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21.
为了提高水分和肥料的利用效率,2015~2016年进行了限水条件下施肥方式对产量构成因素影响的试验。结果表明:底施三元素复合肥+春季浇2水(拔节水+开花水)的产量最高;在相同水分或肥力条件下对穗数的影响较小,穗粒数、不孕小穗数随着水肥条件的不同变化较大,说明在小麦生产中水分和养分是制约小麦生产的主要因素。  相似文献   
22.
【目的】探明秸秆还田和氮肥管理对麦/油后直播杂交稻氮素积累、转运、氮肥利用效率及籽粒产量的影响。【方法】选用优质三系杂交稻宜香优2115,采用二因素裂区设计,麦、油茬田同步开展试验,处理完全一致。主区为麦/油秸秆全量翻埋还田(M1)和秸秆不还田(对照,M0),副区设4个氮肥管理,即不施氮对照(N0)、m基肥m分蘖肥m促花肥m保花肥比例分别为1∶0∶0∶0(N1)、3∶3∶2∶2(N2)、2∶2∶3∶3(N3),测定了直播杂交稻主要生育时期各器官的氮素积累量及籽粒产量。【结果】结果表明,两种轮作方式下,氮肥管理对直播杂交稻主要生育时期的氮素积累、齐穗后茎鞘、叶片的氮素转运及稻株氮素利用效率均存在显著或极显著的调控效应。秸秆还田显著提高麦/油茬杂交稻中后期的氮素积累量、茎鞘和叶片的氮素转运量以及氮肥利用效率,其中,氮肥农学利用率、氮肥偏生产力和氮肥表观利用率较秸秆不还田分别提高了34.96%/28.76%、2.52%/2.61%和31.91%/22.30%。同时,油菜秸秆还田下直播杂交稻各生育时期氮素积累和产量较麦秆还田表现更好,籽粒产量提高481 kg/hm2(5.22%)。M1N2处理、M0N3处理下,直播杂交稻各阶段的氮素积累速率明显加大,促进结实期茎鞘和叶片的氮素向穗部转运,成熟期稻株氮素积累量优势明显且有较高的氮素利用效率(麦/油茬稻氮肥农学利用率、偏生产力和表观利用率分别达17.87 kg∙kg-1/17.85 kg∙kg-1、67.27 kg∙kg-1/71.28 kg∙kg-1、74.93%/75.05%),最终实现高产。【结论】在麦/油-稻轮作下秸秆全量还田,配合N2氮肥管理,可有效提高直播杂交稻氮素吸收、利用效率,增加籽粒产量,尤以油菜秸杆还田的效果更好。  相似文献   
23.
华北平原冬小麦-夏玉米一年两熟种植模式为维护国家粮食安全发挥了重要作用。但冬小麦生长期正处于华北平原降水较少的干旱季节,实现高产依赖于灌溉,是华北平原地下水超采的主导因素之一。随着国家地下水限采政策的实施,在地下水超采区如何稳定冬小麦的种植面积和产量是面临的一个重要问题。本文通过综述以往研究并结合典型地点田间试验结果,从冬小麦种植可减少休闲期土壤蒸发损失、具有的深根系系统可充分利用土壤储水、可利用微咸水替代淡水灌溉、通过限水灌溉发展优质麦生产、冬春形成覆盖层美化和防沙尘效应等方面论述了华北平原种植冬小麦的优势,提出华北平原冬小麦生产需要转变传统高耗水高产量理念,充分发挥冬小麦抗旱、耐盐能力强的特点,在不实施大规模压缩冬小麦种植面积条件下,通过冬小麦限水灌溉和微咸水利用满足对地下水压采需求,充分发挥华北平原冬小麦种植冬春防风沙、美化环境的生态功能,同时满足区域口粮安全的保障功能。  相似文献   
24.
我国主要麦区农户施肥评价及减肥潜力分析   总被引:4,自引:0,他引:4  
【目的】明确我国主要麦区农户小麦施肥存在的问题及减肥潜力,为科学施肥、合理减肥提供依据。【方法】连续3年对我国主要麦区的小麦种植户进行施肥调研和取样,基于农户产量、养分需求量和土壤养分供应水平对其施肥状况和减肥潜力进行评价和分析。【结果】我国主要麦区农户小麦产量和生物量平均为6.0和13.2 t·hm -2,二者极显著线性相关。小麦产量与施肥量和土壤养分无显著相关。我国小麦氮(N)、磷(P2O5)和钾(K2O)肥用量平均分别为191.1、112.8和53.4 kg·hm -2,春麦区农户氮、磷和钾肥用量平均分别为171.7、108.9和10.6 kg·hm -2,旱作区分别为154.3、111.8和32.6 kg·hm -2,麦玉区分别为236.4、128.1和74.0 kg·hm -2,稻麦区分别为177.5、77.0和71.8 kg·hm -2。就施氮量而言,春麦区过量施氮的农户较少,为34%,其次是麦玉区、稻麦区和旱作区,分别为42%、55%和63%;产量较低的农户是氮肥减施的重点,减氮潜力最高达43.6%,平均需减氮2.3—135.5 kg·hm -2。过量施磷问题比较突出,各麦区施磷过量的农户分别占63%、87%、68%和57%,即使小麦高产时,仍有超过50%的农户施磷过量;各麦区不同产量等级的农户均需减施磷肥,减磷量平均为3.8—91.1 kg·hm -2,旱作区减磷潜力最大,达55.6%。施钾状况因麦区而异,在春麦区,主要问题是施钾不足,占84%,平均需增施钾肥22.8 kg·hm -2;旱作、麦玉和稻麦区,减钾潜力分别达43.2%、25.7%和56.0%;产量较低的农户是减钾的重点,平均需减钾31.7—45.9 kg·hm -2。【结论】我国农户施肥状况和减肥潜力因农户产量和麦区不同存在差异,中低产农户过量施肥问题较为严重,应注意根据产量适量减少施用氮、钾肥,所有农户均需警惕磷肥过量投入问题,其中旱作区氮、磷肥减施潜力最高,稻麦区减钾潜力最高。  相似文献   
25.
Soil surface mulching and planting density regulation are widely used for effective utilization of limited rainwater resources and improvement of crop productivity in dryland farming.However,the combined effects of mulching type and planting density on maize growth and yield have been seldom studied,especially in different hydrological years.A field experiment was conducted to evaluate the effects of mulching type and planting density on the soil temperature,growth,grain yield(GY),water use efficiency(WUE)and economic benefit of rainfed maize in the drylands of northern China during 2015-2017.Precipitation fluctuated over the three years.There were four mulching types(NM,flat cultivation with non-mulching;SM,flat cultivation with straw mulching;RP,plastic-mulched ridge plus bare furrow;RPFS,plastic-mulched ridge plus straw-mulched furrow)and three planting densities(LD,low planting density,45.0×10^3 plants/hm^2;MD,medium planting density,67.5×10^3 plants/hm^2;HD,high planting density,90.0×10^3 plants/hm^2).Results showed that soil temperature was higher with RP and lower with SM compared with NM,but no significant difference was found between RPFS and NM.More soil water was retained by soil mulching at the early growth stage,but it significantly varied at the middle and late growth stages.Maize growth was significantly improved by soil mulching.With increasing planting density,stem diameter,net photosynthetic rate and chlorophyll content tended to decline,whereas a single-peak trend in biomass yield was observed.Mulching type and planting density did not have significant effect on evapotranspiration(ET),but GY and WUE were significantly affected.There were significant interacting effects of mulching type and planting density on biomass yield,GY,ET and WUE.Compared with NM,RPFS,RP and SM increased GY by 57.5%,50.8%and 18.9%,and increased WUE by 66.6%,54.3%and 18.1%,respectively.At MD,GY increased by 41.4%and 25.2%,and WUE increased by 38.6%and 22.4%compared with those of at LD and HD.The highest maize GY(7023.2 kg/hm^2)was observed under MD+RPFS,but the value(6699.1 kg/hm^2)was insignificant under MD+RP.Similar trends were observed for WUE under MD+RP and MD+RPFS,but no significant difference was observed between these two combinations.In terms of economic benefit,net income under MD+RP was the highest with a 9.8%increase compared with that of under MD+RPFS.Therefore,we concluded that RP cultivation pattern with a suitable planting density(67.5×10^3 plants/hm^2)is promising for rainwater resources utilization and maize production in the drylands of northern China.  相似文献   
26.
Synthetic hexaploid wheat(SHW), possesses numerous genes for drought that can help breeding for drought-tolerant wheat varieties. We evaluated 10 root traits at seedling stage in 111 F9 recombinant inbred lines derived from a F2 population of a SHW line(SHW-L1) and a common wheat line, under normal(NC) and polyethylene glycol-simulated drought stress conditions(DC). We mapped quantitative trait loci(QTLs) for root traits using an enriched high-density genetic map containing 120 370 single nucleotide polymorphisms(SNPs), 733 diversity arrays technology markers(DArT) and 119 simple sequence repeats(SSRs). With four replicates per treatment, we identified 19 QTLs for root traits under NC and DC, and 12 of them could be consistently detected with three or four replicates. Two novel QTLs for root fresh weight and root diameter under NC explained 9 and 15.7% of the phenotypic variation respectively, and six novel QTLs for root fresh weight, the ratio of root water loss, total root surface area, number of root tips, and number of root forks under DC explained 8.5–14% of the phenotypic variation. Here seven of eight novel QTLs could be consistently detected with more than three replicates. Results provide essential information for fine-mapping QTLs related to drought tolerance that will facilitate breeding drought-tolerant wheat cultivars.  相似文献   
27.
Stripe rust is a continuous threat to wheat crop all over the world. It causes considerable yield losses in wheat crop every year. Continuous deployment of adult plant resistance(APR) genes in newly developing wheat cultivars is the most judicious strategy to combat this disease. Herein, we dissected the genetics underpinning stripe rust resistance in Pakistani wheat germplasm. An association panel of 94 spring wheat genotypes was phenotyped for two years to score the infestation of stripe rust on each accession and was scanned with 203 polymorphic SSRs. Based on D' measure, linkage disequilibrium(LD) exhibited between loci distant up to 45 c M. Marker-trait associations(MTAs) were determined using mixed linear model(MLM). Total 31 quantitative trait loci(QTLs) were observed on all 21 wheat chromosomes. Twelve QTLs were newly discovered as well as 19 QTLs and 35 previously reported Yr genes were validated in Pakistani wheat germplasm. The major QTLs were QYr.uaf.2 AL and QYr.uaf.3 BS(PVE, 11.9%). Dissection of genes from the newly observed QTLs can provide new APR genes to improve genetic resources for APR resistance in wheat crop.  相似文献   
28.
Wheat(Triticum aestivum L.) is an important staple crop for global human. The necrotrophic fungus Rhizoctonia cerealis is the causal pathogen of sharp eyespot, a devastating disease of wheat. Herein, we identified RcMEP1, a zinc metalloproteaseencoding gene from R. cerealis genomic sequences, and characterized its pathogenesis function. RcMEP1 expressed at markedly-high levels during R. cerealis infection process to wheat. The predicted protein RcMEP1 comprises of 287 amino acid residues and contains a signal peptide and a M43 metalloprotease domain harboring the active site motif(HEVGHWLGLYH). The assays of Agrobacterium tumefaciens-mediated transient expression in Nicotiana benthamiana leaves indicated that RcMEP1 is an apoplastic elicitor of cell death, and that the predicted signal peptide functions and is required for secretion and cell death-induction. The purified RcMEP1 protein and its M43 domain peptide were individually able to induce plant cell death and H2 O2 accumulation, and to inhibit expression of host chitinases when infiltrated into wheat and N. benthamiana leaves, while the M43 domain-deleting peptide and negative control lacked the capacity. Moreover, compared with the control pretreatment, the purified RcMEP1 protein or its M43-domain peptide resulted in enhanced pathogenesis in the inoculated wheat, whereas the M43 domain-deleting peptide failed. These results suggest that RcMEP1 acted as an important pathogenicity factor during R. cerealis infection to wheat and that its signal peptide and M43 domain are required for the secretion and pathogenesis of RcMEP1. This study provides insights into pathogenesis role of M43 domain-containing metalloproteases during R. cerealis infection to wheat.  相似文献   
29.
内蒙古平原灌区“春麦冬播”种植效应及品种适应性   总被引:1,自引:0,他引:1  
针对内蒙古春播小麦生育期短、干热风、高温逼熟等因素制约产量提高,且收获后光温资源极大浪费的现状,以及试种冬小麦发现的冬季冻害、春季干旱或“倒春寒”影响返青率及前茬限制等问题,本研究以“春麦冬播”种植模式为切入点,采用不同春化类型小麦品种,通过连续2年的田间试验,系统研究了不同小麦品种越冬出苗、叶片生理、根系性状及产量形成的差异,以期筛选适宜冬播的小麦品种。结果表明:供试的全部春性小麦品种及部分冬性品种可以以种子形式完成春化作用,第2年正常抽穗成熟。冬播条件下春季田间出苗率较春播小麦有所降低,但根系发达,对低温及干旱的适应性强。通过系统聚类筛选出适宜内蒙古平原灌区冬播的3个小麦品种,包括春性品种永良4号、冬性品种宁冬11号和半冬性品种河农7106,其共同特征为越冬出苗率高、抗逆性强、根系发达、产量表现较高,其中永良4号产量可达到与春播相同的水平。  相似文献   
30.
为探讨自制的玉米秸秆基纤维素保水剂(SAP)在农业生产上的应用潜力,利用扫描电镜表征了SAP吸水前后形貌变化,探究了SAP施用量对土壤持水性能和不同程度水分胁迫下冬小麦根系生长的影响。结果表明:SAP在土壤中吸水膨胀后降低了土壤容重,土壤最大水分含量较不施SAP显著提高19.1%~67.6%,同时降低了前3天土壤水分蒸发速率。轻度(60%~70%田间持水量)和中度(40%~50%田间持水量)水分胁迫下,施用0.4% w/w SAP处理冬小麦总根长提高15.9%和24.7%,根系活力提高29.6%和43.5%,但充足供水(75%~90%田间持水量)时施用SAP对冬小麦根系活力无显著影响。因此,玉米秸秆基纤维素保水剂施入土壤后能够改善土壤持水性能,从而缓解水分胁迫对冬小麦根系生长的抑制效应。  相似文献   
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