[Objective] The aim was to study the phytoremediation of heavy metal pollution in river sediment by Medicago sativa L.,so as to provide reliable references for the phytoremediation of heavy metal pollution in river se...[Objective] The aim was to study the phytoremediation of heavy metal pollution in river sediment by Medicago sativa L.,so as to provide reliable references for the phytoremediation of heavy metal pollution in river sediment.[Method] The air-dried,screened and mixed sediment was put in rectangular PVC box(0.6 m×0.5 m×0.4 m) with seepage vent at the bottom,and the water holding capacity(WHC) of sediment was kept at 30%-60% by deionized water.The seeds of Medicago sativa L.were sown in April 2010,and seedlings were thinned after 7 d.Samples were collected from rhizosphere soil every 30 d,and were used to determine the content of heavy metals,bacteria quantity and enzyme activity in sediment.In addition,the accumulation of heavy metals in the roots,stems and leaves of plant was measured after harvest in October.[Result] Different parts of Medicago sativa L.varied in accumulation capacity to different heavy metals.The accumulation amount of Zn in Medicago sativa L.was the highest,especially in roots.Meanwhile,the accumulation amount of heavy metals like Ni,Cr,Cu and Pb in roots was higher than that of stems and leaves.In contrast,Mn was mainly accumulated in leaves and its amount accounted for 42.47% of the total amount in plant.Besides,the accumulation amount of all heavy metals was the lowest in stems.Ni,Cr,Cu and Pb could be degraded more effectively than Mn,and increasing the planting time and sowing times of crop was beneficial to the degradation of heavy metals.After planted Medicago sativa L.,the quantity of microorganisms in sediment went up obviously,and dehydrogenase activity also showed an increaseing trend.[Conclusion] Medicago sativa L.has certain restoring effect on Zn,Ni,Cr,Cu and Pb,and could be used to restore heavy metal pollution in river sediment.展开更多
Heavy metals present in soil and water naturally or as contaminants from human activities can cause bioaccumulation affecting the entire ecosystem and pose harmful health consequences in all life forms. Some famous no...Heavy metals present in soil and water naturally or as contaminants from human activities can cause bioaccumulation affecting the entire ecosystem and pose harmful health consequences in all life forms. Some famous non-food hyperaccumulators such as Thlaspi caerulescens, Sedum alfredii, Pteris vittata, Arabidopsis halleri and Athyrium yokoscense are of very little economic value, making it difficult for them to be used for phytoremediation. In this paper, the influence of heavy metals Cu, Ni, Zn, Hg, Cr, Pb and Cd on seed germination and early seedling growth in oil crop Eruca sativa was evaluated under laboratory conditions. Our results indicated that among the 7 heavy metals tested, only Ni at higher concentrations (1 mM and above) significantly decreased the Eruca seed germination in a dose-dependent manner. All heavy metals except Zn and Ni decreased the root length first, then the shoot length or the fresh seedling weight, and seed germination was always the last to be influenced. With Ni, the root length, shoot length and fresh seedling weight were stimulated when Ni concentrations were under 1 mM;with Zn, the root length, shoot length and fresh seedling weight were increased by all concentrations tested (0.20 - 5.0 mM). Our results indicated that Eruca is tolerant or moderately tolerant to Cu, Hg, Cr, and Cd and highly tolerant to Pb, Ni and Zn, and can be developed as an industrial oil crop for phytoremediation of soils contaminated by heavy metals.展开更多
Genotypic and environmental variation in Cd, Cr, As, Ni and Pb concentrations of grains, and the relationships between these heavy metals and Fe, Zn were investigated using 9 rice genotypes grown in 6 locations for tw...Genotypic and environmental variation in Cd, Cr, As, Ni and Pb concentrations of grains, and the relationships between these heavy metals and Fe, Zn were investigated using 9 rice genotypes grown in 6 locations for two successive years. Significant genotypic variation was detected in the five heavy metal concentrations in grains, indicating the possibility to reduce the concentration of these heavy metals in grains through breeding approach. The environmental effect varied with metal, with Pb and Ni having greater variation than the other three metals. There was significant genotype-environment (location) interaction of the concentrations of all five heavy metals in grains, suggesting the importance of cultivar choice in producing rice with low heavy metal concentrations in grains for a given location. Correlation analysis showed that Cd and As, Cr and Ni, and As and Pb con-centrations in rice grains were closely associated, and that Ni concentration in grains was negatively correlated with Zn concen-tration.展开更多
<i><span style="font-family:;" "="">Solanum nigrum</span></i><span style="font-family:;" "=""> L. has a delightful prospect as a hyperacc...<i><span style="font-family:;" "="">Solanum nigrum</span></i><span style="font-family:;" "=""> L. has a delightful prospect as a hyperaccumulation plant for cadmium pollution remediation, and microplastic is a new type of pollution that has received wide attention. In this study, the effects of polyethylene microplastics (LDPE) (0.135, 0.27, 0.81 and 1.35 mg·kg<sup>-1</sup>) and cadmium (20 mg·kg<sup>-1</sup>) on the growth indexes and soil physical and chemical properties of <i>Solanum nigrum</i> L. were investigated in a 17-day microcosm experiment. The results showed that single LDPE contamination showed a trend of low concentration promotion and medium-high concentration inhibited the growth index of <i>Solanum nigrum</i> L. and soil physicochemical index, and single Cd contamination was more stressful to plants than single LDPE contamination, while low concentration of LDPE could reduce the effect of Cd on soil physical and chemical properties and promote plant growth and uptake of soil nutrients. These findings suggest that high concentrations of microplastics can inhibit the growth of <i>Solanum nigrum</i> L. alone or in combination with Cd, rather than reducing the toxicity of Cd.</span>展开更多
籽粒苋是一种生物量大、易栽培的镉(Cd)富集植物,具有作为Cd污染土壤修复植物的潜力.比较了两个基因型籽粒苋(K112和R104)的耐Cd性特征,土壤Cd污染浓度范围是0~50mgkg-1,生长60d收获.结果表明,籽粒苋K112(Amaranthus hypochondriacus L...籽粒苋是一种生物量大、易栽培的镉(Cd)富集植物,具有作为Cd污染土壤修复植物的潜力.比较了两个基因型籽粒苋(K112和R104)的耐Cd性特征,土壤Cd污染浓度范围是0~50mgkg-1,生长60d收获.结果表明,籽粒苋K112(Amaranthus hypochondriacus L. Cv.‘K112’)与R104(A. hypochondriacus L. Cv.‘R104’)生物量随土壤中Cd浓度的增加而逐步下降,在土壤中Cd浓度<16mgkg-1时,其生物量积累没有受到明显的影响.在本试验最高Cd浓度条件(50mgkg-1)下仍可生长,但生物量显著下降.两种籽粒苋叶中Cd含量随土壤中Cd浓度增加而快速上升,在土壤Cd浓度为16mgkg-1时,叶内Cd浓度分别达120.63和109.96mgkg-1(DW),达到超富集植物的临界标准.Cd在植物体内的分布特征为叶>根>茎.籽粒苋两个品种相比,K112吸收Cd的能力大于R104,尤其是在高Cd浓度时,两种籽粒苋对Cd的绝对提取量相似,并随土壤Cd浓度的上升而快速增加.籽粒苋K112和R104对土壤中的Cd具有很强的耐性和积累的能力,可作为Cd污染土壤的修复植物.展开更多
基金Supported by Major State Basic Research Development Program(973 Program) (2007CB407306)National Natural Science Foun-dation of China (50908159)~~
文摘[Objective] The aim was to study the phytoremediation of heavy metal pollution in river sediment by Medicago sativa L.,so as to provide reliable references for the phytoremediation of heavy metal pollution in river sediment.[Method] The air-dried,screened and mixed sediment was put in rectangular PVC box(0.6 m×0.5 m×0.4 m) with seepage vent at the bottom,and the water holding capacity(WHC) of sediment was kept at 30%-60% by deionized water.The seeds of Medicago sativa L.were sown in April 2010,and seedlings were thinned after 7 d.Samples were collected from rhizosphere soil every 30 d,and were used to determine the content of heavy metals,bacteria quantity and enzyme activity in sediment.In addition,the accumulation of heavy metals in the roots,stems and leaves of plant was measured after harvest in October.[Result] Different parts of Medicago sativa L.varied in accumulation capacity to different heavy metals.The accumulation amount of Zn in Medicago sativa L.was the highest,especially in roots.Meanwhile,the accumulation amount of heavy metals like Ni,Cr,Cu and Pb in roots was higher than that of stems and leaves.In contrast,Mn was mainly accumulated in leaves and its amount accounted for 42.47% of the total amount in plant.Besides,the accumulation amount of all heavy metals was the lowest in stems.Ni,Cr,Cu and Pb could be degraded more effectively than Mn,and increasing the planting time and sowing times of crop was beneficial to the degradation of heavy metals.After planted Medicago sativa L.,the quantity of microorganisms in sediment went up obviously,and dehydrogenase activity also showed an increaseing trend.[Conclusion] Medicago sativa L.has certain restoring effect on Zn,Ni,Cr,Cu and Pb,and could be used to restore heavy metal pollution in river sediment.
文摘Heavy metals present in soil and water naturally or as contaminants from human activities can cause bioaccumulation affecting the entire ecosystem and pose harmful health consequences in all life forms. Some famous non-food hyperaccumulators such as Thlaspi caerulescens, Sedum alfredii, Pteris vittata, Arabidopsis halleri and Athyrium yokoscense are of very little economic value, making it difficult for them to be used for phytoremediation. In this paper, the influence of heavy metals Cu, Ni, Zn, Hg, Cr, Pb and Cd on seed germination and early seedling growth in oil crop Eruca sativa was evaluated under laboratory conditions. Our results indicated that among the 7 heavy metals tested, only Ni at higher concentrations (1 mM and above) significantly decreased the Eruca seed germination in a dose-dependent manner. All heavy metals except Zn and Ni decreased the root length first, then the shoot length or the fresh seedling weight, and seed germination was always the last to be influenced. With Ni, the root length, shoot length and fresh seedling weight were stimulated when Ni concentrations were under 1 mM;with Zn, the root length, shoot length and fresh seedling weight were increased by all concentrations tested (0.20 - 5.0 mM). Our results indicated that Eruca is tolerant or moderately tolerant to Cu, Hg, Cr, and Cd and highly tolerant to Pb, Ni and Zn, and can be developed as an industrial oil crop for phytoremediation of soils contaminated by heavy metals.
基金Project supported by the Postdoctoral Science Foundation of China(No. 2005037824), the Natural Science Foundation of ZhejiangProvince (No. Z304104), China, the Science and Technology De-partment of Zhejiang Province (No. 2005C32007), China, and theScience and Technology Bureau of Jiaxing, Zhejiang Province (No.2005AZ3003), China
文摘Genotypic and environmental variation in Cd, Cr, As, Ni and Pb concentrations of grains, and the relationships between these heavy metals and Fe, Zn were investigated using 9 rice genotypes grown in 6 locations for two successive years. Significant genotypic variation was detected in the five heavy metal concentrations in grains, indicating the possibility to reduce the concentration of these heavy metals in grains through breeding approach. The environmental effect varied with metal, with Pb and Ni having greater variation than the other three metals. There was significant genotype-environment (location) interaction of the concentrations of all five heavy metals in grains, suggesting the importance of cultivar choice in producing rice with low heavy metal concentrations in grains for a given location. Correlation analysis showed that Cd and As, Cr and Ni, and As and Pb con-centrations in rice grains were closely associated, and that Ni concentration in grains was negatively correlated with Zn concen-tration.
文摘<i><span style="font-family:;" "="">Solanum nigrum</span></i><span style="font-family:;" "=""> L. has a delightful prospect as a hyperaccumulation plant for cadmium pollution remediation, and microplastic is a new type of pollution that has received wide attention. In this study, the effects of polyethylene microplastics (LDPE) (0.135, 0.27, 0.81 and 1.35 mg·kg<sup>-1</sup>) and cadmium (20 mg·kg<sup>-1</sup>) on the growth indexes and soil physical and chemical properties of <i>Solanum nigrum</i> L. were investigated in a 17-day microcosm experiment. The results showed that single LDPE contamination showed a trend of low concentration promotion and medium-high concentration inhibited the growth index of <i>Solanum nigrum</i> L. and soil physicochemical index, and single Cd contamination was more stressful to plants than single LDPE contamination, while low concentration of LDPE could reduce the effect of Cd on soil physical and chemical properties and promote plant growth and uptake of soil nutrients. These findings suggest that high concentrations of microplastics can inhibit the growth of <i>Solanum nigrum</i> L. alone or in combination with Cd, rather than reducing the toxicity of Cd.</span>
文摘籽粒苋是一种生物量大、易栽培的镉(Cd)富集植物,具有作为Cd污染土壤修复植物的潜力.比较了两个基因型籽粒苋(K112和R104)的耐Cd性特征,土壤Cd污染浓度范围是0~50mgkg-1,生长60d收获.结果表明,籽粒苋K112(Amaranthus hypochondriacus L. Cv.‘K112’)与R104(A. hypochondriacus L. Cv.‘R104’)生物量随土壤中Cd浓度的增加而逐步下降,在土壤中Cd浓度<16mgkg-1时,其生物量积累没有受到明显的影响.在本试验最高Cd浓度条件(50mgkg-1)下仍可生长,但生物量显著下降.两种籽粒苋叶中Cd含量随土壤中Cd浓度增加而快速上升,在土壤Cd浓度为16mgkg-1时,叶内Cd浓度分别达120.63和109.96mgkg-1(DW),达到超富集植物的临界标准.Cd在植物体内的分布特征为叶>根>茎.籽粒苋两个品种相比,K112吸收Cd的能力大于R104,尤其是在高Cd浓度时,两种籽粒苋对Cd的绝对提取量相似,并随土壤Cd浓度的上升而快速增加.籽粒苋K112和R104对土壤中的Cd具有很强的耐性和积累的能力,可作为Cd污染土壤的修复植物.