首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到14条相似文献,搜索用时 109 毫秒
1.
根表铁膜对水稻铅吸收转运的影响   总被引:7,自引:0,他引:7  
通过温室土壤盆栽试验研究不同生育期水稻根表铁膜形成对水稻吸收和转运Pb的影响。结果表明,两种水稻根表铁膜形成量(以DCB-Fe含量计)及铁膜中吸附的Pb量均随着生育期的延长而减少。水稻根表铁膜Fe含量与铁膜吸附的Pb量呈显著的正相关关系(r=0.798,p0.01)。水稻根系和茎叶吸收积累Pb随着不同品种和不同生育期而变化。品种NK57籽粒Pb含量显著高于品种YD6,前者为后者的1.9倍。从富集系数和分配比率来看,Pb主要富集在水稻的铁膜和根系中,而积累在茎叶和籽粒中的比率较少。Pb从水稻根表铁膜、根系和茎叶向籽粒中的转运系数在两个水稻品种间差异均不显著。水稻分蘖期和孕穗期根表铁膜量与根系Pb含量均呈显著的正相关关系(p0.05),但是成熟期水稻根表铁膜量与根系、茎叶和籽粒中Pb含量相关性均不显著,说明根表铁膜形成对水稻分蘖期和孕穗期吸收积累Pb有一定影响,但对水稻成熟期根系、茎叶和籽粒吸收积累Pb影响不大。  相似文献   

2.
根表铁锰膜对不同生育期水稻吸收和转运As的影响   总被引:3,自引:0,他引:3  
采用土壤盆栽试验法,研究不同生育期水稻根表铁锰膜形成及其对As吸收和转运的影响。结果表明,两个水稻品种YD6和NK57均在分蘖期形成的铁锰膜量最多,成熟期形成的铁锰膜量最少。水稻根系和茎叶吸收积累As随着水稻不同品种和不同生育期变化较大,As的吸收和积累与铁锰膜形成存在相关性。与分蘖期相比,YD6和NK57成熟期根系As含量分别减少81.6%和62.1%。孕穗期YD6和NK57茎叶As含量分别比分蘖期减少86.4%和65.5%,比成熟期减少87.8%和67.1%。分蘖期水稻根系和茎叶As含量与DCB-Fe或DCB-Mn浓度均呈显著的负相关关系,而孕穗期水稻根系和茎叶As含量与DCB-Fe浓度呈显著的正相关关系,说明不同生育期铁锰膜对水稻植株吸收和转运As的影响不同。两个水稻品种不同生育期,As均主要富集和分配在根表铁锰膜中,铁锰膜中As的分配比率达62.9%~84.9%。NK57从根表铁锰膜、根系和茎叶向籽粒转运As的能力比YD6强,籽粒中As含量是YD6的2.1倍。结果表明可以通过选育As低积累和低转运的水稻品种,来降低污染地区As对人体健康的威胁。  相似文献   

3.
水稻根表铁膜对水稻根吸收铅的影响   总被引:1,自引:1,他引:1  
采用土-砂联合培养方法诱导水稻根表形成不同数量的铁膜:高铁膜(HP)和低铁膜(LP),探讨铁膜形成的多少对水稻离体根系吸收铅的影响.结果表明,在水稻生长期间,水分显著影响根表形成铁膜的数量.水稻吸收的铅大部分结合在根组织中(平均75%),少部分富集在根表铁膜中(平均25%).与低铁膜相比,高铁膜可以增强铅在水稻根表铁膜和根中的积累,由此可见,铁膜可能在一定程度上促进铅向水稻根内的转运.  相似文献   

4.
为了研究根表铁膜和硒对水稻吸收、转运不同形态的汞的影响,用Fe2+溶液诱导根表形成铁膜后,将水稻植株分别暴露于无机汞(Hg Cl2)、甲基汞(Me Hg Cl)、无机汞和亚硒酸钠(Hg Cl2+Na2Se O3)混合溶液、甲基汞和亚硒酸钠(Me Hg Cl+Na2Se O3)混合溶液的培养液中继续培养72 h。用DCB(dithionite-citrate-bicarbonate)提取根表铁膜,并用电感耦合等离子体质谱(ICP-MS)测定DCB溶液中Fe、Hg含量及水稻根、茎叶中Hg含量。结果表明:水稻根表铁膜对Me Hg Cl和Hg Cl2均有吸附,对Me Hg Cl的吸附作用高于Hg Cl2。根表铁膜的形成显著降低了汞暴露水稻根、茎叶中汞的含量;铁膜的形成也显著降低了Hg Cl2和Me Hg Cl从水稻根部到茎叶部分的转运效率。硒的存在可增加铁膜对Hg Cl2和Me Hg Cl的吸附,降低水稻对Hg Cl2和Me Hg Cl的吸收和转运。研究结果表明:根表铁膜和硒单独或联合作用能显著抑制水稻对无机汞和甲基汞的吸收和转运,进而可以减少汞在稻米中的蓄积。研究的开展对于提高汞污染区稻米的质量和保证粮食安全具有一定的现实意义。  相似文献   

5.
采用土壤盆栽试验法,研究6个不同基因型水稻品种根表铁膜形成及其对As吸收、转运的影响。结果表明,水稻形成根表铁膜在不同基因型品种之间差异显著(p<0.001),其中品种94D-22形成铁膜量(以Fe含量计)是品种圭630的1.5~1.8倍,添加As处理对水稻根表铁膜形成影响不显著。低As含量的对照土壤中,水稻根表铁膜量与根系As含量存在着显著的正相关关系(r=0.657,n=24,p<0.01),与As转移系数呈显著的负相关关系(r=-0.612,n=24,p<0.01)。土壤添加As后,水稻根表铁膜量与茎叶As含量存在显著的正相关关系(r=0.653-0.673,n=24,p<0.01),与As转运之间无显著相关性。比较生长于As污染土壤的不同水稻品种,科优1360茎叶积累As较少,且其根系转运As能力也较差,而品种94D-22正好相反。研究结果表明,在As含量较低的土壤中,水稻根表铁膜的存在可成为根系As的障碍层,阻止As向地上部转运;但在As含量较高的土壤,根表铁膜的存在却促进了水稻茎叶对As的积累,其对As的转运没有显著影响。人们可通过作物品种筛选来防治土壤As污染危害、降低As对人体健康的威胁。  相似文献   

6.
胡莹  段桂兰  刘云霞  黄益宗 《环境化学》2012,31(12):1968-1973
采用土-砂联合培养方法诱导水稻根表自然形成铁氧化物膜,研究了As-Pb交互作用对水稻根表铁膜吸附砷铅及根系吸收As和Pb的影响.结果表明,As和Pb的添加显著地影响水稻根表铁膜对As和Pb的吸附,并且As-Pb交互作用显著地影响水稻根系对两元素的吸收及根表铁膜对As的吸附.添加Pb可促进水稻根系对As的吸收.当As浓度为25μmol.L-1时,浓度为25μmol.L-1Pb处理与对照相比导致水稻根系吸收As提高了53.3%.同样,施用As也可以促进水稻根系对Pb的吸收,当Pb的浓度为25μmol.L-1和50μmol.L-1时,50μmol.L-1As处理与对照相比,水稻根系吸收Pb分别提高20.2%和28.6%.添加As显著地促进Pb由铁膜向根系中转运,而添加Pb对As由铁膜向根系中的转运影响不大.因此,在重金属复合污染情况下,水稻根表铁膜对重金属的吸附及根系对重金属的吸收均存在着复杂的交互作用.  相似文献   

7.
干湿交替和过氧化物对水稻根表铁膜及养分吸收的影响   总被引:1,自引:0,他引:1  
干湿交替是水稻生产过程中常用的生产管理技术,通过调控稻田水分含量和土壤通气性,提高水稻根系活力,同时影响土壤中铁氧化物的存在形态。过氧化钙和过氧化尿素施用于水田土壤中可缓慢释放氧气,可能影响水田土壤中铁的形态和水稻根系活力。为了探明干湿交替和过氧化物对水稻根表铁膜及养分吸收的影响,以广东特色水稻(Oryza sativa L.)品种增城丝苗为材料,采用土壤盆栽试验研究了这两种管理方式对水稻分蘖期至拔节期的根际土壤无定形铁、结晶铁、根系活力、根系抗氧化酶活性、根表铁膜、干物质累积和养分吸收的影响。结果表明:与长期淹水处理相比,干湿交替3次分别提高水稻根际土壤中无定形铁浓度35.2%、根系活力11.3%和根表铁膜浓度55.2%,但对水稻氮、磷、钾、铁的吸收和干物质累积无明显影响;与未施用过氧化物且长期淹水相比,过氧化钙和过氧化尿素增加水稻根际土壤中无定形铁23.9%~54.2%、根系活力32.7%~58.0%和根表铁膜58.1%~169.7%,同时增加了水稻对氮、磷、钾、铁的吸收量和干物质的累积;干湿交替和过氧化物都可以增加土壤中无定形铁浓度,同时提高根系活力,从而诱导水稻根表形成更多的铁膜,其中过氧化物处理更有利于促进水稻对养分的吸收和干物质的累积。该研究为田间条件下调控水稻根表铁膜浓度提供了技术支撑。  相似文献   

8.
采用土壤盆栽试验方法,比较了两种通气组织结构不同的水稻品种(扬稻6号和农垦57)根表铁膜的形成及其吸收积累As的差异.结果表明,通气组织结构不同对水稻根表铁膜的形成及其对As的吸收积累有显著影响.通气组织结构发达的扬稻6号根表铁膜数量和铁膜中As含量均显著高于农垦57,扬稻6号根表铁膜量为431.53g·kg-1,铁膜中As含量达到220.2mg·kg-1,分别是农垦57的1.3和1.7倍.发达的通气组织结构显著抑制了As由水稻地下部到地上部的转运以及地上部对As的吸收:扬稻6号地上部As含量为10.77mg·kg-1,显著低于农垦57(12.85mg·kg-1);扬稻6号对As的转移系数(TF)为0.067,仅为农垦57的73.6%.  相似文献   

9.
为探讨铁离子不同浓度处理下水生植物根表铁膜形成及其对环丙沙星(ciprofloxacin,CIP)吸收的影响,采用室内模拟试验,分析0.1 mg·L-1 CIP胁迫下不同浓度铁离子(0、10、20、50、100和150 mg·L-1)对凤眼莲根系生理生化及CIP富集量的影响.结果 表明,不同浓度铁离子对凤眼莲根系孔隙度和泌氧量无显著影响,而根系活力随着铁离子浓度增加呈上升趋势;铁离子促进凤眼莲根表铁膜形成,150 mg·L-1铁离子处理下凤眼莲根表铁膜量最大,且根表吸附CIP含量最多,而根系中吸收CIP含量显著降低.铁离子对凤眼莲根系生理生化无显著影响,而有利于凤眼莲根表铁膜量增加,促进根系表面CIP的吸附作用,阻碍根系对CIP的吸收作用,降低CIP对植物造成的伤害.  相似文献   

10.
砷-硒交互作用对水稻吸收转运砷和硒的影响   总被引:8,自引:0,他引:8  
采用溶液培养法,研究了两种形态无机As与四价Se交互作用对水稻吸收转运As和Se的影响.结果表明,不同形态As与Se交互作用对水稻吸收转运As和Se影响较大,Se(Ⅳ)显著地提高水稻根系而降低水稻茎叶对As的吸收积累.与对照处理相比,在1.0μmol·L-1As(Ⅲ)和As(Ⅴ)处理下添加1.0μmol·L-1Se(Ⅳ)分别导致水稻根系As含量提高59.5%和21.3%,而水稻茎叶As浓度减少10.4%和21.9%.As(Ⅲ)或As(Ⅴ)处理显著降低水稻茎叶对Se的吸收积累,但As(Ⅴ)处理对水稻根系积累Se没有影响.在1.0μmol·L-1Se(Ⅳ)处理下,添加1.0μmol·L-1As(Ⅲ)和1.0μmol·L-1As(Ⅴ)导致水稻茎叶Se浓度分别比对照处理降低41.9%和30.3%.Se(Ⅳ)与As(Ⅲ)或As(Ⅴ)对水稻转运As、Se的能力具有交互拮抗作用.研究结果表明,在As污染农田中,可通过施用Se肥来提高植物的Se营养,降低植物对As的吸收积累,从而降低As对人体健康的危害.  相似文献   

11.
Hydroponic experiments were conducted to investigate the role of iron plaque on root surface in chromium accumulation and translocation in three rice cultivars (90-68-2, CDR22 and Jin 23A). Rice seedlings were grown under 1.0 mg L?1 trivalent chromium (Cr(III)) stress with and without phosphorus (P) treatments. P addition significantly increased the shoot and root biomass in all three rice cultivars. In the absence of P, the amounts of iron plaque (DCB-extractable Fe) on the root surface increased resulting in the increase of Cr accumulation in iron plaque. Compared to that with P treatment, Cr concentrations in iron plaque without P treatment were enhanced by 2–3 folds in the three rice cultivars. There was a significantly positive correlation between DCB-extractable Cr and DCB-extractable Fe on the root surface of the three rice cultivars. There were no significant effects on Cr concentration in roots and shoots between P treatments, but significant differences among cultivars were observed. Cultivar Jin 23A had the lowest Cr concentration both in roots and shoots regardless of P treatment. The results suggest that iron plaque could be a trap for immobilising Cr from environment but may not affect Cr uptake and translocation. Screening and breeding the cultivars with low Cr accumulation is considered as the most effective approach in Cr contaminated areas.  相似文献   

12.
A pot experiment was carried out in a greenhouse to investigate the sequestration of As in iron plaques on root surface of three rice (Oryza sativa L.) cultivars. Phosphate (P) fertilization increased both plant biomass and tissue P concentrations significantly, indicating that the soils used in this study was highly P-deficient. Results from this study confirmed that low P supply improved the formation of iron plaque on rice roots. As a consequence, arsenic (As) concentrations in DCB-extracts with no P addition were significantly higher than those with P fertilization. Arsenic was highly sequestrated in iron plaque; arsenic concentration in iron was up to nearly 120 mg kg−1, while arsenic concentrations in roots were just several mg kg−1. Both arsenic and phosphate concentrations in iron plaque were highly positively correlated with the amounts of iron plaque (DCB-extractable Fe). Contrary to normal understanding that increasing P supply could reduced As accumulation in plants, results from the present study showed that P fertilization did not inhibit the As uptake by plants (As accumulation in aboveground), which was probably due to the fact that iron plaque formation was improved under low P conditions, thus leading to more As sequestration in the iron plaque. Thus results obtained in this study indicated that the iron plaque may inhibit the transfer of As from roots to shoots, and thus alter the P–As interaction in plant As uptake processes.  相似文献   

13.
The aim of this study was to determine uptake and translocation of MeHg in the absence or presence of P in three rice cultivars, named Tianyou196 (TY196), NanJing35 (NJ35), and ZiXiangnuo (ZX). Rice seedlings from each cultivar were divided into two groups. One group was grown in normal P (+P) nutrient solution and the other in absence of P or starvation (?P) nutrient solution for 2 weeks. Both groups were subsequently exposed to 200 mg/L MeHg chloride culture solution and maintained in a greenhouse for 4 weeks. The results showed that the amount of reddish Fe plaque outside rice root was significantly increased by P starvation treatment, but in the +P treatments, rice roots remained white. It is proposed that Fe plaque formed sequestered MeHg and consequently reduced translocation of MeHg from roots to shoots. It is of interest that MeHg content in roots and shoots of TY196 and NJ35 was 11.1%–18.8% and 28.9%–32.3% lower than in ZX, respectively. Therefore, in practice, depletion of P to enhance Fe plaque formation in rice growing area is effective in preventing MeHg translocation from roots to shoots and ensures food safety in mine locations.  相似文献   

14.
磷胁迫对水稻基因型根系形态及吸收铁锰铜锌的影响   总被引:5,自引:2,他引:5  
采用营养液培养方法研究了缺磷胁迫下4种水稻基因型(90-90—1、金23A、90-68-1、CDR22)的根系形态变化情况及其吸收微量元素铁、锰、铜、锌的影响。结果表明,(1)磷胁迫下,每个基因型在磷胁迫下其根系形态发生了明显变化、如根长、根冠比均呈增加趋势,并且根表有红棕色铁氧化物膜包被。(2)磷胁迫下根系形态的变化影响了水稻对生长介质中铁、锰、铜、锌的吸收:正常水稻植株中铁、锰、锌的含量高于磷胁迫植株,其中磷营养状况对水稻吸收铁、锰影响最明显;而磷营养状况对水稻植株铜含量的影响与铁、锰、锌正好相反,且影响程度较小。  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号