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1.
甜高梁从开花期到成熟期间,穗部干物质积累总量的80%-85%的物质来自植株在此时期绿叶面积的光合作用。在同样的栽培条件下,甜高梁干物质积累量随穗部籽粒成熟状态而逐增加。其历程是,开花低于乳熟期,乳熟期低于成熟期。单株干特积累与分布呈S形曲线,穗部高于上茎、,上茎低于中茎,中茎高于下茎。  相似文献   

2.
测墒补灌对小麦光合特性和干物质积累与分配的影响   总被引:4,自引:1,他引:3  
Wang HG  Yu ZW  Zhang YL  Wang D  Shi Y  Xu ZZ 《应用生态学报》2011,22(10):2495-2503
以高产冬小麦品种济麦22为材料,研究了测墒补灌对小麦光合特性和干物质积累与分配的影响.结果表明:W2(拔节期补灌至相对含水量75%,开花期70%)和DW2(拔节后10 d补灌至相对含水量75%,开花期70%)灌浆后期旗叶光合速率和实际光化学效率分别高于W3(拔节期补灌至相对含水量80%,开花期70%)和DW3(拔节后10 d补灌至相对含水量80%,开花期70%)处理;W2和DW2开花期和成熟期干物质积累量、开花前贮藏干物质向籽粒的转运量和籽粒干物质分配量高于W1(拔节期补灌至相对含水量65%,开花期70%)和DW1(拔节后10d补灌至相对含水量65%,开花期70%)处理,水分利用效率和灌溉水生产效率显著高于W3和DW3处理.相同补灌水平下,DW2和DW3灌浆后期旗叶光合速率和实际光化学效率分别高于W2和W3处理,开花期干物质积累量及其向籽粒的转运量低于W2和W3处理,开花后干物质积累量、籽粒产量、水分利用效率和灌溉水生产效率高于W2和W3处理.DW2是本试验条件下的高产高水分利用效率灌溉方案.  相似文献   

3.
该研究用双因素裂区设计,在四种栽培模式和两种类型复合肥条件下,分析了玉米杂交种隆平206的农艺性状及干物质积累的影响。隆平206的株高、生长率均在等行距和宽窄行间差异不显著,但与等行距一穴两株间差异显著;穗位高在等行距和宽窄行[(70+50)cm]间差异不显著,但与宽窄行[(90+30)cm]和等行距一穴两株间差异显著;茎粗在各处理间差异不显著,栽培模式对隆平206穗位上第1叶和穗下第1叶的叶夹角影响显著,对穗上第1叶的叶向值影响显著,对穗下第1叶的叶向值影响不显著,对不同时期穗位节和穗位上节的茎杆强度影响差异显著,对不同时期干物质积累影响差异显著。隆平206在宽窄行[(90+30)cm],地富原玉米专用复合肥时,隆平206农艺性状各指标达最佳状态,栽培模式对隆平206不同时期干物质积累影响差异显著,在拔节期、大喇叭口期、开花期、乳熟期、成熟期,隆平206在栽培模式宽窄行(70+50)cm时干物质积累量均最大。该研究结果为玉米杂交种隆平206的栽培管理和施肥提供了依据。  相似文献   

4.
干旱胁迫下冬小麦光合产物分配格局及其与产量的关系   总被引:4,自引:0,他引:4  
谷艳芳  丁圣彦  高志英  邢倩 《生态学报》2010,30(5):1167-1173
研究于2005-2006年在中国科学院封丘农田生态试验站防雨棚下进行,在充足供水(W1)、轻度干旱(W2)和严重干旱(W3)条件下,研究冬小麦周麦18(Zhoumai18)和济麦20(Jimai20)干物质积累和分配、可溶性碳水化合物(WSC)含量及其与产量形成的关系。结果显示,随着干旱胁迫程度加重,两个品种冬小麦干物质积累下降,光合产物分配格局改变。干旱胁迫导致花前叶片分配指数下降、茎和叶鞘分配指数上升,花后穗分配指数上升。干旱胁迫下冬小麦拔节期茎WSC减少,但孕穗期、开花期各器官WSC均增加。相关分析表明,冬小麦千粒重与孕穗期、开花期茎和根WSC,与开花期叶片干重显著正相关(P0.05);穗粒数与拔节期茎WSC极显著正相关(P0.01),与开花期茎和叶片干重显著正相关(P0.05)。研究认为拔节期是冬小麦需水关键期,干旱胁迫能促进光合产物向当时生长中心分配,不同生育期茎WSC是冬小麦抗旱育种的重要生理生态指标之一。  相似文献   

5.
水稻物质生产与氮、磷、钾、硅素积累特点及其相互关系   总被引:34,自引:5,他引:29  
大田条件下研究了30个水稻基因型的干物质与N、P、K、Si积累特性及其相互关系.结果表明,水稻干物质积累总量随N、P、K和Si积累总量的增加呈直线增加,其相关系数早季和晚季均达极显著水平.同时,N、P、K、Si积累的平衡有利于干物质积累,干物质积累量随NBI(养分平衡指数)直线增加,随NDI(养分偏离指数)直线下降.30个水稻品种平均N、P、K、Si积累总量比值早季为3.76:1:4.55:7.10,晚季为2.88:1:4.54:8.09.干物质积累能力以中期最强,前期最弱,而N积累能力却以前期最强,后期最弱.水稻抽穗前积累的干物质主要分配在茎鞘中,当抽穗期茎鞘比率达到最大时,茎鞘重约为叶片重的2倍,而抽穗前积累的N主要分配在叶片中,叶片中N的分配比率全生育期均比干物质分配比率高.成熟期积累的干物质、N和P主要分配在穗部,早、晚季稻的平均分配比率分别为58.01%、66.42%和70.06%,而K主要分配在茎鞘中,早、晚季稻的平均分配比率为62.08%.早季Si在茎中的分配比率(43.11%)最大,而晚季却以穗中的分配比率(46.99%)最大.  相似文献   

6.
Yao SM  Ru ZG  Liu MJ  Yang WP  Feng SW  Li G 《应用生态学报》2011,22(2):383-388
以百农矮抗58小麦为材料,采用大田试验的方法,研究了始穗期喷施不同浓度(0,10、30、50 mg·L-1)的5-氨基乙酰丙酸(ALA)对冬小麦花后干物质生产和旗叶衰老的影响.结果表明:10~50 mg·L-1 ALA处理有利于植株对干物质的积累,至成熟期其干物质总量明显高于对照(0 mg·L-1);10~50 mg·L-1 ALA处理各器官干物质的分配率与对照没有显著性差异,但其花后生产的干物质对产量的贡献率显著高于对照;在开花期,10~50 mg·L-1ALA处理的叶面积指数与对照没有显著性差异,但在乳熟期和腊熟期,叶面积指数显著高于对照.从开花期至蜡熟期,10~50 mg·L-1 ALA处理的旗叶SPAD值和净光合速率均高于对照;在灌浆后期,ALA处理降低了旗叶丙二醛(MDA)含量和相对电导率.与对照相比,10~50mg·L-1 ALA处理冬小麦的穗粒数、千粒重和产量显著增加,其中以30 mg·L-1 ALA处理增产效果最大.  相似文献   

7.
水稻物质生产与氮、磷、钾、硅素积累特点及其相互关系   总被引:1,自引:0,他引:1  
大田条件下研究了30个水稻基因型的干物质与N、P、K、Si积累特性及其相互关系.结果表明,水稻干物质积累总量随N、P、K和Si积累总量的增加呈直线增加,其相关系数早季和晚季均达极显著水平.同时,N、P、K、Si积累的平衡有利于干物质积累,干物质积累量随NBI(养分平衡指数)直线增加,随NDI(养分偏离指数)直线下降.30个水稻品种平均N、P、K、Si积累总量比值早季为3.76:1:4.55:7.10,晚季为2.88:1:4.54:8.09.干物质积累能力以中期最强,前期最弱,而N积累能力却以前期最强,后期最弱.水稻抽穗前积累的干物质主要分配在茎鞘中,当抽穗期茎鞘比率达到最大时,茎鞘重约为叶片重的2倍,而抽穗前积累的N主要分配在叶片中,叶片中N的分配比率全生育期均比干物质分配比率高.成熟期积累的干物质、N和P主要分配在穗部,早、晚季稻的平均分配比率分别为58.01%、66.42%和70.06%,而K主要分配在茎鞘中,早、晚季稻的平均分配比率为62.08%.早季Si在茎中的分配比率(43.11%)最大,而晚季却以穗中的分配比率(46.99%)最大.  相似文献   

8.
增施有机肥对冬小麦同化物积累与分配的影响   总被引:2,自引:0,他引:2  
基于13CO2脉冲标记法,设置单施化肥(CF)和有机肥+化肥(OF)两个处理,通过分析不同施肥模式对麦田土壤和小麦植株中的有机碳含量、光合特性和同化物转化的影响,探讨增施有机肥对冬小麦同化物积累与分配的影响.结果表明: OF处理有利于提高麦田土壤有机碳含量和小麦光合特性,从而提高了小麦植株有机碳含量和干物质积累总量.同一时期标记至成熟与标记后第7天相比,两个施肥处理下叶和茎鞘中的13C含量与13C分配率均减少;穗部13C含量在拔节期和灌浆期均增加,开花期均减少,13C分配率各时期均增加.两个施肥处理相比,OF处理有利于灌浆期光合碳向穗部转运与积累,提高小麦穗部的13C分配率.相关分析结果表明,干物质积累量与净输入13C含量、净输入13C分配率呈极显著正相关关系,与植株中有机碳含量呈负相关关系;净输入13C含量与净输入13C分配率呈极显著正相关关系,与光系统II的最大光能转化效率(Fv/Fm)和净光合速率(Pn)呈负相关关系.综上,增施有机肥能增加麦田土壤有机碳含量,提高小麦的光合能力和光合产物向穗部的转运,最终有利于小麦穗部的同化物积累.  相似文献   

9.
在田间试验条件下, 以中穗型小麦(Triticum aestivum)品种‘山农15’和大穗型品种‘山农8355’为供试材料, 设置3个0-140 cm土层土壤相对含水量处理: W0 (拔节期65%, 开花期60%)、W1 (拔节期70%, 开花期70%)、W2 (拔节后8天70%, 开花后8天70%), 采用测墒补灌的方法补充土壤水分达到目标相对含水量, 对两个不同穗型小麦品种的耗水特性和干物质积累与分配进行了研究。结果表明: (1)两品种籽粒产量均以W0处理最低, ‘山农15’ W1和W2处理无显著差异, ‘山农8355’ W1处理显著高于W2处理; 两品种W1处理的水分利用效率和灌溉水利用效率均显著高于W2处理。‘山农15’ W1处理的籽粒产量和灌溉水利用效率分别显著低于和高于‘山农8355’的W1处理, 水分利用效率无显著差异; 两品种W2处理的籽粒产量、水分利用效率和灌溉水利用效率均无显著差异。(2)两品种总耗水量以W0处理最低, ‘山农15’ W1处理显著低于W2处理, ‘山农8355’两处理无显著差异; 两品种W1处理的土壤供水量及其占总耗水量的比例显著高于W2处理。‘山农15’ W1处理的总耗水量和灌水量占总耗水量的比例显著低于‘山农8355’, 土壤供水量占总耗水量的比例显著高于‘山农8355’; 两品种W2处理总耗水量, 土壤供水量及其占总耗水量的比例无显著差异。(3)两品种W1处理成熟期干物质积累量显著高于其他处理, W1处理提高了‘山农8355’开花后干物质积累量及其对籽粒的贡献率, 对‘山农15’无显著影响。‘山农15’ W1和W2处理成熟期干物质积累量显著低于‘山农8355’, 开花前贮藏同化物向籽粒的转运量和转运率、对籽粒的贡献率均显著高于‘山农8355’, 开花后干物质积累量及其对籽粒的贡献率低于‘山农8355’。综合考虑干物质积累与分配、籽粒产量、水分利用效率和灌溉水利用效率, W1处理是两品种节水高产的最佳土壤相对含水量处理。  相似文献   

10.
土壤深松和补灌对小麦干物质生产及水分利用率的影响   总被引:7,自引:0,他引:7  
研究一次深松耕作后土壤水分对冬小麦籽粒产量和水分利用率的影响,为小麦节水高产栽培提供理论依据.于2008-2009和2009-2010两个小麦生长季,选用高产小麦品种济麦22,采取测墒补灌的方法,研究了深松+旋耕和旋耕2种耕作方式下土壤水分对小麦0-200 cm土层土壤含水量、干物质积累与分配、籽粒产量及水分利用率的影响.结果表明,(1)深松+旋耕40-180 cm土层土壤含水量低于旋耕处理;旗叶光合速率和水分利用率,开花后干物质积累量及其对籽粒的贡献率显著高于旋耕处理.(2)W3(补灌至0-140 cm土层土壤相对含水量播种期为85%,越冬期80%,拔节和开花期75%)成熟期0-200cm土层土壤含水量与W1(播种期80%,越冬期80%,拔节和开花期75%)和W2处理(播种期80%,越冬期85%,拔节和开花期75%)无显著差异;W3和W'3(播种期85%,越冬期85%,拔节和开花期75%)60-140 cm土层土壤含水量分别低于W4(播种期85%,越冬期85%,拔节和开花期75%)和W'4(播种期90%,越冬期85%,拔节和开花期75%)处理;W3和W'3灌浆中后期旗叶光合速率较高,开花后干物质积累量及其对籽粒的贡献率显著高于其他处理,获得高的籽粒产量和水分利用率.综合考虑籽粒产量、水分利用率和灌溉效益,在深松+旋耕条件下,两年度分别以W3和W'3为节水高产的最佳处理.  相似文献   

11.
The accumulation and partitioning of dry matter and nitrogenwere examined in the developing tassel and two uppermost earshoots of field-grown maize under varying levels of appliednitrogen and times of sowing. Accumulation of dry matter and nitrogen within an axillary branchalways favoured the ear over the husk and shank. Dry matterand nitrogen accumulated faster in the first ear than in thetassel or second ear and the partitioning between inflorescencesof dry matter and nitrogen was not affected by treatment. Therelative rate of growth, RGR(dry matter), of the first and secondear shoots increased by up to 42% at high levels of appliednitrogen and with early sowing. In contrast, the relative rateof accumulation of nitrogen (RNAR) was not sensitive to N supply,although it was reduced, on average, by 22% at the late timeof sowing. We conclude that accumulation, but not partitioning, of drymatter and nitrogen between developing inflorescences of maizeare altered by nitrogen application, time of sowing, and positionof the inflorescence on the stem. Key words: Maize, N-application, partitioning, inflorescence, sowing time  相似文献   

12.
遮阴对夏玉米干物质积累及养分吸收的影响   总被引:2,自引:0,他引:2  
以振杰2号(ZJ2)、登海605(DH605)和郑单958(ZD958)为试验材料,在大田条件下设置花粒期遮阴(S1)、穗期遮阴(S2)、全生育期遮阴(S3)3个遮阴处理,以自然光照条件为对照(CK),研究了遮阴对夏玉米干物质积累和氮、磷、钾吸收的影响.结果表明: 遮阴后夏玉米籽粒产量和单株干物质积累量显著降低,降低程度与遮阴时期有关,表现为S3>S1>S2,其中S1、S2和S3籽粒产量平均降低61.6%、25.3%和92.8%,说明花粒期遮阴较花前遮阴对夏玉米干物质积累和籽粒产量影响更大,不同品种的变化趋势相同.夏玉米植株花前养分吸收量表现为钾>氮>磷,植株吸收总量表现为氮>钾>磷.遮阴后植株氮和磷积累量显著减少,由于遮阴后干物质较对照降低程度大于对氮、磷吸收的降低程度,各处理氮、磷相对含量有所升高;遮阴后各处理植株钾吸收量较对照显著降低,但S2处理的钾吸收降低程度大于干物质积累降低程度,钾相对含量降低,即花前遮阴对玉米钾吸收的影响大于氮和磷.  相似文献   

13.
花粒期光照对夏玉米干物质积累和养分吸收的影响   总被引:5,自引:0,他引:5  
选用登海605(DH605)为试验材料,在大田条件下通过花粒期遮阴(S)和增光(L)研究不同光照对花后夏玉米产量、干物质积累和氮、磷、钾养分吸收与运转特性的影响.结果表明: 遮阴后夏玉米产量、干物质积累量及氮、磷、钾养分吸收量均显著降低;而增光有利于夏玉米干物质积累量及氮、磷、钾养分吸收量和产量的提高.2011-2013年,遮阴处理的产量较对照(自然光下)分别降低了59.4%、79.0%、60.6%;增光后产量分别增加16.3%、12.9%、6.8%.遮阴对干物质积累的影响大于其对植株氮、磷吸收量的影响,植株体内氮、磷等养分含量有所上升,而钾吸收量的下降幅度大于干物质积累,钾素相对含量降低,氮、磷、钾向籽粒的分配比例降低.增光后干物质积累和氮、磷吸收量显著上升,但对氮、磷吸收的影响更大;增光条件下,氮、磷、钾等养分向籽粒的分配比例增加.
  相似文献   

14.
干物质分配系数反映作物各器官干物质的分配与积累,研究干物质分配系数对干旱胁迫的响应,是研究干旱胁迫对作物生长发育影响的基础.本文基于华北夏玉米主产省山东、河北和山西3个试验点2013—2015年田间水分控制试验资料,建立了夏玉米苗期、抽雄期、灌浆期3个主要发育阶段叶、茎、穗的干物质分配系数与土壤相对湿度的定量关系模型,分析了叶、茎、穗干物质分配系数对不同程度干旱胁迫的响应.结果表明: 3个阶段叶、茎、穗的干物质分配系数与土壤相对湿度均呈显著的一元二次关系.干旱胁迫下,叶片向外转运的干物质相对减少,叶干物质分配比例增加,并且在轻、中度干旱胁迫时的灌浆期(叶干物质分配系数增加0.04~0.09)以及重度干旱胁迫时的抽雄期(叶干物质分配系数增加0.17)响应最敏感.穗干物质分配系数对干旱胁迫表现为负响应,干旱胁迫越严重,分配系数越小,轻-重度干旱胁迫使穗干物质分配系数减小0.08~0.34.茎干物质分配系数对干旱胁迫的响应总体表现为灌浆期(正响应)>抽雄期(负响应)>苗期(负响应).  相似文献   

15.
目前,我国种植的夏玉米品种收获时籽粒含水率过高,限制了玉米机械粒收技术的发展。喷施脱水剂可以调控作物籽粒灌浆生理过程,降低收获时的籽粒含水率。本试验研究了喷施脱水剂对不同熟期夏玉米品种脱水过程、收获期籽粒含水率和籽粒品质的调控作用。结果表明: 喷施脱水剂减少了玉米各器官的干物质积累量,促进了植株向籽粒中的干物质转移,提高了收获指数,而且对籽粒品质没有显著影响。相关性分析显示,籽粒脱水速率与各器官脱水速率呈正相关,喷施脱水剂后籽粒脱水速率与茎鞘脱水速率呈极显著正相关。喷施脱水剂在产量没有显著降低的前提下提高了总脱水速率,缩短了开花期至生理成熟期的时间,增加了生理成熟期到收获的时间,有利于后期籽粒含水率的进一步降低,为玉米机械粒收提供了更大的可能性。不同熟期夏玉米品种喷施脱水剂进行机械粒收的经济效益与机械穗收相比没有显著差异,中晚熟品种的经济效益高于早熟品种。因此,收获前合理喷施脱水剂可以作为玉米机收籽粒的一种可行性配套技术。  相似文献   

16.
REMISON  S. U. 《Annals of botany》1978,42(6):1439-1445
Two experiments were conducted in the glasshouse and in thefield to evaluate the effect of leaf loss on development, drymatter accumulation and yield of maize. In the glasshouse, defoliationtreatments were imposed on maize after 3 weeks of planting.Removing 2 or 3 leaves every 2 weeks affected plant height,days to tassel, root and shoot yield. The plant diameter androot:shoot ratio were not affected by defoliation. In the field experiment, six defoliation treatments were imposed7 days after 50 per cent silking. Defoliation of all leaveswas the most severe treatment on cob d. wt, dry matter accumulationin grains, weight of 100 test grains and yield. The effect ofremoving all leaves above the ear was not significantly differentfrom that of removing all leaves below the ear. The effect ofremoving half of the leaves above the ear was not differentfrom the control. Zea mays, vegetative growth, dry matter accumulation, yield, defoliation  相似文献   

17.
Glutelin accumulation in the apical spikelet of the top primary branch (superior spikelet) and the second spikelet of the lowest secondary branch (inferior spikelet) of the ear of the rice plant (Oryza sativa L.) was characterized during grain filling.In the superior spikelet, the accumulation of dry matter and nitrogen started immediately after flowering and rapidly reached the maturation level by 20 days after heading (DAH). At 7 DAH, total RNA content had already reached its maximum level and glutelin mRNA content 70% of its maximum. The increase in glutelin mRNA was followed by a rapid increase in glutelin between 7 and 16 DAH.In the inferior spikelet dry matter, nitrogen and glutelin accumulation were low immediately after flowering and increased only after grain filling of the superior spikelet was almost complete. Total RNA and glutelin mRNA increased much later at slower rates than in the superior spikelet.It is very likely that the retardation of dry matter, total nitrogen and glutelin accumulation in the inferior spikelet is due to retardation of differentiation and development of endosperm tissue, and to glutelin gene expression in endosperm cells. It is suggested that the delayed development resulted from limited partitioning of nutrients to the inferior spikelet at the early stage of ripening.  相似文献   

18.
Goenaga  Ricardo 《Annals of botany》1994,73(3):257-261
The accumulation and partitioning of dry matter was determinedin tanier plants irrigated with fractions of the water lostthrough evapotranspiration (WLET) in an effort to establishgrowth analysis data from which a tanier growth (simulationmodel could be developed. The irrigation regimes were basedon Class A pan factors ranging from 0·33 to 1·32with increments of 0·33. Tanier plants were planted inthe field and harvested for biomass production about every 6weeks during the growing season. At each harvest, plants wereseparated into various plant parts, and their dry matter contentwas determined. The first 90 d after planting (DAP) were characterizedby low rates of dry matter accumulation, with only leaves andpetioles showing substantial growth. A grand growth period followedin which leaves, petioles, and roots rapidly accumulated drymatter until 278 DAP. During this period, plants that received0·99 and 1·32 WLET exhibited similar total drymatter content, and this was significantly greater than in plantssupplied with 0·33 and 0·66 WLET. Cormel dry mattercontent peaked at 29% of total plant dry matter by 322 DAP inplants replenished with 1·32 WLET. Partitioning of drymatter to cormels in other treatments was significantly reduced.Partitioning of dry matter to corms increased linearly throughoutthe growing season in all treatments. Dry matter partitioningto suckers and the number of suckers formed from plants replenishedwith 0·33 and 0·66 WLET was greater than in themore irrigated treatments.Copyright 1994, 1999 Academic Press Tanier, Xanthosoma spp., growth, dry matter partition, irrigation, evapotranspiration  相似文献   

19.
The role of thiourea (TU), a sulfhydryl compound, was assessed in wheat via soil and foliar treatments. Results showed that at 30 days after flowering, soil-applied TU treatments did not influence dry matter accumulation or its distribution in leaves, stems, and ears, but foliar-applied treatments brought about significant effects varying with the timing of spray. At harvest, however, soil-applied treatment of 10 kg/ha TU increased the number of ears, grains/ear, weight/grain, biological yield (total above ground biomass), grain yield, and harvest index. Grain yield increased by 17.3% over control. Soil-applied 20 kg/ha TU increased the grain yield by 1.6% over control. Foliar applied treatment of 0.5 kg/ha TU at tillering increased the number of ears, grains/ear, weight/grain, biological yield, grain yield, and harvest index. Grain yield increased by 15.2% over control. Foliar spray of 0.5 kg/ha TU at flowering tended to improve only weight/grain, but biological yield and grain yield increased significantly. Grain yield increased by 6.6% over control. TU spray at both tillering and flowering increased the number of ears, grains/ear, weight/grain, biological yield, grain yield, and harvest index. Grain yield increased by 23.9% over control, and when compared with spray at tillering there was a significant increase of 7.5%. Thus, two foliar sprays of thiourea, at tillering and at flowering, at 1 kg/ha can be recommended for improving wheat productivity.Abbreviations TU thiourea - DMA dry matter accumulation - DMD dry matter distribution  相似文献   

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