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1.
施硒对药用菊花主要有效成分和花中硒含量的影响   总被引:2,自引:0,他引:2  
李永明  孙玉新  刘德辉 《土壤》2010,42(4):618-623
采用砂培盆栽试验探讨施Se对药用菊花花中总黄酮、绿原酸和Se含量的影响。结果表明,在施Se量不超过2.0mg/kg时能促进药菊的生长,提高药菊花中总黄酮、绿原酸的含量,药菊花、茎叶和根的干重和花中的总黄酮、绿原酸含量均随施Se量的增加而增加;其中以施Se量为2.0mg/kg处理的效果最佳,该施Se量处理药菊花干重、根干重、花中绿原酸含量与施Se量分别为0、0.25、0.5、1.0mg/kg各处理以上各相应指标的差异均达到显著水平,该施Se量处理药菊花中总黄酮含量高于其他所有5处理,并与施Se量为0mg/kg和0.25mg/kg两处理药菊花中总黄酮含量的差异达到显著水平。过量施Se(4.0mg/kg)对药菊的生长表现出一定抑制作用,其药菊各部位生物量和花中总黄酮、绿原酸含量均低于施Se量2.0mg/kg的处理。药菊花、茎叶和根中的Se含量均随施Se量的增加而增加,菊花茎叶和根中的Se含量与施Se量呈线性相关关系,而菊花花中的Se含量(y)与施Se量(x)符合一元二次回归方程:y=-0.8175x2+6.0045x+0.1363。施用适量的Se既能显著提高药菊花中总黄酮和绿原酸含量,又能大幅提高花中的Se含量,这为富Se菊花及其系列产品的研发提供了理论依据。  相似文献   

2.
铜、锌、硒对药用菊花主要有效成分和花中硒含量的影响   总被引:3,自引:3,他引:3  
采用3因子5水平3512最优回归设计的盆栽试验,研究铜、锌、硒3元素对药用菊花主要有效成分(总黄酮、绿原酸)和花中硒含量的影响。结果表明,在满足其它大、中、微量元素需求条件下,施用铜、锌、硒三种元素对菊花花中的有效成分表现出交互作用。其中,铜、硒配施表现出正效应,并达到显著水平;而铜、锌和锌、硒配施则显示负效应。高水平的铜对菊花生长和有效成分的生成产生严重抑制作用甚或毒害作用。锌是影响菊花内在品质的重要微量元素养分,对提高菊花花中的总黄酮、绿原酸含量的作用显著;缺锌条件下,菊花总黄酮和绿原酸的生成和累积受到阻碍。铜、锌、硒3元素对菊花花中有效成分的影响机理需进一步研究。菊花花中的硒含量与硒的施入数量之间存在正相关关系,而不受铜、锌元素配施量的影响。  相似文献   

3.
氮肥用量对药用菊花生长及其药用品质的影响   总被引:6,自引:2,他引:4  
本文采用盆栽试验研究了氮肥用量对药用菊花(药菊)生长及其药用品质的影响。结果表明,氮肥可促进植株生长、花芽分化和提前开花,提高菊花产量。当氮肥用量为0.5069 g/kg土时,药菊单株鲜花总产量最高,为542.01 g /株。菊花中绿原酸、总黄酮和可溶性糖的含量同氮肥用量成反比,高氮肥处理时上述成分最大下降幅度可分别达35.48%~45.26%、28.58%~35.58%和6.42%~9.51%。随着氮肥用量增加,药菊植株次生代谢关键酶苯丙氨酸解氨酶(PAL)活性和菊花中磷(P)、钾(K)、钙(Ca)元素含量大幅降低,而N/P、N/K和N/Ca比值和可溶性氨基酸含量升高。高氮处理因提高植株氮含量,降低PAL活性和可溶性糖含量,从而抑制植株绿原酸和黄酮等酚类物质合成而影响菊花的药用品质。试验还表明,当氮肥用量为0.4180~0.4598 g/kg土时,菊花中总黄酮和绿原酸的累积量最高。综合比较氮肥用量对菊花药材产量、外观品质、活性成分含量与累积量等因素的影响,建议菊花生育期内氮肥用量在0.30~0.40 g/kg土范围为适宜。  相似文献   

4.
镁、锌、钼配施对银杏苗叶生物量和药用品质的影响   总被引:1,自引:1,他引:1  
在温室条件下,采用正交试验设计,研究了叶面喷施镁、锌、钼对银杏苗叶生物量、主要药效成分含量及其单株产量的影响。结果表明:不同的镁锌钼组合对银杏苗叶生物量、总黄酮含量及其单株产量、萜内酯含量及其单株产量均有显著影响。较适宜银杏叶生物量、总黄酮含量、萜内酯含量、单株总黄酮产量、单株萜内酯产量提高的组合分别是Mg4Zn3Mo2、Mg1Zn4Mo2、Mg2Zn4Mo3、Mg4Zn4Mo2、Mg4Zn4Mo2。镁、锌、钼对银杏单株叶生物量、总黄酮含量及其单株产量影响的主次顺序:镁钼锌,对萜内酯含量影响的主次顺序:锌钼镁,对单株萜内酯产量的主次顺序:镁锌钼。叶面喷施镁锌钼肥可相应提高叶中镁、锌、钼含量,而叶面配施锌钼肥对叶中全镁的含量的影响不大,叶面配施镁肥在高水平下促进叶中全锌量积累,叶面配施钼肥在低水平(Mo2)下提高了叶中全锌含量,叶面配施镁锌肥对叶中全钼的含量影响不大。喷施镁肥对总黄酮含量产生了负面影响,但促进了萜内酯含量及其单株产量的提高;锌在高水平下对总黄酮和萜内酯含量有促进作用,低浓度下作用不大或有负面影响;钼在中低水平下对总黄酮和萜内酯含量有促进作用,高浓度下作用不大或有负面影响。  相似文献   

5.
Background : Poor utilization of urea fertilizer and N losses from agriculture lands demands alternate fertilization practices to reduce N losses and improve utilization, i.e., application of nitrification inhibitors. Aims : This study was aimed to evaluate and compare the influence of dicyandiamide (DCD) and selected medicinal plant materials and on N transformations, nitrification inhibition and recovery of applied N. Methods : Treatments included: urea nitrogen (UN), UN + DCD, UN + Gingiber officinale, UN + Viola odorata, UN + Sewertia chirata, UN + Azadirachta indica, UN + Sphaenathus indicus, UN + Allium sativus, UN + Artemisia absenthium, UN + Fumaria indicus, UN + Caesalpinea bondusella, UN + Barberis lyceum, and an un‐amended control. Urea was applied at 200 mg N kg?1 soil, while DCD and medicinal plant materials were applied at of 1% and 20% of applied urea, respectively. Results : Medicinal plant materials inhibited nitrification of urea‐derived NH 4 + - N . On an average of medicinal plant materials treatments, 51% of NH 4 + - N was still present in soil compared to 17% NH 4 + - N in UN treatment without medicinal plant materials after 28 days. Similarly, NO 3 - - N was 76.54 mg kg?1 in UN treatment compared to 34.40 mg kg?1 in UN + medicinal plant materials treatments, indicating 55% reduction in nitrification. Apparent nitrogen recovery (ANR) in UN treatment was 65% compared to 74% in UN + DCD treatment. ANR in treatments, where UN was amended with medicinal plant materials, varied between 58 to 70%. Conclusions : The use of DCD and medicinal plant materials with UN significantly reduced NH 4 + - N oxidation and nitrification ( NO 3 - - N ). In general, medicinal plant materials were more effective in regulating N transformations and, thus, offer a suitable alternate fertilization practice to reduce N losses and improve fertilizer utilization.  相似文献   

6.
Abstract

Ammonium nitrate fertilizer, whether applied in spring, summer or autumn, resulted in a rapid increase in the total N content of most tree tissues, although autumn‐applied N remained mainly in the tree roots through the winter. The total P content of the trees was increased by added N fertilizer but the total K content was decreased. Analysis showed that significantly more N was lost in the leaves abscissing from the spring and summer‐N trees than from the autumn‐N trees or controls; also more P was lost from trees given spring N.  相似文献   

7.
Our objective was to determine the combined effect of some plant growth regulators and nitrogen (N) on corn growth, yield and nitrogen use efficiency. A potted experiment was conducted with two levels of growth regulators [i.e. with or without treatment with Seed king (Kinetine), Root king (Indole-butyric acid) and More king (Chitosan)], two maize cultivars (Calabar White and Obatanpa-98 and three nitrogen rates (0, 90 and 180 kg/ha in the form of urea). The measured parameters were growth attributes, nitrogen uptake, dry matter yield, harvest-index, shoot to root ratio, yield attributes and agronomic and physiological nitrogen use efficiency. Calabar White had taller plants (154.53 cm) more leaves (12.00) and larger leaf area (466.98 cm2) than obatanpa-98 at 6 weeks after sowing. The dry matter yield of both leaf and stem increased significantly (P ≤ 0.05) with increasing N rates but the growth regulators significantly (P ≤ 0.05) increased only the leaf dry matter. The interaction between growth regulators and nitrogen significantly affected the leaf dry matter but not the stem dry matter. There was a considerable (P ≤ 0.05) increase in harvest-index (HI) at the 90 kg/ha N rate with growth regulators and Obatanpa-98 had better HI (30.81%) than Calabar White (27.41%). Obatanpa 98 also had much (P ≤ 0.05) higher grain yield (87.42 g/plant) than Calabar White (65.40 g/plant) but for both cultivars, the grain yield increased progressively with increasing N rate. The uptake of N differed significantly (P ≤ 0.05) among the different partitions of maize (leaves, stems and grains) at various growth stages. Calabar White had the highest N uptake in the leaves and stem whether at silking or at harvest. Obatanpa-98 partitioned more N to the grains than Calabar White. Agronomic nitrogen use efficiency (ANUE) was highest (21.31 gg?1) at the 90 kg/ha N rate with Obatanpa-98 having a superior (20.26 gg?1) ANUE to Calabar White (15.94 gg?1). The physiological nitrogen use efficiency (PNUE) was also highest (8.14 g/kg) at the 90 kg/ha N rate with Obatanpa-98 being more efficient (8.08 gkg) than Calabar White (6.26 g/kg). Thus, both cultivars treated with 90 kgN/ha with or without growth regulators would best optimize nitrogen fertilizer use. However, the growth regulators increased the yield of Calabar White significantly only when no N was applied. In contrast, they increased the yield of the hybrid Obatanpa-98 at all N rates especially at the 180 kgN/ha rate. Thus, under the low input cropping common with Calabar White, treatment with the growth regulators would boost yield. A combined treatment of 180 kg N/ha with the growth regulators would ensure the best yield of Obatanpa-98.  相似文献   

8.
针对黄土高原旱作区糜子生产中氮肥种类单一、肥料利用效率低的问题,本试验以当地习惯施氮尿素N 120kg/hm2(TN)为对照,设置控释氮肥N 120kg/hm2(T1)、108kg/hm2(T2)、96kg/hm2(T3)、84kg/hm2(T4)、72kg/hm2(T5)和不施肥(T0)七个处理,探究不同控释氮肥处理下土壤全氮、微生物量氮、硝态氮和铵态氮含量的变化规律,分析糜子成熟期氮素积累分配、氮素利用效率及产量对控释氮肥的响应,以期为建立旱地糜子控释氮肥一次性基施轻简栽培技术提供支撑。结果表明:与施用尿素相比,等量控释氮肥可以提高糜子抽穗期和成熟期土壤全氮、微生物量氮、硝态氮和铵态氮含量分别达0.38%~5.51%、1.76%~7.63%、5.41%~11.80%和4.04%~14.77%,其中硝态氮和铵态氮含量两年均显著高于TN,随着控释氮肥减量糜子田各形态氮素均呈降低趋势,减氮量达20%以上时土壤硝态氮和铵态氮含量均显著低于TN处理。施用控释氮肥可以提高糜子成熟期氮素积累量1.97%~3.21%,增加糜子氮素向籽粒中的分配比例0.55%~1.18%,控释氮肥减量20%以上时糜子氮素积累量显著低于尿素全量基施处理。与普通尿素相比,控释氮肥提高了糜子氮肥表观利用率、氮肥偏生产力及氮肥农学利用率,增幅分别为3.29%~4.59%、3.88%~4.14%和5.01%~7.63%,其中氮肥偏生产力处理间差异达显著水平,随着控释氮肥减量糜子氮肥表观利用率、氮肥偏生产力及氮肥农学利用率均呈上升趋势。施用控释氮肥通过增加单位面积穗数和穗重显著提高了糜子产量两年分别达3.88%和4.47%,控释氮肥减量20%以下时糜子产量与尿素差异不显著。相关性分析结果表明,糜子氮素积累量与产量呈极显著正相关,氮素利用效率指标与土壤硝态氮含量相关性最强。综上所述,施用控释氮肥较尿素可显著提高糜子生育中后期土壤供氮能力,促进糜子对氮素的吸收利用进而增加产量,且在适量减氮20%时并未显著降低糜子产量,因此控释氮肥在糜子生产中有较大的应用前景及减氮潜力。  相似文献   

9.
Unfermented rooibos originates from the leaves and the stems of the indigenous South African plant, Aspalathus linearis, and it has been reported to have a higher content of flavonoids compared to that of fermented rooibos. The HPLC/UV method developed in our laboratory for the analysis of the fermented rooibos was applied to the quantitative characterization of the major flavonoids present in the unfermented rooibos. Main compounds determined were aspalathin (49.92 +/- 0.80 mg/g), isoorientin (3.57 +/- 0.18 mg/g), orientin (2.336 +/- 0. 049 mg/g), and rutin (1.69 +/- 0.14 mg/g), followed in order by isovitexin, vitexin, isoquercitrin and hyperoside, quercetin, luteolin and chrysoeryol. The identity of detected flavonoids was confirmed by comparing their retention times and UV spectra with those of corresponding standards. The total antioxidant activity (TAA) of the tea infusions was measured by the ABTS*+ radical cation decolorization assay. The TAA of unfermented rooibos (0.8 Trolox meq/g) resulted 2-fold higher than that of the fermented rooibos. When compared with different water infusions of Camellia sinensis (green and black tea), this TAA value was about 50% lower.  相似文献   

10.
芝麻氮、磷、钾肥的效应研究   总被引:6,自引:1,他引:6  
为探明芝麻生产中氮、磷、钾肥最优化施肥参数,本试验运用“3414”肥料效应田间试验方案,对白芝麻品种郑芝98N09和黑芝麻品种冀9014的氮、磷、钾肥料效应进行了研究.结果表明:适量氮、磷、钾用量及其配施能显著改善芝麻的经济性状,提高芝麻产量.施氮量与芝麻株高、单株蒴数、单蒴粒数、千粒重等经济性状呈显著正相关,氮、磷、钾肥对郑芝98N09的经济性状的影响为氮>磷>钾,冀9014为氮>钾>磷.通过建立肥料与产量效应函数方程并结合经济效益分析得出,郑芝98N09的最佳施肥量为N 123.09 kg/hm2、P2O5 60.13 kg/hm2、K2O 73.31 kg/hm2,冀9014的最佳施肥量为N 133.92 kg/hm2、P2O5 70.85 kg/hm2、K2O 110.80 kg/hm2.因此,郑芝98 N09施肥时应重施氮肥,适配磷、钾肥;冀9014应重施氮、钾肥,兼施磷肥.  相似文献   

11.
The capacity of plant growth-promoting rhizobacteria (PGPR) – Bacillus amyloliquefaciens GB03 (BamGB03), B. megaterium SNji (BmeSNji), and Azospirillum brasilense 65B (Abr65B) – to enhance growth and nutrient uptake in wheat was evaluated under different mineral N fertilizer rates, in sterile and non-sterile soils, and at different developmental stages. In gnotobiotic conditions, the three strains significantly increased plant biomass irrespective of the N rates. Under greenhouse conditions using non-sterile soil, growth promotion was generally highest at a moderate N rate, followed by a full N dose, while no significant effect was observed for the inoculants in the absence of N fertilizer. At 50N, plant biomass was most significantly increased in roots (up to +45% with Abr65B) at stem-elongation stage and in the ears (+19–23% according to the strains) at flowering stages. For some nutrients (N, P, Mn, and Cu), the biomass increases in roots and ears were paralleled with reduced nutrient concentrations in the same organs. Nevertheless, growth stimulation resulted in a higher total nutrient uptake and higher nutrient uptake efficiency. Furthermore, Abr65B and BmeSNji counteracted the reduction of root development caused by a high N supply. Therefore, combining PGPR with a proper cultivated system, N rate, and plant stage could enhance their biostimulant effects.  相似文献   

12.
Essential oil content and concentration of anise plant planted in different times under various sources of nitrogen was evaluated in this study. The experiment was conducted in a split plot based on a randomized complete block (RCB) design (different sources of fertilizer as the main plot and planting dates as subplots) with three replications in the Agricultural Research Station at Ferdowsi University of Mashhad in 2015–2016. Treatments included: planting times (sub plot factor): (27th of October, 27th of November, 1st of March, 10th of March, and 8th of April) and nutritional sources (main plot factor): (Cow Manure, Chemical Fertilizer, and mixture of Cow Manure + Chemical Fertilizer). The results showed that the anise plant essential oil qualitative characteristics were significantly influenced by treatments. Also, interaction between the fertilizer treatments and planting dates on the essential oil content and concentration of the plants were significant. The highest percentage of plant essential oil (3.71%) was found in the cow manure treatment, and the lowest percentage of essential oil (2.95%) was obtained in the chemical fertilizer. The highest essential oil yield (16.09 kg/ha) was found in the mixed treatment of the cow manure and the chemical fertilizer, and the chemical fertilizer treatment had the lowest rate of essential oil yield (11.41 kg/ha). The highest percentages of the plant oil (14.31%) and the plant oil yield (77.46 kg/ha) were found in the integrated treatment of the cow manure and the chemical fertilizers. The lowest amounts of the plant oil (12.19%) and the plant oil yield (41.28 kg/ha) were found in the chemical fertilizer. According to the percentage and the yield of the essential oil, the best planting time and fertilizer treatment was the one on 10th of March and using integrated cow manure and chemical fertilizer.  相似文献   

13.
植物营养生物学研究方向探讨   总被引:1,自引:1,他引:0  
植物营养生物学是重点研究植物活化、吸收、转运与利用养分的生理、分子及遗传机制的科学。在过去的30年,我国植物营养生物学研究取得了长足的发展,但从国家自然科学基金资助情况分析,与相关学科相比,近10多年来植物营养生物学总体研究力量相对薄弱,缺乏新一代领军人才。一些研究更接近于“纯”植物生物学,与植物营养应用研究出现脱节,对农业绿色发展及化肥产业升级的支撑不够。植物营养生物学研究者应该重视与作物育种、耕作栽培、生态环境、植物保护及化肥产业的合作,跟踪这些领域的研究现状及生产中面临的技术需求,围绕这些领域的技术“瓶颈”开展植物营养基础研究,在提供解决途径的同时创新植物营养生物学机理,从而丰富植物营养学理论。在研究内容上,建议重视控制养分响应度的生理与遗传机制,养分信号与环境信号互作,养分×土壤×管理互作及其对根系生长的影响,养分供应与抗生物胁迫,高产高效的植物营养生理学基础,特种作物的营养机理,化肥产品升级的生物学途径等方向的研究。  相似文献   

14.
Abstract

Through unflooded mulching in field plots and 15nitrogen microplot tracer experiments, nitrogen (N) uptake of rice and N utilization have been studied compared with normal irrigation cultivation. The results showed that N uptake of unflooded rice and N derived from fertilizer (NDFF) of root, stem, and grain under mulching cultivation were lower than that under cultivation without mulching. However, the NDFF of rice under unflooded cultivation was higher than that under normal irrigation cultivation. The N utilization has been greatly enhanced under unflooded cultivation without mulching and unflooded plastic film cultivation with mulching as compared with normal irrigation. At the same time, there was no significant difference on the N uptake of unflooded rice among different ways of mulching cultivations. During the growth period of rice, no prominent differences were found in the soil residue, recovery, and N losses of fertilizer except the N uptake of rice between unflooded mulching and normal irrigation. The yield of rice under film mulching and straw mulching cultivation was higher than that of cultivation without mulching in the condition of unflooded cultivation, whereas the yield of rice under irrigation cultivation was higher than that under unflooded cultivation.  相似文献   

15.
Soil, crop, and fertilizer management practices may affect quality of organic carbon (C) and nitrogen (N) in soil. A long-term field experiment (growing barley, wheat, or canola)was conducted on a Black Chernozem (Albic Argicryoll) loam at Ellerslie, Alberta, Canada, to determine the influence of 19 years (1980 to 1998) of tillage [zero tillage (ZT) and conventional tillage (CT)], straw management [straw removed (SRem) and straw retained (SRet)], and N fertilizer rate (0, 50, and 100 kg N ha?1 in SRet and 0 kg N ha?1 in SRem plots) on macro-organic matter C (MOM-C) and N (MOM-N), microbial biomass C (MB-C), and mineralizable C (Cmin) and N (Nmin) in the 0- to 7.5-cm and 7.5- to 15-cm soil layers. Treatments with N fertilizer and SRet generally had a greater mass of MOM-C (by 201 kg C ha?1 with 100 kg N ha?1 rate and by 254 kg C ha?1 with SRet), MOM-N (by 12.4 kg N ha?1 with 100 kg N ha?1 rate and by 8.0 kg N ha?1 with SRet), Cmin(by 146 kg C ha?1 with 100 kg N ha?1 rate and by 44 kg C ha?1 with SRet), and Nmin(by 7.9 kg N ha?1 with 100 kg N ha?1 rate and by 9.0 kg N ha?1 with SRet)in soil than the corresponding zero-N and SRem treatments. Tillage, straw, and N fertilizer had no consistent effect on MB-C in soil. Correlations between these dynamic soil organic C or N fractions were strong and significant in most cases, except for MB-C, which had no significant correlation with MOM-C and MOM-N. Linear regressions between crop residue C input and mass of MOM-C, MOM-N, Cmin, and Nmin in soil were significant, but it was not significant for MB-C. The effects of management practices on dynamic soil organic C and N fractions were more pronounced in the 0- to 7.5-cm surface soil layer than in the 7.5- to 15-cm subsoil layer. In conclusion, the findings suggest that application of N fertilizer and retention of straw would improve soil quality by increasing macro-organic matter and N-supplying power of soil.  相似文献   

16.
The effects of salinity, density, and nutrient on the growth, reproduction, and ecophysiology of a perennial halophyte, Cressa cretica L., were studied. Lower salinity concentration (425 mM) promoted the growth, but the highest salinity (850 mM) did not have a significant effect. Plants grew faster and were healthier at low density treatment. Lack of nitrogen (N) in the medium substantially inhibited shoot growth. Higher rhizome length and increased dry weight were some of the symptoms of N‐deficiency. Phosphorus (P)‐free plants also showed higher dry weight and higher ratio of rhizomes to shoots. Reproductive capacity of Cressa cretica plants was not affected by the absence of P. Growth and reproduction of Cressa cretica plants were significantly inhibited by potassium (K) deficiency. Optimal plant growth was recorded in complete nutrient solution. Higher concentrations of oxalate were found in plants growing under low density conditions and in non‐saline controls. Proline concentration increased with the increase in salinity of the medium. Chlorophyll a and b synthesis were inhibited by high salinity treatments whereas changes in density regimes did not have an effect.  相似文献   

17.
Effects of residues of 9 plants, lemon eucalyptus (Eucalyptus citriodora Hook., P1), robust eucalyptus (E. robusta Smith, P2), Nepal camphortree (Cinnamomum glanduliferum (Wall.) Nees, P3), tea (Camellia sinensis (Linn.) O. Ktze. f., P4), oleander (Nerium indicum Mill, P5), rape (Brassica campestris L., P6),Chinese tallow tree (Sapium sebiferum L., P7), tung (Vernicia fordii (Hemsl.), P8), and croton (Croton tiglium L., P9), 7 chemicals, boric acid (C1), borax (C2), oxalic acid (C3), sodium oxalite (C4), sodium dihydrogen phosphate (C6), sodium silicate (C7) and sodium citrate (C8), and a natural organic substance,humic acid (C5), on urease activity of a neutral purple soil and recovery of urea nitrogen by maize were studied through incubation and pot experiments. Hydroquinone (HQ) was applied as the reference inhibitor. After incubation at 37 ℃ for 24 h, 7 inhibitors with higher ability to inhibit urease activity were selected and then incubated for 14 days at 25 ℃. Results of the incubation experiments showed that soil urease activity was greatly inhibited by them, and the inhibition effect followed an order of P2>P4>C3>C2>P3>C1>HQ>P1.The 7 selected materials reduced the accumulative amounts of N released from urea and the maximum urease activity by 11.7%~28.4% and 26.7%~39.7%, respectively, and postponed the N release peak by 2~4 days in the incubation period of 14 days under constant temperature, as compared to the control (no inhibitor).In the pot experiment with the 7 materials at two levels of addition, low (L) and high (H), the C1 (H), C3(H), C1 (L), P4 (L) and C2 (L) treatments could significantly increase the dry weights of the aboveground parts and the total biomass of the maize plants and the apparent recovery rate of urea-N was increased by 6.3%~32.4% as compared to the control (no hibitor).  相似文献   

18.
不同氮素用量对杭白菊养分累积、转运及产量的影响   总被引:3,自引:2,他引:1  
通过田间小区试验,研究不同施氮量对杭白菊养分积累、转运及产量的影响,以确定杭白菊最佳氮肥用量。试验设5个处理,氮素用量分别为0、90 kg/hm2、120 kg/hm2、150 kg/hm2、180 kg/hm2,以N0、N1、N2、N3、N4表示,5次重复。结果表明,不同氮素用量影响杭白菊不同时期干物质和养分的阶段积累量,但不影响其积累趋势,整个生育期内杭白菊氮、磷、钾积累量为钾氮磷。不同施氮量影响茎叶氮、磷、钾的转移效率和在不同器官中的分配比率,以不施肥处理最高,N3(150 kg/hm2)次之。在氮、磷、钾三种元素中,转运效率磷氮钾。收获期氮、磷、钾在不同器官的分配比率不同,氮素、钾素分配比率为茎花叶根,磷素分配比率为茎花根叶。各处理杭白菊花的产量在1746.232~211.3 kg/hm2之间,以N3(150 kg/hm2)处理产量最高。在本实验条件下,杭白菊的推荐施氮量为150 kg/hm2。  相似文献   

19.
Nitrification inhibitors are widely used in agriculture to mitigate nitrous oxide(N2O)emission and increase crop yield.However,no concrete information on their mitigation of N2O emission is available under soil and environmental conditions as in Pakistan.A field experiment was established using a silt clay loam soil from Peshawar,Pakistan,to study the effect of urea applied in combination with a nitrification inhibitor,nitrapyrin(2-chloro-6-tri-chloromethyl pyridine),and/or a plant growth regulator,gibberellic acid(GA_3),on N2O emission and the nitrogen(N)uptake efficiency of maize.The experimental design was a randomized complete block with five treatments in four replicates:control with no N(CK),urea(200 kg N ha-1)alone,urea in combination with nitrapyrin(700 g ha-1),urea in combination with GA_3(60 g ha-1),and urea in combination with nitrapyrin and GA_3.The N2O emission,yield,N response efficiency,and total N uptake were measured during the experimental period.The treatment with urea and nitrapyrin reduced total N2O emission by 39%–43%and decreased yield-scaled N2O emission by 47%–52%,relative to the treatment with urea alone.The maize plant biomass,grain yield,and total N uptake increased significantly by 23%,17%,and 15%,respectively,in the treatment with urea and nitrapyrin,relative to the treatment with urea alone,which was possibly due to N saving,lower N loss,and increased N uptake in the form of ammonium;they were further enhanced in the treatment with urea,nitrapyrin,and GA_3 by 27%,36%,and 25%,respectively,probably because of the stimulating effect of GA_3 on plant growth and development and the reduction in biotic and abiotic stresses.These results suggest that applying urea in combination with nitrapyrin and GA_3 has the potential to mitigate N2O emission,improve N response efficiency,and increase maize yield.  相似文献   

20.
为了寻求改善果园土壤氮素稳定供应问题的有效措施,试验以6年生烟富3/SH6/平邑甜茶为试材,利用~(15)N同位素标记,研究FSA(撒施)、FS+BC(一半撒施一半袋控)、BCRF(袋控缓释肥)对土壤Nmin及氮素吸收、利用和损失的影响。结果表明:在苹果整个生长季BCRF处理土壤Nmin含量保持平稳,FSA处理短期内土壤Nmin含量迅速升高,然后又急剧降低。在果实成熟期植株体内氮素BCRF处理(121.64g)高于FSA处理(79.01g),略高于FS+BC处理(95.92g)。不同施肥处理各器官Ndff差异显著,均以果实中的Ndff最高,各器官的Ndff均以BCRF处理最高,FS+BC处理次之,FSA处理最低。BCRF处理显著提高了苹果植株氮素利用率,分别为FSA和FS+BC处理的1.82倍和1.32倍,而~(15)N损失率为36.23%,显著低于FSA处理(57.44%)和FS+BC处理(51.16%),BCRF处理~(15)N主要残留在土壤上层(0—40cm),向深层土壤淋溶损失明显降低。可见,BCRF处理能够保证土壤氮素的稳定供应,提高氮肥利用率,降低氮肥损失。  相似文献   

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