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31.
为探讨花生高产适宜根系的大小,确定作物根系生长的合理空间范围,为花生高产新品种选育和栽培提供理论依据。以高产花生品种青花7号为试材,设长×宽×深分别为40 cm×20 cm×20 cm、40 cm×20 cm×40 cm、40 cm×20 cm×60 cm、40 cm×20 cm×80 cm 4种大小不等的根土空间,采用网袋法,研究了根土空间对花生营养器官氮、磷、钾吸收积累变化的影响。结果表明,根土空间过小限制了花生根茎叶生物量、氮磷钾含量和积累量的提高,当限根深度超过60 cm后,根土空间大小对花生根茎叶生物量、氮磷钾含量和积累量的影响变小。说明限根深度超过60 cm后,根土空间大小已不是限制花生吸收氮磷钾素的关键因素,限根深度不小于60 cm的根土空间是花生获得较高产量水平的一个必要条件。  相似文献   
32.
施氮量对酿造高粱产量和氮素利用率的影响   总被引:1,自引:0,他引:1  
为了实现酿造高粱氮肥合理高效利用,以晋杂22号为试验品种,研究了6种氮肥施用量(0,75,150,225,300,450 kg/hm~2)对酿造高粱产量和氮素利用率的影响。结果表明,在施氮0~450 kg/hm~2,施用氮肥有效地增加了高粱产量和净利润,但随着施氮量的增加产量先升高后降低,其关系可表示为y=-0.037x~2+17.759x+5 874.41(R2=0.878 1)。随着施氮量的增加高粱氮肥偏生产力和氮肥利用率显著降低;氮素吸收效率逐渐降低;氮素利用效率大体呈下降趋势;当施氮量为225 kg/hm~2时,高粱产量、净利润最大,极显著高于不施氮处理,增产率达37.64%;氮肥农学利用率和氮肥偏生产力分别为9.96,36.42 kg/kg,氮肥利用率可达到38.70%,且氮平衡为3.07,大体上满足氮素平衡。综合分析各项指标,施氮量为225 kg/hm~2是酿造高粱晋杂22号实现高产、高效益、较高氮肥利用率的适宜氮量。  相似文献   
33.
氮肥减量条件下间作绿豆压青对甘蔗生长及氮代谢的影响   总被引:1,自引:0,他引:1  
以甘蔗单作常规施氮量为对照(CK),设氮化肥减量20%+间作绿豆压青(A)、氮化肥减量40%+间作绿豆压青(B)和氮化肥减量60%+间作绿豆压青(C)3个处理,通过测定甘蔗农艺性状、蔗茎产量和甘蔗叶片氮代谢相关生理生化指标,研究氮肥减量条件下间作绿豆压青对甘蔗生长及氮代谢的影响。结果表明,间作绿豆影响新植蔗分蘖,分蘖率显著低于CK,但对甘蔗有效茎数影响不显著。新植蔗产量表现为A>B>CK>C。氮化肥减量条件下间作绿豆压青对宿根蔗发株率、株高、有效茎数、甘蔗茎径有促进作用。宿根蔗蔗茎产量表现为A>B>C>CK。2年的甘蔗蔗糖分含量表现为C>B>A>CK。氮化肥减少20%条件下间作绿豆压青对提高甘蔗叶片谷氨酰胺合成酶、硝酸还原酶活性和游离氨基酸、可溶性糖含量有促进作用。综合甘蔗农艺性状、蔗茎产量、氮代谢相关指标测定结果和经济效益的表现,试验以氮化肥减量20%+间作绿豆压青的A处理最优。  相似文献   
34.
To establish identification and evaluation methods of N (nitrogen) absorption and utilization of rapeseed (Brassica napus L.), difference of N nutrition efficiency (NNE) among rapeseed germplasms and relationship between NNE and plant traits under various N application rates were analyzed in this research. Pot cultivating experiments were conducted to investigate NNE with 3 ​N application rates in soil (0.05, 0.2 and 0.3 ​g/kg). A total of 12 rapeseed germplasms were planted, nitrogen absorption efficiency (NAE) and nitrogen utilization efficiency (NUE) in seedling stage, bolting stage, initial flowering stage, final flowering stage, and maturity stage were obtained. Results showed that bolting stage was the best period for NAE identification and evaluation. Low N application rate in soil (0.05 ​g/kg) was the best for NAE, and the indirect indexes were basal stem diameter, plant root dry weight and above ground plant dry weight. Maturity stage was the best period for NUE identification and evaluation. High N application rate in soil (0.3 ​g/kg) was the best for NUE, and indirect indexes were above ground plant dry weight and basal stem diameter. N application rates of 0.05 ​g/kg in soil was the best for nitrogen harvest index at maturity stage, and indirect indexes was number of pods per plant. Plant traits of rapeseed germplasms affected NNE. Higher basal stem diameter, plant root dry weight and above ground plant dry weight at bolting stage under low N application rate were important characteristics of N absorption in rapeseed. Higher above ground plant dry weight and basal stem diameter at maturity stage under high N application rate were important characteristics of N utilization. Higher number of pods per plant at maturity stage under lowe N application rate was an important characteristic of N harvest index. These results provided a reliable index for N management and provided theoretical basis for guiding rapeseed breeding.  相似文献   
35.
安徽省作物养分供需分析及化肥减施潜力研究   总被引:3,自引:0,他引:3  
有机-无机相结合的农田养分管理模式是现阶段中国发展绿色农业的必由之路,因而开展有机、无机养分和作物养分需求的比较研究对促进养分资源的合理分配和施用具有重要的参考价值。本文采用文献调查和统计分析的方法,评估了安徽省16市2010—2016年主要有机肥(包括秸秆、粪便、绿肥和饼肥)的养分资源,明晰了安徽省农业生产中有机、无机养分投入现状,并根据农业种植结构开展了有机、无机养分和作物养分需求的差异和关系研究,最后探索了安徽省的化肥减施潜力。结果表明:安徽省2010—2016年平均有机肥养分资源为287.70万t,N、P_2O_5和K_2O分别为104.49万t、39.60万t和143.61万t,可基本满足作物的养分需求;但有机肥的当季利用率低,N、P_2O_5和K_2O的当季利用率分别为21.44%、19.91%和52.61%,有机肥N、P_2O_5和K_2O实际还田量仅占作物养分需求的20.74%、25.38%和63.61%,占农田养分总投入的比重分别为11.87%、10.27%和51.35%。全省N、P_2O_5、K_2O养分实际投入量(包括有机肥和化肥)是作物养分需求的1.75倍、2.47倍和1.24倍,有7个市的N和13个市的P_2O_5养分施用量超过作物需求的2倍,存在较高的环境污染风险。通过控制农业总养分输入,安徽省的化肥减施潜力为35.12%,N、P_2O和K_2O的减施潜力分别为21.28%、23.97%和78.61%。提高有机肥的当季利用率和发展冬季绿肥资源可进一步促进化肥减施。本研究可为安徽省化肥零增长和农牧业的绿色可持续发展提供数据参考。  相似文献   
36.
Optimising mineral nitrogen (N) use in crop production is inevitable target as mineral fertilisers reflect one of the highest inputs both in terms of economy and energy. The aim of the study was to compare the relationship between the rate of N fertiliser application and different measures of energy parameters exemplary data for spring-wheat in boreal climate condition in Estonia in 2006–2010. The effect of mineral N with rates 0, 40, 80, 120 and 160 kg N ha−1 was studied on the background of composted cow manure and without organic fertilisers. Univalent parameters, energy gain (EG) (energy output  energy input) and energy ratio (ER) (energy output/energy input) were calculated. To aggregate parameters with different units (ER and EG) we proposed two standardisation approaches for combined indices. ER maximisation gave both organic fertilisation background optimum N norms significantly lower than EG (p < 0.05) optimisation. Both the new combined indices gave optimum N norms in between the rate of ER an EG. Composted cow manure background did not affect mineral N optimisation significantly. We suggest optimisation of mineral N according to bi-dimensional parameters as they capture important features of production efficiency and are more objective using as advisory tool for sustainable production systems.  相似文献   
37.
涝渍对Bt棉棉蕾杀虫蛋白表达含量及氮代谢影响   总被引:1,自引:0,他引:1  
李远  李亚兵  胡大鹏  王俊  衡丽  张祥  陈源  陈德华 《作物学报》2017,43(11):1658-1666
以Bt棉常规种泗抗1号和杂交种泗抗3号为材料,于盛蕾期设计不同程度涝渍(土壤持水量为最大持水量的90%、100%,渍水2 cm)胁迫4 d以及土壤持水量为最大持水量90%逆境下持续胁迫24~120 h的试验,探讨棉蕾中Bt杀虫蛋白表达量变化及相关氮代谢生理机制。结果表明,土壤不同涝渍程度影响棉蕾Bt蛋白含量。土壤持水量为最大持水量的90%、100%和渍水2 cm处理胁迫后,常规种泗抗1号棉蕾中Bt蛋白含量分别下降36.5%、42.1%和51.4%,杂交种泗抗3号分别下降19.2%、57.2%和64.5%。90%的土壤持水量持续胁迫96 h使棉蕾Bt蛋白含量开始显著下降,泗抗1号和泗抗3号分别下降20.8%和17.6%。随着胁迫时间延长下降幅度增大。不同涝渍程度或水渍持续胁迫条件下,棉蕾中可溶性蛋白含量,硝酸还原酶(NR)、谷氨酸草酰乙酸转氨酶(GOT)、谷氨酸丙酮酸转氨酶(GPT)、谷氨酰胺合成酶(GS)和谷氨酸合成酶(GOGAT)活性下降,游离性氨基酸含量,肽酶、蛋白酶活性增加。说明涝渍逆境下,棉蕾中蛋白质合成能力下降、分解能力增强,引起可溶性蛋白包括Bt杀虫蛋白含量下降,导致棉蕾抗虫性下降。  相似文献   
38.
An aquaponics system (AS) is an integrated system that combines a recirculating aquaculture system and a hydroponics system (HS). It is designed to recover nutrients released from fish and transfer them to plants to provide a system more environmentally-friendly than the two systems working separately. As a result, several AS are under development, but little information is available about their overall performances. The aim of this study was to assess nutrient-use efficiency and environmental impacts of an AS, specifically a common carp-lettuce AS located in a greenhouse. Nutrient budgets of nitrogen (N) and phosphorus (P) were calculated and Life Cycle Assessment (LCA) was performed for the AS and for a lettuce Individual Hydroponics System (IHS), similar to the HS of the AS, operating in the greenhouse at the same time. The experiment was performed over a 52-day cycle, which corresponds to the growing time required to harvest marketable lettuce. The nutrient budgets were well balanced, with 24.6% of the N unaccounted-for, most likely due to N2 gas emission, and 6.6% of the P unaccounted-for, most likely due to having underestimated the quantity of sediment. At the beginning of the experiment, N represented 55.9%, 37.1% and 0.1% of the total N input in the formulated feed, stocked fish and lettuce seedlings, respectively. At the end of the experiment, N represented 47.6% and 0.4% of the total N input in the harvested fish and lettuce, respectively. At the beginning of the experiment, P represented 56.94%, 40.20% and 0.03% of the total P input in the formulated feed, stocked fish and lettuce seedlings, respectively. At the end of the experiment, P represented 51.52% and 0.42% of the total P input in the harvested fish and lettuce, respectively. LCA clearly indicated two environmental impact hotspots: the origin of nutrients and energy use. One kg of lettuce growth in the AS clearly had lower environmental impacts than that in the IHS for climate change, acidification, eutrophication, land competition and cumulative energy demand; however, a decrease in water dependence was not observed. The indicator for net primary production use highlighted the dependence of the AS on natural resources, especially fish meal and fish oil. Compared to the use of chemical nutrients in the IHS, the use of nutrients from formulated feed in the AS decreased climate change impact but increased the use of natural resources.  相似文献   
39.
不同施氮量对冬小麦产量、效益及土壤理化性状的影响   总被引:1,自引:0,他引:1  
为探明豫北地区高肥力地块不同施氮量对冬小麦产量、经济效益及土壤理化性状的影响,在安阳市北关区壤质潮土上开展了冬小麦不同施氮量试验,设常规施磷钾肥(W1,CK)、常规施肥减施氮肥30%(W2)、常规施肥减施氮肥15%(W3)、常规施肥减施氮肥5%(W4)、常规施肥(W5)和常规施肥增施氮肥5%(W6)6个处理。结果表明,随着氮肥施用量的减少冬小麦主茎叶龄、次生根数、茎蘖数、株高及穗长等农艺性状呈下降趋势,以W6处理最佳。冬小麦产量随着施氮量的增加呈上升趋势,W4、W5、W6处理与W1处理相比增幅分别达48.7%、48.9%、49.1%,W4、W5、W6处理间差异不显著;但与W2、W3处理间差异达到显著水平。不同施氮量处理经济效益较W1处理均有不同程度增加,W4较W1处理净增效益5 869.80元/hm 2,较W5处理净增效益24.45元/hm 2。不同施氮量处理对土壤有机质、全氮、有效磷、速效钾、缓效钾含量和土壤容重有显著影响,但对pH影响不显著。土壤全氮含量随施氮量的增加呈上升趋势;W4处理土壤容重最低。综合分析,以常规施肥减施氮肥5%处理效果最佳。  相似文献   
40.
[目的]比较不同竹种林下土壤的营养元素含量。[方法]在福建农林大学百竹园内选取大明竹、牡竹、角竹、花巨竹和大木竹5个竹种,分别于春、夏、秋、冬4个季节对其林下土壤进行"S"型多点采样,对其氮、磷、钾含量进行测定。[结果]大明竹、牡竹、角竹、花巨竹和大木竹5个竹种林下土壤的营养元素含量皆较高,但各竹种之间的营养元素含量有显著差异,且各竹种在不同季节的营养元素含量也有明显差异。其中大明竹林下土壤的营养元素含量最高,且最为稳定,牡竹相对较差。[结论]在福建地区,大明竹对营养元素的产生及维系稳定具有良好的能力,可成为该地区城市观赏用竹及发展林下经济的优良竹种。  相似文献   
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