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1.
施肥对稻田生态系统气体调节功能及其价值的影响   总被引:9,自引:0,他引:9       下载免费PDF全文
 该文以2002年在上海市奉贤县五四农场进行的稻田生态系统田间实验为基础,对尿素施用对稻田生态系统气体调节功能(释放O2和温室气体调节)的影响进行研究。研究结果表明:1)在水稻(Oryza sativa)生长期间,施加尿素能显著增加稻田日O2释放量及其价值量;2)在水稻生长期间,施加尿素稻田综合CO2的通量及其价值并不比未施肥稻田存在显著优势,尿素施用能明显增强稻田N2O排放通量,降低稻田CH4排放通量。尿素施用对温室气体调节具有正效应,促进稻田对温室气体吸收。  相似文献   

2.
以直播稻为对象,在上海农场进行了猪场处理废水基肥和穗肥不同用量组合的田间试验,研究猪场废水对水稻磷养分吸收利用与氮磷生态化学计量的影响。结果表明:施用猪场处理废水对直播水稻干物质积累、植株磷含量有显著影响。水稻拔节期、齐穗期和成熟期干物质积累量以及产量随废水施用量增加而增加;拔节期、齐穗期和成熟期植株、秸秆及籽粒含磷量与废水用量皆呈显著正相关;不同施肥处理在整个生育期水稻植株N∶P为3.13~5.10,在拔节期、齐穗期、成熟期分别为3.13~4.83、3.42~4.35、3.98~5.10,总体上以齐穗期N∶P值较低;成熟期秸秆N∶P值变动较大(4.30~6.57),而籽粒变化较小(3.85~4.37);齐穗期植株、成熟期秸秆、籽粒和植株的N∶P值与废水施用总量皆呈显著正相关,表明废水施用对直播稻氮素吸收的促进作用大于磷素。  相似文献   

3.
以直播稻为对象,在上海农场进行了猪场处理废水基肥和穗肥不同用量组合的田间试验,研究猪场废水对水稻磷养分吸收利用与氮磷生态化学计量的影响。结果表明:施用猪场处理废水对直播水稻干物质积累、植株磷含量有显著影响。水稻拔节期、齐穗期和成熟期干物质积累量以及产量随废水施用量增加而增加;拔节期、齐穗期和成熟期植株、秸秆及籽粒含磷量与废水用量皆呈显著正相关;不同施肥处理在整个生育期水稻植株N∶P为3.13~5.10,在拔节期、齐穗期、成熟期分别为3.13~4.83、3.42~4.35、3.98~5.10,总体上以齐穗期N∶P值较低;成熟期秸秆N∶P值变动较大(4.30~6.57),而籽粒变化较小(3.85~4.37);齐穗期植株、成熟期秸秆、籽粒和植株的N∶P值与废水施用总量皆呈显著正相关,表明废水施用对直播稻氮素吸收的促进作用大于磷素。  相似文献   

4.
休闲期深翻覆盖对旱地小麦水氮利用效率和产量的影响   总被引:1,自引:0,他引:1  
白冬  高志强  孙敏  赵维峰  邓妍  李青 《生态学杂志》2013,32(6):1497-1503
采用大田试验研究了旱地小麦休闲期不同时间深翻、不同材料覆盖对植株氮素吸收和转运分配、水分和氮利用效率的影响.结果表明:前茬小麦收获后45 d深翻覆盖较15d提高了拔节期、孕穗期、成熟期植株含氮率,提高了各生育时期植株氮积累量和各生育阶段氮吸收速率,提高了花前氮素转移量、转移率,提高了液态地膜覆盖和不覆盖条件下花前氮素转运对籽粒氮的贡献率,提高了籽粒氮积累量及其所占的比例,降低了叶片、茎秆、颖壳+穗轴中氮积累量所占的比例,且均以采用渗水地膜覆盖效果较好;前茬小麦收获后45 d深翻覆盖较15 d增加了产量和水分利用效率,提高了氮素吸收效率、氮素生产效率.总之,休闲期等雨后深翻覆盖有利于植株氮素吸收、积累,有利于花前植株中贮存氮素向籽粒的转移,促进籽粒中氮素积累,降低其他器官中的氮素,最终提高产量、水分利用效率、氮素吸收效率及氮素生产效率,且以渗水地膜覆盖效果较好.  相似文献   

5.
施氮量对小麦氮磷钾养分吸收利用和产量的影响   总被引:36,自引:7,他引:29  
高产条件下研究了不同施氮量对小麦植株氮、磷、钾养分吸收利用及籽粒产量的影响.结果表明,适量施氮可促进小麦植株对氮素的吸收与积累,较高的施氮量不利于起身期之后的氮素积累,致使成熟期小麦氮素积累量未能显著提高;与不施氮肥相比,施氮显著提高植株磷素积累量;随施氮量增加,植株磷素积累量增加不显著;施氮量增加促进小麦生育前期对钾素的吸收积累,在生育后期降低植株钾素的流失.随施氮量增加,籽粒氮素含量呈先增后降的趋势,氮素向籽粒的分配比例趋于降低,植株氮素利用效率无显著变化,氮素收获指数下降;不同施氮处理之间籽粒磷素含量和钾素含量无显著差异,施氮量增加,营养器官钾素含量、钾素积累量和钾素向叶片的分配比例均呈增加趋势;同时,磷素和钾素利用效率降低;不同施氮处理间,植株磷素、钾素收获指数无显著差异.籽粒产量随施氮量增加呈先增加后降低的趋势,以施氮195 kg/hm2的处理籽粒产量最高.  相似文献   

6.
稻田氮肥管理是水稻高产栽培的重要环节。解析氮肥运筹对水稻植株氮代谢生理生化特征及稻田氮素迁移转化特性的影响,对提高水稻氮肥利用效率及增加水稻种植效益有重要意义。本文综述了不同氮肥运筹模式对水稻植株氮代谢过程中相关转运蛋白的表达及氮同化关键酶活性的影响,分析了氮代谢与碳代谢相互影响的作用机制,并对施氮模式与施用方法影响稻田土壤各形态氮素的循环转化和稻田氮素损失的影响机制及可能的调控途径作了总结。我们认为,当前的研究对氮肥运筹对水稻氮代谢影响的生理层面已经有了较明确的认识,但在分子及基因层面的研究尚显缺乏;田间氮肥管理的改善对提高稻田氮素利用率起到了明显的促进作用,但在实际应用时仍存在较多问题,需进一步改进。未来的研究应着重于继续深入挖掘水稻的氮代谢潜力,采取更高效的田间氮肥管理措施,从而进一步提高稻田氮素利用效率。  相似文献   

7.
赵俊晔  于振文 《生态学报》2006,26(3):815-822
在土壤肥力不同的两块高产田上,利用15N示踪技术,研究了高产条件下施氮量对冬小麦氮肥吸收利用、籽粒产量和品质的影响,及小麦生育期间土壤硝态氮含量的变化.结果表明:1.成熟期小麦植株积累的氮素73.32%~87.27%来自土壤,4.51%~9.40%来自基施氮肥,8.22%~17.28%来自追施氮肥;随施氮量增加,植株吸收的土壤氮量减少,吸收的肥料氮量和氮肥在土壤中的残留量显著增加,小麦对肥料氮的吸收率显著降低;小麦对基施氮肥的吸收量、吸收率和基施氮肥在土壤中的残留量、残留率均显著小于追施氮肥,基施氮肥的损失量和损失率显著大于追施氮肥;较高土壤肥力条件下,植株吸收更多的土壤氮素,吸收的肥料氮量较少,土壤中残留的肥料氮量和肥料氮的损失量较高,不同地块肥料氮吸收、残留和损失的差异主要表现在基施氮肥上.2.当施氮量为105 kg/hm2时,收获后0~100cm土体内未发现硝态氮大量累积,随施氮量增加,0~100cm土体内硝态氮含量显著增加;施氮量大于195 kg/hm^2时,小麦生育期间硝态氮呈明显的下移趋势,土壤肥力较高地块,硝态氮下移较早,下移层次深.3.随施氮量增加,小麦氮素吸收效率和氮素利用效率降低,适量施氮有利于提高成熟期小麦植株氮素积累量、籽粒产量和蛋白质含量;施氮量过高籽粒产量和蛋白质含量不再显著增加,甚至降低;较高土壤肥力条件下,获得最高籽粒产量和蛋白质含量所需施氮量较低.  相似文献   

8.
溶解氧(dissolved oxygen,DO)在稻田氮素循环和水稻生长发育中发挥了重要作用,深入研究溶解氧对稻田氮素转化和水稻氮代谢的影响,对减少稻田氮素流失和提高水稻氮素利用具有重要意义。近年来,研究已阐明了溶解氧对土壤固氮作用、氨化作用、硝化作用和反硝化作用等生物化学过程以及土壤微生物多样性的影响;大量研究也表明,溶解氧在水稻氮素吸收与利用中起到了关键作用。本文系统介绍了溶解氧浓度对微生物群落结构和活性的影响及其与稻田不同形态氮素间转化的关系,综述了水稻根系生长特性、氮素吸收和同化及相关氨基酸代谢对溶解氧浓度响应机理的最新研究进展,并针对现阶段稻田氧营养研究提出了水稻生产中存在的问题及研究展望。  相似文献   

9.
为了明确太湖地区高产稻田适宜施氮量,以提高水稻氮素利用效率,减少稻田氮素流失对农业生态环境的影响,本研究在调查当地农户稻田氮肥施用量的基础上,通过秸秆还田和基肥机械深施,设置不施氮肥(N0)为空白对照,当地习惯施氮水平360 kg·hm-2(N1),以及在此基础上减少氮肥施用量的10%(N2)、20%(N3)、30%(N4)等5个处理,研究其对水稻氮素利用率的影响。结果表明:氮肥减量使水稻不同生育时期稻田土壤速效氮含量明显下降;在当地习惯施氮量水平的基础上,减少10%的氮肥施用量,使水稻产量增加1.9%;与当地习惯施氮量水平相比较,N2处理水稻氮素累积量差异不明显,N3和N4处理则表现为显著下降;随着氮肥减量幅度的增加,水稻氮素籽粒生产效率逐渐增高;在当地习惯施氮量水平的基础上,通过基肥机械深施和秸秆还田等技术的应用,减少10%的氮肥施用量,能够保证水稻高产稳产,并使水稻氮肥农学利用率、氮肥吸收利用率、生理利用率以及氮肥偏生产力均得到明显提高。  相似文献   

10.
不同施氮水平下稻田铵态氮和硝态氮淋溶量的动态模拟   总被引:1,自引:0,他引:1  
借助自行设计的直管型和弯管型渗漏计,研究水稻生长期间不同施氮水平下稻田犁底层渗漏水中铵态氮和硝态氮的动态变化,以探寻氮素的渗漏损失规律;利用系统动力学模拟软件Vensim构建氮素转化、循环模型,模拟了氮素在水稻、土壤和水中的迁移转化过程,用2003年杭州余杭区稻田0、75、150、225、300、375 kg N·hm-2氮素水平试验结果来校准模型系数,并用2007年相同氮素水平下试验田大田数据来验证模型.从稻田不同供氮水平分次施肥后渗漏水中氮浓度的模拟结果与实测值的比较可知,直管和弯管型渗漏计的模拟数据与实测值的拟合程度较好,说明模型模拟结果可靠,具有应用价值.  相似文献   

11.
植物氮素吸收与转运的研究进展   总被引:1,自引:0,他引:1  
钟开新  王亚琴 《广西植物》2011,31(3):414-417
氮素是植物生长发育所必须的基本营养元素,在植物生长发育和形态建成中起着重要作用.土壤中植物所利用的主要氮素形式是铵态氮和硝态氮,在进化过程中植物形成不同的吸收和转运铵态氮和硝态氮的分子机制.该文对植物吸收与转运氮素的生理学特征、分子机制及涉及的相关基因等研究进行概括性综述,为研究水稻中氮素吸收、转运相关基因提供理论基础...  相似文献   

12.
Summary Immobilization and mineralization of the tracer nitrogen (K15NO3) applied to the soil together with several organic matters during their decomposition was investigated in incubation experiments.After incubation for three months at 30°C, the decomposition rates of rice straw, hardwood bark, sawdust, softwood bark and peat moss were 41, 15, 7, 5, and 5%, respectively. After incubation for three months at 30°C, 100 and 80% of the fertilizer nitrogen were immobilized in the treatment with 2.0% of rice straw and sawdust carbon, respectively. These resulted in the lowered uptake of the fertilizer nitrogen by plants. In case of peat moss and barks, the amount of fertilizer nitrogen which transformed to the organic nitrogen fractions was quite small and the plant uptake of the nitrogen was hardly affected. Remineralization of the immobilized nitrogen was clearly observed after 2 months' incubation in case where rice straw carbon was added to the extent of 0.5 and 1.0%, but it was not observed in case where other organic matter carbon was added.The data showed that peat moss and barks were highly resistant to the action of microorganisms. As a results the immobilization process of the fertilizer nitrogen incubated with these organic matter was quite slow.  相似文献   

13.
陆地生态系统植物的氮源及氮素吸收   总被引:9,自引:0,他引:9  
氮是植物生长发育所必需的营养元素,也是其主要的限制因子之一.陆地生态系统植物所需氮的来源及植物对氮素的吸收利用均受控于其种类和生长环境.环境条件的改变,一方面可能改变植物生长区原有氮的形态、浓度、赋存方式等,从而改变氮对植物的供给状况;另一方面可能引起植物生长区土壤质量、水分利用状况、光照等的改变,从而产生耦合现象,直接影响植物的生理生态特性,使植物对氮素的吸收利用发生改变,导致植物生长区的种群类型及物种多样性发生改变,并直接影响到生态系统的功能及演替.本文主要对陆地生态系统中高等植物生长发育所需氮素的来源及植物对氮素吸收利用过程中的影响因素进行了综述和讨论,并结合国内外在该领域的研究现状对其研究前景进行了展望.  相似文献   

14.
Summary A pot experiment in the field showed that addition of ammonium sulfate increased the uptake of soil nitrogen. A-value was found to be independent of the rate of nitrogen application. The rice plant took up about 13 percent of the nitrogen in rice straw which was incorporated into the soil when nitrogen fertilizer was not added, and about 15 percent when 50 ppm N was added. Addition of different levels of fertilizer did not affect the release of immobilized fertilizer nitrogen. Recovery of fertilizer by the rice plant was low when nitrogen was added as basal (broadcast). Recovery was improved by incorporating fertilizer nitrogen before transplanting. Recovery of fertilizer nitrogen when topdressed at reproductive stages was much higher than when applied as basal. A fairly large portion of fertilizer nitrogen was immobilized into the soil. Availability of immobilized nitrogen in the soil appeared low. re]19751117  相似文献   

15.
Summary The nitrogen supplying power of rice straw for flooded rice production was studied in three field experiments. The net nitrogen immobilization was observed to be 0.54 per cent of the original dry weight of the straw as determined by grain yield responses over single growing seasons. Straws with higher nitrogen concentrations increased grain yield on nitrogen deficient soil, and straws with lower nitrogen concentrations depressed yield.Supplemental nitrogen applied in either urea or vetch resulted in yield increases in the presence of both high and low nitrogen straws. No significant immobilization of supplemental nitrogen was found to result from straw applications.The net nitrogen immobilization percentage obtained in these experiments is approximately one-third the average of values obtained by other workers. We infer that the anaerobic environment of the flooded rice field and its associated bacterial microflora are the cause for the lesser nitrogen requirement for the field decomposition of rice crop residues.  相似文献   

16.
Knowledge of determining factors for nitrogen uptake preferences and how they are modified in changing environments are critical to understand ecosystem nitrogen cycling and to predict plant responses to future environmental changes. Two 15N tracer experiments utilizing a unique differential labelled nitrogen source were employed in both African savannas and greenhouse settings. The results demonstrated that nitrogen uptake preferences were constrained by the climatic conditions. As mainly indicated by root δ15N signatures at 1:1 ammonium/nitrate ratio, in the drier environments, plants preferred nitrate and in the wetter environments they preferred ammonium. Nitrogen uptake preferences were different across different ecosystems (e.g. from drier to wetter environments) even for the same species. More significantly, our experiments showed that the plant progeny continued to exhibit the same nitrogen preference as the parent plants in the field, even when removed from their native environment and the nitrogen source was changed dramatically. The climatic constraint of nitrogen uptake preference is likely influenced by ammonium/nitrate ratios in the native habitats of the plants. The constancy in nitrogen preference has important implications in predicting the success of plant communities in their response to climate change, to seed bank use and to reforestation efforts.  相似文献   

17.
稻鸭共作对稻田氮素变化及土壤微生物的影响   总被引:5,自引:0,他引:5  
李成芳  曹凑贵  展茗  汪金平 《生态学报》2008,28(5):2115-2115~2122
通过田间试验研究稻鸭共作生态系统中土壤与田面水全N、无机N的动态变化及水稻吸N的规律和土壤微生物数量的变化规律.结果表明,(1)与常规稻作相比,稻鸭共作稻田土壤、田面水全N含量略有提高,土壤、田面水NH 4含量和水稻含N量显著提高,而土壤、田面水NO-3含量无明显变化;(2)稻鸭共作极显著提高了水稻总吸N量,高于常规稻作17.8%;相关分析显示,水稻吸N量与NH 4含量呈一元二次方程式关系,达到显著或极显著相关.(3)与常规稻作相比,稻鸭共作能显著提高土壤微生物数量,其中细菌数最多,放线菌次之,真菌最少.  相似文献   

18.
The effects of paraquat were studied at 4.7 kg a. i./ha and of glyphosate at 9.4 kg a. i./ha on the weight loss and rate of oxygen uptake by stems of barley straw, incubated on the soil surface for various periods of time, and stems and leaves of wheat straw on the soil surface or covered with a shallow layer of soil. In general, paraquat reduced weight loss and frequently oxygen uptake. Glyphosate normally had no effect but occasionally it was stimulatory. However, in isolated instances, paraquat was inactive and glyphosate slightly inhibitory. Leaves decayed faster than stems. Burial, as well as the addition to straw of leaf protein, Nitrochalk, urea and clover plants increased decomposition in all treatments, but nitrogen amendments were less effective in those with paraquat. For example, urea enhanced weight loss after 21 wk from 19 to 34% of the initial weight in unsprayed wheat straw, from 12 to 24% in paraquat-treated and from 20 to 37% in glyphosate-treated straw, indicating that conditions stimulating decomposition may attenuate but not entirely eliminate the inhibitory effects of paraquat. A repeated addition of nitrogen to straw in various stages of decay increased oxygen uptake in all treatments but least in the paraquat-treated straw, implying that a complete recovery from the initial curtailment of microbial activity, brought about by this herbicide, did not occur. Although the concentration of paraquat used was nine times greater than the minimum recommended for field application, the degree of inhibition observed in these laboratory experiments was probably not sufficiently great to be of marked economic importance.  相似文献   

19.
After the accident of the Fukushima 1 nuclear power plant in March 2011, radioactive cesium was released and paddy field in a wide area of Fukushima Prefecture was contaminated. To reduce radioactive Cs uptake by rice, it is important to understand factors that affect Cs uptake in rice. Here we describe our study in 2011 and 2012 to investigate Cs concentration in two rice cultivars, Koshihikari and Hitomebore, the top two cultivars in Fukushima prefecture, grown under different fertilizer conditions in the contaminated paddy field. Our study demonstrated that high nitrogen and low potassium conditions increase Cs concentrations both in straw and brown rice.  相似文献   

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