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1.
春小麦水分利用效率日变化及其生理生态基础的研究   总被引:30,自引:4,他引:30  
采用光合速率和蒸腾速率之比 (Pn/Tr)表示植物水分利用效率 (WUE) ,发现在两种不同水分处理下春小麦拔节期 .WUE日变化中都有上午高于下午值 ,且 8∶0 0~ 1 0∶0 0为明显峰值的特征 ,这种特征与Pn、Tr日变化存在的上、下午值不对称性和反向性 (Pn为上午高于下午 ,Tr相反 )紧密相关 ,水分胁迫处理中 ,Pn、Tr值均有降低 ,但不同品种的WUE反应不一 .研究表明 ,叶水势 ( ψw)、气孔阻力 (Rs)等生理因素和空气相对湿度 (RH)、光照 (Q)及冠层温度 (Tc)等生态因子 ,通过对Tr和Pn的不同影响而同WUE显著相关 ,40 %RH是WUE变化的一个重要阈值 .  相似文献   

2.
黄腐酸拌种对春小麦产量和水分利用效率的影响   总被引:15,自引:2,他引:15  
在大田研究了黄腐酸拌种对春小麦产量形成和水分利用效率的影响。实验设4个处理:对照(CK),播种前种子不处理;FA处理:播种前用FA拌种;WM处理:浇30mm底墒水,覆膜;处理WMFA:浇30mm底墒水,覆膜,播种前用FA拌种。2个覆膜处理均在播种后62d揭膜。同CK相比,FA拌种后,根系生长良好,吸收利用了更多的土壤水分,增加了穗重、单穗籽粒重和收获指数,产量和水分利用效率均显著提高。WM和WMF  相似文献   

3.
We investigated the response of spring wheat and oilseed rape to nitrogen (N) supply, focusing on the critical period for grain number definition and grain filling. Crops were grown in containers under a shelter and treated with five combinations of applied N. Wheat and oilseed rape produced comparable amounts of biomass and yield when corrected for the costs of biomass synthesis (SC). From the responses of biomass and yield to late N applications and the apparent contribution of mobilised biomass to yield, it seems that the yield of oilseed rape was more source-limited during grain filling than that of wheat, particularly at the medium and high N levels. Both species recovered equal amounts of N from the total available N in the soil and had similar N use efficiencies, expressed as yield per unit of N absorbed. However, oilseed rape had higher efficiency to convert absorbed N in biomass, but lower harvest index of N than wheat. Oilseed rape had similar or lower root biomass than wheat, depending on N level, but higher root length per unit soil volume and specific root length. The specific uptake rate of N per unit root dry weight during the critical period for grain number determination was higher in oilseed rape than in wheat. In wheat, N limitation affected growth through a similar or lower reduction in radiation use efficiency corrected for synthesis costs (RUESC) than in the cumulative amount of intercepted photosynthetically active radiation (IPARc). In oilseed rape, lower growth due to N shortage was associated more with RUESC than IPARc, during flowering while during grain filling both components contributed similarly to decreased growth. RUESC and the concentration of N in leaves and inflorescence (LIN%) decreased from flowering to maturity and were curvilinearly related. Oilseed rape tended to have higher RUESC than wheat at high N supply during the critical period for grain number determination, and generally lower during grain filling. The reasons for these differences and possibilities to increase yield potential are discussed in terms of the photosynthetic efficiency of the different organs and changes in source–sink ratio during reproductive stages. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

4.
硝化抑制剂对小麦产量和氮素吸收利用的影响   总被引:4,自引:0,他引:4  
  相似文献   

5.
以‘泰农18’小麦为材料,于2012—2013年进行大田试验,设置当地农民习惯栽培模式(FP)、超高产栽培模式(SH)和高产高效栽培模式(HH)3个处理,研究了不同栽培模式对小麦光能截获量、光能利用效率、干物质积累量、收获指数、籽粒产量和肥料偏生产力的影响.结果表明: SH模式小麦全生育期的光能截获量、光能利用效率、干物质积累量和籽粒产量显著高于FP模式.相对于FP模式,虽然HH模式的小麦全生育期光能截获量较低,但其光能利用效率、干物质积累量及收获指数均显著提高,从而使其籽粒产量显著提高.相对于SH模式,虽然HH模式的籽粒产量在高、低肥力水平下分别降低3.8%和2.8%,而氮、磷、钾肥的偏生产力在两肥力水平下分别提高26.4%、68.5%、92.6%.在本试验条件下,综合考虑籽粒产量和养分利用效率,以“降肥、增密、延播”为技术特点的高产高效栽培模式为推荐的优化栽培模式.  相似文献   

6.
两春小麦品种竞争能力、水分利用效率及产量关系的研究   总被引:10,自引:1,他引:10  
用盆栽方法测定了2个春小麦品种-地方品种和尚头与现代品种陇春-8275在5个土壤水分梯度下,单、混播时的水分消耗、水分利用效率、竞争能力和籽实产量。单播条件下,在极低水分条件下(12%),和尚头有相对较高的产量,在水分条件较好时陇春-8275有较高的产量;在保持各水分处理条件下,地方品种和尚头较之现代品种陇春-8275消耗更多的水分,水分利用效率较低。混播条件下,各尚头有较高生物量、籽实产量及较强的竞争能力,竞争优势不受土壤水分的影响,其表现为高个体生物量品种较之低个体生物量品种消耗更多的水分,陇春-8275受到强烈的抑制,消耗较少的水分及较低的籽实产量。表明进化选择的是竞争能力,而非单播下的产量表现。可以预见,在小麦育种中选育具小根系的对水分弱竞争能力的品种将成为半干旱区今后育种的一个重要方法。  相似文献   

7.
高产条件下不同小麦品种耗水特性和水分利用效率的差异   总被引:2,自引:0,他引:2  
王德梅  于振文  许振柱 《生态学报》2009,29(12):6552-6560
设置不灌水(W0)、底墒水+拔节水(W1)、底墒水+拔节水+开花水(W2)3个灌水处理,采用6个冬小麦(Triticum aestivum.L.)品种,研究了不同品种耗水特性和水分利用效率的差异.结果表明:(1)依据籽粒产量和水分利用效率2个因子,采用聚类分析的方法,将供试品种分为高水分利用效率组(Ⅰ组)、中水分利用效率组(Ⅱ组)和低水分利用效率组(Ⅲ组).同一灌水条件下的籽粒产量,Ⅰ组显著高于Ⅱ组和Ⅲ组;Ⅱ组和Ⅲ组在W0条件下无显著差异,在W1和W2条件下Ⅱ组显著高于Ⅲ组.(2)从Ⅰ组、Ⅱ组、Ⅲ组中分别取1个品种,泰山23、潍麦8号、山农12进一步分析表明,在W0 和W1条件下,泰山23和潍麦8号的阶段耗水量和耗水模系数为开花至成熟>播种至拔节>拔节至开花,山农12为播种至拔节>开花至成熟>拔节至开花.W2条件下,3个品种的阶段耗水量和耗水模系数为开花至成熟>播种至拔节>拔节至开花;播种至拔节和拔节至开花的耗水模系数为泰山23>山农12>潍麦8号,此阶段的耗水量和耗水强度为泰山23品种最高;开花至成熟的耗水模系数为潍麦8号>山农12 >泰山23,此阶段的耗水量和耗水强度为泰山23品种最低.(3) 在W0 和W1条件下,总耗水量和灌水量、降水量及土壤耗水量占总耗水量的百分率为泰山23品种居中;W2条件下,灌水量和降水量占总耗水量的百分率为泰山23>潍麦8号>山农12,土壤耗水量及其占总耗水量的百分率反之,但泰山23的总耗水量最低.(4) 同一灌水条件下,泰山23品种100~200cm土层的土壤耗水量高于潍麦8号,表明该品种能充分利用深层土壤水;山农12品种在W0和W2条件下,100~200 cm土层的土壤耗水量高于泰山23和潍麦8号,但其籽粒产量和水分利用效率显著低于上述两品种.  相似文献   

8.
不同灌水模式对冬小麦籽粒产量和水、氮利用效率的影响   总被引:4,自引:0,他引:4  
在田间试验条件下,以冬小麦品种泰农18为材料,设置灌底墒水(CK)、底墒水+拔节水(W1)、底墒水+拔节水+越冬水与灌浆水交替灌溉(越冬/灌浆水交替灌溉模式,W2)、底墒水+拔节水+开花水(优化传统灌溉模式,W3)、底墒水+越冬水+拔节水+灌浆水(传统灌溉模式,W4)5种灌溉模式,每处理每次灌水量均为600 m3·hm-2,研究了山东泰安偏旱年份(2009-2010年)不同灌溉模式对小麦籽粒产量、水分利用效率和氮素利用效率的影响.结果表明:在小麦全生育期119.7 mm降水量条件下,越冬/灌浆水交替灌溉模式(W2)与传统灌溉模式(W4)籽粒产量差异不显著,但水分利用效率显著高于传统灌溉模式,与灌水量相同的优化传统灌溉模式(W3)相比,其小麦籽粒产量明显提高,水分利用效率无显著差异;越冬/灌浆水交替灌溉模式和传统灌溉模式的氮肥偏生产力最高,且籽粒收获后越冬/灌浆水交替灌溉模式在0 ~100 cm土层的硝态氮积累量显著高于传统灌溉模式和优化传统灌溉模式,降低了硝态氮的淋溶损失.在本试验条件下,越冬/灌浆水交替灌溉模式(W2)是可以兼顾小麦籽粒产量、水分利用效率和氮素利用效率的最佳灌溉模式.  相似文献   

9.
为明确协同提高宽幅播种小麦产量和氮素利用率的表油菜素内酯喷施时期,研究了不同生育时期喷施表油菜素内酯对小麦产量和氮素吸收利用的影响。结果表明: 与喷施清水对照相比,喷施表油菜素内酯可通过提高小麦穗粒数或(和)千粒重提高产量,通过促进地上部氮素积累提高氮素吸收效率,进而提高氮素利用率,但不同时期喷施效果存在差异。起身期+灌浆期、拔节期+灌浆期、起身期+拔节期+灌浆期、起身期+开花期+灌浆期喷施处理在所有处理中穗粒数和千粒重增幅最大,产量增幅最高(12.8%~14.0%);同时地上部氮素积累量增幅最大,氮素吸收效率增幅最高(16.4%~18.8%),从而氮素利用率增幅最高。综合施用成本等因素,生产上可采用起身期+灌浆期或拔节期+灌浆期2次间隔喷施模式,实现宽幅播种小麦高产高效栽培。  相似文献   

10.
小麦/玉米间作是河西绿洲灌区主要间作模式,但传统间作和套种需水量大,使该地区水资源紧张.2010年在甘肃河西走廊石羊河绿洲灌区进行大田试验,研究传统小麦秸秆焚烧、秸秆翻还和秸秆立茬3种留茬方式对小麦/玉米间作作物籽粒产量、水分利用效率(WUE)和经济效益的影响.结果表明: 与焚烧和翻还的籽粒产量相比,立茬小麦单作分别增加7.2%和5.1%,立茬小麦间作分别增加6.2%和5.1%,立茬玉米单作分别增加4.7%和2.5%,立茬玉米间作分别增加7.2%和3.3%;与焚烧和翻还的WUE相比,立茬小麦单作分别增加20.4%和16.2%,立茬小麦间作分别增加17.9%和14.6%,立茬玉米单作分别增加16.7%和10.9%,立茬玉米间作分别增加11.8%和17.0%.就单作小麦、单作玉米和小麦/玉米平均值而言,焚烧、翻还、立茬处理的纯收益分别为10946、11471和13454元·hm-2.从籽粒产量、水分利用效率和纯收益等方面考虑,立茬种植方式为甘肃省河西绿洲灌区小麦/玉米最佳种植模式.  相似文献   

11.
为了探明旱作条件下无机营养对作物产量和水分利用效率的补偿效应,我们在宁南黄土高原半干旱地区开展了为期两年的春小麦密度与肥料试验。通过4种播种密度和5种肥力水平的综合研究结果表明,在不同处理的籽粒产量和水分利用效率排序中,播种密度为500粒/m^2时,以施肥量90kg/hm^2N和135kg/hm^2P2O5处理的产量和水分利用效率为最大。与不施肥的对照相比,增施肥料与籽粒产量和水分利用效率的提高成显著的正相关关系,相关系数分别达到0.959和0.894,而播种密度则与产量和水分利用效率的相关性不显著。增施肥料虽然能够提高可育小花数,但随着播种密度的增大,穗粒数和千粒重反而呈下降趋势,表明可育小花数对肥料水平反应敏感,而穗粒数和千粒重主要受播种密度的影响。施肥能够促进春小麦根系的生长发育,特别是促进浅层根量的增加,增强了作物的水分养分吸收。另外,不同种类肥料配施的结果表明,单施P肥或者N、P、K配合施用,可使春小麦产量分别提高44.6%和55.4%。N、P、K配合施肥还能够提高品质,使籽粒中的P、N、K含量分别提高18.5%、18.4%和8.1%。上述研究结果说明,控制播种密度、改善土壤肥力对于促进旱地春小麦高效利用有限水分具有明显的补偿效应。  相似文献   

12.
单播与混播对两个冬小麦品种产量和水分利用效率的影响   总被引:2,自引:1,他引:1  
选取黄土旱塬两个冬小麦品种长武135和平凉40,采用生态替代法连续两年在田间条件下研究了单播和混播方式对冬小麦产量和水分利用效率的影响.结果表明:单播条件下平凉40单位面积根量为367.60 g·m-2,显著大于长武135的297.31 g·m-2,且其根系在各土层中分布较均匀,表明与长武135相比,平凉40吸收土壤水分的能力较强,但其在单播条件下的产量和水分利用效率较低.混播增加了平凉40和长武135根系在较深土层中的根量分布,两品种根量分别比单播条件下多13.36和8.50 g·m-2,混播增强了小麦根系对深层土壤水分的吸收利用,提高了单位面积总产量,增加了群体水分利用效率.与平凉40相比,长武135分配了更多的干物质到繁殖器官,使其根量和地上营养器官的生物量减小,从而提高了籽粒产量和收获指数,表现出较高的水分利用效率.  相似文献   

13.
Knowledge on the physiological parameters that determine the growth of enset (Ensete ventricosum) and on how these parameters develop over time and affect yield under field conditions is scarce. Field experiments were carried out at three sites in southern Ethiopia using suckers of several clones to generate crop physiological parameters and to describe the time course of leaf number, leaf area and plant height. Yield potentials at different sites were estimated using these parameters and weather data, and compared with the actual yield. Plant height and LAI increased faster at Awassa and Areka than at Hagereselam because of a higher leaf appearance rate associated with temperatures being closer to the optimum. The trend in plant height was best described by a logistic function, whereas the trend in LAI was best described by a logistic function only at Awassa and Areka. A high leaf appearance rate (0.18 leaves day?1) during early growth at Awassa and Areka made it possible that leaves that were senesced during unfavourable climatic conditions could be rapidly replaced without strong fluctuation in leaf area index. At Hagereselam, however, the rate of leaf appearance (0.09 leaves day?1) was too small to compensate for the decline in the number of green leaves per plant during adverse conditions and thus LAI fluctuated over the whole growing period. The trend in fraction of PAR intercepted was best described by a generalised logistic function. At 300 days after transplanting the suckers, LAI reached a value of 4.5 and enset clones intercepted 92–97% of incoming PAR. The mean extinction coefficient was between 0.56–0.91 and radiation use efficiency (RUE) ranged from 1.43–2.67 g MJ?1. Dry matter kocho yield potentials of 17.1 to 33.9 t ha‐1 yr‐1 were estimated for enset clones. Important yield potential differences existed between clones mainly because of differences in radiation use efficiency that was probably partly associated with viral infection. The average ratio of actual yield:yield potential (0.24) was low mainly because of large losses associated with traditional fermentation techniques, yield reducing cultivation methods such as repetitive transplanting and leaf pruning, presence of diseases, lack of adequate fertilisation and shortage and uneven distribution of rainfall.  相似文献   

14.
旱地冬小麦灌浆期冠层温度与产量和水分利用效率的关系   总被引:6,自引:0,他引:6  
樊廷录  宋尚有  徐银萍  李兴茂 《生态学报》2007,27(11):4491-4497
利用红外测温仪,于2005~2006年在甘肃陇东旱原研究了我国北方冬麦区域的23个小麦品种(系)灌浆不同时期冠层温度的差异及其与产量和水分利用效率的关系。结果表明,不同基因型小麦在籽粒灌浆结实期存在着冠层温度高度分异的现象,其分异程度随灌浆过程的进行明显加大,到灌浆中后期达到最大。无论灌浆初期还是中期或中后期,旱地冬小麦产量、水分利用效率与冠层温度均呈极显著的负相关(R2=0.445-0.812),并且随着灌浆期推移,相关性增大,灌浆中后期冠层温度每升高1℃,旱地冬小麦产量减少近280 kg hm-2,水分利用效率下降约0.6 kg hm-2mm-1。灌浆中期以后不同基因型小麦冠层温度保持较高的一致性,冠层温度偏低的品种具有较高的产量和水分利用效率。灌浆中后期的冠层温度在评价小麦产量和水分利用效率上具有较高的可靠性,可作为一个田间选择指标应用。  相似文献   

15.
为明确协同提高冬小麦产量和水分利用效率的适宜灌水量和种植密度,选用大穗型品种‘泰农18’(T18)和中穗型品种‘山农22’(S22)为试验材料,设置4个灌溉水平(不灌水、每次灌水45、60、75 mm)和4个种植密度,其中泰农18选用135×104、270×104、405×104、540×104 株·hm-2,山农22选用90×104、180×104、270×104、360×104株·hm-2,研究了籽粒产量、麦田耗水特性和水分利用效率对灌水量和密度互作效应的响应。结果表明: 籽粒产量、总耗水量、土壤贮水消耗量和水分利用效率均受到灌溉水平、种植密度及两者互作效应的显著影响。每次灌水量为45 mm,泰农18种植密度为405×104株·hm-2、山农22种植密度为270×104株·hm-2时,两品种籽粒产量均达到最高,拔节后棵间蒸发量占阶段农田总耗水量的比例最小,1 m以下土壤水消耗比例、水分利用效率高。种植密度与灌溉量合理组合,有利于降低水分无效损耗,提高水分利用效率。  相似文献   

16.
Plants of two bread wheat cultivars,Triticum aestivum L. Katya Al and Mexipak 65, were grown in pots during the crop season in the field in NW Syria, a region with a Mediterranean climate. The experiment involved two treatments. Control plants were well-watered throughout the experiment (watering to 0.22 g water g–1 dry soil). In the second treatment, water was withheld from the plants until soil water content had decreased to 0.10 g water g–1 dry soil, the level that was maintained thereafter. Water use was measured by weighing the pots, and growth by destructive sampling. Growth of Katya and Mexipak was similar. Mexipak had a lower (though not significant atp<0.05) plant water use efficiency (WUEp) in both treatments due to higher rates of water loss. On a leaf area basis differences in water use were especially high since Mexipak had a smaller total leaf area. In spite of a smaller investment in photosynthesizing area, Mexipak achieved similar growth as Katya. Carbon isotope discrimination and organic nitrogen concentration (both higher for Mexipak) suggest that Mexipak accomplished higher mean net photosynthetic rates with a higher mean leaf diffusive conductance, higher intercellular carbon dioxide partial pressure, and possibly a greater investment in the photosynthetic apparatus compared to Katya. Differences in carbon isotope discrimination suggest a larger difference in average photosynthetic WUE (net photosynthesis/transpiration) than in plant WUE. This could indicate that loss of carbon in respiration was greater in Katya. Gas exchange measurements on the youngest fully expanded leaves showed only minor differences between the cultivars. It is hypothesized that Mexipak, with a smaller total leaf area, is able to maintain high leaf conductance and photosynthesis for a longer period of time during the day or during the life span of leaves.  相似文献   

17.
A novel mechanism for increasing vegetative biomass and grain yield has been identified in wheat (Triticum aestivum). RNAi-mediated down-regulation of Glucan, Water-Dikinase (GWD), the primary enzyme required for starch phosphorylation, under the control of an endosperm-specific promoter, resulted in a decrease in starch phosphate content and an increase in grain size. Unexpectedly, consistent increases in vegetative biomass and grain yield were observed in subsequent generations. In lines where GWD expression was decreased, germination rate was slightly reduced. However, significant increases in vegetative growth from the two leaf stage were observed. In glasshouse pot trials, down-regulation of GWD led to a 29% increase in grain yield while in glasshouse tub trials simulating field row spacing and canopy development, GWD down-regulation resulted in a grain yield increase of 26%. The enhanced yield resulted from a combination of increases in seed weight, tiller number, spikelets per head and seed number per spike. In field trials, all vegetative phenotypes were reproduced with the exception of increased tiller number. The expression of the transgene and suppression of endogenous GWD RNA levels were demonstrated to be grain specific. In addition to the direct effects of GWD down-regulation, an increased level of α-amylase activity was present in the aleurone layer during grain maturation. These findings provide a potentially important novel mechanism to increase biomass and grain yield in crop improvement programmes.  相似文献   

18.
休闲期深翻覆盖对旱地小麦水氮利用效率和产量的影响   总被引:1,自引:0,他引:1  
白冬  高志强  孙敏  赵维峰  邓妍  李青 《生态学杂志》2013,32(6):1497-1503
采用大田试验研究了旱地小麦休闲期不同时间深翻、不同材料覆盖对植株氮素吸收和转运分配、水分和氮利用效率的影响.结果表明:前茬小麦收获后45 d深翻覆盖较15d提高了拔节期、孕穗期、成熟期植株含氮率,提高了各生育时期植株氮积累量和各生育阶段氮吸收速率,提高了花前氮素转移量、转移率,提高了液态地膜覆盖和不覆盖条件下花前氮素转运对籽粒氮的贡献率,提高了籽粒氮积累量及其所占的比例,降低了叶片、茎秆、颖壳+穗轴中氮积累量所占的比例,且均以采用渗水地膜覆盖效果较好;前茬小麦收获后45 d深翻覆盖较15 d增加了产量和水分利用效率,提高了氮素吸收效率、氮素生产效率.总之,休闲期等雨后深翻覆盖有利于植株氮素吸收、积累,有利于花前植株中贮存氮素向籽粒的转移,促进籽粒中氮素积累,降低其他器官中的氮素,最终提高产量、水分利用效率、氮素吸收效率及氮素生产效率,且以渗水地膜覆盖效果较好.  相似文献   

19.
二倍体、四倍体和六倍体小麦产量及水分利用效率   总被引:3,自引:0,他引:3  
试验选用了6个不同染色体倍性的小麦进化材料(3个二倍体、2个四倍体和1个六倍体),分别在不同水肥条件下研究其根系、地上生物量、产量、蒸腾耗水量和水分利用效率等指标,旨在阐明小麦进化材料产量及水分利用效率的差异及水肥条件对这些特性的影响。试验表明:不同倍性小麦进化材料的生物量、产量和水分利用存在显著的差异,而且水肥条件对其有显著影响。在染色体倍性由2n→4n→6n的进化过程中,小麦根系及地上生物量均先增加后降低,而产量却显著增加,这与收获指数的增加有关。小麦产量的大小顺序为:T.aestivum〉T.dicoccum〉T.dicoccoides〉Ae.squarrosa〉Ae.speltoides〉T.boeoticum。水分亏缺显著降低小麦的生物量、产量和收获指数;在不同水分条件下,增加施肥量有利于这些指标的增加。但是水分亏缺下,增加施肥却降低各小麦材料的根系生物量。随小麦的进化,蒸腾耗水量显著降低,这与其生育期缩短有关;而生物量水分利用效率和产量水分利用效率却显著升高,且后者的差异要大于前者。各小麦产量水分利用效率的大小排序与产量的完全一致。水分亏缺处理显著减少各小麦进化材料的蒸腾耗水量47%~52%,而显著增加生物量水分利用效率3%~40%;但水分亏缺对产量水分利用效率的促进作用却随染色体倍性的增加而降低,甚至降低六倍体小麦T.aestivum的产量水分利用效率19%。不同水分条件下,高肥处理均有利于蒸腾耗水量、生物量水分利用效率和产量水分利用效率的增加。  相似文献   

20.
水氮组合对冬小麦干物质及氮素积累和产量的影响   总被引:2,自引:0,他引:2  
于2015—2017年小麦生长季在山东省泰安市农业科学研究院肥城试验基地进行田间试验,供试材料为‘泰山28',在150(A1)、300(A2)、450(A3)、600 m3·hm-2(A4)4个灌水量和90(B1)、135(B2)、180(B3)、225 kg·hm-2(B4)4个施氮水平下,研究水氮组合对小麦生长发育过程中干物质积累、氮素积累、水分消耗利用、光合特性、籽粒产量等的影响。结果表明: A3B3条件下各生育阶段的干物质积累量和氮素积累量,成熟期籽粒干物质和氮素积累量均为最大,花前花后营养器官生产储藏干物质及氮素向籽粒的运输量最高,且与其他水氮组合处理差异显著。各氮素处理下,60~200 cm土层土壤耗水量均为A3>A4>A2>A1;A3B3处理下的水分利用效率和氮素利用效率高于A3B4、A4B3和A4B4。A3B3处理显著提高了开花后7~28 d的旗叶净光合速率、气孔导度和蒸腾速率,有利于小麦进行光合作用合成碳水化合物。水氮组合效应显著影响籽粒产量和产量构成,且A3B3处理下小麦产量最高,达到9400 kg·hm-2。综上,450 m3·hm-2和180 kg·hm-2的水氮组合处理可以显著提高小麦干物质和氮素积累量,并促进干物质和氮素向籽粒运输,与高水肥处理相比,可以有效提高水分利用效率和氮素利用效率,有利于增强小麦旗叶的光合能力,产生更多的碳水化合物,增加籽粒产量。  相似文献   

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