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1.
基于归一化法的双季稻叶面积指数动态预测模型   总被引:2,自引:0,他引:2  
研究旨在阐明双季稻叶面积指数与辐热积的关系及施氮量对其的影响。选择11个早晚稻品种进行4个施氮水平的小区试验,于关键生育期取样测定叶面积指数(LAI),并对LAI及全生育期的累积辐热积(TEP)进行归一化处理,采用Curve Expert分析软件对相对LAI(RLAI)与相对TEP(RTEP)进行模拟分析,获得6个拟合效果较佳的模拟模型,其中有理方程能够较准确地描述双季稻叶面积指数的动态变化模式,相关系数为0.9677**,具有明确的生物学意义。利用独立的田间试验资料,对构建的模型进行了初步检验。结果表明:早晚稻不同相对TEP所对应的LAI观测值与模拟值之间的根均方差(RMSE)为0.50 m2/m2,表明基于RTEP的RLAI动态模型能够准确地反映双季稻LAI的动态变化。早晚稻群体最大LAI(LAImax)随施氮量的增加呈二次多项式函数增大趋势,相对LAI变化速率随相对辐热积的增加呈"N"形变化趋势。研究结果为早晚稻高产栽培和叶面积指数的精确调控提供了理论支撑。  相似文献   

2.
施氮量对不同株型小麦品种叶型垂直分布特征的影响   总被引:12,自引:0,他引:12  
在大田生产条件下,以紧凑型高秆品种宁麦9号和矮秆品种矮抗58、中间型品种扬麦12、松散型品种淮麦17为材料,测定并分析了3个施氮水平下不同生育时期的小麦冠层叶型特征,以及开花期小麦叶长和叶宽、单叶面积、茎叶夹角、分层叶面积指数和群体透光率的垂直分布特征。结果表明,小麦叶型特征存在显著的基因型差异,而施氮量的调控作用因叶型性状和生育时期不同而各异。叶片定形后,从植株基部向上,4个小麦品种不同叶位叶片单叶面积呈“升-降-升-降”的变化趋势,而茎叶夹角呈递减趋势。其最大分层叶面积指数所在的相对冠层高度为0.60。从冠层基部向上,群体透光率逐渐增加,符合二次多项式曲线。施氮提高了单叶面积,其中扬麦12和淮麦17的增加幅度较大。施氮提高了各叶位茎叶夹角,且对宁麦9号、淮麦17和扬麦12冠层下部茎叶夹角的调控作用大于冠层上部,而对矮抗58正好相反。施氮提高了各株型小麦品种的分层叶面积指数,降低了群体透光率,但过量施氮条件下,宁麦9号和矮抗58透光率的下降幅度小于扬麦12和淮麦17。各株型小麦品种群体透光率随累积叶面积指数的增加而递减。籽粒产量为N150 (150 kg hm-2) > N225 (225 kg hm-2) > N75 (75 kg hm-2)。施氮显著提高了小麦品种穗数和收获指数,但对千粒重的影响不显著。穗粒数以高氮处理最高,低氮处理其次。籽粒产量、千粒重、穗数、穗粒数和收获指数在4个株型品种间差异显著,籽粒产量为矮抗58 > 宁麦9号 > 扬麦12 > 淮麦17,穗数和穗粒数是造成籽粒产量差异的主要原因。  相似文献   

3.
为阐明播期、播量及施氮量对冬小麦生长与光谱指标的影响规律,本研究通过开展连续两年不同播期、播量及施氮量的冬小麦田间试验,系统地研究了三因素及其互作对冬小麦产量、关键生育时期叶面积指数(leafarea index,LAI)和归一化红边指数(normalized difference red edge,NDRE)的影响,并进一步分析了三因素对冬小麦冠层NDRE时序曲线的影响。另一方面建立了不同产量水平下冬小麦冠层NDRE适宜时序曲线,以便于实时监测不同产量水平下冬小麦长势动态。结果表明,冬小麦冠层NDRE与LAI随关键生育期的变化相似,且三因素对关键生育时期2个指标的影响规律基本一致。2018—2019年冬小麦产量、不同生育时期LAI和冠层NDRE均随播期推迟而下降;2019—2020年除灌浆期外,晚播冬小麦产量、LAI及冠层NDRE峰值最大。2年冬小麦不同生育时期LAI、冠层NDRE随施氮量增加而增加;而不同播量间无明显差异。三因素中播期、施氮量对冬小麦冠层NDRE时序曲线有显著影响。冬小麦冠层NDRE时序曲线随施氮量增加被纵向拉长;曲线下降部分随播期推迟向左平移,同时2018—201...  相似文献   

4.
为明确湖南双季稻区水稻生产适宜的施氮水平和灌溉方式,采用随机区组设计,以陵两优942和领优华占分别为早晚稻材料,设置N1~N3共3个施氮水平(早晚稻均分别为150,120,0 kg/hm2)和W1~W3共3个灌溉方式(早晚稻均分别为水层灌溉W1、湿润灌溉W2、干湿交替灌溉W3),研究不同水肥协同处理对双季杂交稻农艺性状及产量的影响。结果表明:增施氮肥能显著提高水稻SPAD值,但在早晚稻上整体呈N1和N2的SPAD值相近,而灌溉方式呈W3既能使早晚稻保持较高SPAD,也能避免后期贪青晚熟;水稻叶面积指数(LAI)在一定程度上同施氮量呈正比,在早稻(全生育期)和晚稻(生育前期)N1和N2之间的LAI值相近,但在晚稻(生育后期)N1高于N2,而灌溉方式对早晚稻LAI值影响较小,主要以W3略高;增施氮肥能显著促进水稻干物质量的积累,除早稻(乳熟期)单株干物质量呈N2高于N1和晚稻(齐穗期)呈N1高于N2外,早晚稻其余时期的单株干物质量呈N1和N2相近,整体上说明减氮并不会显著降低水稻单株干物质量,灌溉方式对早稻影响较小,对晚稻影响较大,整体早晚稻单株干物质量以W3增长效果...  相似文献   

5.
大豆模拟株型的研究   总被引:9,自引:0,他引:9  
尹田夫 《作物学报》1983,9(3):205-211
本文通过大豆株型模拟技术,运用电子计算机程序,讨论无限结英习性大豆品种模拟株型——塔形株型和碟形株型其顶、中、底冠层叶面积指数(LAI)垂直分布及光分布特征。研究塔形株型及碟形株型顶、中、底冠层光截获(RLI)对单株荚数(NPP),单株粒数(NSP),单株粒重(SWP),粒茎比(SSR),主茎荚数(PMS)及主茎每节荚数(PNMS)等产量性状形  相似文献   

6.
以“中早39”和“天优华占”为供试材料,通过大田试验研究不同施氮水平对早、晚稻产量形成、氮素利用率和水稻―土壤氮素平衡的影响。结果表明,施氮显著增加了双季稻在0~40 cm土层土壤残留无机氮,且氮形态以NH4+-N为主;当施氮量分别超过180 kg/hm2(早稻)、200 kg/hm2(晚稻)时,土壤残留无机氮含量不再显著增加;水稻―土壤氮素平衡表明,除氮肥外,其他氮输入占氮素总输入的48.7%~78.4%,氮的输出主要受水稻吸氮量、土壤氮残留量和氮损失量影响,在一定施氮范围内,随着施氮量的增加均显著增加。随着施氮水平的提高,早、晚稻产量呈先增加后降低的趋势,其主要通过增加有效穗数和穗粒数增加水稻产量;氮偏生产力、氮农学利用率与氮素依存率随施氮量增加显著降低,但氮吸收利用率、氮表观残留率和氮肥贡献率呈相反变化趋势。水稻产量和施氮量二次回归模型表明,早稻、晚稻最佳施氮量分别为163.4和209.2 kg/hm2。因此,浙江杭州区域双季稻推荐施氮量分别为早稻163.4 kg/hm<...  相似文献   

7.
本文旨在验证作物生长监测诊断仪(crop growth monitoring and diagnosis apparatus, CGMD)监测双季稻长势指标的准确性,建立基于CGMD的双季稻叶干重监测模型。通过实施8个不同早、晚稻品种和4个施氮水平的小区试验,采用CGMD获取从分蘖期至灌浆期的冠层归一化植被指数(normalized difference vegetation index, NDVI)、差值植被指数(differential vegetation index,DVI)和比值植被指数(ratio vegetation index,RVI),同步采用高光谱仪(analytical spectral devices field-spec handheld 2, ASD FH2)获取冠层光谱反射率计算NDVI、DVI和RVI;分析2种光谱仪获取的植被指数间的相关关系,验证CGMD的测量精度,建立基于CGMD的叶干重监测模型,并用独立试验数据对模型进行检验。结果表明:早、晚稻叶干重随施氮水平的增加而增大,随生育进程的推进呈"低—高—低"动态变化趋势;CGMD与ASDFH2获取的NDVI、DVI和RVI呈极显著相关,相关系数(correlation coefficient,r)分别为0.9535~0.9972、0.9099~0.9948和0.9298~0.9926,表明2种光谱仪获取的植被指数具有高度的一致性, CGMD可替代价格昂贵的ASD FH2获取NDVI、DVI和RVI。CGMD获取的3个植被指数相比, RVI_(CGMD)与叶干重的相关性最高;基于RVI_(CGMD)的幂函数模型可准确地监测叶干重,模型建立的决定系数(determination coefficient,R~2)为0.8604~0.9216,模型检验的均方根误差(root mean square error, RMSE)、相对均方根误差(relative root mean square error, RRMSE)和r分别为12.97~17.87 g m~(–2)、4.88%~16.79%和0.9951~0.9992。与人工采样测定叶干重相比,利用CGMD可实时准确地获取双季稻叶干重动态变化,在双季稻长势精确诊断和丰产高效栽培中具有应用价值。  相似文献   

8.
玉米群体冠层特征与光截获及产量关系的研究   总被引:54,自引:2,他引:54  
沈秀瑛  戴俊英 《作物学报》1993,19(3):246-252
研究通过3年试验,证明了玉米群体冠层特征及群体内光分布和光合效率随种植密度和施N量而有明显变化。叶面积大小是导致冠层特征变化的主导因子。平展型单交种丹玉13的籽粒产量高限出现在最大LAI变化于4.10-4.7之间,其冠层垂直方向上最大叶面积密度趋于由中部向中上部推移。叶片倾角和消光系数调节幅-于明显增加,光合速率、  相似文献   

9.
为探明不同机插密度与施氮量下超级杂交籼稻源库特性。在机插条件下,于2012年以超级杂交籼稻‘准两优527’为供试材料,研究密度与施氮量对超级杂交籼稻源库特性的影响。结果表明,随着施氮量的增加,移栽—孕穗和抽穗—成熟阶段的作物生长率以及群体总作物生长率、抽穗期叶面积指数、光合势、拔节—抽穗阶段叶面积比率均有增加的趋势,拔节—孕穗阶段的叶源总量值、总颖花量和总库容量亦有相同规律,而高效叶面积率、有效叶面积率和粒叶比刚好相反,但当施氮量超过150 kg/hm2时,孕穗—抽穗阶段的作物生长率和净同化率以及叶源总量值、单茎茎鞘重、叶绿素相对含量、冠层光合有效辐射截获率有下降的趋势。随着机插密度的降低,拔节—抽穗阶段的作物生长率和总作物生长率、孕穗期的叶绿素相对含量、高效叶面积率和有效叶面积率均呈增加趋势,拔节—孕穗阶段的光合势和净同化率及叶源总量值、总颖花量和总库容量亦增加,而抽穗—成熟阶段的作物生长率、孕穗—抽穗阶段的净同化率刚好相反,但当机插密度低于20.83万穴/hm2后,最大叶面积指数、孕穗—抽穗阶段的叶源总量值、冠层光合有效辐射截获率、抽穗期的叶绿素相对含量、拔节期的单茎茎鞘重和粒叶比随密度降低呈降低趋势。实粒数/叶面积与饱粒千粒重呈显著负相关,而与结实率呈显著正相关;最大群体叶面积指数、总颖花数、千粒重、总库容量与产量呈显著正相关。由此得出,提高氮肥施用量,降低机插密度,能够改善超级杂交籼稻‘准两优527’的源库质量,但过量施氮,机插密度太高或太低,反而会造成源库质量下降,导致产量下降。  相似文献   

10.
棉花冠层不同尺度光能空间分布特征研究   总被引:6,自引:1,他引:5  
【目的】棉花冠层光能空间分布是光能利用率高低的直接影响因素之一。为科学量化光能在棉花冠层的空间分布,本研究旨在分析冠层内光合有效辐射(Photosynthetically active radiation,PAR)各分量的空间变化特征。【方法】用空间统计学方法分析了冠层不同空间点、线、面位置PAR的分布特征。【结果】盛花期棉花行间冠层PAR截获率整体变化呈"V"形,即棉行间PAR截获率低于棉行附近位置;高密度的群体冠层中下部PAR截获率纵向变化速率较缓,同时在距地面60 cm处PAR截获率横向变化幅度也较小;不同冠层区域的PAR截获率与密度呈正相关关系,且随播种后时间均呈现先增后减的变化趋势。【结论】适当增大种植密度可以提高群体PAR截获率。运用空间统计学原理精确定位定量分析冠层内PAR的分布,对合理配置棉花种植模式、研究群体株型结构、培育高光效品种具有指导意义。  相似文献   

11.
种植密度对不同株型玉米冠层光能截获和产量的影响   总被引:13,自引:0,他引:13  
为了明确密植栽培中不同株型玉米的冠层光能截获、物质生产与产量的关系,以不同株型玉米陕单609 (紧凑型)、秦龙14 (中间型)和陕单8806 (平展型)为试验材料,设置4个种植密度(4.5×104、6.0×104、7.5×104和9.0×104株hm–2),于2016—2017年开展大田试验,研究密度对形态特性、冠层光分布、灌浆参数以及干物质积累等的影响。结果表明,陕单609、秦龙14和陕单8806两年平均产量依次为12,176、9624和8533 kg hm–2,分别在9.0×104、7.5×104和6.0×104株hm–2达到高产,产量较低密度分别提高了26.9%、20.4%和19.7%;随着种植密度的增加,叶面积降低,LAI和叶向值增加,在高密度下陕单609中间层由于较大的叶片和叶向值能截获更多的光能,秦龙14次之;灌浆速率达到最大时的天数(Dmax)、粒重(Wmax)、籽粒最大灌浆速率(Gmax)、平均灌浆速率(Gave)、籽粒活跃灌浆期(P)均随密度的增加而降低,高密度下陕单609的Dmax分别较秦龙14和陕单8806早1.4 d和3.0 d, Wmax和P分别高于秦龙14 (0.3g和3.3 d)和陕单8806 (1.1 g和5.4 d);吐丝后干物质积累量、干物质转运量及其对籽粒的贡献率随密度的增加呈先升高后降低的趋势。在高密度下,陕单609花后干物质积累量、花后干物质转运量和干物质转移对籽粒的贡献高于秦龙14 (5.1%、36.0%、33.5%)和陕单8806 (26.6%、46.7%、59.1%)。穗位层光能截获与产量(r=0.631)显著正相关(P0.05),与花后干物质积累量(r=0.661)和平均灌浆速率(r=0.859)极显著相关(P0.01)。可见,与秦龙14和陕单8806相比,紧凑型品种陕单609密植下调控穗上部叶片直立,改善冠层中下部光分布,维持较高的光合绿叶面积,延缓冠层叶片衰老,增加花后营养器官光合产物的积累以及籽粒灌浆速率,实现了增产。  相似文献   

12.
为了研究氮素对云南哈尼梯田水稻冠层昼温、光合有效辐射截获率及稻瘟病的影响,探索水稻冠层光合有效辐射截获率与稻瘟病发生的相关性,构建合理健康的群体冠层结构。以当地种植的常规水稻品种‘月亮谷’为试验材料,采取单因素随机区组设计,共6个处理,包括5个不同施氮处理和1个传统施肥对照处理。研究结果表明,高施氮水平下(125.0 kg/hm2)齐穗期的冠层昼温最低,冠层光合有效辐射最大截获率最大。中等施氮(75.0 kg/hm2)和高施氮水平下穗颈瘟的病情指数最高,中等施氮水平下的发病率最高,为51.0%。穗颈瘟发病率和病情指数均和冠层光合有效辐射最大截获率存在正相关性 (r=0.6696*和r=0.7130**),发病率与1级病穗百分比呈正相关性(r=0.7511**),而和2级至5级病穗百分比的关系不大,病情指数分别与5级、1级病穗百分比呈正相关性(r=0.6324**、r=0.4936*),而和2级至4级病穗百分比关系不大。  相似文献   

13.
为明确油-稻-稻三熟制油菜秸秆还田条件下早稻的适宜施氮量,2017-2018年以超级常规早稻中嘉早17为材料,设置0、75、120、165、210kg/hm 2等5个施氮量,探究油菜秸秆还田条件下施氮量对早稻产量形成及氮素吸收利用的影响。结果表明:在油菜秸秆还田条件下,适宜施氮量有利于早稻分蘖成穗,灌浆期维持较高的叶面积指数、光合势和干物质积累量,同步增加单位面积有效穗数和保持较多的每穗粒数,从而扩大总库容量。在施氮量为165kg/hm 2时早稻即可达到较高产量,同时维持较高的氮肥吸收利用率。采用线性加平台模型拟合得出最佳施氮量,2017和2018两年分别为155.91、160.37kg/hm 2,产量潜力分别达8 241.17和8 387.32kg/hm 2。  相似文献   

14.
金剑  刘晓冰  王光华 《作物学报》2004,30(12):1225-1231
通过分析不同熟期、不同产量类型的大豆,特别是高产品种(系)的群体生理特性,为栽培措施的合理运用及生态育种指标的有效选择提供理论参考。连续2年的试验结果表明,高产大豆应具有株高适宜,节数相对较多,产量形成的空间较大,生殖生长期LAI和LAD较高,R5期后叶片衰减慢,叶片在各个方向上的分布均匀,干物质积累量大,  相似文献   

15.
Fodder sorghum (M. P. Chari) was grown at varying populations to examine its influence on light interception, leaf area index and biomass production. DMY, CGR and IPAR depending on LAI reached maximum at LAI 5 of 150 000 plants ha−1 stand and thus yielded higher biomass. Therefore, physiological potential of fodder sorghum crop was found to be maximum at a population density of 150 000 plants ha−1. Further increases in population developed mutual shading and adversely affected the crop growth rate and dry matter accumulation. Significant linear relationships of dry matter yield with IPAR, plant population densities, LAI and CGR clearly indicate the interdependence of these characters.  相似文献   

16.
Dynamic simulations models may enable for farmers the evaluation of crop and soil management strategies, or may trigger crop and soil management strategies if they are used as warning systems, e.g. for drought risks and for nutrients shortage. Predictions by simulation models may differ from field observations for a variety of reasons, and such deviations can be revealed instantly by traditional or by new field monitoring techniques. The objective of this study was to improve simulation results by integrating remote sensing observations during the growing season in the simulation (i.e. run-time calibration). The Rotask 1.0 simulation model was used as it simulates daily interactions between climate (radiation temperature, vapour pressure, wind speed, precipitation), soils (water holding capacities, soil organic matter dynamics, evaporation) and crops (light interception, dry matter production, nitrogen uptake, transpiration). Various run-time calibration scenarios for replacing simulated values by remotely observed values were tested. For a number of times in the growing season, simulated values of leaf area index (LAI) and canopy nitrogen contents were replaced with values estimated from remote sensing. Field experiments were carried out in the Netherlands in 1997 (validation) and 1998 (calibration) with potato variety Bintje. Destructive field samplings were performed to follow LAI and canopy nitrogen development in the growing season. Remote sensing observations at canopy level were taken by CropScan™ equipment, covering the electromagnetic spectrum between 460–810 nm in eight spectral bands. LAI and canopy nitrogen were monitored at various moments throughout the growing season by relating them with vegetation indices (VI) that were calculated from the combination of specific remote sensing bands. The results of this study show that run-time calibration of mechanistic simulation models may enhance simulation accuracy, depending on the method how additional information is integrated. It is advised to synchronize dry matter balances and internal nitrogen balances in accordance with adjustments to observed calibration variables (in this case LAI and canopy nitrogen content). It is shown an integrated approach follows the actual crop–soil system more closely, which is helpful for specific crop management and precision agriculture in general. Run-time calibration with variables that can be estimated from remote sensing observations gives more accurate simulation results of variables that can not be observed directly, e.g. the evolution of soil inorganic nitrogen contents. High frequencies of remote sensing observations and interpolation in between them, allow reconstructing the evolution of LAI and canopy nitrogen contents to be integrated in the simulation, thereby increasing simulation accuracy of other model variables.  相似文献   

17.
This paper describes the effects of elevated CO2 (550 and 680 μl l−1) and O3 (60 nl l−1 O3 as an 8 h mean), alone or in combination, on canopy development and senescence in potato (Solanum tuberosum L. cv Bintje) across a range of European agro-climatic conditions. The assessments were made within the European CHIP project (CHanging climate and potential Impacts on Potato yield and quality) that was conducted for two growing seasons (1998 and 1999) in free air CO2 enrichment systems (FACE) and open-top chamber facilities (OTCs) at seven European sites. A comparison of chambered and unchambered experimental plots was included to examine the effects of chamber enclosure. Phenological growth stages, plant height, leaf area index (LAI) and the number of green and yellow leaves were recorded non-destructively throughout the growing season and by a destructive intermediate harvest at maximum leaf area (MLA). In the dynamic growth analysis CO2 and O3 effects were studied over three developmental stages: canopy expansion, full canopy and canopy senescence. Chamber enclosures promoted potato crop development (taller plants, more leaves) during the initial growth stages and led to a faster decline of LAI and a higher number of yellow leaves. The growth in ambient plots varied between sites and seasons, as did the scale of the treatment responses. Despite the large background variation, some overall treatment effects could be detected across all sites. Both levels of increased CO2 reduced final plant height in comparison to ambient concentrations, which indicates a premature ending of the active plant growth. At the stage of full canopy and crop senescence the average number of green leaves was significantly (P<0.05) decreased by 680 μl l−1 CO2 (OTC experiments) and LAI showed the same tendency (P=0.07). As there was however no indication of a decreased leaf formation during initial growth and at full canopy, this must have been due to an earlier leaf fall. In the FACE experiments LAI had already began to decline at the stage of full canopy at 550 μl l−1 CO2 but not in ambient CO2 (DAE×CO2, P<0.05). These observations strongly indicated that elevated CO2 induced a premature senescence during full canopy. O3 did not have an overall detrimental effect on crop development during initial growth nor at full canopy, but did induce a faster reduction of LAI during crop senescence (DAE×O3, P<0.05). Final plant height was not affected by O3. There were few CO2×O3 interactions detected. There was a suggestion (P=0.06) that O3 counteracted the CO2-induced decrease of green leaves at full canopy, but on the other hand during crop senescence the decline of LAI due to elevated O3 was faster at ambient compared to elevated CO2 (P<0.05). These responses of canopy development to elevated CO2 and O3 help to explain the treatment responses of potato yield within the CHIP project at sites across Europe.  相似文献   

18.
为明确长沙烟区烟稻复种体系烟后晚稻的适宜施氮量和种植密度,以丰源优299为材料,于2013-2014年在湖南省长沙市浏阳市开展了烟后晚稻的肥密互作效应研究。结果表明:烟后晚稻全生育期因施氮延长2d,与密度无明显关系;水稻LAI整体随施氮量和密度增大而提高,但是施氮量和密度间存在互作效应,且两年的互作效应有差异;烟后晚稻叶片SPAD值因施氮而明显提高,与密度关系不大;水稻产量构成因素中,千粒重较稳定,不因密度与施氮量变化而发生显著变化;密度与施氮量对烟后晚稻产量构成因素有明显互作效应,较低密度(152 000~200 000穴/hm 2)条件下,有效穗数、穗粒数和产量随密度和施氮量增大而明显提高,而较高密度(210000~300000穴/hm 2)条件下,结实率随施氮量增大而增大,有效穗数、穗粒数和产量随施氮量增大表现先升后降趋势,密度300 000穴/hm 2、施氮90kg/hm 2处理表现最好。  相似文献   

19.
为双季机插稻高产品种的选育和精确定量栽培提供参考依据, 2013年和2014年在长江中游双季稻地区(江西上高), 以19个早稻品种和20个晚稻品种为材料, 在高产栽培条件下明确了双季机插稻叶龄模式参数, 并通过系统聚类分析和方差分析等方法对双季机插稻高产品种特征进行了初步研究。结果表明, 机插早稻主茎平均总叶片数(N)为10.7~12.2, 叶数变幅10~13, 伸长节间数(n)均为4个, 够苗叶龄为N-n+1; 机插晚稻品种N为14.4~15.2, 叶数变幅14~16, n均为5个, 够苗叶龄为N-n。高产类型机插双季稻具有分蘖力中等、成穗率较高、全生育期特别是中后期干物质生产量及单茎干物质量大、中后期叶面积指数(LAI)及单茎叶面积较高、穗型较大、总颖花量大、粒叶比协调和日产量高等基本特征。其中, 高产类型机插早稻生育期110~113 d, 日产量75~79 kg hm -2 d -1, 分蘖力每株2.6~3.4穗, 每穗粒数115~135粒, 千粒重26~28 g; 高产类型机插晚稻115~120 d, 日产量78~82 kg hm -2 d -1, 分蘖力每株4.2~4.8穗, 每穗粒数130~150粒, 千粒重24~27 g。  相似文献   

20.
以常规早稻品种中嘉早17和杂交晚稻品种五优308为材料,针对双季机插稻生产中存在的前期发不起、中期控不住、后期穗小苗弱影响双季机插稻产量及氮肥利用效率的问题,通过大田试验研究施氮量和每穴苗数对双季机插稻产量及氮肥利用效率的影响。结果表明,氮肥用量和每穴苗数对双季机插稻产量及氮肥利用效率有显著影响。机插早晚稻均以中氮高苗组合(早稻N12D5,晚稻N13D4)产量最高,早稻为8.12t/hm 2,晚稻为9.62t/hm 2,但与低氮高苗组合(早稻N10D5,晚稻N11D4)产量差异不显著。氮肥吸收利用率早晚稻均随施氮量的增加呈先上升后下降的趋势,随每穴苗数的增加而升高。其中早稻氮素吸收利用率以N10D5处理最高,晚稻虽以N13D4处理最高,但与N11D4处理间差异不显著。干物质积累量所表现出的趋势基本和产量一致。在不影响产量的前提下,适当增加单株苗数,可使早稻比当前习惯施氮量减少16.7%,晚稻可减少15.4%。早稻氮素利用率提高10.66%,晚稻提升1.99%。由此可见,合理地增加每穴苗数和降低施氮量既可以获得足够的单位面积有效穗数实现高产,又可以提高氮素利用效率。  相似文献   

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