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1.
AbstractSoil organic carbon (SOC) sequestration is one of the major agronomic measures to mitigate green house gas emission, enhance food security, and improve agriculture sustainability. The study, therefore, aimed to evaluate crop growth (CG) and radiation use efficiency in spring wheat (Triticum aestivum L.) treated soil with residue type (RT), that is, cowpea (Vigna unguiculata) as legume (LR), maize (Zea mays L.) as cereal (CR) and no residue (NR) treatment applied (5 t ha?1) on dry matter basis. The CR was subsequently incorporated with tillage depths (TD), that is, deep (DT?=?35?cm) and shallow (ST?=?15?cm) as main plot treatments. The N was applied in two splits starting from 0 to 160?kg ha?1 as sub plot treatments. Experiment was conducted in two CG seasons 2009–11 at Agronomy Research Farm, the University of Agriculture Peshawar, Pakistan. Results showed the highest CG and RUE with LR incorporated than CR and/or NR with DT. Increasing N-rate resulted an increase in CG, RUE and biomass of wheat. Residue of LR or CR deeply incorporate into the soil has resulted healthy traits (i.e., tillers- and spikes number), which resulted higher biomass. Nitrogen applied 120?kg ha?1 resulted in higher CG, RUE and grain yield for treatment LR, followed by CR and the lowest for the NR. Crop of second year showed higher grain yield, which was due to healthy traits including better CG and RUE. The study suggests that CR of LR or CR nature incorporated deep into the soil can optimize crop N-fertilizer demand for optimum production, which protects environment from the excessive use of N application. 相似文献
2.
水氮量对小麦/玉米间作土壤硝态氮累积和水氮利用效率的影响 总被引:8,自引:2,他引:8
为了提高氮肥和水分利用效率,该文在甘肃河西灌区试验地点,采用田间小区试验,研究了不同氮水平(0、225、450 kg/hm2)和灌水量(750、1125、1500 m 3/hm2)对小麦/玉米间作土壤硝态氮累积和水氮利用效率的影响。结果表明,不同氮肥和灌水量对小麦带土壤硝态氮含量和累积量影响较小,对玉米带影响显著。随氮肥用量增加,玉米带土壤硝态氮含量和累积量增加,随灌水量和氮肥用量增加,0~60 cm土壤硝态氮相对累积量增加,60~140 cm土层降低。氮肥当季利用率、氮肥生产率、氮肥产投比都是以225 kg/hm2氮水平较高,但不同灌水量差别不大。WUE(水分利用效率)以W750N225最高,W1500N0最低,随灌水量增加WUE降低。 相似文献
3.
Demis Fikre Limeneh Hussien Mohammed Beshir Fekadu Gebretensay Mengistu 《Journal of plant nutrition》2020,43(9):1229-1247
AbstractThe experiment was conducted at Kulumsa, South East Ethiopia, using four levels of nitrogen (N) (0, 50,100 and 150?kg N ha?1) and four levels of phosphorus (P) (0, 35, 70 and 105?kg P2O5 ha?1) fertilizers arranged in 4?×?4 factorial arrangements in randomized complete block design with three replications. The available P was increased after harvest due to the application of N and P fertilizer at the rates of 100 or 150?kg N ha?1 and 70 or 105?kg P2O5 ha?1. More specifically, nutrients concentration and nutrient uptake were significantly (p?<?.01) varied among treatment combinations and nutrient use efficiency was declined by increasing N and P after optimum rates. The higher physiological efficiency of N (53.47?kg kg?1) and P (580.41?kg kg?1) and the highest apparent recovery of N (19.62%) and P (2.47%) was recorded from application of 50?kg N ha?1 and P at 70?kg P2O5 ha?1 and the highest agronomic efficiency of N (10.78?kg kg?1) and P (15.25?kg kg?1) was recorded from N at the rate of 50?kg N ha?1 and P at 35?kg P2O5 ha?1, respectively. The combination of N at 100?kg N ha?1 and P at 70?kg P2O5 ha?1 was promising combination that generated highest net benefit 488,878.5 ETB (Ethiopian birr) ha?1 with the highest marginal rate of return (36638%) and gave the highest seed yield (1858.82?kg ha?1) with yield increment of about 57.72% over the control. 相似文献
4.
水氮互作对小麦土壤硝态氮运移及水、氮利用效率的影响 总被引:2,自引:1,他引:2
为给强筋小麦(Triticum aeativum L.)高产优质栽培的水、氮合理运筹提供理论依据,在高产地力条件下,选用强筋小麦品种济麦20,设置不施氮(N0)、施氮180 kg/hm2 (N1)、240 kg/hm2 (N2)3个施氮水平,每个施氮水平下设置不灌水(W0)、底墒水+拔节水+开花水(W1)、底墒水+冬水+拔节水+开花水(W2)、底墒水+冬水+拔节水+开花水+灌浆水(W3)4个灌水处理,每次灌水量均为60 mm,研究了水氮互作对麦田耗水量、土壤硝态氮运移、氮素利用效率和水分利用效率的影响。结果表明,(1)增加施氮量,开花期和成熟期0—140 cm各土层的土壤硝态氮含量显著升高;增加灌水时期,土壤硝态氮向深层的运移加剧,成熟期0—80 cm各土层的土壤硝态氮含量降低,120—140 cm土层的土壤硝态氮含量升高。N1W1处理在开花期0—60 cm土层的土壤硝态氮含量较高,成熟期土壤硝态氮向100—140 cm土层运移少,有利于植株对氮素的吸收。(2)随施氮量的增加,子粒产量先升高后降低,以N1最高。N1水平下,W1处理获得了较高的子粒产量、子粒氮素积累量、氮素利用效率、氮肥农学利用率和氮肥偏生产力;在此基础上增加冬水(W2),上述指标无显著变化;再增加灌浆水(W3),上述指标显著降低。(3)施氮提高了小麦对土壤水的利用能力,随施氮量增加,土壤供水量及其占总耗水量的比例显著升高。N1水平下,W1处理获得了最高的水分利用效率;再增加灌水时期,水分利用效率显著降低,开花至成熟阶段的耗水模系数显著升高,灌水量占总耗水量的比例升高,降水量和土壤供水量占总耗水量的比例降低。本试验条件下,施氮为180 kg/hm2,灌底墒水+拔节水+开花水3水的N1W1处理,是兼顾高产、高效的水氮运筹模式。 相似文献
5.
实时实地氮素管理对水稻产量和氮素吸收利用的影响 总被引:3,自引:2,他引:3
以扬两优6号和培两优3076水稻为材料,通过田间试验比较研究了基于SPAD值的氮素管理对水稻氮素吸收、产量和氮肥利用率的影响。结果表明,随着SPAD预设阈值的增加,氮肥用量增加,籽粒产量和氮素吸收也随之增加。实时氮素管理条件下,水稻扬两优6号和培两优3076均以SPAD值为41处理获得较高的籽粒产量和氮素利用率,该处理在籽粒产量不降低的同时节约了氮肥用量12. 8% ~33.3%;而实地氮素管理条件下,水稻扬两优6号和培两优3076均以SPAD值为39~41处理获得较高的籽粒产量和氮素利用率,该处理在籽粒产量不降低的同时节约了23.1%的氮肥用量。鉴于实地氮素管理在田间易于操作,因此建议采用39~41作为水稻关键生育期指导氮肥施用的SPAD阈值。 相似文献
6.
牛场肥水灌溉对冬小麦产量与氮利用效率及土壤硝态氮的影响 总被引:3,自引:1,他引:3
【目的】本研究利用田间小区试验,研究牛场肥水灌溉对冬小麦产量、 氮利用效率及土壤硝态氮的影响,以期为提高灌溉肥水中氮利用效率,降低养殖肥水灌溉的氮损失提供理论依据。【方法】通过田间小区定位试验,以华北平原典型冬小麦种植系统为研究对象,定量研究牛场肥水灌溉对冬小麦产量、 氮素积累、 氮效率及土壤硝态氮的影响。试验共设5个处理,分别为: 不施肥、 小麦各生育期进行清水灌溉(CK); 在冬小麦生育期内进行2次牛场肥水灌溉(越冬期和灌浆期,肥水灌溉带入氮量为160 kg/hm2),其他生育期清水灌溉(T1); 在冬小麦生育期内进行3次牛场肥水灌溉(越冬期、 拔节期、 灌浆期,肥水灌溉带入氮量为240 kg/hm2),其他生育期清水灌溉(T2); 在冬小麦生育期进行4次牛场肥水灌溉(越冬期、 拔节期、 抽穗期和灌浆期,肥水灌溉带入氮量为320 kg/hm2),不进行清水灌溉(T3); 农民习惯施肥,冬小麦播种时施复合肥(15-21-6)375 kg/hm2、 拔节期追肥尿素600 kg/hm2(氮投入量为332 kg/hm2),全生育期灌溉清水(CF)。每个处理重复3次,冬小麦全生育期灌水4次,灌水定额为830 m3/hm2,灌水量用超声波流量计计量。【结果】牛场肥水灌溉对冬小麦产量和氮的影响主要有以下几个方面: 1)连续三年冬小麦产量均随牛场肥水灌溉次数的增加表现为先增加后降低的趋势,肥水灌溉带入氮为240 kg/hm2(灌溉3次)时,冬小麦产量最高。2)牛场肥水灌溉显著增加冬小麦植株地上部氮积累量。2011年和2012年肥水灌溉的三个处理之间及与习惯施肥处理之间差异不显著,2013年T2和T3处理植株氮吸收量显著高于T1处理和习惯施肥处理。3)冬小麦肥水氮利用率和农学效率随肥水灌溉带入氮量的增加而降低。三年均以T1最高,分别为48.57%和37.15 kg/kg。4)每季冬小麦收获后,随着灌溉带入氮量的增加,0100 cm土层NO-3-N积累量增加。肥水灌溉带入氮为320 kg/hm2时,0100 cm剖面NO-3-N积累量显著高于肥水灌溉带入氮为160~240 kg/hm2处理。【结论】牛场肥水灌溉显著增加冬小麦产量,随肥水灌溉带入氮的增加冬小麦产量呈先增加后降低的趋势。冬小麦肥水氮表观利用率和农学效率均随肥水灌溉带入氮量的增加而降低,肥水灌溉带入氮为320 kg/hm2,80100 cm土层有大量NO-3-N累积,且有向下淋溶的趋势。本试验条件下,综合产量、 冬小麦植株氮积累量及氮效率等方面考虑,牛场肥水灌溉冬小麦适宜氮带入量为160~240 kg/hm2。 相似文献
7.
Relationships between soil aggregation and mycorrhizae as influenced by soil biota and nitrogen nutrition 总被引:8,自引:0,他引:8
G. J. Bethlenfalvay I. C. Cantrell K. L. Mihara R. P. Schreiner 《Biology and Fertility of Soils》1999,28(4):356-363
The effect of the form of N nutrition on soil stability is an important consideration for the management of sustainable agricultural
systems. We grew soybean [Glycine max (L.) Merr.] plants in pot cultures in unsterilized soil, and treated them by (1) inoculating them with Bradyrhizobium japonicum, fertilizing with (2) nitrate or (3) ammonia, or (4) by providing only minimum N amendment for the controls. The soils were
sampled at 3-week intervals to determine changes in water-stable soil aggregates (WSA), soil pH, the development of roots,
arbuscular mycorrhizal (AM) soil and root colonization, and selected functional groups of soil bacteria. The soil fauna was
assayed at the end of the experiment (9 weeks). WSA was correlated positively with root and AM soil mycelium development,
but negatively with total bacterial counts. Soil arthropod (Collembola) numbers were negatively correlated with AM hyphal
length. Soils of nodulated and ammonia-fertilized plants had the highest levels of WSA and the lowest pH at week 9. Sparse
root development in the soils of the N-deficient, control plants indicated that WSA formation was primarily influenced by
AM hyphae. The ratio of bacterial counts in the water-stable versus water-unstable soil fractions increased for the first
6 weeks and then declined, while counts of anaerobic bacteria increased with increasing WSA. The numbers of soil invertebrates
(nematodes) and protozoans did not correlate with bacterial counts or AM soil-hyphal lengths. Soil pH did not affect mycorrhiza
development, but actinomycete counts declined with decreasing soil pH. AM fungi and roots interacted as the factors that affect
soil aggregation, regardless of N nutrition.
Received: 20 December 1997 相似文献
8.
不同浸提剂以及保存方法对土壤矿质氮测定的影响 总被引:4,自引:0,他引:4
为探明影响土壤矿质氮测定的因素,从棕壤、潮土和黄棕壤3种类型土壤中各采集10个经不同施肥处理的土样,用连续流动注射分析仪测定经不同浸提剂以及不同保存方法处理后土样的NO3-N和NH4-N含量。结果表明:不论是棕壤、潮土还是黄棕壤,2 mol.L?1 KCl提取硝态氮的数量与0.01 mol.L?1 CaCl2提取的数量相关性均达到P<0.01水平;3种土壤各个土样硝态氮含量的测定值多表现为新鲜土<冷冻土<风干土;将鲜样浸提后作短时间的冷冻处理,其效果与鲜样24 h内的测定结果较接近;土样不同保存方式以及浸提液的保存时间对3种土壤NH4-N测定结果的影响规律不及NO3-N明显。 相似文献
9.
《Communications in Soil Science and Plant Analysis》2012,43(5-6):455-467
Abstract Soft winter wheat is used to make cookies, cakes, crackers, donuts, etc., and as such, grain nitrogen content (as protein) is an important determinant of flour quality and eventually the quality of the products made from it. Intensive Cereal Management (ICM) techniques are being adapted throughout the midwestem United States to increase grain yield and crop profits. The effect of additional/altered management inputs on grain nutrient content is important since they may be detrimental to subsequent product quality. The objective of this study was to determine the effects of cultivars and ICM inputs on grain nutrient content Identical field studies were conducted in 1985 and 1986 at Columbus, OH, East Lansing, MI, and Madison, WI containing three cultivars subjected to each of three management treatments differing in seeding and nitrogen rates, and the use of a fungicide, Propiconazole (Tilt) and plant growth regulator, Ethephon (Cerone). Nitrogen in the form of urea was applied at specific growth stages, and rates adapted to the soil type and previous crop of each study location so that similar amounts of N would be available to the wheat crop at each location. Both environment and cultivar had significant effects on the leaf content of some but not all nutrients. The combination of increased seeding and nitrogen rates had no effect on grain yield but increased grain nitrogen content, leaf N, Ca, Mg, Mn, and Fe content The use of Tilt and Cerone also increased grain yield and nitrogen content, but lowered leaf K, Ca, and Mg. 相似文献
10.
Xi Chen Alice Mao Yajie Zhang Ligan Zhang Jiang Chang 《Soil Science and Plant Nutrition》2013,59(4):377-387
We have investigated molecular-scale changes in soil organic matter (SOM) as incorporated wheat and corn residues decompose and whether those changes are correlated with soil nitrogen forms. The ‘initial litter quality hypothesis’ that compositional variations in plant residues may persist during decomposition of these residues as they are transformed to SOM was tested. We studied soils in 6-year field experiments of a double-cropped corn–wheat rotation system designed with the following treatments: no crop residue and no chemical fertilizer, chemical fertilizer alone, wheat straw + chemical fertilizer, corn stover + chemical fertilizer, and corn plus wheat residue + chemical fertilizer. Organic carbon and nitrogen forms were assessed, and SOM chemical structures were examined by Fourier transform infrared and solid-state nuclear magnetic resonance spectroscopy. We found that concentrations of organic-N in corn residues plus fertilizer treatment were significantly larger than those in wheat straw plus fertilizer treatment. In addition, concentrations of amide groups and NCH in SOM with corn residue treatment were larger than those in SOM with wheat residue treatment. Incorporation of both corn and wheat residues led to an increase in carbohydrate-derived components of SOM. Compared with the check treatment, aromaticity, alkyl C/O-alkyl C, and hydrophobicity/hydrophilicity indices of the SOM were lower with addition of residue. Aromaticity was greater in corn residue treatment than in wheat residue treatment. This study provides support for the hypothesis that the variation in chemical composition of SOM reflected the incorporation of distinct chemical structures in wheat and corn straw residues. 相似文献
11.
黄土高原旱地土壤质量评价指标研究 总被引:4,自引:0,他引:4
基于设置在陇中黄土高原半干旱区的长期定位试验,运用综合评价模型,定量评价了小麦→豌豆双序列轮作系统6种不同耕作方式对土壤质量的影响。结果表明,采用加权综合法和加乘法则对土壤质量进行综合评价,能够较好地反映土壤质量的实际情况,敏感地反映耕作方式对土壤质量的影响。运用逐步判别分析法对6种不同耕作方式[传统耕作(T)、免耕作(NT)、传统耕作秸秆还田(TS)、免耕秸秆覆盖(NTS)、传统耕作地膜覆盖(TP)、免耕地膜覆盖(NTP)]下29项土壤属性指标进行筛选,建立了包括团粒结构、全氮、速效氮、有机质、蔗糖酶活性、作物产量、种植纯收益和产投比8项因子的简化评价指标体系。原始评价指标体系下2种轮作序列土壤质量指数排序均为NTSTSNTPNTTPT;简化评价指标体系下豌豆→小麦轮作序列土壤质量指数排序为NTSTSNTPNTTTP,而小麦→豌豆轮作序列土壤质量指数排序为NTSTSNTNTPTTP。进一步相关分析和方差分析表明,应用逐步判别分析法建立的简化指标体系具有较高的代表性,可适用于黄土高原半干旱区土壤质量评价。 相似文献
12.
Wheat (Triticum aestivum L) residue removed, burnt, or incorporated with or without 0, 60, and 120 kg nitrogen (N) ha?1 effects on maize (Zea mays L) hybrids (Pioneer-3025, Pioneer-30P45, and Kiramat) were assessed at University of Agriculture, Peshawar, Pakistan during 2010 and 2011 for maize production and soil carbon (C) storage. Pioneer-30P45 had higher grain yield, leaf area, and delayed maturity. Residue burning combined with 120 kg N ha?1 produced higher grain yield. The leaf area, leaf area ratio, grain N content, and solar radiation interception were improved with N + residue burnt/incorporated over control. The grain yield was positively correlated with yield parameters. Soil organic carbon (SOC) content were in order of incorporated > burnt > removed at all growth stages (i.e., sowing, tasseling, maturity, and harvesting). Conclusively, wheat residue burnt/incorporated into the soil with 120 kg N ha?1 was best for maize production of Pioneer-30P45; however residue incorporation into the soil improved SOC. 相似文献
13.
通过大型智能人工气候箱中的盆栽试验, 研究了35%RH、85%RH 两个大气湿度与0、150 mg·kg-1、300 mg·kg-1 3 个氮肥水平对冬小麦株高、分蘖数、叶面积、干物质积累以及水分利用效率的影响。结果表明: 高大气湿度能够增加冬小麦株高和叶面积, 但对冬小麦分蘖在不施氮和中施氮时表现出负效应; 大气湿度对冬小麦干物质量的影响取决于氮肥施用水平, 中施氮时, 高大气湿度可显著提高冬小麦生物量并降低其根冠比; 高大气湿度可显著降低冬小麦水分消耗量, 中、高施氮水平下提高水分利用效率, 且施氮肥处理显著高于不施氮肥处理。 相似文献
14.
Jashanjot Kaur Harinderjit Kaur Pritpal Singh 《Communications in Soil Science and Plant Analysis》2020,51(11):1483-1498
ABSTRACT The present studies were conducted to evaluate the effect of different nutrient management practices under two tillage options in wheat. The experiments were laid out in split-plot design with a combination of two varieties (WH 1105 and HD 2967) and two tillage options (Conventional and No tillage) in the main plot and six precision nutrient management practices [absolute control, site-specific nutrient management with Nutrient Expert for wheat (SSNM-NE)(170 kg nitrogen (N)/ha), SSNM NE+GreenSeeker (GS)(153/158 N kg/ha), N120 (120 kg N/ha) before irrigation, N120 after irrigation and N Rich (180 kg N/ha)] in subplot replicated thrice. The grain yield and quality characters in no tillage (NT) and conventional tillage (CT) were similar but agronomic efficiency was higher in NT. Both the varieties (WH 1105 and HD 2967) gave similar grain yield and quality. Wheat variety WH 1105 recorded significantly higher sodium dodecyl sulfate sedimentation (SDS) and gluten index. The treatment SSNM NE+GS had resulted in 107.1% higher grain yield than no nitrogen control but similar to enriched N plot (180 kg N/ha). The grain protein, SDS and gluten index in need-based nutrient management (SSNM+GS) treatment were found to be similar as recorded in SSNM-NE (170 kgN/ha) and N enriched plot (180 kg N ha?1). The agronomic efficiency and recovery efficiency in SSNM+GS were also better than SSNM NE. 相似文献
15.
Linnéa Asplund Göran Bergkvist Martin Weih 《Acta Agriculturae Scandinavica, Section B - Plant Soil Science》2016,66(2):153-169
The association between functional traits and nitrogen use efficiency (NUE) was investigated to assist the breeding of nitrogen (N) use-efficient bread wheat (Triticum aestivum ssp. aestivum) varieties. This study combined results from a climate chamber experiment involving 41 spring wheat varieties and a field experiment involving six winter and six spring wheat varieties grown with and without the application of mineral N fertiliser. The climate chamber experiment was analysed by partial least squares (PLS) regression, with several predictors and NUE as response, to identify traits related to NUE. Specific hypotheses were then tested in the field experiment. The PLS indicated six traits of particular importance for overall NUE: leaf chlorophyll (SPAD value) of the top leaf at stem elongation, grains ear?1, ears pot?1, straw biomass pot?1, days between emergence and anthesis, and days between emergence and completed senescence. In the field experiment, the SPAD value of flag leaves of winter wheat around anthesis was positively correlated with NUE and total grain N, at both N levels. Fast development was positively correlated with high NUE and N uptake efficiency in spring wheat. Early senescence of the flag leaf was positively correlated with grain N concentration and negatively correlated with grain-specific N efficiency in winter wheat at low N fertilisation levels. The results indicate that high SPAD value of the top leaf might be a candidate trait that could be used in wheat breeding for improved NUE, while genetic variation in senescence could possibly be used to tailor varieties for different end-use quality when grown at low N. More studies are needed to validate these findings in other environments and for other genotypes. 相似文献
16.
通过设置不同灌溉处理来研究灌溉次数和时期对黄淮海地区冬小麦产量、籽粒品质和水氮利用的影响。结果表明:浇足底墒基础上拔节期灌一水不仅可获得较高的产量并提高水氮利用效率,减低硝态氮淋失风险,而且可获得较好的物理品质(硬度指数、容重)和蛋白质品质(粗蛋白、湿面筋和沉淀值)及最优的粉质仪质量指数、拉伸仪参数和降落数值。在此基础上增加冻水、开花水、灌浆水等处理的产量增加不显著,各项品质指标没有明显改善,水分利用效率降低,而且显著增加硝态氮淋失风险;因而黄淮海地区最优的节水灌溉模式是浇足底墒基础上拔节至挑旗期灌溉一水。 相似文献
17.
Mohammad Jafar Bahrani Foroud Salehi Sayed Abdolreza Kazemeini 《Archives of Agronomy and Soil Science》2013,59(2):179-187
Crop residues are beneficial substances affecting crop production and soil properties. A field experiment was carried out to evaluate the effects of wheat (Triticum aestivum L.) residue rates (0, 25, 50 and 75%) combined with N levels (0, 34.5, 69, 103.5 kg ha?1) on yield and yield components of two red common bean (Phaseolus vulgaris L.) cultivars and to monitor chemical soil parameters. The experiment was conducted at Research Center, College of Agriculture, Shiraz University, Shiraz, Iran for two years (2008–2009). The experiment was conducted as a split–split plot arranged in a randomized complete blocks design with three replications. The highest seed yield was obtained when 25–50% of residues were incorporated. The highest seed yield, seed weight per plant, 100-seed weight and seed number per pod were obtained with 103.5 kg N ha?1 with no significant difference to 69 kg N ha?1. Residue incorporation significantly increased soil organic carbon (SOC) as well as available K and P content. It is possible to sow red common bean as a double cropping by soil incorporation of 25–50% wheat residues with application of 69 kg N ha?1. 相似文献
18.
不同有机无机复混肥对小麦产量、氮效率和土壤微生物多样性的影响 总被引:13,自引:1,他引:13
通过田间试验,研究了菜粕堆肥、猪粪堆肥和中药渣堆肥有机无机复混肥与无机复混肥等价格施入对小麦产量、氮素利用率以及土壤微生物多样性的影响。结果表明,3种堆肥原料有机无机复混肥处理的小麦子粒产量(5838.8~6243.1 kg/hm2)为化肥处理(5880.4 kg/hm2)的99.3%~106.2%,差异不显著。猪粪处理和菜粕处理的小麦子粒的氮素累积量(分别为100.2 kg/hm2和95.8 kg/hm2)显著高于化肥处理(85.9 kg/hm2)和中药渣堆肥有机无机复混肥处理(84.5 kg/hm2);3种有机无机复混肥的氮肥回收效率和氮素利用率(包括氮素生理利用效率和氮素子粒生产效率)都高于化肥处理的氮肥回收效率和氮素利用率。对各处理土壤DNA条带采用邻接法分析表明,施入外源有机物质(菜粕堆肥、猪粪堆肥与中药渣堆肥)可以改变土壤的微生物细菌群落结构,而施入化肥对土壤的微生物细菌群落结构影响较小。本试验条件下,施用3种堆肥原料的有机无机复混肥可以获得与施用化肥相当的小麦子粒产量,提高小麦的氮素回收和利用效率,改变土壤微生物细菌群落结构。 相似文献
19.
Zhongwei Tian Xiaoxue Liu Jinhong Yu Shilu Gu Lei Zhang Dong Jiang 《Archives of Agronomy and Soil Science》2020,66(10):1384-1398
ABSTRACT A two-year field and micro-plot 15N-labelled experiment was conducted under two levels of N application rate (240 and 180 kg N ha–1) with three basal N application stages [seeding (L0), four-leaf stage (L4), and six-leaf stage (L6)] to investigate the effects of reducing basal N application amount and postponing basal N fertilization period on wheat growth and N use efficiency (NUE). No significant differences were observed in grain yield, root growth and root morphology between the N180L4 and N240L0 treatments, while the root-shoot ratio of N180L4 was significantly improved. Postponing basal N application period increased the residual basal 15N in soil and reduced basal 15N loss, and N180L4 treatment favored the highest 15N recovery efficiency (NRE), mainly due to reduced 15N loss. Grain yield and basal NRE were significantly positively correlated with root dry weight in deeper soil layers (40–60 cm), and the contribution of root growth to improved grain yield and NRE increased with the downward distribution of the roots. Therefore, postponing the basal N fertilization period under N deficiency promotes deeper root growth during the post-jointing period and increases basal N uptake, as well as reducing basal N loss and increasing grain yield and NUE. 相似文献
20.
[目的]探究开花期土壤水分含量对小麦植株氮素积累转移、土壤硝态氮含量、小麦产量及氮素利用率的影响,为小麦氮素高效利用及节水高产栽培提供理论依据.[方法]于2018—2019和2019—2020年两个小麦生长季,在大田条件下,供试品种为济麦22,在开花期设置3个水分处理:不灌水(W0)、将0—40 cm土层土壤相对含水量... 相似文献