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141.
A study was performed in a Protected Area (Natural Reserve of Sado Estuary) in 1996, to evaluate the acute toxicity for aquatic life of surface water from rice fields treated with pesticides, particularly with molinate and quinclorac. As a preliminary assessment, the following rapid toxicity tests were used: “Rotoxkit F”;, “Thamnotoxkit F”; and the recently introduced “Daphtoxkit F magna”; and “Algaltoxkit F”;. Water samples were collected from: a water source for irrigating the rice fields, two rice plots, a drainage channel and from Sado river in which the water is discharged. The results showed that samples from the rice plot treated with molinate were more toxic than those obtained from rice plot treated with quinclorac. Water samples from the river were the most toxic, causing 100% of immobility in all organisms and a substantial inhibition in the algal growth. Water collected from the drainage channel in late July, was also found to be quite toxic. The results obtained until now indicate that some characteristics of these microbiotests, like their rapidity, simplicity and relatively low cost, make them a practical tool to evaluate acute effects of pesticides in freshwater ecosystems. They may also contribute to suggest some changes in pesticides use to promote agricultural practices with lower impact to aquatic life.  相似文献   
142.
以水稻秸秆为原料,经炭化、KMnO4预氧化和FeSO4溶液改性后,制备得到低成本的改性炭化水稻秸秆(modified carbonized rice straw,MCRS).采用Zeta电位分析仪、扫描电镜、能谱仪、比表面积分析仪、红外光谱分析仪和X射线衍射分析仪多种手段,分析了炭化水稻秸秆和MCRS的理化性能.通过静态吸附试验研究了吸附剂投加量、pH值和温度对MCRS除磷效果的影响.结果表明:MCRS对磷的吸附是一个吸热过程,其吸附等温线可用Langmuir方程进行拟合.当投加量为4g·L^-1、pH值为7时,MCRS对水溶液中磷的去除率最高可达96%;依据Langmuir方程计算得到,30℃条件下,MCRS对磷的最大吸附量为5.49 mg·g^-1.  相似文献   
143.
刘刚  李久海  徐慧  吴丹 《中国环境科学》2013,33(12):2140-2147
在明火燃烧和闷烧条件下对6种稻草和5种玉米秸秆进行了燃烧试验,并对烟尘中的正构烯烃进行了分析.结果表明,在稻草明火烟尘中,正构烯烃由C15~C29组成,其平均总含量为918.7mg/kg,低碳数与高碳数正构烯烃含量比(L/H)的平均值为0.6,碳优势指数(CPI)的平均值为1.2.正构烯烃呈双峰式分布,两个峰碳数主要是C24和C28.在稻草闷烧烟尘中,正构烯烃由C17~C29组成,其总含量、L/H、CPI等的平均值分别是517.0mg/kg、0.7和0.9.正构烯烃同样呈双峰型分布,两个峰碳数主要是C23和C28.在玉米秸秆的明火烟尘中,正构烯烃由C19~C29组成.其总含量、L/H、CPI等的平均值分别为126.0mg/kg、0.7和1.3.正构烯烃呈单峰型分布,主峰碳数主要是C24和C23.在玉米秸秆的闷烧烟尘中,正构烯烃由C17~C29组成,其总含量、L/H、CPI等的平均值分别是198.9mg/kg、1.8和 0.9.正构烯烃呈双峰式分布,其主峰碳数均为C23,次峰碳数主要是C29.在两类秸秆燃烧产生的烟尘之间,正构烯烃的组成存在明显差别.这有助于识别气溶胶中稻草或玉米秆燃烧来源的此类污染物.  相似文献   
144.
Addition of plant residue into soils improves soil physiochemical properties and its fertility. Rapeseed residue is an emerging N source to paddy soils via rice-rape double-cropping practice. The objective of this study was to evaluate the effects of rapeseed residue and eggshell waste on chemical changes and enzyme activity in the rice paddy soil. The powdered eggshells at 0, 1, 3, and 5% were applied once to 7.0 kg paddy repacked soils in each pot treated with the rapeseed residue or the conventional N, P, and K fertilisers. Eight rice seedlings (Oriza sativa L. cv. Ilmibyeo) (40 days after sowing) were transplanted to the treated each pot. The contents of total C (TC) and N (TN), and organic matter (OM) were significantly increased in soils treated with the rapeseed residue compared to the N, P, and K fertilisers. With the addition of eggshell containing ~92% CaCO3, a considerable increase of soil pH was observed in soils treated with the rapeseed residue and the N, P, and K fertilisers, compared to the untreated soil. Activities of β-glucosidase, urease, and arylsulfatase enzymes were higher in soils treated with the rapeseed residue than soils treated with the N, P, and K fertilisers. The eggshell additions at 1, 3, and 5% into soils treated with the rapeseed residue increased enzyme activity mainly resulting from N mineralisation, whereas no change in enzyme activity was observed in the soils treated with the NPK fertiliser. The combined use of the rapeseed residue and the eggshells can be beneficial to improve soil environment.  相似文献   
145.
Thirty landraces of rice collected from various locations, across an elevational gradient (1150–2400 m asl), in Kumaun, Central Himalaya and VL-206 (a high-yielding variety recommended for rainfed mountain area) have been evaluated, both in terms of quantity and nutritional quality of straw. Data were collected to estimate the percentage share of fodder in the overall biomass produced. The total biomass harvested at maturity was taken as productivity. In view of the severe scarcity of fodder in hill regions, particularly during winter months, straw was also examined for quality-linked biochemical parameters and dry matter digestibility (DMD) of fodder. The Crude Protein (CP) values ranged from 2.21% (Nandhani) to 6.33% (Dalbadal), and in saceo DMD (nylonbag technique) was highest in Kaladur (48.84%) and lowest in Kantolia (32.25%). While the CP in VL206 was within the range recorded for various landraces (3.61%), DMD value (27.29%) was lower than that of all the landraces tested. In saceo DMD data indicate that the fodder quality of landraces is better than that of the introduced variety. The values for neutral detergent fibre (NDF) ranged from 63.64% (Sabhawati) to 78.46% (Chhotiya) among the rainfed landraces, while in the irrigated landraces, Thapchini had more NDF (87.50 %), as compared to Kantolia (73.88%) and VL206 (74.91%). Values for the acid detergent fibre (ADF) varied from 42.70% (Danbasmati) to 54.58% (Nandhani) in the rainfed group; ADF was slightly higher in Thapchini (49.41%) in comparison to Kantolia (47.19) and VL206 had the highest (56.80%) ADF content. The observed differences with respect to straw productivity, chemical composition and in saceo DMD in various landraces, even when grown under similar conditions at one place, clearly indicate the richness of the gene pool of rice being maintained, through cultivation, in the Kumaun hills. It may be mentioned that agriculture in the hills is biomass based, and livestock form an integral component of subsistence farming.  相似文献   
146.
水稻基因类型与生长环境对精米中砷积累的影响   总被引:6,自引:0,他引:6  
砷(As)是动植物非必需的有毒类金属。水稻是对As有较强吸收和富集能力的大宗粮食作物,大米的食用是我国及东南亚地区人体暴露As的最主要途径,严重威胁人体健康。水稻籽粒中As的积累与水稻的基因型及众多环境因子密切相关,而且表现出复杂的交互作用。在浙江省选择了不同土壤砷背景值的5块水稻田,同时在嘉兴市农科院布置了人工添加As的盆栽实验,比较了20个水稻品种在这6个实验点的精米中As含量。结果表明,水稻基因型与环境及其相互作用对水稻籽粒中As的积累均有极显著影响,并且筛选得到了5个精米中As含量较低的基因型:秀水128、秀水09、秀水134、甬粳16和Y-05-8。  相似文献   
147.
O3对水稻叶片氮代谢、脯氨酸和谷胱甘肽含量的影响   总被引:2,自引:0,他引:2  
臭氧(O3)被认为是重要的气污染物之一,水稻又是主要的粮食作物,因而准确地评估O3浓度升高对水稻生长发育的影响具有十分重要的意义。采用开顶式气室法模拟研究了O3对水稻叶片可见伤害症状、氮代谢、脯氨酸和谷胱甘肽含量的影响。结果显示,O3污染胁迫会导致水稻叶片产生明显的伤害症状,具体表现为:老叶叶鞘褪绿,有褐斑,直至完全干枯;稻穗小且黄化,籽粒不饱满;水稻成熟期提前等。O3浓度升高对水稻叶片的硝酸还原酶活性有显著影响。当O3浓度为40、80和120nL.L-1时,水稻叶片硝酸还原酶活性与对照组相比均降低,其中,分蘖期分别降低了25.3%、67.4%和86.3%;拔节期分别降低了57.4%、75.7%和97.8%;抽穗期分别降低了91.0%、97.2%和99.3%;乳熟期分别降低了89.5%、89.5%和96.7%。水稻叶片铵态氮和硝态氮含量随着O3浓度的升高而显著地降低,例如当O3浓度为40、80和120nL.L-1时,与对照相比,水稻叶片硝态氮含量分别降低46.3%、52.7%和65.7%,铵态氮含量分别降低6.5%、12.9%和43.4%。O3污染胁迫下水稻叶片脯氨酸含量在不同生长期变化不同,分蘖期、拔节期和抽穗期脯氨酸含量在40nL.L-1浓度O3熏蒸下急剧地提高,但是随着O3浓度的增加,脯氨酸含量又不断地降低。在水稻乳熟期,脯氨酸含量均随着O3浓度的增加而显著地下降。O3污染胁迫导致水稻叶片还原型谷胱甘肽(GSH)含量显著低于对照组,而氧化型谷胱甘肽(GSSG)含量显著高于对照组。当O3浓度为40、80和120nL.L-1时,乳熟期水稻叶片GSH含量分别比对照组降低68.7%、80.2%和78.2%,GSSG含量分别比对照提高494.4%、527.2%和439.8%。研究表明,O3污染胁迫对水稻叶片氮代谢和抗氧化系统产生了极显著的影响。  相似文献   
148.
水稻锌指蛋白基因OsWIP6的克隆、表达及RNAi载体转化   总被引:1,自引:0,他引:1  
为了解水稻C2H2型锌指蛋白转录因子基因的表达调控机理及生物学功能,克隆了水稻的一个C2H2型锌指蛋白转录因子基因(OsWIP6),并构建其RNA干涉植物表达载体,通过农杆菌介导转化获得转基因植株.生物信息学分析显示,OsWIP6氨基酸序列与拟南芥两个WIP家族转录因子高度同源.组织差异性表达分析表明,该基因在水稻花发育上具有表达偏向性.与野生型相比,转基因水稻表现为抽穗延迟,结实率及千粒重降低,半定量分析显示转基因植株OsWIP6表达量明显下降.因此,推断OsWIP6基因与水稻育性密切相关.  相似文献   
149.
温度是导致水稻(Oryza sativa L.)遗传分化的一个重要环境因素,而海拔是导致环境温度差异的一个重要的地理因素。水稻的雄配子即花粉粒的活性极易受环境温度的影响。研究用来自云南2 670 m海拔的粳稻地方品种小麻谷与具籼稻细胞质背景的籼粳交后代品系南34正反交产生的F1,然后将其分布种植在海拔高低相差达1 800 m的4个海拔点并与育性稳定的1个滇Ⅰ型细胞质不育系杂交产生了8个测交群体,用SSR标记检测发现海拔因素和细胞质背景都对测交群体的遗传分化产生了影响。结果表明:同一海拔产生的正反交群体(合系42A//小麻谷/南34)间的遗传多样性具有比较明显的差异。正交组合F1(小麻谷×南34)在1 860 m的海拔产生的群体的遗传多样性最高,在1 600 m的海拔产生的群体的遗传多样性最低。在反交组合F1产生的群体中,群体的遗传多样性随产生群体海拔(400 m海拔除外)的升高而降低。利用Nei′s遗传距离评价各群体间的遗传分化,正反交组合F1产生测交群体间的遗传分化均高于同一组合在不同海拔下产生的测交群体之间的遗传分化,同一组合在4个海拔产生的测交群体间的遗传分化总体趋势是随海拔差异的增加而增大。研究证实了环境温度差异及细胞质背景导致F1产生的雄配子基因型发生选择,导致雄配子基因型的遗传比例偏离孟德尔规律,影响其后代群体的遗传多样性和遗传分化。  相似文献   
150.
不同稻秆处理方式下双季稻温室气体排放通量研究   总被引:6,自引:0,他引:6       下载免费PDF全文
通过田间试验研究了不同稻秆处理方式下(常规处理(移出稻田+NPK),直接还田(RS)+NPK,原位焚烧还田(BIS)+NPK)双季稻温室气体排放.结果表明,相对于常规处理,RS+NPK处理显著增加CH4排放与减少N2O排放,BIS+NPK处理降低水稻生长季稻田CH4;RS+NPK和BIS+NPK处理稻田N2O排放差异并不显著(P>0.05);早、晚稻秸秆焚烧过程中产生的CH4与焚烧处理田间CH4排放相当,焚烧过程产生的N2O分别为BIS+NPK处理早、晚稻生长季N2O排放总量的90.1%和53.4%,贡献极大.不同处理温室效应表现为RS+NPK>NPK>BIS+NPK,单位产量的温室效应表现为秸秆直接还田处理最高,秸秆原位焚烧处理最低.  相似文献   
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