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1.
以‘II优7号’、‘汕优63’和‘香优2号’为材料,研究了超稀栽培与稻米整精米率和垩白粒率的关系及其作用原因,结果表明:栽秧密度与整精米率呈极显著负相关,与垩白粒率呈极显著正相关。在中高氮施肥水平条件下,当栽秧密度超稀到7.51万穴•hm-2时,在保证比传统高产栽培密度每公顷栽秧21.64万穴的对照不减产前提下,整精米率提高了15.69%~29.92%,垩白粒率降低了16.34%~21.22%。其原因在于,超稀植增加了每穗着粒数,降低了齐穗期的叶粒比,以致稻穗籽粒灌浆速率减慢而改善整精米率和垩白粒率。齐穗后20 d施氮可同时起到提高结实率和整精米率的双重效果。  相似文献   

2.
油松幼苗对干旱胁迫的生理生态响应   总被引:8,自引:2,他引:6  
在适宜水分(田间持水量为80%)、轻度干旱(60%)、中度干旱(40%)和重度干旱(20%)4种土壤水分条件下研究了油松的生理生态特征,结果显示; 油松各器官(根、茎、叶)的干物质积累量、干物质积累总量、相对生长率、株高和基径均表现为适宜水分>轻度干旱>中度干旱>重度干旱,而根冠比大小顺序与其相反.气体交换参数(净光合速率、气孔导度、蒸腾速率) 随干旱程度的加剧显著下降,并且净光合速率的下降主要受气孔因素限制.油松的瞬时水分利用效率和长期水分利用效率(稳定碳同位素含量,δ13C)表现适宜水分<轻度干旱<中度干旱<重度干旱,而且中度和重度干旱显著提高油松的水分利用效率.另外,单位干重叶片氮元素含量(N%)随胁迫增加呈下降趋势,而单位干重碳元素含量(C%)却与之相反,从而导致碳氮比随胁迫增加而增加,并且我们的结果显示光合速率与氮含量存在显著正相关. 结果表明,油松可以通过调节自身生长特征、生物量分配模式和叶片营养元素的含量及提高水分利用效率而增强应对干旱胁迫的能力.  相似文献   

3.
沙地生境和平茬年限对沙柳叶功能特征的影响   总被引:2,自引:1,他引:1  
Zhang PP  Li YY  Shao MA 《应用生态学报》2011,22(9):2240-2246
研究了毛乌素沙地南缘水滨边丘间地和干旱丘顶两种生境下沙柳平茬后不同年限(1、2、3~4和5~6年)对沙柳叶片光合气体交换、水分利用效率、结构特性及氮、磷养分含量等叶功能特征的影响.结果表明:水滨边丘间地沙柳叶片的净光合速率、气孔导度、瞬时和长期水分利用效率均高于丘顶,但N、P养分含量低于丘顶;两种生境下沙柳的叶结构性状无显著差异.干旱生境下沙柳主要通过增加养分含量、降低光合和水分利用来生存.随平茬年限增加,叶片净光合速率和气孔导度显著下降,氮含量和瞬时水分利用效率亦呈下降趋势,且二者之间呈显著正相关;平茬后1年的叶面积最高,比叶质量和叶干物质含量最低,此后比叶质量增加,叶面积和干物质含量不变;叶结构性状与光合及养分特性之间无显著相关性.叶光合活性和氮含量的下降是沙柳随平茬年限增加而衰败的重要原因.  相似文献   

4.
不同时期干旱胁迫对甘薯光合效率和耗水特性的影响   总被引:2,自引:0,他引:2  
在2014-2015年遮雨棚下种植甘薯品种‘济薯21’,以全生育期正常灌水(WW)为对照,研究了全生育期(DS)、发根分枝期(DS1)、蔓薯并长期(DS2)和快速膨大期(DS3)干旱胁迫对甘薯光合作用、产量和耗水特性的影响.结果表明: DS、DS1、DS2和DS3的生物产量分别比WW降低31.3%、21.2%、19.6%和7.7%,收获指数分别降低19.9%、14.5%、14.1%和6.5%,薯干产量分别降低45.3%、33.1%、31.3%和14.2%.栽后100 d,DS、DS1、DS2和DS3的叶面积系数分别比WW减少77.1%、60.1%、39.2%和17.1%;栽后90 d,叶片光合速率分别比WW降低56.7%、26.6%、18.7%和9.5%.干旱胁迫降低了甘薯垄间的日蒸发量、蒸腾速率、耗水量和日耗水量,降低了土壤水利用效率而提高了灌溉水利用效率.干旱胁迫通过降低叶面积系数和光合速率,减少了生物产量及其向块根的分配,进而导致薯干产量显著降低.干旱胁迫时间越早、持续时间越长,对叶面积系数和光合速率,以及生物产量和收获指数的不利影响越大、导致减产幅度越大,水分利用效率越低.在有限的灌水条件下,甘薯生产中应尽可能减少前期干旱.  相似文献   

5.
土壤干旱胁迫对黄栌叶片光合作用的影响   总被引:9,自引:0,他引:9  
Liu G  Zhang GC  Liu X 《应用生态学报》2010,21(7):1697-1701
采用CIRAS-2型便携式光合作用系统,设置充足供水、轻度、中度和重度胁迫4种土壤水分处理,研究土壤干旱和强光胁迫对3年生黄栌苗木叶片光合作用的影响.结果表明:土壤干旱胁迫对黄栌叶片的光合性能参数影响显著,随着土壤水分胁迫的加剧,黄栌叶片的光合速率、蒸腾速率和光量子效率明显降低,光补偿点增高,水分利用效率在轻度水分胁迫(土壤相对含水量60%~65%)下最高;在强光(有效辐射强度1000~1800μmol.m-2.s-1)范围内,叶片光合速率和水分利用效率均较高,而对弱光的光能吸收和光量子效率较低,并随土壤水分胁迫加剧明显下降.  相似文献   

6.
在室内测定了分别栽培于全光照和20%光照条件下的垂枝桦Betulapendula,欧洲水青冈Fagussylvatica和欧洲白栎Quercusrobur幼苗叶片的光合作用-光响应曲线、叶片气孔导度、胞间二氧化碳浓度、水分利用效率,叶绿素含量和氮素含量,并分析叶片叶绿素含量和净光合速率的回归关系.20%光照条件引起净光合速率的光饱和点下降,叶片气孔导度和水分利用效率以及单位叶面积叶绿素含量降低,叶片的光合物质积累减少,但氮素含量上升.回归分析结果表明,叶片叶绿素含量与净光合速率成正相关.3种植物的幼苗对荫蔽条件有一定的适应性,其中B.pendula和Q.robur的耐荫能力比Fsylvatica强.  相似文献   

7.
羊草叶片气体交换参数对温度和土壤水分的响应   总被引:19,自引:4,他引:15       下载免费PDF全文
 采用生长箱控制的方法研究了羊草(Leymus chinensis)幼苗叶片光合参数对5个温度和5个水分梯度的响应和适应。结果表明:轻度、中度土壤干旱并没有限制羊草叶片的生长,对气体交换参数亦无显著影响,反映了羊草幼苗对土壤水分胁迫的较高耐性。叶片生物量以26 ℃时最大,其它依次为23 ℃、20 ℃、29 ℃和32 ℃。温度升高使气孔导度和蒸腾速率增加, 却使光合速率和水分利用效率降低。水分和温度对叶片生物量、光合速率、气孔导度和蒸腾速率存在显著的交互作用,表明高温加强了干旱对叶片生长和气体交换的影响, 降低了羊草对土壤干旱的适应能力。高温和干旱的交互作用将显著减少我国半干旱地区草原的羊草生产力。  相似文献   

8.
污染稻田水分管理对水稻吸收积累镉的影响及其作用机理   总被引:41,自引:1,他引:41  
Cd污染稻田通过长期淹水灌溉能显著降低稻米中Cd含量。利用Cd污染水稻土的盆栽试验,结合水稻根表氧化铁膜特征的分析,研究了不同水分管理对水稻吸收积累镉的影响及其作用机理。结果表明,随着稻田淹水程度(时间和水量)的提高,水稻根表氧化铁膜所吸附的还原态Fe(Ⅱ)、Mn(Ⅱ)显著增加,潮泥田和黄泥田长期淹水灌溉处理的水稻根膜中的Fe(Ⅱ)分别比湿润灌溉处理增加了12.6倍(p<0.01)和8.5倍(p<0.01);不同水分管理的水稻根膜氧化铁(Fe(Ⅲ))含量的变化与根膜Fe(Ⅱ)表现极显著的相关性,但两者均与水稻根膜Cd呈极显著的负相关,其中,2种土壤长期淹水的水稻根膜Fe(Ⅲ)分别比湿润灌溉增加了1.5倍(p<0.01)和1.0倍(p<0.01),根膜吸附的Cd含量分别较湿润灌溉降低了77.9%(p<0.01)和50.3%(p<0.01);长期淹水处理导致水稻根系、茎叶、糙米中的Cd含量均极显著低于相应的湿润灌溉处理,2种土壤长期淹水的糙米平均Cd含量比间歇灌溉的下降了41.3%,比湿润灌溉的下降了70.7%(p<0.01);不同水分管理的水稻糙米Cd含量与根膜Cd含量呈极显著正相关,与根膜Fe(Ⅱ)和Fe(Ⅲ)呈极显著负相关。综合分析认为,Cd污染酸性稻田在长期淹水的还原条件下Fe2 等金属离子与Cd2 的竞争吸附作用以及S2-和Cd2 的共沉淀作用加强,因而使得土壤中Cd的生物有效性明显降低。  相似文献   

9.
在室内测定了分别栽培于全光照的20%光照条件的垂枝桦Betulapendula,欧洲水青冈Fagussylvatica和欧洲白栎Quercusrobur幼苗叶片的光合作用-光响应曲线,叶片气导度,胞间二氧化碳浓度,水分利用效率,叶绿素含量和氮素含量,并分析叶片叶绿素含量和净光合速率的回归关系,20%光照条件引起净光合速率的光饱和点下降,叶片气孔导度和水分和效率以及单位叶面积叶绿素含量降低,叶片的光  相似文献   

10.
为探讨贝壳堤岛旱柳叶片光合特性的水分响应规律,以2 a生旱柳苗木为材料,模拟设置贝壳砂生境系列水分梯度,测定分析不同土壤水分条件下旱柳叶片的主要光合生理参数。结果表明:(1)直角双曲线修正模型可较好模拟旱柳叶片净光合速率的光响应过程,维持旱柳较高光合作用的土壤相对含水量(RWC)为50.1%~94.4%,适宜光强为800~1 600 μmol·m-2·s-1,水分对光强利用的补偿效应显著。(2)随土壤水分的降低,旱柳叶片净光合速率、光饱和点、表观量子效率及最大净光合速率均表现为先升高后降低;干旱和渍水胁迫条件下,旱柳叶片的光补偿点升高,光饱和点降低,光照生态幅变窄,光能利用效率降低,水分胁迫抑制光能效应明显。(3)随土壤水分的降低,旱柳叶片瞬时和潜在水分利用效率均表现为先升高后降低,分别在RWC为45.7%、40.6%时达到最大值,适度干旱胁迫可显著提高旱柳叶片的水分利用效率。(4)干旱和渍水胁迫均显著降低旱柳叶片的叶绿素含量和叶片水势,随土壤水分降低两者均表现为先升高后降低,叶绿素含量和叶片水势分别在RWC为58.9%、50.1%达到最高值。研究发现,贝壳砂生境旱柳叶片光合生理参数对土壤水分表现出一定的阈值响应,维持旱柳较高光合能力和水分利用效率的适宜土壤水分相对含量为50.1%~77.7%,表现为耐水湿不耐干旱的水分特性。  相似文献   

11.
间歇灌溉对北方水稻生理生态需水的影响   总被引:14,自引:1,他引:13  
通过田间试验研究了间歇灌溉(IT)条件下北方水稻生理生态需水变化特性.试验于2002年在中国科学院沈阳生态实验站水田试验区进行.分别采用非称重式蒸渗仪和小型蒸渗仪对间歇灌溉和淹灌(CSF)条件下的稻田蒸散量和棵间蒸发量进行了测定.结果表明。间歇灌溉条件下的水稻蒸腾量与淹灌相比没有达到显著差异,而稻田棵间蒸发量和渗漏量则分别减少了16%和24%。水分利用效率提高了10%,在显著减少用水量的情况下并未对水稻产量造成不良影响.针对本地区土质而言,与淹灌相比,尽管间歇灌溉可以有效地减少稻田用水量,但仍有近60%的稻田用水通过渗漏损失掉.为此,本文提出着眼于提高稻田水分利用效率、降低渗漏量和土壤水蒸发量的相应对策.  相似文献   

12.
不同土壤水分处理对水稻光合特性及产量的影响   总被引:7,自引:0,他引:7  
王唯逍  刘小军  田永超  姚霞  曹卫星  朱艳 《生态学报》2012,32(22):7053-7060
为探明土壤水分对水稻生长发育的影响机理,以武香粳14和两优培九为试验材料,分析了不同土壤水分处理下(W1、W2、W3和CK分别表示土壤体积含水量为20%、30%、40%和5cm水层灌溉)的水稻光合特性、产量及水分生产率等。结果表明,轻度水分胁迫(W3)具有处理间最大的叶片气孔导度、蒸腾速率和净光合速率,其他处理规律不显著。灌浆初期各水分处理下叶位间光合指标均表现为:剑叶>顶2叶>顶3叶>顶4叶,其他生育期规律不显著。与对照处理(CK)相比,武香粳14的W1、W2和W3处理的产量分别减少61.14%和29.13%、增加0.96%,水分生产率分别减少10.69%、增加1.53%和20.61%;两优培九的产量分别减少64.11%和28.76%,增加2.08%,水分生产率分别减少16.39%,增加2.46%和22.13%。研究结果为水稻精确灌溉和节水生产提供了技术支撑。  相似文献   

13.
张作合  张忠学 《生态学报》2021,41(11):4586-4595
为揭示不同灌溉模式下水稻植株生长与水分消耗利用,通过蒸渗仪与田间小区结合的方法,以常规淹灌模式作为对比,研究了三种灌溉模式的水稻植株生长与水分消耗利用。试验结果表明:水稻植株体通过水分的自我调解来适应稻田生态系统变化,灌溉模式对水稻植株各器官的湿基含水率产生显著影响(P<0.05),控制灌溉模式能够有效地延缓水稻生育后期的根系衰老;作为水分的载体,水稻植株干物质积累量直接影响水稻的耗水量,控制灌溉模式下稻田生态系统的水稻耗水量较间歇灌溉和常规淹灌都有大幅度的降低,而水分利用效率大幅度提高;控制灌溉模式可以通过生长补偿效应来增加后期干物质的积累,从而提高籽粒产量。根据各灌溉模式水稻的腾发量结合实际降雨量,来调控稻田灌溉水量,能够有效地维持SPAC稻田生态系统平衡,保证农业和生态系统的可持续发展。研究结果可为寒地黑土区稻田生态系统水分消耗利用研究提供理论依据和技术支撑。  相似文献   

14.
Lu  Jun  Ookawa  Taiichiro  Hirasawa  Tadashi 《Plant and Soil》2000,223(1-2):209-218
In most cases, rice production is associated with flooding irrigation and the efficiency of irrigated water use (WUEi) is generally lower for production of rice than for other crops. We have examined the effects of various irrigation regimes on water consumption in a well-puddled paddy field, as well as on dry matter production, grain yield and physiological responses of the plants. Four sets of conditions were studied, with two replications, in the well-puddled paddy field: Continuous flooding irrigation treatment (CSF); three intermittent irrigation treatments, designated II-0, II-1 and II-2, in which plants were re-irrigated when the water potential of the soil fell below 0, –10, and –20 kPa at a depth of 5 cm, respectively. Water consumption was lower during II-0 than during CSF because the percolation rate was reduced by the reduction in the hydraulic head of the ponded water. Intermittent irrigation led to the repeated shrinking and swelling of soil during II-1 and II-2 and, therefore, soil cracks developed rapidly. Since they became the major routes of water percolation, these soil cracks increased water consumption during II-1 and II-2 above that during CSF and II-0. There were no significant differences in dry matter production and grain yield between CSF and II-0, but both were significantly greater than in the case of II-1 and II-2. Therefore, WUEi increased in the following order: II-0, CSF, II-2, II-1, although the difference was very small between II-1 and II-2. A lower crop growth rate (CGR) resulted from a decrease in the net assimilation rate (NAR) during II-1 and II-2, and there was also a reduction in the leaf area index (LAI) during II-2. Early senescence with ripening and water stress around midday decreased the rate of photosynthesis in leaves, causing the lower NAR. These physiological responses of the plants were responsible for the reduction on the dry matter production and grain yield in the intermittent irrigation. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

15.
干热区小粒咖啡水光管理粗放,产量和品质得不到保证.为探明干热区小粒咖啡最佳灌水和荫蔽栽培耦合模式,通过大田试验,设3个灌水水平(充分灌水、轻度亏缺灌水和重度亏缺灌水)和4个荫蔽栽培模式(无荫蔽:单作咖啡;轻度荫蔽:4行咖啡间作1行香蕉;中度荫蔽:3行咖啡间作1行香蕉;重度荫蔽:2行咖啡间作1行香蕉),研究香蕉荫蔽栽培下亏缺灌溉对小粒咖啡生长、叶片光合特性、水光利用和产量的影响.结果表明: 小粒咖啡叶片的净光合速率(Pn)、蒸腾速率(Tr)、气孔导度(gs)、叶片水分利用效率(LWUE)、叶片表观光能利用效率(LRUE)随灌水量的增大而增大,胞间CO2浓度(Ci)随灌水量的增大而减小;与充分灌水相比,轻度亏缺灌水的干豆产量减小9.4%,重度亏缺灌水的干豆产量减小36.7%,水分利用效率(WUE)减小16.9%.Pn、Tr、gs、LWUE随荫蔽度的增大呈先增大后减小的趋势,中度荫蔽栽培的增量最大;与无荫蔽模式相比,轻度荫蔽模式干豆产量增加13.0%,WUE增加12.9%,中度荫蔽栽培模式干豆产量增加23.1%,WUE增加23.4%.干豆产量、WUE、百粒咖啡豆的体积和百粒鲜质量随灌水量和荫蔽度的增大呈不同程度增大,其中,中度荫蔽栽培下充分灌水的干豆产量和WUE增量最大.相同土层深度的土壤含水率随荫蔽度的增加而减小;在0~50 cm土层,土壤含水率随土层深度的增加先增大后减小.LRUE与光合有效辐射呈显著的负指数关系或符合Logistic曲线变化.因此,从优质高产、水光高效利用的综合效益考虑,中度荫蔽栽培下充分灌水是小粒咖啡灌水处理和香蕉荫蔽栽培模式的最佳组合.  相似文献   

16.
短期干旱对水稻叶水势、光合作用及干物质分配的影响   总被引:51,自引:10,他引:41  
采用盆栽水分试验,研究了不同生育期短期干旱处理对水稻叶水势、光合作用和干物质分配的影响.结果表明,干旱胁迫后,水稻叶水势低于对照,午后叶水势回升缓慢。凌晨叶水势随土壤含水量的降低而降低,表现为阈值反应。叶片净光合速率与凌晨叶水势密切相关,低于凌晨叶水势临界值,水稻叶片净光合速率急剧下降在水稻抽穗期和灌浆期叶片净光合速率显著下降的凌晨叶水势临界值为-1.04和-1.13MPa,对应的土壤含水量阈值分别为饱和含水量的61.0%和50.9%,土壤水势分别为-0.133和-0.240MPa干旱胁迫下单叶净光合速率的日变化规律表现为:胁迫较轻时,单叶净光合速率在正午附近出现低谷;胁迫严重时,净光合速率全天低于对照,且不及对照的一半。短期干旱后,水稻叶、根、穗的分配指数均降低,茎鞘的分配指数升高。本研究可为水稻节水灌溉管理和水分限制下水稻的生长模拟提供生理基础和理论依据。  相似文献   

17.
The effects of different water regimes on the pathogenicity of Meloidogyne graminicola on six rice cultivars were determined in two soil types in three greenhouse experiments. Two water regimes, simulating continuous flooding and intermittent flooding, were used with five of the cultivars. All cultivars were susceptible to the nematode, but IR72 and IR74 were more tolerant than IR20 and IR29 under intermittent flooding. All were tolerant under continuous flooding. UPLRi-5 was grown under multiple water regimes: no flooding; continuous flooding; flooding starting at maximum tillering, panicle initiation, or booting stage; and flooding from sowing until maximum tillering or booting. In sandy loam soil, M. graminicola reduced stem and leaf dry weight, root dry weight, and grain weight under all water regimes. In clay loam soil, the nematode reduced root weight when the soil was not flooded or flooded only for a short time, from panicle initiation, or booting to maturity, and from sowing to maximum tillering. In clay loam soil, stem and leaf dry weight, as well as grain weight, were reduced by the nematode under all water regimes except continuous flooding or when the soil was flooded from sowing to booting stage. These results indicate that rice cultivar tolerance of M. graminicola varies with water regime and that yield losses due to M. graminicola may be prevented or minimized when the rice crop is flooded early and kept flooded until a late stage of development.  相似文献   

18.
Water shortage is increasingly limiting the luxury use of water in rice cultivation. In this study, non-flooded mulching cultivation of rice only consumed a fraction of the water that was needed for traditional flooded cultivation and largely maintained the grain yield. We also investigated the growth and development of rice plants and examined grain yield formation when rice was subjected to non-flooded mulching cultivation. One indica hybrid rice combination was grown in a field experiment and three cultivation methods, traditional flooding (TF), non-flooded straw mulching cultivation (SM) and non-flooded plastic mulching cultivation (PM), were conducted during the whole season. Grain yield showed that there was no significant difference between SM and TF rice, but the grain yield of SM cultivation was significantly higher than that of PM. The tiller numbers were inhibited in the early stage under non-flooded mulching cultivation, but the situation was reversed at the later period. Both SM and PM rice reduced dry matter accumulation of shoot, but increased root dry weight, enhanced the remobilization of assimilates from stems to grains and increased the harvest index. During the middle and later grain filling period, mulched plants showed a faster decrease in chlorophyll concentrations, photosynthetic rates of flag leaves and root activity than TF rice, indicating that non-flooded mulching cultivation enhanced plant senescence. In comparison, SM treatment produced higher grain yield and, more dry matter accumulation and panicle numbers than the PM treatment. The overall results suggest that high yield of non-flooded mulching cultivation of rice can be achieved with much improved irrigaUonal water use efficiency.  相似文献   

19.
A delay in the mechanical transplantation (MT) of rice seedlings frequently occurs in Huanghuai wheat-rice rotation cropping districts of China, due to the late harvest of wheat, the poor weather conditions and the insufficiency of transplanters, missing the optimum transplanting time and causing seedlings to age. To identify how delaying transplanting rice affects the agronomic characteristics including the growth duration, photosynthetic productivity and dry matter remobilization efficiency and the grain yield under mechanical transplanting pattern, an experiment with a split-plot design was conducted over two consecutive years. The main plot includes two types of cultivation: mechanical transplanting and artificial transplanting (AT). The subplot comprises four japonica rice cultivars. The results indicate that the rice jointing, booting, heading and maturity stages were postponed under MT when using AT as a control. The tiller occurrence number, dry matter weight per tiller, accumulative dry matter for the population, leaf area index, crop growth rate, photosynthetic potential, and dry matter remobilization efficiency of the leaf under MT significantly decreased compared to those under AT. In contrast, the reduction rate of the leaf area during the heading-maturity stage was markedly enhanced under MT. The numbers of effective panicles and filled grains per panicle and the grain yield significantly decreased under MT. A significant correlation was observed between the dry matter production, remobilization and distribution characteristics and the grain yield. We infer that, as with rice from old seedlings, the decrease in the tiller occurrence, the photosynthetic productivity and the assimilate remobilization efficiency may be important agronomic traits that are responsible for the reduced grain yield under MT.  相似文献   

20.
以桂华占、八桂香为材料,在干湿交替灌溉、亏缺灌溉、淹水灌溉3种水分条件下,研究优质稻花后植株碳氮流转与籽粒生长及品质的相关性。结果表明:不同水分管理下,桂华占和八桂香花后碳氮流转与籽粒的生长间存在密切相关。主要表现在:(1)茎鞘和叶片干物质转运对籽粒干物质积累的贡献率为16.86%~25.68%,花后茎叶干物质运转速度和运转率与籽粒起始灌浆势呈显著甚至极显著正相关;籽粒最大灌浆速率、活跃灌浆期、持续灌浆时间与叶片干物质运转速度和运转率呈极显著正相关,与茎鞘干物质运转速度和运转率呈极显著负相关;(2)茎鞘碳同化物转运对籽粒的产量和淀粉产量的贡献率则为干湿交替灌溉>亏缺灌溉>淹水灌溉;但叶片碳同化物转运对籽粒的产量和淀粉产量的贡献率则为淹水灌溉>亏缺灌溉>干湿交替灌溉;茎叶可溶性糖积累量的减少和籽粒直链淀粉含量和积累量增加是同步的,且茎叶可溶性糖积累量快速递减期(花后3~12d)与直链淀粉含量和积累量快速递增期(花后6~12d)同步;(3)茎鞘和叶片氮素转运对籽粒氮素积累的贡献率为44.05%~117.66%,叶片总氮转运对籽粒氮素积累的贡献率大于茎鞘,茎鞘和叶片氮同化物对籽粒氮素的贡献率以淹水灌溉处理的最大,亏缺灌溉处理的次之,干湿交替灌溉处理的最小。  相似文献   

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