadmium and the growth is not negatively affected by mild level cadmium stress; thus, it is a promising material for the phytoremediation of cadmium-contaminated soils considering its economic benefit. This study also points out potential strategies to improve the phytoremediation capacity of sweet sorghum through genetic modification of transporters and cell wall components.
机译:镉(Cd)污染是一个全球性的环境问题,而Cd污染的修复对食品生产以及人类健康具有重要意义。在这里,甜高粱简历的回应。研究了“ M-81E”对镉胁迫的潜力,认为它可以作为能源植物来恢复被镉污染的土壤。在水培试验中,在10μM镉处理下,“ M-81E”的生物量没有明显变化。镉的浓度在幼苗和成熟植物的根中最高,但在农业实践中,甜高粱的有价值和收获部分是芽,因此提高镉向芽的转运对于提高其植物修复能力具有重要意义。 。进一步用双硫zone染色的组织化学分析表明,镉主要集中在根石碑上,并散布在小耳的细胞间隙中。另外,相关分析表明,镉在小叶和叶片中与铁(Fe),锌(Zn)和锰(Mn)呈负相关,与根中的Fe呈正相关。这些结果表明,镉可能与铁,锌和锰竞争转运结合位点,并进一步阻止了它们向芽的转运。此外,透射电镜观察表明,在100μM镉处理下,叶绿体的结构受损,叶片中维管束细胞的细胞壁以及根部木质部和韧皮部细胞的壁厚都比对照的要厚。总之,形态生理学特征分析表明,甜高粱可以吸收镉,且温和水平的镉胁迫不会对生长产生负面影响。因此,考虑到其经济效益,它是一种对镉污染土壤进行植物修复的有前途的材料。这项研究还指出了通过对转运蛋白和细胞壁成分进行基因修饰来提高甜高粱植物修复能力的潜在策略。

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