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1.
长期施肥对黄棕壤性水稻土氨氧化细菌多样性的影响 总被引:5,自引:1,他引:4
以湖北省农科院长期施肥试验站的黄棕壤性水稻土为研究对象,采用PCR-DGGE方法,研究了氮肥(N)、氮磷(NP)、氮磷钾(NPK)、有机肥(M)、有机肥+氮磷钾(MNPK) 长期施用对土壤氨氧化细菌遗传多样性的影响。结果表明,与长期不施肥处理(CK)相比,长期施肥提高了黄棕壤性水稻土有机质、全氮、微生物量碳氮(SMB-C、SMB-N)含量,并改变了氨氧化细菌的群落结构。其中有机肥与化肥长期配施下氨氧化细菌的多样性高于化肥处理。氨氧化细菌聚类分析表明,稻麦收获后土壤氨氧化细菌DGGE图谱分别聚为一个族群;同一作物收获后,M和MNPK聚为一类,N、NP、NPK和CK聚为一类,后者内部分类在两季作物间有差别。DGGE指纹图谱条带序列分析表明,供试土壤的优势氨氧化细菌为-变形菌纲的亚硝化单胞菌和亚硝化螺旋菌。 相似文献
2.
Fate of 15 N-labeled fertilizer in soils under dryland agriculture after 19 years of different fertilizations 总被引:1,自引:0,他引:1
Bin Liang Xueyun Yang Daniel V. Murphy Xinhua He Jianbin Zhou 《Biology and Fertility of Soils》2013,49(8):977-986
This study addressed if long-term combined application of organic manure and inorganic fertilizers could improve the synchrony between nitrogen (N) supply and crop demand. 15?N-labeled urea was applied to micro-plots within three different fertilized treatments (no fertilizer, No-F soil; inorganic NPK fertilizers, NPK soil; and manure plus inorganic NPK fertilizers, MNPK soil) of a long-term field trial (1990–2009) in a dryland wheat field in the south Loess Plateau, China. After one season of wheat harvest, 15?N use efficiency was 20, 58, and 65 % in the No-F, NPK, and MNPK soil, respectively. During the early wheat growth stage, microbial immobilization of applied 15?N was significantly (P?<?0.05) highest in the MNPK soil (15.3 %), higher in the NPK soil (12.6 %), and lowest in the No-F soil (7.4 %). Of the 15?N immobilized by the soil microbial biomass, 69 % (NPK soil) to 83 % (MNPK soil) was released between the stem elongation and flowering of wheat. Compared with the NPK soil, the MNPK soil had significantly (P?<?0.05) higher grain yield. Our findings highlight that long-term application of organic manure with inorganic fertilizers cannot only improve the synchrony of N supply for crop demand but also increase N use efficiency and grain yield. 相似文献
3.
Fate of residual 15N-labeled fertilizer in dryland farming systems on soils of contrasting fertility
AbstractUp to 50% of nitrogen (N) fertilizer can remain in soil after crop harvest in dryland farming. Understanding the fate of this residual fertilizer N in soil is important for evaluating its overall use efficiency and environmental effect. Nitrogen-15 (15N)-labeled urea (165 kg N ha?1) was applied to winter wheat (Triticum aestivum L.) growing in three different fertilized soils (no fertilizer, No-F; inorganic nitrogen, phosphorus and potassium fertilization, NPK; and manure plus inorganic NPK fertilization, MNPK) from a long-term trial (19 years) on the south of the Loess Plateau, China. The fate of residual fertilizer N in soils over summer fallow and the second winter wheat growing season was examined. The amount of the residual fertilizer N was highest in the No-F soil (116 kg ha?1), and next was NPK soil (60 kg ha?1), then the MNPK soil (43 kg ha?1) after the first winter wheat harvest. The residual fertilizer N in the No-F soil was mainly in mineral form (43% of the residual 15N), and for the NPK and MNPK soils, it was mainly in organic form. The loss rate of residual 15N in No-F soil over summer fallow was as high as 48%, and significantly (P < 0.05) higher than that in the NPK soil (22%) and MNPK soil (19%). The residual 15N use efficiency (RNUE) by the second winter wheat was 13% in the No-F soil, 6% in the NPK soil and 8% in the MNPK soil. These were equivalent to 9.0, 2.0 and 2.2% of applied 15N. The total 15N recovery (15N uptake by crops and residual in 0–100 cm soil layer) in the MNPK and NPK soils (84.5% and 86.6%, respectively) were both significantly higher than that in the No-F soil (59%) after two growing seasons. The 15N uptake by wheat in two growing seasons was higher in the MNPK soil than in NPK soil. Therefore, we conclude that a high proportion of the residual 15N was lost during the summer fallow under different land management in dryland farming, and that long-term combined application of manure with inorganic fertilizer could increase the fertilizer N uptake and decrease N loss. 相似文献
4.
长期不同施肥措施下塿土细菌群落结构变化及其主要影响因素 总被引:2,自引:0,他引:2
5.
长期有机无机肥配施对东北黑土真菌群落结构的影响 总被引:11,自引:5,他引:6
【目的】分析长期有机无机肥配施对土壤真菌丰度、多样性及其群落特征的影响,探讨东北黑土真菌群落变化与施肥的相关性,为进一步调节土壤微生物结构,改善其生态功能提供参考依据。【方法】依托黑龙江省农业科学院36年长期定位试验站,选取4个不同施肥处理:不施肥处理(CK)、有机肥处理(M)、氮磷钾无机肥处理(NPK)和有机肥配施无机肥处理(MNPK)的耕作层土壤为研究对象,以真菌ITS基因为分子标靶借助qPCR技术和Illumina Miseq高通量测序平台,研究不同施肥处理对黑土中真菌群落丰度、多样性和组成的影响,并与土壤化学性质进行偶联分析,揭示群落与施肥的相关性。【结果】长期施用无机肥显著降低土壤pH,而有机无机配施可以有效缓解土壤酸化。NPK处理的ITS基因丰度显著高于MNPK;MNPK处理的细菌/真菌比值(26.91104)显著大于NPK,各处理比值由高到低为MNPK M CK NPK。细菌/真菌比值与土壤pH正相关;MNPK处理的真菌多样性指数值略大于NPK。Ascomycota和Zygomycota为土壤中主要真菌门,不同施肥处理之间真菌组成的相对丰度存在显著差异,对照处理Ascomycota的相对丰度为45.35%,MNPK和NPK处理分别为50.93%和56.16%。有机肥有利于降低病原真菌相对丰度,具有高度侵染性的Cochliobolus在MNPK(0.41%)和M(0.39%)中的相对丰度显著小于CK(3.25%)和NPK(2.08%)。CCA分析表明,土壤理化性质共解释土壤真菌群落结构变化的73.3%,有效磷(贡献量为32.4%,P=0.002)、铵态氮(贡献量为14.8%,P=0.01)和硝态氮(贡献量为16.2%,P=0.048)是3个重要的影响因子。【结论】不同施肥条件下土壤真菌丰度、多样性,以及菌群组成特征不同。与无机肥相比,有机肥无机肥配施能够有效改善真菌群落结构,降低真菌的丰度,增加真菌多样性,并提高土壤pH,减缓土壤酸化。土壤有效磷、铵态氮和硝态氮含量是影响黑土土壤真菌群落结构变化重要因素。 相似文献
6.
长期有机无机肥配施增强黄壤性水稻土有机氮的物理保护作用 总被引:3,自引:2,他引:1
【目的】土壤有机碳物理一化学联合分组方法很好地联系了有机碳的多种稳定机制,成为深入研究土壤有机碳组分特征的有效手段。本研究旨在利用该方法研究长期施肥对黄壤性水稻土有机氮组分特征的影响,为合理施肥提供理论依据。【方法】基于南方黄壤性水稻土18年长期施肥定位试验,分析了不同施肥处理土壤有机氮组分含量及分配比例的变化。试验处理包括不施肥对照(CK)、单施化肥(NPK)、单施有机肥(M)、无机肥配施低量有机肥(0.5MNPK)和无机肥配施高量有机肥(MNPK)。【结果】单施化肥处理(NPK)水稻土总有机氮及各组分有机氮含量与不施肥对照相比无显著变化,施用有机肥处理(M、0.5MNPK、MNPK)则显著提高了土壤总有机氮、游离态粗颗粒、物理保护、化学保护及生物化学保护有机氮含量提高幅度分别为27%~51%、23%~39%、128%~274%、29%~42%和13%~28%,以有机无机肥配施最为显著,但降低了游离态细颗粒有机氮含量。在各个氮组分中游离态颗粒有机氮占总有机氮比例最高(46%~50%)物理保护有机氮比例最低(2%~6%)。与不施肥(CK)及单施化肥处理(NPK)相比,有机肥处理(M、0.5MNPK、MNPK)提高了土壤物理保护有机氮的分配比例。【结论】长期施肥土壤各组分有机氮及总有机氮两两之间均呈显著相关关系只有游离细颗粒有机氮与物理保护有机氮呈负相关关系。长期施用有机肥,极大改善土壤团聚体结构促进游离细颗粒有机氮的包裹,进而提高物理保护有机氮的相对比例,土壤有机氮的物理保护作用相对增强。因此,有机无机肥配施是提高稻田土壤有机氮含量的最有效措施。 相似文献
7.
长期施肥砂姜黑土微生物学特征差异及评价 总被引:1,自引:1,他引:0
【目的】作为安徽省主要中低产土壤类型之一,砂姜黑土不良属性严重制约旱地粮食作物稳产增产,因此本研究利用长期定位试验研究砂姜黑土微生物特征对不同施肥模式的响应,为改善砂姜黑土生态功能、提高地力可持续性等提供理论依据。【方法】基于安徽省杨柳长期定位试验(始于1981年),研究5种施肥模式不施肥(CK)、单施化肥(NPK)、单施有机肥(M)、有机肥与化肥配施(等氮)(MNPK)、有机肥与化肥配施(高氮)(HMNPK)砂姜黑土耕层土壤可培养微生物数量、微生物生物量及酶活性等微生物学性状的变化规律,并通过主成分分析方法对不同施肥模式下的土壤微生态进行综合评价。【结果】与不施肥相比,长期施用有机肥(M、MNPK和HMNPK)可显著增加土壤微生物总数量(15.68~22.80倍),尤其是细菌和放线菌数量二者分别于M、MNPK处理达最高值(30.50×10~5cfu/g和15.50×10~4 cfu/g);长期单施有机肥对土壤真菌有明显抑制作用,单施化肥有利于土壤真菌数量的增加。施用有机肥(M、MNPK和HMNPK)可有效增加土壤微生物生物量碳、氮含量,其中MNPK处理微生物量碳含量增幅最高,达119.74%但与M、HMNPK处理差异不明显,微生物量氮含量增幅达88.46%,显著高于M、HMNPK处理;长期单施化肥仅对微生物量碳含量有提增作用(38.87%)对微生物量氮作用不明显,其对微生物量碳的提增作用显著低于其他施肥处理。长期单施有机肥可显著提高土壤脲酶与转化酶活性,抑制磷酸酶活性,长期单施化肥的作用则相反。用主成分分析方法将9个生物指标降维提取出2个主成分,第一主成分以细菌、放线菌、微生物量碳、微生物量氮、脲酶和转化酶为主要影响因子,第二主成分以为真菌、酸性和中性磷酸酶为主要影响因子分别代表了与碳、氮和磷循环密切相关微生物影响因子。通过综合得分把不同施肥模式下砂姜黑土微生物生态划分为3个等级,一等包括长期有机肥与化肥配施(等氮与高氮),二等包括长期单施有机肥,三等为长期单施化肥与不施肥。【结论】通过综合评价可得砂姜黑土的微生物生态状况在长期有机肥与化肥配施条件下最佳单施有机肥次之而长期单施化肥与不施肥的较差。 相似文献
8.
We did a pot experiment with three different fertilized soils (no fertilizer (No-F), inorganic fertilizer nitrogen, phosphorus and potassium (NPK), manure plus inorganic fertilizer (MNPK)) from a 19-year fertilizer trial. Three N treatments, (1) no N, (2) 100 mg/kg urea-15N (N), (3) 50 mg/kg urea-15N + 50 mg/kg corn straw-N (1/2N + 1/2S), were applied to each soil. The residual soil from the same treatments was used to grow second wheat crop. The MNPK soil had significantly higher nitrogen use efficiency (NUE) in the first growing season, and lower N loss than the NPK, and No-F soils. The 1/2N + 1/2S treatment decreased NUE on each soil, even though the MNPK soil still had highest NUE and lowest N loss. The residual 15N use efficiency (RNUE) in 1/2N + 1/2S treatment of MNPK soil was higher than NPK and No-F soils. We concluded that long-term application of manure plus inorganic fertilizer increased NUE and decreased N loss. 相似文献
9.
不同有机肥施用模式下黄壤稻田根际和非根际土壤有机碳的矿化特征 总被引:1,自引:0,他引:1
【目的】研究长期施用有机肥对土壤有机碳矿化特征的影响,为提高土壤碳库稳定性和培肥土壤提供理论依据。【方法】贵阳黄壤肥力与肥效长期定位试验始于1994年,种植制度为单季水稻。2021年水稻收获后,选取不施肥(CK),平衡施用化肥(NPK),25%和50%有机肥氮替代化肥氮(0.25MNPK、0.5MNPK)和单施有机肥(M) 5个处理的水稻植株,用抖根法采集根际和非根际土壤样品,分析活性碳组分含量,以采集的土样进行室内培养试验,研究有机碳矿化特征。【结果】1)与NPK相比,3个有机肥处理的根际土壤有机碳(SOC)含量提升了26%~43%,非根际土壤SOC含量提高了24%~32%;根际土壤微生物量碳(MBC)含量提升了16%~31%,且比非根际土壤高148%;非根际土壤易氧化有机碳(LOC)含量显著提升了36%~75%;0.5MNPK处理非根际土壤可溶性有机碳(DOC)含量显著提升了54%,且根际土壤的DOC含量平均高于非根际土壤10%。2)有机肥施用可明显增加黄壤稻田根际及非根际土壤有机碳矿化量,非根际土壤有机碳矿化量和矿化率分别高于根际土壤30%和33%;较CK和NPK处理,有机肥施用... 相似文献
10.
有机培肥显著提升矿区复垦土壤活性有机碳含量 总被引:1,自引:0,他引:1
11.
吉林黑土区不同施肥条件下农田土壤动物组成及多样性变化 总被引:14,自引:0,他引:14
采用手捡法和改良干漏斗法(Modified.Tullgren)对吉林黑土区长期定位施肥农田土壤动物群落组成及多样性进行研究。12个施肥小区内共采集108个土壤样品,获得农田土壤动物标本17265只(未鉴定标本187只),隶属3门9纲19目3亚目48科。统计分析结果表明,所采集标本中,营养功能群以植食性(35.53%)为主。其中,大型农田土壤动物捕获的个体数和类群数以撂荒和施氮肥区最多;中小型农田土壤动物则以撂荒和轮作区最多;大型农田土壤动物群落的多样性指数(H′)依次是NP>N>1.5MNPK>PK>M2NPK>CK>NK>NPK>M1NPK>轮作>SNPK>撂荒,中小型农田土壤动物多样性指数依次是M1NPK>M2NPK>SNPK>1.5MNPK>NP>CK>轮作>NK>NPK>PK>N>撂荒。群落相似性指数分析表明,不同施肥之间相似性系数一般较低。农田土壤动物群落组成异质性较高,SNPK与M1NPK、撂荒地处理之间的相似性明显高于其他群落,N与SNPK、M2NPK和轮作之间、CK与1.5MNPK和NPK之间的相似性明显低于其它施肥之间的相似性。反映出不同施肥处理对土壤生态系统内部环境,进而对土壤动物群落产生的影响。 相似文献
12.
采用盆栽试验和短期矿化培养相结合的方法,研究了施入15N标记氮肥(+N)及其与秸秆配施(+1/2N+1/2S)在3种长期(19年)不同培肥土壤(即:No-F,长期不施肥土壤;NPK,长期施用NPK化肥土壤;MNPK,长期有机无机肥配施土壤)中的残留及其矿化和作物吸收特性。结果表明,第一季小麦收获后,+1/2N+1/2S处理下三供试土壤和+N处理下的NPK和MNPK土壤残留肥料氮(残留15N)中有82.6%~95.1%以有机态存,而+N处理下No-F土壤残留15N有47.7%以矿质态存在。经过28 d矿化培养后,与NPK土壤相比,MNPK土壤氮素净矿化量显著增加,增幅为39%~49%;NPK和MNPK土壤残留肥料氮(残留15N)矿化量为1.23~1.90 mg kg-1,占总残留15N的2.78%~5.53%,均显著高于No-F土壤。与+N处理相比,+1/2N+1/2S处理显著提高了3供试土壤氮素净矿化量,但两施肥处理对NPK和MNPK土壤残留15N矿化量无显著影响。+N处理下No-F土壤残留15N的利用率为20%,显著高于NPK(9%)和MNPK(12%)土壤。两种施肥处理下,MNPK土壤残留15N的利用率均显著高于NPK土壤。短期培养期间土壤氮素矿化量和第二季小麦生育期作物吸氮量呈显著性正相关,而残留15N矿化量和第二季小麦吸收残留15N量间无显著性相关关系。长期有机无机配施可以提高土壤残留肥料氮的矿化量及有效性。 相似文献
13.
Muhammad Nadeem ASHRAF Cheng HU Xiangru XU Tariq AZIZ Lei WU Muhammad Ahmed WAQAS Muhammad FAROOQ Xu HU Wenju ZHANG Minggang XU 《土壤圈》2023,33(2):343-354
Soil organic carbon(SOC) and nitrogen(N) mineralization are important biogeochemical processes associated with soil fertility. These processes are influenced by physically, chemically, and biologically stabilized SOC fractions, the mechanisms of which are not well known. The present study was conducted to evaluate the combined effect of manure and mineral fertilizers on the contents of SOC fractions to promote the mineralization of SOC and N.Treatments included: i) no fertilizer control(CK); ii)... 相似文献
14.
长期施肥对黄棕壤细菌多样性的影响 总被引:1,自引:0,他引:1
[目的]基于武汉黄棕壤长期定位试验(1981—2016年),探究不同施肥措施下土壤肥力演变和土壤微生物多样性变化,为黄棕壤培肥以及农业绿色可持续发展提供依据.[方法]本研究采用Illumina MiSeq高通量测序技术和偏最小二乘路径模型(PLS-PM)综合分析了不施肥(CK)、氮磷钾(NPK)、常量有机肥(OM)、氮... 相似文献
15.
施肥措施对复垦土壤团聚体碳氮含量和作物产量的影响 总被引:4,自引:1,他引:3
研究复垦后不同施肥措施下有机碳(OC)和全氮(TN)在水稳性团聚体及粉黏粒组分中的分布特征,以期深入理解不同施肥措施下土壤有机碳的固持机制。以生土和连续6年不同施肥措施的复垦土壤为研究对象,采集0~20 cm耕层土壤样品,利用湿筛法进行土壤粒径分组,分析大粒径大团聚体(> 2 mm)、小粒径大团聚体(0.25~2 mm)、微团聚体(0.053~0.25 mm)和粉黏粒组分(< 0.053 mm)中OC和TN含量,判断各粒径团聚体及粉黏粒组分中有机碳储量的驱动因素,探究团聚体及粉黏粒组分中有机碳含量与作物产量之间的关系。试验设不施肥(CK)、施氮磷钾化肥(NPK)、单施有机肥(M)和有机无机肥配施(MNPK)4个处理。结果表明:1)整个试验周期(2008-2013年),同CK相比, NPK、M以及MNPK处理均显著提高了玉米籽粒产量,且以MNPK处理的效果最显著,分别提高了79.49%、116.07%和113.85%。 相似文献
16.
长期有机与无机肥配施的黄壤稻田土壤细菌群落结构特征 总被引:1,自引:1,他引:0
17.
长期施用有机肥增加黄壤稻田土壤微生物量碳氮 总被引:14,自引:4,他引:14
18.
不同培肥处理对土壤溶解性有机碳含量及特性的影响 总被引:21,自引:0,他引:21
以黄土高原南部地区的长期肥料定位试验为研究对象,通过室内测定及培养试验研究了不施肥(CK)、撂荒(FA)、施氮磷钾肥(NPK)、氮磷钾配施有机肥(MNPK)和氮磷钾配施秸秆(SNPK)培肥处理土壤中溶解性有机碳(DOC)的含量、结构特性及其降解特性。结果表明,在0~20 cm耕层土壤中,不同培肥处理土壤中DOC的含量变化范围在4.65~8.94 mg kg-1之间,平均为6.42 mg kg-1,各培肥处理间差异明显,其大小顺序为MNPKSNPKNPKFACK。由DOC溶液的UV280吸收值和腐殖化指数(HIXem)可以得出,不同培肥处理土壤中溶解性有机物中结构相对复杂的芳香化合物所占的比例明显不同,其大小顺序为SNPKMNPKFANPKCK。经过7d的生物降解培养,不同培肥处理土壤DOC溶液的降解率变化范围在19.3%~48.5%之间,平均为28.6%,其大小顺序为CKFANPKSNPKMNPK。随着培养的进行,DOC溶液中结构较为复杂的溶解性有机物的比例上升。 相似文献
19.
20.
Long-term impacts of manure, straw, and fertilizer on amino sugars in a silty clay loam soil under temperate conditions 总被引:1,自引:0,他引:1
There is increasing evidence that microorganisms participate in soil C sequestration and stabilization in the form of resistant microbial residues. The type of fertilizers influences microbial activity and community composition; however, little is known about its effect on the microbial residues and their relative contribution to soil C storage. The aim of this study was to investigate the long-term impact (21 years) of different fertilizer treatments (chemical fertilizer, crop straw, and organic manure) on microbial residues in a silty clay loam soil (Udolls, USDA Soil Taxonomy). Amino sugars were used to indicate the presence and origin of microbial residues. The five treatments were: CK, unfertilized control; NPK, chemical fertilizer NPK; NPKS1, NPK plus crop straw; NPKS2, NPK plus double amounts of straw; and NPKM, NPK plus pig manure. Long-term application of inorganic fertilizers and organic amendments increased the total amino sugar concentrations (4.4–8.4 %) as compared with the control; and this effect was more evident in the plots that continuously received pig manure (P?<?0.05). The increase in total amino sugar stock was less pronounced in the straw-treated plots than the NPKM. These results indicate that the accumulation of soil amino sugars is largely influenced by the type of organic fertilizers entering the soil. Individual amino sugar enrichment in soil organic carbon was differentially influenced by the various fertilizer treatments, with a preferential accumulation of bacterial-derived amino sugars compared with fungal-derived glucosamine in manured soil. 相似文献