共查询到18条相似文献,搜索用时 187 毫秒
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【目的】小麦/玉米/大豆旱地三熟模式是我国西南山丘区的主要旱作耕作模式,大豆作为该体系中改善土壤环境的核心作物,明确其增产、增效作用,可指导该体系的科学管理。【方法】于2012、2013年连续2年进行田间试验,采用小麦-大豆(单作)和小麦/玉米/大豆(套作)两种体系,设置5个不同磷水平处理(SP1、SP2、SP3、SP4、SP5),调查了大豆在与玉米共生期和玉米收获后的生物量变化,以及收获期籽粒产量、全株养分含量和养分利用效率的差异。【结果】1)玉米收获前大豆植株地上部生长率,单作为1.52 g/(m2·d),套作为1.18 g/(m2·d),单作比套作高28.8%;玉米收获后,大豆植株地上部生长率,单作为4.15 g/(m2·d),套作为5.60 g/(m2·d),套作显著高于单作34.9%。2)大豆籽粒产量套作平均比单作高20.3%。单作、套作大豆籽粒产量均随土壤磷含量的增加呈先增加后降低的变化趋势,2年平均产量最高均在SP4处理,套作为2923 kg/hm2,单作为2400 kg/hm2。SP4处理产量与SP2和SP3差异不显著,与SP1和SP5差异显著。3)收获期大豆籽粒氮、磷、钾含量套作高于单作,茎、荚含量套作低于单作;各部位的氮含量随土壤磷含量的增加先增高后降低,磷、钾含量有随土壤磷含量的增加而增加的趋势。4)小麦+大豆种植带的植株氮、钾积累量,套作体系明显高于轮作体系,且随土壤磷含量的增加先增加后减少。5)小麦+大豆种植带磷肥当季利用率随土壤磷含量的增加而逐渐减小,SP2、SP3、SP4、SP5处理套作体系比单作体系分别高44.6%、74.9%、66.9%、109.5%,平均高74.0%。【结论】套作大豆相比单作大豆具有产量和营养优势,套作大豆茎、荚氮、磷、钾养分相比单作大豆可更多地向籽粒转运,大幅提高其对磷肥当季利用效率。合理施用磷肥也可提高大豆产量。 相似文献
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基于旱地小麦高产优质的氮肥用量优化 总被引:1,自引:0,他引:1
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施磷量与小麦产量的关系及其对土壤、气候因素的响应 总被引:4,自引:6,他引:4
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“小麦/玉米/大豆”套作体系中不同作物间的相互作用及氮素的转移、吸收 总被引:2,自引:1,他引:2
在根系分隔盆栽条件下,采用15N土壤稀释标记方法,研究了“小麦/玉米/大豆”三熟套作体系不同作物间的相互作用及氮素的转移、吸收利用特性。结果表明,“小麦/玉米/大豆”套作体系促进小麦对肥料氮和土壤氮的吸收,不分隔处理的生物产量、15N总吸收量和总回收率得到显著提高,土壤残留15N丰度及总氮含量明显降低;玉米表现出套作优势(Awc<0,NCRwc<0),不分隔处理的籽粒产量、籽粒15N吸收量、15N总回收率、土壤残留15N丰度及总氮含量较分隔处理提高17.17%、24.52%、17.63%、13.9%和10.1%;大豆表现出套作劣势,不分隔处理的15N总吸收量、籽粒15N吸收量、15N总回收率和土壤残留15N丰度降低,土壤总氮含量提高6.06%。“小麦/玉米/大豆”套作体系存在氮素的双向转移,以玉米向小麦、大豆向玉米转移为主。 相似文献
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北方麦区土壤有效磷阈值及小麦产量、籽粒氮磷钾含量对监控施肥的响应 总被引:3,自引:1,他引:2
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小麦/玉米/大豆和小麦/玉米/甘薯体系中玉米产量及养分吸收的差异 总被引:2,自引:0,他引:2
分别在四川2个玉米主产区川中丘区射洪县和川西山区雅安市,采用单因素随机区组设计,通过3年田间试验对比研究了小麦/玉米/大豆和小麦/玉米/甘薯模式下玉米产量、养分吸收积累规律以及与耕层土壤养分的关系。结果表明:两种套作模式经过一年种植后,小麦/玉米/大豆模式下玉米产量均高于小麦/玉米/甘薯模式下的玉米产量,但差异不显著,第二、三年分带轮作后,小麦/玉米/大豆模式下玉米产量显著高于小麦/玉米/甘薯模式下的玉米产量,二年平均分别高出 679.5 kg/hm2和 839.1 kg/hm2,增产9.4%和12.6%,射洪试验点增产作用较雅安试验点显著;分带轮作后两种套作体系玉米氮素吸收积累在拔节前差异不显著,拔节后小麦/玉米/大豆模式下玉米氮素积累量显著高于小麦/玉米/甘薯,磷的吸收积累则相反,从拔节期到开花期,小麦/玉米/大豆模式下玉米磷的吸收积累均显著低于小麦/玉米/甘薯,小麦/玉米/大豆模式下玉米钾素吸收积累量高于小麦/玉米/甘薯;不同作物带耕层土壤养分含量差异达显著水平,大豆带残留的硝态氮、速效氮、速效钾2个试验点平均分别比甘薯带高18.4%、24.1%、6.0%,而铵态氮和速效磷甘薯带较大豆带分别高18.9%和17.1%,两种套作模式中玉米带耕层土壤养分含量差异不显著,经第二、三年分带轮作后,耕层土壤养分含量差异减小,表明分带轮作玉米能较好均衡田间养分。 相似文献
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小麦产量与土壤养分对水生植物源有机氮替代率的响应 总被引:2,自引:0,他引:2
制作堆肥是太湖流域水体水生植物残体的主要利用途径之一,本文主要研究了水生植物堆肥对小麦产量及土壤养分的影响以促进水生植物残体的高效利用。在环太湖地区进行4a的田间定位试验,比较在等氮条件下水生植物有机氮不同替代率(0、20%、40%、60%、80%和100%)下小麦产量、氮磷钾吸收量、土壤氮磷钾含量和pH变化。结果表明:与单施尿素相比,当有机氮替代率为20%和40%时,小麦累积产量分别提高了14.0%和13.5%(P0.05),有机氮替代率继续增加后产量显著下降。与单施尿素相比,有机氮替代率超过60%时小麦籽粒和秸秆氮浓度和吸氮量均显著降低;有机氮配施均显著提高了籽粒磷钾浓度,随着有机氮替代率上升,小麦籽粒磷钾吸收量呈先增后降趋势。连续4 a施用水生植物有机肥后,耕层土壤全氮、有效磷钾含量和土壤pH均随有机肥的替代率增加而升高。兼顾小麦产量和土壤肥力,水生植物有机氮替代率控制在40%较为适宜,可提高小麦产量,增加作物对磷钾养分利用,提高土壤氮磷钾含量,减缓土壤酸化程度,是太湖农作区一项环保型施肥技术。 相似文献
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氮硅磷肥配施提高四川春玉米的氮磷钾吸收和产量 总被引:4,自引:0,他引:4
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为明确稻秸还田下减量化施氮对小麦产量、养分吸收及土壤理化性质的影响,以小麦品种“宁麦16”为试验材料开展了试验研究,设置了不施氮对照(CK)、施氮量(常量施氮225kg/hm2,N1;减量20%施氮180 kg/hm2,N2)和氮肥运筹(基肥与追肥的比例为5:5,M1;基肥与追肥的比例为7:3,M2)处理,测定并分析了不同施氮量和氮肥运筹下小麦产量与其构成因素、养分吸收与分配、氮肥利用效率及土壤理化性质。结果表明,稻秸还田下,施氮可使小麦产量显著增加,N2处理小麦产量较N1处理仅降低了80.72kg/hm2,提高基施氮肥比例可使小麦单位面积有效穗数增加。施氮显著促进了小麦籽粒、秸秆和地上部的氮素、磷素和钾素吸收,N2处理小麦氮素、磷素和钾素吸收量低于N1处理;N1和N2水平下,M2处理小麦氮素和磷素吸收量均高于M1处理,而钾素吸收量低于后者。N2处理小麦氮肥农学效率、氮肥偏生产力、氮肥表观利用率和氮素生理效率较N1处理提高,而100kg籽粒吸氮量降低。N1处理土壤碱解氮含量显著高于CK;N2处理土壤有机质、碱解氮和速效钾含量低于N1处理,而土壤有效磷含量高于后者;N1和N2水平下,M1处理土壤有机质和碱解氮含量高于M2处理,而土壤有效磷和速效钾含量表现为M2处理高于M1处理。综合来看,稻秸还田下,常规施氮量基础上减量20%,适当提高基施氮肥比例,可增加单位面积有效穗数,实现小麦高产稳产,提高氮肥利用效率。 相似文献
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Eton E. Codling 《Journal of plant nutrition》2019,42(8):891-899
A major constraint for crop production on disturbed soils is phosphorus (P). A 2-year field study was conducted on a disturbed soil to evaluate broiler litter ash (BLA) as an inexpensive phosphorus fertilizer for soybean. BLA or super phosphate (SP) was applied at four rates and planted with soybean followed by wheat. At soybean growth stage R3, two plants from each plot were removed for tissue analysis. Soybean tissue P concentration distributions were in the order pods?>?leaves?>?stems?>?roots. At maturity, soybean grain and wheat tissue yields were not significantly affected by P source. Except for the high superphosphate rate for the second crop, P concentrations of soybean grain and wheat tissue were not significant between P source. In this study, BLA was as effective as SP for growth of soybean grain and wheat tissue, suggesting that BLA can be used as an inexpensive P fertilizer on low P disturbed soils. 相似文献
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《Communications in Soil Science and Plant Analysis》2012,43(13-14):1543-1556
Abstract Greenhouse‐pot experiments were conducted to compare wheat (Triticum aestivum L.) and soybean [Glycine max (L.) Merrill] in terms of their potassium (K) and magnesium (Mg) uptake. Previously, a field study indicated that various rates of K and Mg fertilization did not produce a significant wheat‐yield response. However, a yield increase with residual K and Mg was measured for the subsequent soybean crop. The 0 to 15 cm layer of Norfolk loamy fine sand (fine loamy, siliceous, thermic Typic Kandiudult) from two different sites was used for the pot experiments. Soil from both sites had a pH of 5.1. Potassium as potassium sulfate (K2SO4) was mixed into the soil from the K‐deficient site and Mg as magnesium sulfate (MgSO4) was mixed into the soil from the Mg‐deficient site. ‘Florida 301’ wheat and ‘Cobb’ soybean were grown in winter and summer, respectively. Soybean and wheat were similar in K uptake/g of roots on the first and second sampling dates. However, by the third sampling date, K uptake/g of wheat roots was about twice as high as for soybean. Potassium uptake/cm of soybean roots was two to five times that of wheat at each sampling date. Magnesium uptake/g of soybean roots was about four to five times as high as wheat on each sampling date. Similarly, Mg uptake/cm of soybean roots was 10 to 30 times higher than for wheat. Soybean showed higher total K and Mg content than wheat, suggesting that soybean has a higher demand for both K and Mg. The higher demand for K and Mg by soybeans than by wheat suggests that wheat could meet its demand for K and Mg at much lower soil levels than that for soybean. This would also explain a grain‐yield response to K and Mg by soybeans in the previously reported field study, despite a lack of yield response by wheat grown on the same site. 相似文献
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Zhang B Hettiarachchy N Chen P Horax R Cornelious B Zhu D 《Journal of agricultural and food chemistry》2006,54(15):5548-5554
Soybean [Glycine max (L.) Merr.] is a rich source of isoflavones that are often affected by biotic and abiotic factors. The objectives of this study were to evaluate the effect of various concentrations of three natural elicitors applied at different soybean growth stages on isoflavone content and to compare the efficiency of several solvent systems in isoflavone extraction and quantification. The isoflavones extracted from R96-3444 soybean using eight solvent systems were separated, identified, and quantified by a high-performance liquid chromatography (HPLC) procedure. The soybean plants were sprayed with salicylic acid, methyl salicylate, or ethyl acetate at 0, 10(-6), 10(-3), and 10(-1) M at R1 (blooming) or R4 (full pods) growth stage. Results showed that 10(-3) M ethyl acetate sprayed at the R1 stage significantly increased total isoflavone content and the levels of some individual isoflavones in soybean seeds. With all the elicitors that were tested, concentration was a more important factor than application time with respect to isoflavone content with lower concentrations being more effective on most isoflavones. A 53% acetonitrile solvent system was the best solvent system for extracting total isoflavone, malonyl glucosides, genistein, glycitin, genistin, acetyl-daidzin, and acetyl-genistin. The results of this study will be useful for increasing the isoflavone content in desirable soybean varieties and improving isoflavone concentration during extraction. 相似文献
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麦/玉/豆周年套作体系氮素积累分配及转运 总被引:2,自引:1,他引:1
【目的】四川盆地特殊的高温寡照气候,使得作物间套作十分广泛。麦/玉/豆体系有利于资源循环高效利用和农业可持续发展。本项目研究了麦/玉/豆周年套作体系中各作物的氮素积累分配和花后氮素转运特征,旨在明确体系各作物的氮素营养吸收特性,为该体系的氮肥合理施用及高产高效提供理论依据。【方法】通过2011、 2012连续两年田间定位试验,研究了小麦/玉米/大豆套作体系在不同氮用量下(小麦设N 0、 60、 120、 180、 240 kg/hm2,分别表示为WN1、 WN2、 WN3、 WN4、 WN5;玉米设N 0、 97.5、 195、 292.5、 390 kg/hm2,分别表示为MN1、 MN2、 MN3、 MN4、 MN5;大豆不施肥,依前作的施氮处理依次记为SN1、 SN2、 SN3、 SN4、 SN5)各作物的氮素积累分配、 花后氮素的转运。【结果】 1)小麦各部位氮积累量都随氮用量增加而增大,籽粒、 茎鞘、 叶片和颖壳穗轴分别占地上部总氮积累量(平均为218.6 kg/hm2)的71.5%、 12.2%、 9.2%和7.1%;小麦花后从营养器官向籽粒转移的氮量及其贡献率随施氮量增加而增大,但转移率在不同氮处理下差异不显著,平均为61.5%;随氮用量增加,籽粒的氮分配比例逐渐减少,而非籽粒部分的氮分配比例则随之增大;小麦籽粒产量随施氮量增加而增大,但WN3~WN5处理间差异不显著。2)玉米各部位氮积累量随氮用量增加而增大,籽粒、 叶片、 茎鞘和苞叶芯分别占地上部总氮积累量(平均为108.1 kg/hm2)的67.2%、 3.9%、 11.8% 和 7.0%;玉米花后从营养器官向籽粒的氮素转移量、 转移率和贡献率均随施氮量的增加呈先增加后降低的变化趋势,都以MN3处理最大;玉米各部位的氮积累比例在叶片、 茎鞘中以MN1处理最大,MN2MN5处理明显降低,在苞叶芯中不同氮处理间无明显变化,在籽粒中表现为施氮处理显著高于不施氮处理,而施氮处理间差异不显著;玉米籽粒产量随施氮量增加而增大,但MN4、 MN5处理间差异不显著。3)大豆收获期茎秆、 荚皮、 籽粒的氮积累量都有随施氮量增加而逐渐增大的趋势,以SN4和SN5两个处理显著高于另外三个处理,而在SN1~SN3、SN4与SN5间无显著性差异;籽粒、 茎秆、 荚皮的氮积累比例在5个处理间无显著变化,平均分别为82.2%、5.2%、12.6%;大豆花后从营养器官向籽粒转移的氮量从SN1SN5处理有先显著降低后又逐渐升高的变化趋势,而氮素转移率和转移氮素的贡献率在各处理之间无显著差异,平均分别为80.8%和26.6%;大豆籽粒产量以SN4和SN5两个处理显著高于另外三个处理,而在SN1~SN3、 SN4与SN5间无显著性差异。【结论】低氮处理显著影响套作小麦、玉米、大豆3种作物的产量及氮素的积累,高氮投入会促使氮素滞留在营养器官中,阻碍其花后向籽粒中转移;体系全年施氮量在255~382.5 kg/hm2为宜,其中小麦120~180 kg/hm2,玉米195~292.5 kg/hm2,大豆不施或依苗情适当追施氮肥。 相似文献
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磷、钾营养对套作大豆钾素积累及利用效率的影响 总被引:4,自引:0,他引:4
以贡选1号为材料,研究了磷、钾营养对套作大豆钾素积累及利用效率的影响。结果表明,套作大豆全生育期钾素积累动态符合"S"型增长曲线。完熟期钾素积累总量以及根、茎、叶片、荚果各器官钾素含量均随施钾量增加而增加,随施磷量增加呈先增加后减少的趋势;各处理均以P2K3(P2O517.0 kg/hm2,K2O 112.5 kg/hm2)最高,较不施磷、钾(P0K0)高18.79%5~8.33%。全生育期钾积累速率呈单峰曲线变化,随施钾量增加而增加,随施磷量增加先升高后降低,出苗后90 d左右达到最大值。钾素生产效率、吸收利用率、农学利用率随施磷、施钾量增加与钾积累速率表现一致,但收获指数随施磷量增加先降低后升高。合理施用磷、钾肥能提高套作大豆钾素利用效率,以P2K1(P2O517.0 kg/hm2,K2O 37.5 kg/hm2)处理最好。 相似文献
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1977—1980年,应用放射性示踪技术进行了铺施麦秸对夏大豆效应的田间试验,结果如下:1.铺施麦秸条件下,大豆产量增加16.2%或22.1kg/亩。生物统计结果表明,在P_(0.05)水平下,L.S.D为±15.0%和±20.3kg/亩,属增产显著水平。2.大豆植株的根瘤数、根瘤重和它的固氮活性,在分枝—初花期间分别比对照增加39.2%、81.7%和20.0%。3.铺施麦秸19天后,CO_2释放量平均为5.60kg/亩/天,对照的为5.21kg/亩/天。这相当于每天每亩有2.98kg的麦秸被矿化,同时大豆植株的光合作用强度也增加。来自叶部的~(14)C光合物质在豆荚和根瘤中的增加量分别为30.1—70.5%和4.5倍。铺施麦秸使地上部和荚中的~(32)P数量比对照分别提高44.8%和22.1%。这些结果表明,铺施麦秸提高了大豆植株中营养物质的数量,从而为提高大豆籽粒产量奠定了物质基础。4.铺施麦秸条件下,土壤有机质平均每年增加0.06%,并约有土壤腐殖质总量20.8%的新生腐殖质是来自铺施的麦秸中,这对维持和提高土壤肥力起着有益的作用。 相似文献
17.
Alleviation effects of calcium and potassium on cadmium rhizotoxicity and absorption by soybean and wheat roots 总被引:1,自引:0,他引:1 下载免费PDF全文
The objectives of the present study were to investigate the root responses of soybean (Glycine max L.) and wheat (Triticum aestivum L.) seedlings to cadmium (Cd) stress and to investigate the alleviation effects of Ca and K on rhizotoxicity and absorption of Cd by roots. Soybean and wheat seedlings in a hydroponic system were exposed to Cd‐spiked solutions (0, 4, 8, 12, and 16 μM) with different Ca (0.5, 1, and 10 mM) and K (0.3, 1.2, and 9.6 mM) levels for 7 d. The results showed a dramatic reduction in root elongation of soybean due to increased Cd, but increasing Ca and K levels alleviated this reduction in soybean. The amelioration of Cd toxicity by the addition of Ca may be associated with reduced Cd absorption. However, the addition of K in reducing Cd toxicity might not be dependent upon Cd absorption. Compared with soybean, wheat showed a relatively high tolerance to Cd. The alleviation of Cd rhizotoxicity in wheat was more apparent by K than by Ca. We found that the addition of K promoted root elongation but not directly prevent Cd stress, and that the addition of Ca minimized acute rhizotoxicity of Cd in wheat. Moreover, the addition of Ca reduced Cd absorption by soybean and wheat roots. However, the addition of K only reduced Cd absorption by wheat roots. 相似文献
18.
低磷胁迫下溶液培养大豆生长和磷素营养特性及其与土培下磷效率特性的关系 总被引:15,自引:2,他引:15
采用无磷 (P0 )和低磷 (P1 )溶液培养方法 ,对 1 9份经田间和盆栽土培试验中磷效率特性表现不同的大豆基因型进行研究 ,探讨低磷溶液培养条件下大豆基因型生长和磷素营养特性及其与土培条件下磷效率特性的关系。结果表明 ,在低磷溶液培养下 ,不同大豆基因型吸收溶液中可溶性磷的能力存在差异 ,吸收的磷量可达到自身固有磷量的 5 %~ 80 %左右。土培条件下磷效率比值相对值较小 (即在酸性红壤耕地上适应性较好 )的基因型 ,在低磷溶液培养下 ,不同基因型吸收溶液中可溶性磷的能力有强有弱 ;而磷效率比值相对值较大 (即在酸性红壤耕地上适应性较差 )的基因型 ,亦有相似的表现。低磷处理的不同大豆基因型植株鲜重净增量为无磷处理的 17.79%~99.09% ,植株干重净增量为 15.64 %~11.6 67%。无磷处理的植株干、鲜生物量 ,地上部干、鲜量 ,磷效率比值和低磷处理的磷效率比值以及种子重与土培条件下大豆基因型磷效率比值相对值呈显著、极显著正相关。 相似文献