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1.
不同氮肥对小麦生长和吸收镉的影响   总被引:1,自引:0,他引:1  
为了保证镉含量处于临界值附近土壤上农产品的安全生产,避免不合理施肥引起土壤镉的活化和增加作物吸镉量,研究了4种主要氮肥对不同生育期小麦吸收镉的影响.研究表明,施用硫酸铵、硝酸铵和尿素都比氯化铵促进了小麦生长,明显提高了小麦籽粒产量.所有氮肥处理都比无肥处理增加了小麦对镉的吸收,但不同氮肥处理之间的效果差异显著,其中以氯化铵的促进作用最强,硫酸铵处理的小麦吸收镉最少,尿素处理的小麦对镉的吸收随其用量增加而增加.在小麦整个生育期中,生育前期吸收镉较少,中、后期明显增大;但植株体内镉的浓度却表现为前期高、后期低,呈现随生育期递进而逐渐降低的趋势,只有氯化铵处理表现为拔节期体内镉含量为最高.镉在小麦体内的累积与其生物量的增加呈正相关,从秸秆向籽粒转移的总镉量随小麦籽粒/秸秆比的增加而降低.本试验中土壤的镉含量小于土壤环境质量污染二级标准,但籽粒含镉量均超过国家食品卫生标准允许量(0.1mgkg-1),表明土壤镉污染指标与作物品种密切相关.在镉污染土壤上,应选用低富集镉的小麦品种,避免使用氯化铵,防止过量施用尿素或其它铵态氮肥.  相似文献   

2.
不同氮肥与磷肥的互作效应   总被引:1,自引:0,他引:1  
利用盆栽试验研究了潮土中不同氮肥与磷肥的互作效应,结果表明:不同氮肥与磷肥的配合施用对潮土中油菜的生长和养分吸收有显著的交互作用。生长初期,施氮并不能促进、甚至会抑制油菜的生长,氯化铵较其它氮肥作用突出。随着生长期的延长,氮肥对油荣生长的促进作用逐渐显现,但氯化铵的促进作刚仍低于其它氮肥。植株养分累积受不同氮肥影响的规律与植株干物质累积表现的规律基本一致。土壤有效磷含最受不同氮肥影响较小,而水溶性磷含量因施用不同氮肥表现出显著的差异,特别是在生长初期的土壤中。相关分析结果表明,油菜生长初期的干物质质量与土壤水溶性磷含量达到极显著相关(r=0.727^**)。因此推测,不同氮肥对油菜生长的影响可能因氮肥降低土壤中磷的有效性所致,这些结果对今后的合理施肥提供了重要的参考依据。  相似文献   

3.
灰泥土中不同氮肥品种反硝化损失与N2O排放量的差异   总被引:4,自引:0,他引:4  
在实验室培养条件下,采用土壤培养-乙炔抑制法测定尿素、碳酸氢铵、硫酸铵和氯化铵4种氮肥品种在灰泥土中反硝化损失和N2O排放量的差异。结果表明,氮肥品种间的N2O排放量和反硝化损失量存在极显著差异。尿素、碳铵和氯化铵的N2O排放量极显著高于硫铵,占施肥量的3.88%-4.14%;尿素和碳铵的反硝化损失量分别为施肥量的5.8%和3.7%,极显著高于硫铵和氯化铵;但氯化铵的反硝化损失量显著低于CK。  相似文献   

4.
采用营养液培养方式,以茴香(Foeniculum vulgare Mill.)为试验材料,研究了2 mg·L-1镉质量浓度下,钼硼锌协同处理对茴香植株生长、生理指标、地上部和根系镉含量及精油组分的影响。结果表明:镉胁迫下,与对照相比,钼硼锌协同处理均未显著促进茴香植株株高生长;T5处理有利于茴香植株生物量累积和叶绿素a、叶绿素b、叶绿素a+b、类胡萝卜素的合成,T1处理的可溶性糖含量最高,可溶性蛋白质含量最低,脯氨酸含量较低,丙二醛(MDA)含量最高,且叶绿素a、叶绿素b、叶绿素a+b、类胡萝卜素的合成显著受到抑制。镉胁迫下,钼硼锌协同处理后,茴香植株地上部和根系镉含量均高于对照。茴香精油中反式-茴香脑含量以T6处理最高。总之,镉胁迫下,钼硼锌协同处理并不能缓解镉对茴香植株的毒害作用;在轻微镉污染的土壤上种植茴香以食用地上部为目的,则不宜进行钼硼锌配施,否则会增加食入镉的危险性;利用茴香进行镉污染土壤修复为目的,则建议进行钼硼锌配施,可增加茴香植株对镉的吸收累积,提高修复效率。从提高修复效率和茴香精油质量方面综合考虑,T6处理效果最好。研究结果可为镉污染农田土壤上植物种植过程中钼硼锌的合理配施提供理论参考。  相似文献   

5.
氮肥品种及施肥方式对小白菜产量与品质的影响   总被引:12,自引:0,他引:12  
氮肥在农业生产中起着重要的作用,但是氮肥的大量施用不仅造成养分比例失调及环境污染,而且会限制产量的提高和品质的改善。针对广东蔬菜氮肥施用不合理的现象,在田间试验条件下研究了不同氮肥品种和不同底追比对小白菜产量和营养品质的影响,旨在为华南地区的蔬菜施用氮肥提供参考。试验结果表明,施氮极显著提高了小白菜的生物量和产量,亦增加了硝酸盐的累积量,其中尿素处理增产效果最好,蔬菜专用肥(磷铵 尿素)处理小白菜硝酸盐累积量最低,其次是碳酸氢铵和氯化铵处理。各氮肥处理间Vc和可溶性糖含量差异达到极显著水平,其中蔬菜专用肥处理含量最高;不同底、追肥处理间产量和Vc含量的差异达到显著或极显著水平,而可溶性糖含量差异未达到显著水平。除底肥70%、追肥30%的处理外,其余处理均极显著提高了硝酸盐含量。在本试验条件下,蔬菜专用肥既可以提高小白菜产量,又可以明显改善小白菜营养品质与卫生品质,如果以尿素为氮源,底肥70%、追肥30%是兼顾产量和品质的优化处理。  相似文献   

6.
一株抑制油菜核盘菌菌核形成的解淀粉芽孢杆菌   总被引:21,自引:0,他引:21  
检测了从不同土壤中分离的17株芽孢杆菌对油菜核盘菌的抑制效果,发现4株菌株具有不同程度的抑制菌丝生长的能力,其中地衣芽孢杆菌菌株AJH-1和解淀粉芽孢杆菌菌株CH-2的抑菌效果最好.CH-2菌株不仅能抑制菌丝的生长,而且能抑制菌核的形成.CH-2菌株培养液经硫酸铵沉淀后具有抑制核盘菌生长的效果,且稀释10倍后仍具有抗菌活性.初步认为CH-2菌株的抑菌活性可能是抗菌蛋白或多肽的作用.图1表5参12  相似文献   

7.
氮肥种类及用量对赤红壤pH和可溶性盐的影响   总被引:3,自引:0,他引:3  
为了探讨施用氮肥对赤红壤性土壤pH和可溶性盐的影响,以赤红壤上发育的水稻土为供试土壤,以油麦菜(Lactucasativa L)为栽培作物,采用盆栽试验,研究了在施等量的磷(P2O5 0.08 g·kg-1)、钾(K2O 0.16 g·kg-1)条件下,尿素、硫酸铵、氯化铵、硝酸铵4个氮肥品利吸其不同用量水平(0、0.08、0.16、0.24和0.32 g·kg-1)下土壤的pH和可溶性盐的变化情况.结果表明,施用氮肥的利,类及用量对赤红壤性土壤的pH、可溶性盐及K 、Na 、Ca2 和Mg2 的质量分数有显著影响;随着氮肥用量的增加,土壤pH显著降低,而可溶性盐及K 、Na .、Ca2 和Mg2 的质量分数则升高;在各施氮水平下,(NH4)2SO4、NH4Cl对土壤pH、可溶性盐及K 、Na 、Ca2 和Mg2 的质量分数的影响总体上明显大于CO(NH2)2、NH4NO3.  相似文献   

8.
钼和硼污染对大豆品质的影响   总被引:1,自引:0,他引:1  
以3个大豆(Glycine max)品种(浙春3号、浙春2号和3811)为材料,设置了4个钼、硼处理(适量钼和硼、高钼、高硼及高钼高硼同施),研究了钼污染和硼污染对大豆品质的影响.结果表明:高钼或高硼促使大豆种子蛋白质、维生素C、氮、磷、钾的含量显著减少,氨基酸的总量和必需氨基酸的总量大大降低,氨基酸各组分(除脯氨酸外)的含量都明显下降,脂肪的组分也发生变化,对种子中钙镁含量的影响不大,且高硼对大豆品质的毒害作用明显大于高钼.在过量条件下,钼和硼在大豆体内呈现相互抑制作用.3个大豆品种的品质问存在一定的基因型差异,3个品种对高钼和高硼的反应也存在差异.图2表3参18  相似文献   

9.
小麦秸秆全量还田对土壤速效氮及水稻产量的影响   总被引:10,自引:0,他引:10  
通过田间对比试验,研究了小麦秸秆全量还田后不同氮肥运筹模式下水稻产量及土壤氮素供应特征变化的差异.结果表明,总施氮量一致时,与秸秆不还田处理相比,小麦秸秆全量还田降低了后茬水稻生育前期(孕穗期之前)土壤速效氮(硝态氮和铵态氮)含量,而提高了生育后期(孕穗期之后)土壤速效氮含量,且同一生育期,秸秆还田氮肥优化运筹方案B[m(基蘖肥):m(穗肥)=6.5:3.5,m(基肥):m(分蘖肥)=8:2]较氮肥传统运筹方案A[m(基蘖肥):m(穗肥)=5:5,m(基肥):m(分蘖肥)=6:4]土壤速效氮含量高.秸秆全量还田促进水稻生育后期氮素吸收与生物量增加,而抑制前期增长,且同一生育期秸秆还田配套氮肥运筹方案B水稻氮素与生物量累积高于方案A.等量施氮条件下,小麦秸秆全量还田显著提高水稻产量,且氮肥运筹方案B增产幅度更大.施氮量为270 kg·hm-2时,秸秆还田配套氮肥运筹方案B和方案A分别较秸秆不还田处理水稻产量高9.3%和5.3%.秸秆全量还田主要通过增加水稻有效穗数实现增产,有效穗数分别较秸秆不还田处理高6.1%~14.5%.因此,小麦秸秆全量还田配套氮肥运筹方案B是实现水稻高产的有效措施.  相似文献   

10.
双氰胺对施氮肥引起的红壤酸化的抑制作用   总被引:5,自引:0,他引:5  
通过室内培养试验,研究双氰胺(DCD)对采自安徽郎溪和江西鹰潭的2种红壤中硝化反应的抑制作用,以及对氮肥引起的土壤酸化的抑制效果.结果表明,当不添加氮肥时,DCD抑制了土壤残留铵态氮的硝化作用及由此引起的土壤酸化,培养结束时添加DCD处理的安徽郎溪和江西鹰潭红壤pH值分别比不添加DCD处理高0.37和0.40.当添加尿素和碳酸氢铵时,DCD抑制了来自氮肥的铵态氮的硝化作用以及由此引起的土壤酸化;同时由于尿素水解和碳酸氢根与H+的缔合消耗质子,添加DCD还使2种氮肥对红壤酸度起到一定程度的改良作用.培养结束时,DCD+尿素和DCD+碳酸氢铵处理的安徽郎溪红壤pH值分别比单加尿素和碳酸氢铵处理提高0.62和0.46,江西红壤pH值分别比单加尿素和碳酸氢铵处理提高0.82和0.69.添加DCD处理土壤交换性酸含量也显著低于不添加DCD处理.因此,氮肥与DCD配合施用可以有效缓解氮肥引起的红壤酸化.  相似文献   

11.
Small or negligible differences in growth rates, average cell size, yields in cell numbers and total cell volumes were found in cultures of Thalassiosira fluviatilis inriched with nitrate, ammonium, or urea. Intracellular pools of unassimilated nitrate, nitrate, and ammonium were found in nutrient-rich conditions, but urea was not accumlated internally. Nitrogen assimilation into organic combination rather than nitrogen nutrient uptake was a critical rate-limiting step in nitrogen utilization. The free amino acid pool, protein, lipid-associated nitrogen, pigments, and total cell nitrogen were all highest in young or mature phase cells and decreased with age in senescent cells, whereas chitan, lipid, carbohydrate, and total cellular carbon all continued to increase during senescence. Dissolved organic nitrogen compounds accumulated in the medium only during senescence. C:N and lipid:protein were sensitive indicators of nitrogen depletion and age in T. fluviatilis.  相似文献   

12.
The interaction between nitrate and ammonium uptake was examined as a function of preconditioning growth rate and nitrogen source by adding nitrate, ammonium, or both to nitrogen-sufficient,-deficient, and-starvedSkeletonema costatum (Grev.) Cleve and nitrogen-deficientChaetoceros debilis Cleve. By simultaneously measuring the internal accumulation of intermediates of nitrogen assimilation and the rates of nitrogen assimilation, the metabolic control of nitrogen uptake could be assessed. After the simultaneous addition of nitrate and ammonium to culture, both nitrate and ammonium uptake rates were decreased in comparison with the rates observed when each was added alone, although nitrate uptake was usually decreased more than ammonium uptake. Since both nitrate and ammonium uptake rates vary with time, preconditioning growth conditions, nitrogen sources present, and species, it was necessary to use several different indices to quantify inhibition. In general, ammonium inhibition of nitrate uptake inS. costatum was greatest in cultures preconditioned to ammonium and those at low growth rates, whereas ammonium uptake was inhibited most in cultures preconditioned to nitrate. In nitrogen-deficientC. debilis, nitrate uptake was more inhibited by ammonium, but uptake returned to normal rates more quickly than inS. costatum, whereas inhibition of ammonium uptake was similar. These results explain why the interaction between nitrate and ammonium uptake in the field can be so variable. Inhibition of uptake is not controlled by internal ammonium or total amino acids, nor is it related to the inability to reduce nitrate. Instead, inhibition must be determined in part by the external concentration of nitrogen compounds and in part by some intermediate(s) of nitrogen assimilation present inside the cell.Bigelow Laboratory Contribution No. 82022  相似文献   

13.
Fucus distichus L. was collected near Vancouver, Canada, in late fall and early winter, 1981. The effects of the forms of nitrogen (nitrate, ammonium or urea) and periodic exposure to air on growth, rhizoid development and nitrogen uptake in germlings was investigated. Gamete release, fertilization, germination and germling growth had no requirement for a specific form of nitrogen. Periodic exposure to air increased secondary rhizoid development twofold. Nitrate and ammonium uptake rates of the germlings were higher than for the mature thalli (20 to 40 times for nitrate and 8 times for ammonium), while the halfsaturation constant (K s) values for nitrate were similar (1 to 5 M). The germlings showed saturable uptake kinetics but the mature thalli did not. When germlings were exposed to air it caused a 70% decrease in nitrate uptake, but not change in ammonium uptake. Ammonium uptake in the mature thalli was proportional to the ambient ammonium concentration. Nitrate uptake in the mature thalli appeared to follow saturation kinetics at low nitrate concentrations, but showed a non-saturable component at concentrations greater than 10 M. Presence of ammonium inhibited nitrate uptake by the mature plants but not by the germlings.  相似文献   

14.
包膜控释和常用氮肥氮素淋溶特征及其对土水质量的影响   总被引:1,自引:0,他引:1  
张庆利  张民  田维彬 《生态环境》2001,10(2):98-103
大量施用氮素化肥所引起的氮素损失和环境污染正日益受到重视。通过土柱模拟氮素养分的淋洗试验,探讨包膜控释氮肥和常用氮肥的氮素淋失特点及其对土壤和地下水质量的影响。研究结果表明,不同氮肥施入土壤后氮素的淋失率有着显著的差异,其中硝酸钾中氮素淋失率最高,其次为尿素,硫酸铵和碳铵的氮素淋失量明显较小。然而控释氮肥因其控制释放的特点,在氮素释放的高峰期,其模拟淋失量较高,但如果在田间条件下此释放高峰期与作物吸肥高峰期相吻合,则会显著地降低其淋失率。除尿素外,被淋失的氮素均以硝态氮为主,尿素则以酰胺分子态被淋溶。大量速效化肥的施入会形成土壤中的肥料"微域点",引起交换性Ca2+、Mg2+离子的淋失,从长远来看可引起土壤结构的破坏,而施用控释肥则很少形成这种"微域点",有利于土壤结构和肥力的维持。不同氮肥处理淋洗后对土壤pH值和有效氮含量变化的影响差异较大,其中以控释肥对土壤pH值变化的影响较小。大多数氮肥处理在淋洗后,土壤中各层速效氮含量较淋洗前有所降低,然而两种控释氮肥处理的土壤表层却能持续保持较高的有效氮含量。  相似文献   

15.
The effect of preconditioning nitrogen source and growth rate on the interaction between nitrate and ammonium uptake was determined inThalassiosira pseudonana (Clone 3H). A new method, using cells on a filter (Parslow et al. 1985), allowed continuous measurement of uptake from 0.5 to 9 min after the addition of nitrate, ammonium, or both, with no variation in concentration during the course of the experiment. For each preconditioning N source and growth rate, a series of uptake experiments was conducted, including controls with only nitrate or only ammonium, and others with different combinations of concentrations of nitrate and ammonium. For the first time, preference for ammonium was separated from inhibition of nitrate uptake by ammonium. Ammonium was the preferred N source, i.e. if nitrate and ammonium were presented separately, ammonium uptake rates exceeded nitrate uptake rates. Preference for ammonium varied with both preconditioning N source and growth rate. Inhibition of nitrate uptake by ammonium, determined by comparing nitrate uptake in the presence and absence of ammonium, was observed at ammonium concentrations > 1µM, but was rarely complete. Inhibition of nitrate uptake by ammonium was less in the ammonium-limited culture than in the cultures growing on nitrate, but invariant with growth rate in the nitrate-grown cultures. Below 1µM ammonium, nitrate uptake was often stimulated and rates exceeded those in the controls without ammonium. Ammonium uptake was not inhibited by the presence of nitrate.T. pseudonana fits the classical view of the interaction between nitrate and ammonium uptake in some respects, such as preference for ammonium, and inhibition of nitrate uptake by ammonium concentrations > 1µM. However, at ammonium concentrations typical of most marine environments, nitrate uptake occurs at rapid rates. In other respects, N uptake inT. pseudonana deviates from the classical view in the following ways: (1) stimulation of nitrate uptake by low concentrations of ammonium; (2) lack of inhibition of nitrate uptake by ammonium at low nitrate concentrations; and (3) variation in preference and inhibition with preconditioning, which is markedly different for other species. Because of the apparent enormous species variation in the interaction between nitrate and ammonium uptake and the lack of detailed information for a variety of species, it is difficult to generalize about the effect of ammonium on nitrate uptake, especially in the field, where prior N availability and species composition are not usually addressed.  相似文献   

16.
The uptake of nitrate and ammonium was measured separately in uni-algal, nitrogen-deficient cultures of four species of marine phytoplankton. Nitrogen-deficient phytoplankton took up ammonium at initial rates which greatly exceeded those measured for nitrogen-sufficient phytoplankton. However, nitrate uptake by nitrogendeficient cultures was generally much slower than either nitrate or ammonium uptake by nitrogen-sufficient cultures or ammonium uptake by nitrogen-deficient cultures. Considerable species differences were observed in the degree to which nitrogen deficiency increased ammonium uptake or decreased nitrate uptake. Loss of ability to take up nitrate, but enhanced ability to take up ammonium, as a result of nitrogen deficiency may be an adaptation to the different mechanisms by which nitrate and ammonium are supplied to the euphotic zone. In areas with an intermittent supply of nitrogen, changes in the ability of some species to take up nitrogen as a result of nitrogen starvation will influence species composition and complicate interpretations of measurements of nitrogen uptake.Contribution no. 1249 from the Department of Oceanography, University of Washington, and contribution no. 82006 from the Bigelow Laboratory for Ocean Sciences  相似文献   

17.
Nitrate and ammonium uptake rates were measured for three year-classes of the perennial macrophyte Laminaria groenlandica Rosenvinge, collected from nitrogen-depleted waters in Barkley Sound, British Columbia, Canada, in summer 1981. A time course of uptake rate revealed that ammonium uptake was high during the first hour and then decreased for all three year-classes; the opposite pattern was exhibited for the time course of nitrate uptake rate. Nitrate uptake rate increased linearly with nitrate concentration up to the highest level tested (60 M). The nitrate uptake rate of first-year plants was three times higher than second- and third-year plants; ammonium uptake rates showed similar patterns to those for nitrate. The interaction between nitrate and ammonium was examined for first-year plants. Nitrate and ammonium were taken up simultaneously and uptake rates were identical and equal to uptake rates when only nitrate or ammonium was present in the medium. Therefore, first-year plants are able to take up twice as much inorganic nitrogen per unit time when both nitrate and ammonium are present. First-year plants showed significant diel periodicity in ammonium uptake rates, whereas second- and third-year plants showed no periodicity in nitrate or ammonium uptake rates.  相似文献   

18.
A nitrogen-deficient batch culture of the marine diatom Skeletonema costatum, when resupplied with a mixture of nitrate and ammonium, showed an initial enhanced nitrate uptake rate leading to a large internal concentration (pool) of nitrate. Following this initial nitrate uptake event, nitrate uptake ceased, and nitrate assimilation was inhibited until the ammonium present was used. At this point, nitrate uptake resumed and nitrate assimilation began. No internal ammonium pool was observed during nitrate utilization, but a large nitrate pool remained throughout the utilization of external nitrate. The internal nitrate pool decreased rapidly after exhaustion of nitrate from the culture medium, but growth of cellular particulate nitrogen continued for about 24 h. A mathematical simulation model was developed from these data. The model cell consisted of a nitrate pool, ammonium pool, dissolved organic nitrogen pool, and particulate nitrogen. It was found that simple Michaelis-Menten functions for uptake and assimilation gave inadequate fit to the data. Michaelis-Menten functions were modified by inclusion of inhibitory and stimulatory feedback from the internal pools to more accurately represent the observed nutrient utilization.  相似文献   

19.
E. Sahlsten 《Marine Biology》1987,96(3):433-439
The uptake rates of the three nitrogen compounds ammonium, nitrate, and urea were measured in the oligotrophic North Central Pacific Gyre in August–September 1985. The measurements were performed by using 15N-labelled substrates and incubating for short-time periods (3 to 4 h) under simulated in situ conditions. Ambient concentrations of the nitrogenous nutrients were generally below 0.10 mol l-1. The average total daily nitrogen uptake rate, integrated over the euphotic zone, was 12.5 mmol N m-2 d-1. Diel studies in the upper water mass resulted in a calculated phytoplankton growth rate of 1.3 d-1. Ammonium was the dominating nutrient, accounting for on the average 54% of the total nitrogen uptake, while urea uptake represented 32% and nitrate 14%. Ammonium uptake rates at a coastal station off the Hawaiian Islands were very close to the rates found at the oceanic station. Organisms <3 m dominated the nitrogen assimilation, being responsible for about 75% of the ammonium uptake. The nitrogen uptake rates in this study seem to be higher than those found by earlier investigations in the area, but correlated well with other productivity measurements performed during the same cruise.  相似文献   

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