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1.
The physiological and biochemical mechanisms of organogenesis in Equisetum arvense have not been clarified yet. However, high concentrations of nitrogen have been shown to exert an inhibitory effect on in vitro tuber formation in E. arvense. The aim of this study was to clarify the influence of the form of nitrogen in a medium on in vitro organogenesis in E. arvense. Single‐node segments of E. arvense rhizomes were cultured in the test medium. The NH4‐N and NO3‐N concentrations of the test medium, respectively, were adjusted by adding NH4H2PO4 and KNO3 to the basal medium. The basal medium was a nitrogen‐free, modified form of White's medium. Vegetative shoots were newly formed in the test tubes for concentrations of NO3‐N and NH4‐N that exceeded 56 mg L?1. However, no rhizome was formed at NH4‐N concentrations exceeding 28 mg L?1. The number of newly formed tubers decreased at an NH4‐N concentration of 28 mg L?1 and no tuber was formed at NH4‐N concentrations exceeding 56 mg L?1. In summary, although the presence of NO3‐N in the medium did not inhibit in vitro rhizome or tuber formation in E. arvense, the presence of NH4‐N in the medium exerted a strong inhibitory effect on the in vitro formation of both of these organs.  相似文献   

2.
局部根区水氮耦合对玉米幼苗养分吸收利用的影响   总被引:2,自引:0,他引:2  
研究局部根区水分胁迫下不同氮形态与供应部位对玉米幼苗养分吸收利用的影响。氮设三种形态(50%NO3--N+50%NH4+-N;NO3--N;NH4+-N)。采用分根培养的方法,用聚乙二醇(PEG6000)模拟水分胁迫。PEG和氮只加入到分根装置的一侧根室,形成局部根区水分胁迫下水氮同区、水氮异区六个处理。收获时测玉米幼苗植株生物量和各养分浓度。结果表明,水氮同区比水氮异区更利于玉米幼苗生长,氮、磷、钾、钙、镁、铁总含量和增量都高于相应氮形态的水氮异区处理。不同氮形态相比,混合氮有利于促进玉米幼苗生长和增强氮的吸收能力;相对于铵态氮,硝态氮促进了钾、钙、镁、铁总量和增量的增加;养分利用效率基本上与其地上部分该养分浓度的高低呈负相关。  相似文献   

3.
Although preference for NH4+, NO3? or a combination of the two often differs among species, we know little about the responses of invasive plants to different inorganic N forms. Furthermore, many studies have suggested that an increase in N availability may facilitate further invasions. However, most of these studies predicted the positive feedback without considering the preference for N forms of invasive plants. Therefore, we cultivated four common invasive species (Mikania micrantha, Ipomoea cairica, Wedelia trilobata and Bidens pilosa) in South China with hydroponic media containing different forms of N (i.e. NO3?, NH4NO3 and NH4+) at equimolar concentrations. Our results showed that the N forms significantly affected the growth, biomass allocation and physiological traits of the plants. All four invasive plants supplied with NO3? alone had better performance and greater allocation to root biomass than did plants that were supplied with NH4+ alone. Moreover, the photosynthetic rate, pigment content and photosystem II activity of plants supplied with NO3? or NH4NO3 were significantly higher than those of plants supplied with NH4+alone. The results suggested that all four invasive plants preferred NO3? rather than NH4+, and changes in NO3? played an important role in furthering the invasions of these plants than did changes in NH4+. Our results implied that decreasing NO3? may be a useful tool for controlling and managing invasive plants preferring NO3?. In addition, this study highlighted the importance of considering plant N form preference to better understand plant invasions.  相似文献   

4.
The effect of plant-induced changes of soluiion pH upon the adsorpiion of s-lriazme herbicides in either K-monimorillonite or Na - bentonite ciay-nutrieni suspensions and iheir phyioioxi- city in soil was studied. ln clay-NO3? suspensions (wiih NO3- as the nitrogen source) maize planls (Zea may L.) caused a marked rise in solution pH and this resulted in a rapid descrp- tion of bound atrazine or simazine. in clay-NHa + suspensions (with NH4 + as the nitrogen source) the lowering of solution pH through plant aclivity resulted in jnereased adsorption of these herbicides. In soil, changes of rhizosphere pH were also found when either KNO3 or (NH4) 2SO4 were supplied as fertilizers, bul it was nol established whether ihis had a direct effeci upon the significant increase in weight of (NH4)2SO4 treated wheat (Tri- ticum aestivum L.) planls at low herbicide concentrations compared with KNO3 treated wheat plants.  相似文献   

5.
为探明不同施肥方式对旱作麦田土壤N2O排放的影响,以不施肥(CK)为对照,设置单施有机肥(M)、单施无机肥(N)、有机-无机肥配施(MN)3种施肥方式,采用静态箱-气相色谱法对春小麦地土壤N2O排放通量进行测定,并对其影响因子(NO-3-N、NH+4-N、土壤温度、土壤含水量)和春小麦产量进行同期测定。结果表明:春小麦地在整个生育期内表现为N2O排放源,各处理均在施肥后出现N2O排放峰。不同处理土壤N2O累积排放量表现为N>MN>M>CK,N2O净损失量(以氮计算)为1.175 8~1.428 kg·hm-2,占当季施氮量的1.12%~1.36%,有机-无机肥配施降低了氮肥中氮素以气态形式的损失量。MN、N、M处理春小麦产量分别较CK处理增加了45.1%、31.0%、18.8%,各处理土壤NO-3<...  相似文献   

6.
BACKGROUND: Recently, two fungal proteins with apparent molecular masses of 11 and 15 kDa and insecticidal activity against Ceratitis capitata (Wied.) have been purified from the crude soluble protein extract (CSPE) secreted by the entomopathogenic fungus Metarhizium anisopliae (Metsch.) Sorokin (strain EAMa 01/58‐Su) in Adamek's liquid medium. The feasibility of culturing this strain in fermentation facilities in order to harvest and formulate the insecticidal proteins for C. capitata control is mainly dependent on the ability to produce high concentrations of the active proteins at a reasonable cost. RESULTS: These studies report that, in batch cultures of EAMa 01/58‐Su strain, the carbon (C) and nitrogen (N) ratios and sources are important considerations with respect to fungal biomass production, blastospore yield and secretion of insecticidal proteins against C. capitata adults. The data indicate that the type and concentration of N source in the medium influence the production of insecticidal protein and thus the toxicity of the CSPEs. The electrophoretic analysis suggests that the monomer of 11 kDa plays an important role in the insecticidal effect described. Concerning biomass production, no clear differences were found between media with different C and N sources and C:N ratios in total biomass production at day 7. Conversely, important differences were found among the media in terms of blastospore yields. CONCLUSIONS: By optimising the culture media, the insecticidal effect of the CSPE against C. capitata can be improved. In the CSPE from G40:P20 (40 g L?1 glucose and 20 g L?1 peptone in dH2O), the LC50 and the LT50 were 7 and 4.5 times lower than in the CSPE obtained from Adamek. Copyright © 2010 Society of Chemical Industry  相似文献   

7.
Soft rot of Chinese cabbage is a disease of great economic importance to the State of Pernambuco, Brazil. The present study aimed to evaluate the effect of two calcium sources in different concentrations (calcium nitrate [Ca(NO3)2] at 0, 0.15 and 0.3 g l?1 and calcium chloride (CaCl2) at 0, 1 and 5 g l?1) that were applied through two methods (leaf spraying and soil drenching) on the control of soft rot. Further, it aimed to analyze calcium absorption by the plant and to determine calcium’s role in leaf and cell structure using microscopy. Ca(NO3)2 applied by both methods was effective in controlling soft rot caused by Pectobacterium carotovorum subsp. carotovorum, as it reduced the disease by up to 48.5 % when sprayed onto the leaves (0.15 g l?1). A significant increase in the leaf calcium content was observed only in the plants that were sprayed with higher doses of Ca(NO3)2 and CaCl2. In all of the calcium treatments, light microscopy analyses revealed an increased number of chloroplasts and improved structuring of the palisade parenchyma, while transmission electron microscopy analyses revealed an increased cell wall thickness that was especially evident for the 0.15 g l?1 Ca(NO3)2 treatment applied by leaf spraying and soil drenching.  相似文献   

8.
为了研究滴灌施肥条件下土壤水、氮的运移分布规律,本文通过室内土柱滴灌水氮入渗试验,研究了滴灌结束时及再分布过程中土壤水、氮的运移变化规律;同时用HYDRUS软件建立了土柱滴灌水氮入渗的几何模型,用来模拟滴灌土壤水氮运移过程。对试验及模拟中12个观测点测得的土壤含水率、土壤铵态氮、硝态氮质量浓度进行对比分析,结果表明:土壤含水率模拟值与实测值的相对误差变化在10%以内;土壤铵态氮、硝态氮质量浓度的模拟值与实测值变化范围在20%以内。滴灌结束时土体剖面内土壤含水率随距滴头距离的增大而减小,再分布72 h土层25~30 cm土壤含水率增大到0.2 cm3·cm-3,120 h后土体剖面内土壤含水率较滴灌结束时下降了18%。土壤铵态氮质量浓度主要分布于距滴头20 cm的范围;24 h土壤铵态氮质量浓度最大,且随着时间的推移逐渐减小,到120 h时减少了40%;各观测点24 h至120 h土壤硝态氮质量浓度随着时间的推移逐渐增大,且硝态氮质量浓度在滴头20 cm的范围内由0.442 mg·cm-3增加到1.2 mg·cm-3。各观测点24 h土壤硝态氮质量浓度在空间分布上差异不大,其中观测点1,3,6,8,5的土壤硝态氮质量浓度分别为0.437,0.467,0.451,0.482 mg·cm-3和0.447 mg·cm-3,差值均小于0.05 mg·cm-3;48 h后土体剖面内土壤硝态氮质量浓度空间分布随离滴头距离的增加而减小,垂直方向上从距滴头5 cm的观测点1到距滴头25 cm的观测点8减少了53%。依据研究结果,可用数值模型模拟滴灌施肥条件下土壤水氮运移的变化规律。  相似文献   

9.
青海高原长期复种绿肥毛叶苕子对土壤供氮能力的影响   总被引:3,自引:0,他引:3  
利用绿肥的培肥效应,小麦收获后复种绿肥毛叶苕子。在复种绿肥毛叶苕子的情况下,研究后茬作物油菜生育期土壤全氮、碱解氮、硝态氮、铵态氮的时空变化。结果表明,油菜生育期0~100 cm土层全氮、碱解氮、铵态氮积累量均表现为有毛叶苕子处理高于无毛叶苕子处理,硝态氮积累量均表现为有毛叶苕子处理低于无毛叶苕子处理。毛叶苕子与化肥配施效果好,毛叶苕子施用对提高和保持土壤全氮、碱解氮、铵态氮含量,相比CK提高9.54%~18.33%,相比纯施化肥提高0. 94%~19. 28%。化肥配施毛叶苕子处理较单施化肥土壤硝态氮含量降低7.01%~38.51%。绿肥引入小麦(油菜)种植体系后,对小麦(油菜)生长季内土壤氮库、氮素循环及培肥土壤产生一定影响。  相似文献   

10.
Some possible causes of “take-all decline”, the decrease in the severity of attack by Gaeumannomyces graminis on cereals after several years' consecutive culture, are discussed. The possible relationships between the NO3?–N:NH4+–N ratio in the rhizosphere, populations of rhizosphere bacteria and the incidence of take-all are considered.  相似文献   

11.
为研究节水灌溉条件下穴施尿素、滴灌施肥对土壤铵态氮、硝态氮和碱解氮运移的影响,2019年在甘肃农业大学遮雨棚内开展施肥与灌溉试验,采用穴施尿素和滴灌施肥两种施肥方式,施纯氮量240 kg·hm-2和180 kg·hm-2,充分灌溉量和局部根区滴灌量分别是14 L和7 L。测定在距离滴头水平30 cm、垂直40 cm范围内土壤铵态氮、硝态氮和碱解氮含量,分析施肥与灌溉后土壤氮素转化及迁移特征。结果表明,土壤硝态氮更容易随灌水发生水平迁移,而土壤铵态氮更容易向土壤纵深迁移。土壤氮素含量的空间变异大小依次为:硝态氮>铵态氮>碱解氮;土壤硝态氮、铵态氮和碱解氮含量的平均变幅分别为32%~40%、26%~37%和6%~12%。局部根区滴灌土壤硝态氮含量的空间变幅比充分灌溉减小16%~20%。穴施尿素土壤铵态氮含量的空间变幅比滴灌施肥减小12%~28%。穴施尿素和局部根区滴灌调控土壤氮素转化速率,赋予肥料养分缓释性能,从而提高土壤氮素供应能力。因此,穴施尿素结合局部根区滴灌是较优的施肥与灌溉方式。  相似文献   

12.
溴虫腈在不同溶剂中的光化学降解   总被引:3,自引:3,他引:0  
研究了高压汞灯光源下溴虫腈在不同溶剂中的光化学降解特性及其影响因素。在室内模拟条件下,初始质量浓度为2 mg/L的溴虫腈在纯水中的光解半衰期为25.86 min,在1~10 mg/L范围内,其光解速率随初始浓度的增大而降低;溴虫腈在pH值为5、7和9的缓冲溶液中的光解半衰期分别为42.52、24.49和32.39 min,即其在中性条件下光解最快;不同形态含氮离子(NO2-、NO3-、NH4+)对溴虫腈的光解均表现为抑制作用,且在离子质量浓度<20 mg/L时,NO3-、NO2-的抑制作用较强,≥20 mg/L时则NH4+的抑制作用较强;溴虫腈在不同有机溶剂中的光解速率从大到小依次为:正己烷>甲醇>乙酸乙酯>丙酮,其光解速率与有机溶剂的极性大小无关。研究结果可为溴虫腈的环境风险评价提供参考。  相似文献   

13.
C/N比对好氧堆肥中NH3挥发损失和含氮有机物转化的影响   总被引:3,自引:0,他引:3  
利用牛粪和不同比例玉米秸秆的混合,设置5个不同C/N比处理(T1=15、T2=20、T3=25、T4=30、T5=35),研究其对条垛式好氧堆肥过程中的NH_3挥发损失和含氮有机物转化的影响。结果表明:在肥堆前24 d有11.1%~23.1%的总氮损失,堆体C/N比越低,总氮损失率越高。堆肥结束时,T1~T5处理的总氮损失率为10.1%~24.1%,其中由NH_3挥发造成的氮损失占总氮损失的30.9%~40.5%。堆肥过程的NH_3挥发主要发生在升温期和高温期,此期的NH_3挥发量占总挥发量的95%以上,是总氮损失的主要途径。堆肥前6 d各处理堆体铵态氮积累并达到最高值,导致pH值迅速升高,是造成堆肥NH_3挥发的直接原因。堆体C/N比越低,pH值越高,NH_3挥发量越大,由此造成的氮损失占总氮损失的比例越大。堆肥材料总氮的90%以上为有机氮,其降解主要发生在堆肥前24 d,堆体初始C/N比越低,有机氮矿化越快。不同有机氮组分的降解速率不同,以氨基酸态氮和酰胺态氮的降解为主。当堆体初始C/N比低于25时,堆肥材料中氨基酸态氮和酰胺态氮等有机态氮快速降解产生大量的铵态氮,由此导致堆体pH值的迅速升高,是导致堆肥过程中大量NH_3挥发和氮素损失的主要原因。  相似文献   

14.
For the first time in sterile nutrient media in the absence of the host plant, different forms and rates of nitrogen compounds were screened for their effect onS. hermonthica Benth. shoot development beyond seed germination. There was no shoot formation beyond the inoculation stages whenS. hermonthica germlings were grown in media devoid of nitrogen source. In culture media containing some nitrogen sources, healthy shoots were formed. Increasing concentrations of KNO3, NaNO3, Ca(NO3)2, Mg(NO3)2 and asparagine resulted in a significant increase inS. hermonthica shoot development. Inversely, increasing concentrations of (NH4)2SO4, NH4H2PO4, NH4Cl and urea led to increasing significant reduction ofS. hermonthica shoot development. The amino acids, glycine and asparagine supported reduced shoot development ofS. hermonthica, indicating that organic nitrogen cannot replace inorganic nitrogen forStriga growth. The ammonium nitrogen compounds, (NH4)2SO4 and NH4H2PO4, suppressed further shoot elongation and total dry weight of 20 and 40 days oldStriga hermonthica plants, in sterile culture media. The organic compounds urea, allylthiourea and thiourea had an effect similar to ammonium compounds. Arginine and glycine on the other hand did not suppress the further development of the parasite. The suppressive effect of nitrogen however, was greater when the parasite was 20 days old than when it was 40 days old. This work provides data to show that some nitrogen compounds reduce the severity ofS. hermonthica attack by direct suppression ofStriga growth and development at the post-germination stage and after shoots have been formed.  相似文献   

15.
The effects of sub‐lethal dose of herbicide and nitrogen fertilizer on crop–weed competition were investigated. Biomass increases of winter wheat and a model weed, Brassica napus, at no‐herbicide treatment with increasing nitrogen were successfully described by the inverse quadratic model and the linear model respectively. Increases in weed competitivity (β0) of the rectangular hyperbola and parameter B in the dose–response curve for weed biomass, with increasing nitrogen were also successfully described by the exponential model. New models were developed by incorporating inverse quadratic and exponential models into the combined rectangular hyperbola with the standard dose–response curve for winter wheat biomass yield and the combined standard dose—response model with the rectangular hyperbola for weed biomass, to describe the complex effects of herbicide and nitrogen on crop–weed competition. The models developed were used to predict crop yield and weed biomass and to estimate the herbicide doses required to restrict crop yield loss caused by weeds and weed biomass production to an acceptable level at a range of nitrogen levels. The model for crop yield was further modified to estimate the herbicide dose and nitrogen level to achieve a target crop biomass yield. For the target crop biomass yield of 1200 g m?2 with an infestation of 100 B. napus plants m?2, the model recommended various options for nitrogen and herbicide combinations: 140 and 2.9, 180 and 0.9 and 360 kg ha?1 and 1.7 g a.i. ha?1 of nitrogen and metsulfuron‐methyl respectively.  相似文献   

16.
Mixed populations of soil microorganisms were enriched in the presence of trifluralin (α,α,α-trifluoro-2,6-dinitro-N,N-dipropyl-p-toluidine) and 180 pure strains were subsequently isolated. About a third were able to liberate 1.5–6% 14CO2 from 0.15 mM [propyl-1-14C]trifluralin after growing for 21 days on a complex medium. One strain, identified as a Candida sp., showed a 14CO2 evolution of 11%. The amount of liberated 14CO2 could not be enhanced by adding small concentrations (<3%) of solvents to the culture, by varying the concentration of trifluralin, or by varying the composition of the complex medium. The Candida sp. was unable to cleave the aromatic ring of trifluralin or to use trifluralin as a sole source of carbon or nitrogen. Only traces (< 1%) of dealkylated trifluralin were accumulated in the culture.  相似文献   

17.
A Pseudomonas sp., isolated from soil, was grown aerobically on para-chloroaniline (PCA) as an only carbon and nitrogen source with a generation time of 15 hr. Balance studies with 14C-ring-labeled PCA revealed that 64% of the carbon of PCA was released as CO2 and 14% was associated with the biomass. For the ring substituents, 60% of the nitrogen and 96% of the chlorine of PCA accumulated in the medium as ammonium and chloride, respectively. The strain was also able to grow on aniline and 3-chloroaniline rapidly and 2-chloroaniline slowly as sole carbon and nitrogen sources.  相似文献   

18.
为获得对黄芪根腐病具有强抗菌活性的生防菌株,采用平板对峙法、抑制菌丝生长速率法对分离于河西走廊盐碱土中的172株放线菌进行拮抗菌的筛选,获得优菌株DA4-4-1,根据其形态、培养特征、生理生化特性和16S rDNA基因序列进行系统发育学分析鉴定,并根据单因素试验与正交试验对培养基条件进行优化。结果表明,菌株DA4-4-1对黄芪根腐病的2种主要致病菌尖孢镰刀菌Fusarium oxysporum和茄腐镰刀菌F.solani均有较好的抑制作用,抑菌圈直径最大分别为20.16 mm和19.33 mm,抑菌率最大分别为34.62%和32.44%。结合16S rDNA基因序列的系统发育分析,将菌株DA4-4-1鉴定为链霉菌属蓝紫链霉菌Streptomyces tuirus。培养基最佳碳源为麦芽糖,氮源为(NH_4)_2SO_4,其优化条件为麦芽糖15 g/L、(NH_4)_2SO_4 0.5 g/L、NaCl 10 g/L、pH 7,在此条件下菌株DA4-4-1的抑菌率可达到86.72%。表明菌株DA4-4-1是1株具有较强抗菌活性的放线菌,具有良好的生物防治和开发应用潜力。  相似文献   

19.
为明确蓄水保墒耕作方式下旱地麦田土壤团聚体稳定性、有机碳及碳组分和全氮及氮组分在不同粒径团聚体组分中的分布特征,深入了解不同耕作方式下土壤碳氮固持机制,以连续3 a(2017—2020年)实施不同耕作方式(免耕、深松、深翻)后冬小麦收获期0~20 cm土壤为研究对象,采用湿筛法测算土壤团聚体的构成与稳定性(R0.25,>0.25 mm团聚体含量;MWD,平均重量直径;GMD,几何平均直径),并测定各粒径团聚体有机碳(SOC)和碳组分(重组有机碳,HFOC;轻组有机碳,LFOC;易氧化有机碳,EOC;可溶性有机碳,DOC;颗粒有机碳,POC)含量、全氮(TN)和氮组分(硝态氮,NO-3-N;铵态氮,NH+4-N;可溶性有机氮,SON)含量,分析了碳氮组分的相关关系。结果显示:(1)免耕和深松处理>2 mm团聚体土壤比例较深翻处理分别提高8.8%和22.1%,免耕有利于增加<0.053 mm粉黏粒比例,较深松和深翻处理分别提高46.4%和27.7%。深松处理较深翻...  相似文献   

20.
为了分析灌溉施肥活动引起的包气带土壤pH值变异特征及其对地球化学条件的响应,通过历时3 a的野外原位灌溉施肥试验,应用不同季节灌前、灌后6 m土层中不同深度的测定资料,系统分析了土壤pH对灌溉、施肥的响应过程,结果表明:各深度pH值呈弱变异性(CV=1.01%~2.28%),与灌溉前相比,灌后土壤pH值的均值和变异系数均呈现明显的变化;灌前包气带各层pH具有强烈的空间自相关性,灌后受水分、基质等相互作用影响,pH的空间自相关性有所减弱,C0/(C0+C)和变程a分别由7.23 m和3.54 m(灌前0 d)减少到3.26 m和2.76 m(灌后第10天)。土壤基质是决定土壤酸碱性的主要因素,在灌溉施肥活动对pH的响应过程中,地球化学条件(土壤含水量、土壤温度、土壤有机质(SOM)、氧化还原电位(RP)等)、土壤基质组成和氮底物浓度(NH+4-N)等的交互作用影响pH的动态。土壤含水量和温度单独对pH影响不显著,两者交互作用对pH有显著影响。引起土壤pH变化的主要变异源为Cl-、土壤有机质(SOM)、NO-3-N、NH+4-N等营养物质和不同空间深度土壤基质的差异,表明灌溉施肥改变了包气带pH地球化学动力场、营养物质和土壤基质的交互作用,引起各深度的生物地球化学反应,控制pH值的空间变异特性。当包气带介质土壤水分变化时,首先营养物氨态氮以分子态或水合态形式被介质吸附,H+得到释放,使得灌后第4天pH值下降。随着氨氧化过程中H+的释放,pH在灌前和灌后第10天和第30天有显著差异。氨的氧化引起硝酸盐含量不断增加,使得硝酸盐对pH值的影响在灌后不断增强,相关系数由0.24(0 d,P<0.05)增加到0.41(30 d,P<0.01),而氨态氮对pH值的影响逐步降低,相关系数由0.43(0 d,P<0.01)降低为0.19(30 d,P>0.05)。  相似文献   

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