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1.
以高产强筋小麦品种'济麦20'为试验材料,在防雨池栽条件下研究了灌水时期和灌水量对小麦氮代谢相关酶活性和籽粒蛋白质品质的影响.结果表明,随灌水时期增多和总灌水量增加,小麦开花后旗叶硝酸还原酶活性和谷氨酰胺合成酶活性显著增高,旗叶蛋白质水解酶内肽酶(EP)、氨肽酶(AP)、羧肽酶(CP)活性降低;小麦籽粒清蛋白和球蛋白含量增加,而籽粒谷蛋白和醇溶蛋白含量、成熟期籽粒谷醇/清球比值(谷蛋白+醇溶蛋白含量/清蛋白+球蛋白含量)降低;面粉沉降值和面团稳定时间显著降低,籽粒产量显著增加.研究发现,在本试验条件下,小麦全生育期灌水3次处理(底墒水+拔节水+开花水)在灌浆前中期旗叶NR和GS活性、灌浆中后期旗叶EP、CP、AP 活性均较高,且成熟期籽粒蛋白质含量、谷醇/清球比值、面团稳定时间、籽粒产量亦较高,是获得小麦高产优质的最佳灌水处理.  相似文献   

2.
以冬小麦品种豫麦 34为材料 ,在不同带距条件下对小麦籽粒产量、蛋白质含量和蛋白质产量以及三者相互关系进行了研究。结果表明 :带距对蛋白质产量和籽粒产量有显著的影响 ,对籽粒蛋白质含量影响不明显 ;蛋白质产量与籽粒产量呈现极显著正相关 ,与籽粒蛋白质含量关系不密切 ;蛋白质产量与籽粒产量之间存在着直线回归关系 ,二者的模拟方程为 :Y =10 6 80 9+0 10 7X(kg·hm-2 ) ;2 0m带距条件下小麦籽粒产量最高 ;2 4米带距条件下 ,小麦边行优势总值最大 ,与其它作物套作 ,效益较好。  相似文献   

3.
 防雨池栽条件下研究了花后干旱和渍水胁迫对两个不同品质类型小麦(Triticum aestivum)品种籽粒产量和品质形成的影响。结果表明,花后渍水和干旱处理明显降低了小麦籽粒产量和蛋白质产量。在整个灌浆期内干旱处理明显提高了籽粒蛋白质和醇溶蛋白含量,而渍水处理降低了籽粒蛋白质及其组分的积累量。籽粒总淀粉和直链淀粉含量以渍水处理最高,而支链淀粉以对照最高。干旱处理提高了籽粒干、湿面筋含量、沉降值和降落值,而渍水处理降低了上述品质指标。试验表明干旱和渍水胁迫对小麦籽粒蛋白质与淀粉的含量和组分及面粉品质等均有不同程度的影响,从而改变了不同品质类型小麦的籽粒品质。  相似文献   

4.
采用盆栽试验,研究了花后渍水、盐胁迫和盐渍处理对2个小麦品种(扬麦12和淮麦17)籽粒产量及蛋白质和淀粉积累与组分的影响.结果表明:与对照相比,花后渍水、盐胁迫和盐渍处理显著降低了小麦花前贮藏氮素(花前贮藏干物质)转运量和花后同化氮素(花后同化物)输入籽粒量,从而导致小麦籽粒产量、蛋白质和淀粉产量显著降低,其中盐胁迫和盐渍处理表现更为明显.与对照和渍水处理相比,盐胁迫和盐渍处理显著降低了小麦籽粒蛋白质积累量及谷/醇蛋白比,显著提高了蛋白质组分含量;同时降低了小麦籽粒淀粉积累量、淀粉组分含量及直/支链淀粉比;盐胁迫处理对扬麦12的影响较盐渍处理明显,而盐渍处理对淮麦17的影响较盐胁迫处理明显.渍水条件下小麦籽粒蛋白质和淀粉积累量均下降,除淮麦17谷蛋白和清蛋白含量有所提高外,淮麦17其他蛋白组分含量和扬麦12各蛋白组分含量均下降.  相似文献   

5.
纬度变化对不同冬小麦品种蛋白质组分的影响   总被引:4,自引:1,他引:3  
选用6个有代表性的冬小麦品种在河南省5个不同纬度试验点(32°—36°N)进行种植,研究纬度变化对冬小麦蛋白质组分含量的影响.结果表明:纬度变化对冬小麦清蛋白、麦谷蛋白含量和谷/醇比值有显著影响,而基因型差异对蛋白质组分的影响不显著.随着纬度的升高,清蛋白和醇溶蛋白含量呈降低趋势,而麦谷蛋白含量、谷/醇比值、蛋白质组分之和及小麦产量呈递增趋势.与其他试验点相比,信阳种植的6个小麦品种的清蛋白含量相对较高,驻马店和许昌的醇溶蛋白含量较高,而武陟和汤阴的麦谷蛋白含量较高.5月份平均气温、总日照时数和降雨量与小麦蛋白质组分地点间变化关系密切.因此,生产上选择适宜的小麦种植区,同时可在5月份采取改善光合作用、延长灌浆时间等栽培措施,以提高小麦籽粒品质.  相似文献   

6.
不同施肥灌水处理对不同小麦品种产量和品质的影响   总被引:4,自引:0,他引:4  
在小麦生育期间降水47.9 mm的条件下,以3个小麦品种为试验材料,采用四因素三水平正交设计,研究了不同灌水和施肥处理对不同小麦品种子粒产量、蛋白质含量和沉降值的影响。结果表明,全生育期施氮量300 kg/hm2和225 kg/hm2的处理子粒产量和蛋白质含量差异不显著,但均显著高于150kg/hm2的处理。在中产条件下氮肥底施和追施比例以7∶3时产量最高。春季灌4水产量显著高于灌2水的处理,但与灌3水差异不显著,子粒蛋白质含量以灌2水时最高。供试品种中以京冬8号的产量、千粒重、容重最高,CA0206和核优1的蛋白质含量差异不显著,但均显著高于京冬8号。CA0206的沉降值显著高于另两个品种。以产量、品质和经济效益综合考虑,在本试验条件下,以春季灌3水、施氮量225 kg/hm2、底施和追施比例为7∶3的处理为宜,与超高产条件下氮素底施和追施比例5∶5的结果有明显的差异。  相似文献   

7.
在不同土壤肥力条件下,研究了施氮量对小麦氮素吸收、转化及籽粒产量和蛋白质含量的影响。结果表明,增施氮肥可以提高小麦各生育阶段的吸氮强度,尤以生育后期提高的幅度为大认为是增施氮肥提高小麦籽粒产量和蛋白质含量的基础,增施氮肥虽提高了小麦植株的吸氮强度。吸氮量增加,但开花后营养器官氮素向籽粒中的转移率降低,增施氮肥不仅促进了小麦植株对肥料氮的吸收,而且也促进了对土壤氮的吸收,并讨论了在高、低土壤肥力条件下氮肥合理运筹的问题。  相似文献   

8.
土壤水分逆境是限制小麦籽粒品质形成的重要生态因子,明确土壤水分逆境下小麦籽粒品质形成的生理机制及调优技术途径,对于深化小麦品质生理生态研究和指导小麦调优栽培具有重要的理论意义和应用前景。在防雨池栽条件下,设置渍水、干旱和对照3个水分处理,每个水分处理下再设置120和240 kg.hm-2两个施氮水平,研究了花后渍水和干旱逆境下氮素对两个籽粒蛋白质含量不同的小麦品种植株氮代谢和籽粒蛋白质积累的影响。结果表明,与正常水分处理相比,花后干旱和渍水均降低旗叶硝酸还原酶活性、叶片总氮含量和游离氨基酸含量。干旱处理提高了茎鞘总氮与游离氨基酸含量以及籽粒蛋白质含量,而渍水处理则使其降低。水分逆境下增施氮肥提高旗叶硝酸还原酶活性、叶片与茎鞘总氮和游离氨基酸含量以及籽粒游离氨基酸和蛋白质含量。花后干旱和渍水均显著降低了小麦籽粒产量和蛋白质产量。增施氮肥提高适宜水分和水分亏缺条件下小麦籽粒产量,但不利于渍水下小麦产量的提高。这说明,花后渍水和干旱逆境下施用氮肥对小麦植株氮代谢和籽粒蛋白质积累有明显的调节效应。  相似文献   

9.
花后灌水次数对强筋小麦籽粒产量和品质的影响   总被引:2,自引:0,他引:2  
在防雨池栽培条件下,以2个优质强筋小麦品种(济麦20和藁城8901)为试验材料,研究了花后不同水分供应状况对籽粒产量、籽粒品质(粉质仪参数和面包体积)及其蛋白质组分的影响.结果表明:2个品种的籽粒产量、面粉的面团形成时间、面团稳定时间和制成面包体积均随花后灌水次数的增加呈先升高后降低的趋势;其中,花后灌1水(花后7 d)时藁城8901的籽粒产量最高,花后灌2水(花后7 d+花后14 d)时济麦20的籽粒产量最高;2个品种面粉的面团形成时间、面团稳定时间和制成面包体积均以花后灌1水时最优.单体蛋白含量、不溶性谷蛋白含量、谷蛋白总含量、蛋白质含量以及湿面筋含量也呈现类似的变化趋势.逐步回归分析表明,花后不同水分供应状况下,不溶性谷蛋白含量是影响面团稳定时间的关键因素,谷蛋白总含量与面包体积的变化密切相关.因此,为了保持优质强筋小麦品质的稳定性,水分管理应以改善籽粒蛋白质特别是谷蛋白组分的构成为目标.  相似文献   

10.
为探索小麦高产高效优质生产技术途径,指导小麦晚播生产实践,2012年10月—2014年6月,以弱春性小麦偃展4110和半冬性小麦矮抗58为材料进行连续2年的田间定位试验,设置了常规适播(10月中旬、240万株·hm-2)和极端晚播(11月中旬、600万株·hm-2)两种栽培模式,研究了极端晚播对0~40 cm土层土壤硝态氮含量、小麦氮素吸收利用、产量、籽粒蛋白质含量和氮素吸收效率的影响.结果表明: 与常规适播处理相比,两个生长季极端晚播处理均使拔节和开花期0~40 cm土壤硝态氮含量显著提高,从而促进拔节后小麦植株氮素吸收积累,成熟期穗部氮素的分配比例也得到提高,最终显著提高小麦籽粒蛋白质含量和偃展4110的蛋白质产量、氮素吸收效率,但对籽粒产量的影响因品种而异.其中,极端晚播处理使偃展4110的籽粒产量显著提高,而矮抗58的籽粒产量却显著降低.因此,极端晚播栽培模式可维持小麦拔节后的土壤氮供应,有利于提高小麦氮素吸收效率,从而提高小麦籽粒产量和蛋白质含量,是灌区小麦高产优质的有效途径之一.  相似文献   

11.
为了解绿洲经济迅速发展背景下新疆典型尾闾绿洲-艾比湖流域小尺度农田土壤的养分和盐渍化状况,对该地区典型农田土壤中有机质、碱解氮、速效磷和速效钾等养分元素的空间分布、影响因素以及盐渍化风险状况进行了评价。结果表明:(1)农田土壤中有机质、碱解氮、速效磷和速效钾的含量均较高。所有土壤样点中总盐分含量属于高度变异,其他指标属于低度变异。(2)半方差函数分析表明土壤中碱解氮、速效磷和速效钾含量的空间变异性主要受施肥和灌溉等随机性因素的影响;而有机质和总盐分含量的空间变异性则受植被覆盖和土壤质地等结构性因素以及施肥、灌溉等随机性因素的共同影响。(3)空间分析表明,总体看农田土壤中有机质、碱解氮、速效磷和速效钾含量较高区域主要分布在中部和北部,受施肥、灌溉方式和植被盖度等因素的影响;而盐分含量较高区域主要分布在研究区南部和边缘区域,主要受地形、土壤质地和植被盖度的影响。(4)相关分析表明农田土壤中有机质、速效钾、速效磷、碱解氮和总盐分含量呈显著的负相关关系。盐渍化风险评估表明土壤中总盐分含量属于低度到中度的盐渍化风险,不会对主要作物棉花的生长产生危害,但应改进灌溉方式和种植制度,同时采用增施有机肥、进行秸秆还田等措施促进棉花作物的稳产、高产。  相似文献   

12.
农田秸秆覆盖对冬小麦水氮效应的影响   总被引:7,自引:2,他引:7  
通过田间试验研究了杨凌红油土农田秸秆覆盖条件下冬小麦的水氮效应.结果表明,秸秆覆盖使土壤水分状况明显改善,从而使补充灌水的效果相应减小,氮肥的作用更加突出;无覆盖条件下,水氮交互效应均为负值,而秸秆覆盖时水氮有正的交互作用.旱地秸秆覆盖条件下更应重视养分的投入.无秸秆覆盖条件下小麦取得高产的基础是良好的土壤底墒和充足的氮肥.秸秆覆盖使小麦达到最高产量所需要的灌水量降低,灌水时期后延.不论有无秸秆覆盖,拔节期灌水对冬小麦籽粒产量没有显著影响.  相似文献   

13.
灌溉量和施氮量对冬小麦产量和土壤硝态氮含量的影响   总被引:3,自引:1,他引:2  
Jiang DY  Yu ZW  Xu ZZ 《应用生态学报》2011,22(2):364-368
研究了大田条件下灌溉量和施氮量对小麦产量和土壤硝态氮含量的影响.结果表明:增加灌溉量,0~200 cm土层硝态氮含量呈先降后升又降的趋势.0~80 cm土层硝态氮含量显著低于对照,而80~200 cm土层硝态氮含量显著高于对照.随灌溉量的增加,土壤硝态氮向深层运移加剧,在成熟期,0~80 cm土层硝态氮含量降低,120~200 cm土层硝态氮含量升高,并在120~140 cm土层硝态氮含量出现高峰.灌溉量不变,施氮量由210 kg·hm-2增加到300 kg·hm-2,开花期、灌浆期、成熟期0~200 cm各土层土壤硝态氮含量显著升高.随灌溉量的增加,小麦籽粒产量先增加后降低,以全生育期灌溉量为60 mm的处理籽粒产量最高.增加施氮量,籽粒产量、蛋白质含量和蛋白质产量显著提高.本试验中,施氮量为210 kg.hm-2、两次灌溉总量为60 mm的处理籽粒产量、蛋白质含量、蛋白质产量和收获指数均较高,且土壤硝态氮损失少,是较合理的水氮运筹模式.  相似文献   

14.
Micronutrient malnutrition, and particularly deficiency in zinc (Zn) and iron (Fe), afflicts over three billion people worldwide, and nearly half of the world’s cereal-growing area is affected by soil Zn deficiency. Wild emmer wheat [Triticum turgidum ssp. dicoccoides (Körn.) Thell.], the progenitor of domesticated durum wheat and bread wheat, offers a valuable source of economically important genetic diversity including grain mineral concentrations. Twenty two wild emmer wheat accessions, representing a wide range of drought resistance capacity, as well as two durum wheat cultivars were examined under two contrasting irrigation regimes (well-watered control and water-limited), for grain yield, total biomass production and grain Zn, Fe and protein concentrations. The wild emmer accessions exhibited high genetic diversity for yield and grain Zn, Fe and protein concentrations under both irrigation regimes, with a considerable potential for improvement of the cultivated wheat. Grain Zn, Fe and protein concentrations were positively correlated with one another. Although irrigation regime significantly affected ranking of genotypes, a few wild emmer accessions were identified for their advantage over durum wheat, having consistently higher grain Zn (e.g., 125 mg kg?1), Fe (85 mg kg?1) and protein (250 g kg?1) concentrations and high yield capacity. Plants grown from seeds originated from both irrigation regimes were also examined for Zn efficiency (Zn deficiency tolerance) on a Zn-deficient calcareous soil. Zinc efficiency, expressed as the ratio of shoot dry matter production under Zn deficiency to Zn fertilization, showed large genetic variation among the genotypes tested. The source of seeds from maternal plants grown under both irrigation regimes had very little effect on Zn efficiency. Several wild emmer accessions revealed combination of high Zn efficiency and drought stress resistance. The results indicate high genetic potential of wild emmer wheat to improve grain Zn, Fe and protein concentrations, Zn deficiency tolerance and drought resistance in cultivated wheat.  相似文献   

15.
Soil nutrients and water have long been recognized as the main determining factors influencing agricultural productivity in rain-fed agriculture. Manure application and irrigation can increase crop yield when nutrients and water are deficient. Often effects of water and nutrients are closely related and can not be easily separated in actual production. Three years of experiment were conducted in northern part of black soil area of Northeast China to investigate the responses of photosynthetic rates and yield/quality of main crops, wheat (Triticum aestivum L.), maize (May zeas L.), soybean (Glycine max L. Merr.) to irrigation and manure application. Irrigation and manure application had no effects on photosynthetic patterns during reproductive development in crops, maximum photosynthetic rates were achieved by irrigation, and manure application maintained relatively higher photosynthetic rates after the peak. On average, higher photosynthetic rates with irrigation may contribute to higher yield in soybean but not in maize and wheat. Responses of crop yield and quality to manure application and irrigation varied in the crops. Soybean yield and quality was very sensitive to irrigation and manure application. The greater supply of nutrients with sufficient water, the higher the yield. However, the high-yield of soybean achieved was accompanied with a decline of seed protein content. Maize yield mainly depended on nutrients used not the water supply, irrigation resulted in higher water content in the seed of maize and lower grain protein content in wheat at harvest, which is detrimental to seed storage in maize and processing quality in wheat. In the northern part of black soil area in Northeast China, the management of manure is critical to improve crop production, the optimum management for maize and wheat production was to apply chemical fertilizer and manure without irrigation, but for soybean was to apply fertilizer and manure with irrigation.  相似文献   

16.
水氮互作对小麦籽粒蛋白质、淀粉含量及其组分的影响   总被引:9,自引:0,他引:9  
以两个不同品质类型的小麦品种(强筋品种豫麦34、弱筋品种豫麦50)为材料,在大田条件下,研究了3个灌水处理(W1:拔节水;W2:拔节水+花后15 d灌浆水;W3:拔节水+灌浆水+花后28 d麦黄水)和3个氮肥水平(0、150、270 kg·hm-2)对籽粒蛋白质、淀粉含量及其组分的影响.结果表明:270 kg·hm-2的施氮量有利于提高强筋小麦(豫麦34)籽粒蛋白质含量,籽粒清蛋白、醇溶蛋白和谷蛋白含量明显提高,谷/醇增大;支链淀粉和总淀粉含量提高,直/支下降;籽粒产量增加.弱筋小麦(豫麦50)在150 kg·hm-2 的施氮量下,清蛋白和醇溶蛋白含量增加,球蛋白和谷蛋白含量下降,谷/醇降低;支链淀粉和总淀粉含量提高;不施氮肥或氮肥施用过多(270 kg·hm-2)均影响籽粒蛋白质和淀粉的积累,使产量下降.W2处理促进了籽粒蛋白质和淀粉积累,W1或W3处理均不利于籽粒蛋白质和淀粉积累,且导致籽粒产量下降.水、氮互作效应中,强筋和弱筋小麦分别以全生育期270 kg·hm-2和150 kg·hm-2施氮量配合拔节水+灌浆水(W2)为比较理想的水氮运筹方式.  相似文献   

17.
Crop yield and water use efficiency (WUE) in a wheat-maize double cropping system are influenced by short and uneven rainfalls in the North China Plain (NCP), A 2-year experiment was conducted to investigate the effects of irrigation on soil water balance, crop yield and WUE to improve irrigation use efficiency in the cropping system, Soil water depletion (~SWS) by crop generally decreased with the increase of irrigation and rainfall, while ASWS for the whole rotation was relatively stable among these irrigation treatments, High irrigations in wheat season increased initial soil moisture and ASWS for subsequent maize especially in the drought season, Initial soil water influenced mainly by the irrigation and rainfall in the previous crop season, is essential to high yield in such cropping systems, Grain yield decreased prior to evapotranspiraUon (ET) when ET reached about 300mm for wheat, while maize showed various WUEs with similar seasonal ET, For whole rotation, WUE declined when ET exceeded about 650 mm, These results indicate great potential for improving irrigation use efficiency in such wheat-maize cropping system in the NCP, Based on the present results, reasonable irrigation schedules according to different annual rainfall conditions are presented for such a cropping system.  相似文献   

18.
在2009-2010和2010-2011年小麦生长季,设置10、20、40、60、80和100 m 6个畦田长度,研究不同畦长对小麦耗水特性及产量的影响.结果表明: ≤80 m畦长处理下,随畦长的增加,灌水量逐渐增加,灌水量占总耗水量的比例增加,土壤贮水消耗量减少,小麦拔节至开花期的耗水量和生长季总耗水量均减少,开花期0~200 cm各土层土壤含水量增加,土壤供水能力提高,籽粒产量和水分利用效率逐渐提高.与80 m畦长处理相比,<80 m畦长处理的灌水量少,上层土壤含水量低,促使小麦吸收更多的深层贮水,总耗水量增加,不利于节水;而100 m畦长处理的灌水量、土壤贮水消耗量和总耗水量均增加,由于一次性灌水量过多且灌溉水分布不均匀,导致小麦千粒重降低,籽粒产量和水分利用效率显著下降,也不利于节水高产.  相似文献   

19.
氮肥施用对冬小麦产量、品质和氮素表观损失的影响研究   总被引:23,自引:4,他引:19  
通过田间小区试验,对施用氮肥造成的冬小麦产量、品质和环境效应进行了研究.结果表明,4个试验点最高产量施N量分别为0、0、79和118 kg·hm-2,最高籽粒粗蛋白质含量施N量分别为122、100、127和174 kg·hm-2,小麦收获后0~90 cm土壤剖面硝态氮残留量随施N量的增加呈极显著线性增加,而N表观损失则呈指数增加.在最高产量施N量条件下,小麦收获后0~90 cm土层硝态氮残留保持86~115 kg·hm-2,N表观损失为2~32 kg·hm-2,低于最高籽粒粗蛋白含量施N量时的土壤剖面硝态氮残留量(106~168 kg·hm-2)和N表观损失量(14~56 kg·hm-2).综合考虑冬小麦产量、品质和环境安全,最高产量施N和氮肥施用的环境效应可以通过优化施N进行协调.  相似文献   

20.
Arbuscular mycorrhizal fungi (AMF) are crucial for ecosystem functioning, and thus have potential use for sustainable agriculture. In this study, we investigated the impact of organic and mineral fertilizers on the AMF community composition and content of Glomalin-related soil protein (GRSP) in a field experimental station which was established in 1979, in the Loess Plateau of China. Roots and soils were sampled three times during the growing period of winter wheat in 2008. The treatments including: N (inorganic N), NP (inorganic N and P), SNP (straw, inorganic N and P), M (farmyard manure), MNP (farmyard manure, inorganic N and P), and CK (no fertilization). AMF communities of root and soil samples were analyzed using PCR-DGGE, cloning and sequencing techniques; and GRSP content was determined by Bradford assay. Our results indicated that spore density, GRSP, and AMF community varied significantly in soils of long-term fertilization plots at three different wheat growing stages. The effects of wheat growing period on AMF community in roots were much more evident than fertilization regimes. However, the diversity of AMF was low in our study field. Up to five AMF phylotypes appeared in each sample, with the overwhelming dominance of a Glomus-like phylotype affiliated to G. mosseae. GRSP content was correlated positively with organic carbon, total phosphorus, available phosphorus, soil pH, and spore densities, but correlated negatively with soil C/N (P?<?0.05). The results of our study highlight that the richness of AMF in Loess Plateau agricultural region is low, and long-term fertilization, especially amendments with manure and straw, has beneficial effects on accumulation of soil organic carbon, spore density, GRSP content, and AMF diversity. Host phenology, edaphic factors (influenced by long-term fertilization), and habitats interacted to affect the AMF community and agoecosystem functioning. Additionally, soil moisture and pH make a greater contribution than other determined soil parameters to the AMF community dynamics in such a special semi-arid agroecosystem where crops rely greatly on rainfall.  相似文献   

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