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151.
为了探讨草甘膦(PMG)与重金属镉(Cd)复合胁迫对作物(玉米幼苗)生长的影响作用机制。通过温室盆栽试验,分别进行了不同浓度的PMG单一处理(浓度分别设计为0、1.25、2.5、5、10、20 mg·kg~(-1))和不同浓度的PMG(浓度分别为0、1.25、2.5、5、10、20 mg·kg~(-1))与浓度5 mg·kg~(-1)Cd2+的复合处理。采用分光光度法和连续激发式荧光仪分别对玉米幼苗抗氧化酶(过氧化物酶POD、过氧化氢酶CAT、超氧化物歧化酶SOD)、丙二醛(MDA)、叶绿素含量、荧光动力学曲线及相关参数进行了测定。结果表明,单一和复合胁迫分别在PMG浓度为1.25~5 mg·kg~(-1)、1.25~2.5 mg·kg~(-1)时,玉米幼苗通过增大抗氧化酶(SOD、POD、CAT)活性,清除积累过多的活性氧自由基,提高叶绿素含量的合成,加大光合作用速率,促进玉米幼苗的生长;单一和复合胁迫分别在PMG浓度为5~20 mg·kg~(-1)、2.5~20 mg·kg~(-1)时,由于玉米幼苗积累了过多的膜脂过氧化物,导致抗氧化系统损坏,阻碍叶绿素含量的合成,同时也损害了PSII的功能(MO、φPO、ΨO、φEO、φDO、ABS/RC、TRO/RC、ETO/RC、DIO/RC、PIABS),导致玉米幼苗光合作用受到抑制,阻碍幼苗的生长。研究表明,草甘膦单一胁迫和与重金属镉复合胁迫,对玉米幼苗酶活性及光合作用的影响,均随处理浓度的升高表现为双阶段性,低浓度促进,高浓度抑制;与同浓度的PMG单一处理相比,Cd2+的存在,加大了PMG单独存在时的损害作用,使得玉米幼苗对PMG胁迫的敏感浓度点从5 mg·kg~(-1)降低到2.5 mg·kg~(-1)。 相似文献
152.
To explore the role of endophytic fungi in the decomposition of litter, the endophytic fungi Penicillium sp. strain CG2 (A), Fusarium flavum strain AY13 (B), and Talaromyces strain AJ14 (C) of Cunninghamia lanceolata were added to experimental pots in different forms (mycelium, sterilized fermentation broth, single fungus, and mixed fungi), and a control treatment (CK) was set up (no fungi added). At 10, 30, 60, 90, and 120 days after litter decomposition, a study on the decomposition dynamics of C. lanceolata litter under different treatments was performed. The results showed that the rate of leaf mass loss was the highest in the sterilized fermentation broth treatment A after 120 days, and that there was a significant difference (P < 0.05) between the mycelium treatment AC and the control treatment after 60 days (23.97% higher than the control group). On day 60, the litter carbon content from the mycelium treatment A was significantly different from that of the control (P < 0.05), showing a 16.74% lower value, whereas the litter carbon content of the mycelium treatment B was 21.13% lower than that of the control after 90 days. The nitrogen content of the litters of most mycelium and sterilized fermentation broth treatments was increased compared to that of the control group; there was significant difference (P < 0.05) between the sterilized fermentation broth treatment A and the control (P < 0.05), with a 17.05% higher value than that of the control. Similar to nitrogen, the litter phosphorus content also increased; there was a statistically significant difference between the mycelium treatment A and the control group, with treatment A showing a 46.67% higher value than the control group. The potassium content was 28% lower than that of the control group under the sterilized fermentation broth treatment C, a result that was significantly different from that of the control group (P < 0.05). After treatment for 90 days, the ratio of carbon to nitrogen was the lowest under the treatments with the mycelium A and the mycelium B, with values 25.54% and 25.11% lower than that of the control group, respectively, and a statistically significant difference from that of the control group (P < 0.05). The ratio of carbon to phosphorus was the lowest under the treatment with mycelium A after 60 days, and the result was significantly different from that of the control (P < 0.05), with a 43.05% lower value than the control. Thus, the three endophytic fungi had different effects on the mass loss rate and nutrient content of the litter. The Penicillium sp. strain CG2 (A) had statistically significant effects on the mass loss and nutrient content of leaf litter, which was within the range of fungi fertilizer reference values for the breeding of C. lanceolata. © 2018 Science Press. All rights reserved. 相似文献
153.
Liu Y.Xu Y.Zhang H.Yang H. 《应用与环境生物学报》2018,(3):602-608
To study heavy metal pollution and assess the health risk of river water in Huayuan County, Xiangxi, Hunan Province, 11 water samples were collected from the Huayuan River and Brother Rivers in August and December 2016. Heavy metal (Pb, Zn, Cr, Cu, Fe, and Ni) concentrations were determined from the samples. The health risk assessment model recommended by the U.S. Environmental Protection Agency (USEPA) was applied to assess the health risk of heavy metals in the main surface waters of Huayuan County. The results indicated that the concentrations of heavy metals (Pb, Zn, Cr, Cu, Fe, and Ni) of surface water in the research area were 2.57 × 10-3, 4.66 × 10-4, 1.65 × 10-3, 6.27 × 10-4, 0.19, and 8.50 × 10-4 mg/L, respectively. The health risk of surface waters with heavy metals was high. Therefore, the chemical carcinogenic substance (Cr) health risk index was five or six times higher than that of chemical non-carcinogens (Pb, Zn, Cu, and Ni). The average health risk indices of non-carcinogenic substances were in the order Pb > Cu > Zn > Ni. The correlation and principal component analysis of surface water showed that the six heavy metal elements were composed of three main components in the main surface waters of the county. The first principal component was comprised of Fe and Ni (33.28%), which was mainly from internal pollution. The second component was comprised of Cu and Cr (26.98%), which was primarily due to industrial waste water, rainwater leaching mineral waste produced by heavy metal mining, and smelting enterprises. The third component, resulting from geochemical pollution, was Zn (17.10%). The health risk indices triggered by heavy metal in surface waters was high. Heavy metal pollutants in the research area need to be controlled in the order Cr, Pb, Cu, Zn and Ni. © 2018 Science Press. All rights reserved. 相似文献
154.
Yang B.Wang R.Xiao H.Cao Q.Liu T. 《应用与环境生物学报》2018,(2):230-238
Tamarix is widely distributed in semiarid saline regions of the upper Yellow River. The community of Tamarix affects the spatial distribution of soil water and salinity. It is important to explore the dynamic response relationship of Tamarix community and spatial distribution of soil water and salinity in order to evaluate the effects of vegetation community construction and ecological restoration in this region. The natural Tamarix community in the secondary saline-alkali land of the Ningxia Yellow River Irrigation Area was investigated in July 2016. Classical statistics and geostatistics were used to analyze the spatial distribution characteristics of soil water and salinity. The results showed that the soil water content was relatively low (1.98%-7.55%), whereas the soil salinity was high (average conductivity 10.28-25.38 mS/cm) in the study area. The variability coefficient range of soil water and salinity was 36.1%-83.7%, both with moderate variations. Furthermore, the variation degree of soil salinity decreased with the increase in soil depth. The soil water and salinity had obvious spatial structure characteristics, which was mainly affected by structural factors or structural factors associated with stochastic factors. The coefficients of nugget were 0.04%-49.88%, indicating the strong spatial correlation. The spatial distribution of soil water and salinity in Tamarix community showed a patchy pattern; the soil water and salinity distribution in the areas with high Tamarix growing density were considerably high. The correlation analysis showed that there was a positive correlation between soil water and salinity in the study area. In conclusion, soil water and salinity restrict the distribution and growth of Tamarix. Furthermore, the distribution and growth of Tamarix enhanced the spatial variability of soil water and salinity. Keywords. © 2018 Science Press. All rights reserved. 相似文献
155.
综合传统重量法与冷凝法测定废气含湿量的特点,建立冷凝-吸附法测定固定源废气含湿量,有效解决重量法与冷凝法不适用于高温、高湿条件下的测定问题。通过优化测定条件,使冷凝-吸附法测定3台不同类型固定源废气结果的RSD为1.5%~4.7%,方法再现性试验结果的RSD为4.5%。用该方法与重量法同时测定油田注汽湿蒸汽发生器及普通流化床锅炉废气含湿量,结果表明冷凝-吸附法具备更强的适用性。 相似文献
156.
157.
模拟酸雨对华南典型树种生长及营养元素含量的影响 总被引:11,自引:2,他引:11
我国是世界上的第3大酸雨区,而华南地区是我国酸雨比较严重的地区之一。越来越严重的酸雨将对森林生态系统林木生长产生负面影响。本文采用盆栽试验模拟研究酸雨对华南典型树种尾叶桉和马尾松幼树生长及营养元素含量的影响。酸雨水平有4个:pH6.8(CK)、pH5、pH4和pH3。幼树生长期间观察并记录其酸雨受害症状,每隔10a测量一次树高,4个月后统计生物量、叶面积情况,并分析植株样品中的N、P、K、Ca、Mg等元素的质量分数。试验结果表明,在不同酸度酸雨的协迫下,尾叶桉和马尾松幼苗表现出不同程度的受害症状,酸度越高受害越严重。酸雨显著地抑制尾叶桉和马尾松的树高生长,降低幼苗生物量,减少叶面积生长。与对照相比,生长四个月后,pH5、pH4和pH3处理分别导致尾叶桉生物量降低10.79%、19.21%和27.25%,马尾松降低12.78%、22.98%和28.70%。尾叶桉植株内P、Mg、Ca质量分数不同程度地受到酸雨的影响,而N、K质量分数不受酸雨影响;马尾松除了P元素以外,其它元素质量分数在各个酸雨处理之间差异不显著。 相似文献
158.
东海原甲藻的光周期效应研究 总被引:5,自引:1,他引:5
以东海原甲藻ProrocentrumdonghaienseLu为试验材料,设置了短光周期(A)和长光周期(B)两组试验:A组分光周期1、2、4、6、8、10和12h7个处理,B组分光周期12、14、16、18、20、22和23h7个处理,测定了东海原甲藻的细胞密度、叶绿素a含量、蛋白质含量、生物量和可溶性糖等指标。结果表明,在13个不同的光周期处理中,随着光周期的不断延长,东海原甲藻的细胞密度等一系列指标值均不断上升,各指标和光周期的长度呈现正相关的关系。结果表明东海原甲藻是一种喜长光照的赤潮藻类。 相似文献
159.
油料作物对土壤老化残留DDT的吸收积累 总被引:2,自引:0,他引:2
油料作物对亲脂性DDT的吸收富集能力是否会更强是一个值得研究的问题。采用DDT老化残留土壤,温室盆栽油料作物花生(Arachishypogaea),大豆(Glycinemax)和芝麻(Sesamumindicum)。果实成熟后将植株分成根、茎、果壳和果仁四部分,GC-ECD测定各部位中的DDT浓度。研究了油料作物对土壤老化残留DDT的吸收积累情况,结果表明,∑DDT在三种作物不同部位中的浓度顺序都是:根>茎>果壳>果仁。含油量高的花生果仁和芝麻果仁中∑DDT浓度都明显高于大豆果仁的∑DDT浓度,这种差异有可能是由果仁含油量的差异造成的。单株植物吸收积累∑DDT的总量顺序为:花生>芝麻>大豆。花生、大豆和芝麻三种作物的根和茎的生物富集系数都比较高,特别是花生的,说明这三种油料作物根部从土壤中吸收积累老化残留DDT的能力以及从根部向茎部运输DDT的能力都是相当强的。 相似文献
160.
宁南黄土高原不同土地利用模式对土壤的影响研究 总被引:5,自引:3,他引:5
宁南黄土高原采取退耕、还林、还草措施5年后,区域局部生态环境发生了较大变化。文章针对退耕后的典型土地利用方式,阐述了自然撂荒坡地、柠条(CaraganakorshinskiiKom.)灌木林地、坡耕地产生的土壤水热、养分效应,其结果对减少宁南黄土高原土壤养分流失、提高土地生产力和合理农业布局具有重要的意义。利用径流小区试验方法,研究结果表明:不同土地利用方式下土壤储水量的变化为单峰型,与雨量峰值相比,对应储水量略有滞后现象。土壤储水量整体表现为农耕地>自然荒坡>柠条林地。受植被类型影响,坡面土层温度为荒坡草地>柠条林地>农地。随坡度增加,自然荒坡土壤有机质有降低的趋势,相同坡度下(25°)自然荒坡土壤有机质平均为12.76g/kg,是农耕地、柠条林地的1.2倍和1.94倍。在3种土地利用方式下,全磷含量没有明显差异,坡耕地土壤速效磷、速效钾含量较高,柠条林地和自然荒坡速效磷、速效钾含量没有明显差异。不同土地利用方式下,Ca-P(钙结合态的磷酸盐)占无机磷总量的比例,达29.6%~59.07%,O-P(闭蓄态磷酸盐)最少,仅占4.73%~22.45%。土壤过氧化氢酶、与土壤全氮、有机质、碱解氮呈显著正相关。 相似文献