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1.
选用强筋小麦济麦20、中筋小麦泰山23和弱筋小麦宁麦9号,利用反相高效液湘色谱(RP-HPLC)方法测定了施氮量对不同品质类型小麦子粒蛋白质组分含量和高分子量谷蛋白亚基(HMW-GS)、低分子量谷蛋白亚基(LMW-GS)含量的影响,并分析其与子粒加工品质的关系。结果表明,随施氮量增加,强筋小麦济麦20和中筋小麦泰山23的子粒蛋白质含量及各组分含量均呈先增加后降低的趋势,施氮量为N 240 kg/hm2时,蛋白质各组分含量较高,加工品质较好; 过量施氮抑制了HMW-GS合成,这是过量施氮导致强筋和中筋小麦子粒蛋白质品质变劣的原因之一。随施氮量增加,弱筋小麦宁麦9号子粒的蛋白质各组分含量显著增加,加工品质变劣。增施氮肥,3个品种的谷蛋白和醇溶蛋白含量的增加幅度显著高于清蛋白+球蛋白含量,这是施氮改善强筋和中筋小麦子粒加工品质的主要原因。济麦20和泰山23两品种的总蛋白质含量及醇溶蛋白含量无显著差异,但强筋小麦济麦20的谷蛋白含量、贮藏蛋白、HMW-GS、LMW-GS、谷蛋白大聚合体(GMP)含量及谷蛋白与醇溶蛋白含量的比值(Glu/Gli)和HMW-GS与LMW-GS含量的比值(HMW/LMW)高于中筋小麦泰山23,这是强筋小麦济麦20加工品质形成及其面团形成时间和稳定时间显著高于泰山23的重要原因。  相似文献   

2.
采用盆栽试验和SDS-PAGE技术,研究了氮肥对强筋和中筋小麦亚基表达量、品质性状及相关关系的影响。结果表明,施用氮肥提高了优质小麦高分子量谷蛋白亚基表达量,对强筋小麦影响较小,而对中筋小麦影响较大。施氮后,强筋小麦的亚基表达量与醇溶蛋白和谷蛋白的含量极显著相关,而中筋小麦的亚基表达量仅与谷蛋白的含量显著相关,说明氮肥对不同亚基组成小麦高分子量谷蛋白表达量及蛋白组分调控有一定差异。施氮后,高分子量谷蛋白亚基表达量与各项加工品质指标呈正相关;强筋小麦的亚基表达量与湿面筋含量、稳定时间、沉降值和评价值相关性达到显著或极显著水平;而中筋小麦的亚基表达量仅与沉降值相关性达到显著水平。  相似文献   

3.
在田间试验条件下,以强筋品种济麦20和弱筋品种山农1391为材料,研究了不同施磷水平对2类型品种小麦旗叶氮代谢关键酶活性和子粒蛋白质积累的效应。结果表明,在P2O5 0~135 kg /hm2范围内,施磷明显提高济麦20灌浆前期旗叶硝酸还原酶(NR)和谷氨酰胺合成酶(GS)活性;但却降低山农1391旗叶NR、GS活性。强筋品种济麦20在灌浆中、后期旗叶内肽酶(EP)、羧肽酶(CP)活性和蛋白质含量因施磷而提高;而弱筋品种山农1391的EP、CP活性和子粒蛋白质含量则降低。施磷使济麦20子粒清蛋白、醇溶蛋白和谷蛋白的含量提高,球蛋白含量有所降低;但弱筋品种山农1391子粒球蛋白、醇溶蛋白和谷蛋白的含量因施磷而降低,清蛋白含量未见显著变化。说明小麦施磷应考虑不同品质类型品种氮代谢及子粒蛋白质含量对施磷的反应。  相似文献   

4.
通过杂交中籼丰两优1号的分期播种和分期收获试验,分析了播期和收获期对稻米品质的影响。结果表明,不同播期和收获期稻米蛋白质组分谷蛋白、谷氨酸含量均有显著差异,总蛋白含量随播期推迟而递减,随收获期的延迟而递增;氨基酸含量与总蛋白含量的变化趋势一致。由于播期和收获期不同造成水稻生育期气象条件差异从而影响到稻米品质发生变化,偏相关分析结果显示,清蛋白、球蛋白、醇溶蛋白及蛋氨酸含量受各气候生态因子的影响小,总蛋白、谷氨酸、天门冬氨酸等性状易受气候生态因子的影响。综合试验结果得出,丰两优1号组合在温州地区可选择5月26日播种,灌浆期日平均气温25.07℃,生育期130d左右,其稻米的整精米率、总蛋白及其组分谷蛋白和氨基酸组分(除蛋氨酸)含量高,营养品质较好。  相似文献   

5.
张永丽  于振文 《水土保持学报》2007,21(5):155-158,174
选用强筋小麦济麦20和中筋小麦泰山23两个品种,在大田条件下设置不灌水(0mm)、灌水180mm,240mm和300mm4个处理,研究了灌水量对籽粒品质和产量及土壤硝态氮含量的影响。结果表明,灌水180mm和240mm的处理比不灌水和灌水300mm的处理提高了强筋小麦济麦20的籽粒谷蛋白含量、谷蛋白含量/醇溶蛋白含量比值(谷/醇比值)、谷蛋白大聚合体(GMP)含量和湿面筋含量,延长了面团稳定时间,改善了籽粒品质;中筋小麦泰山23的不灌水处理的籽粒蛋白质含量高于灌水180mm,240mm和300mm的处理,但是GMP含量、湿面筋含量和面团稳定时间各处理间无显著差异。两品种的籽粒产量均以灌水240mm的处理最高,但泰山23灌水180mm的处理与灌水240mm的处理无显著差异。随灌水量增加,土壤中的硝态氮向深层土壤的淋溶增加。本试验条件下,综合考虑品质、产量和土壤中硝态氮的淋溶,济麦20和泰山23可供生产中参考的灌水量分别为180~240mm和180mm。  相似文献   

6.
灌水和生长调节剂对有色小麦产量和品质的影响   总被引:1,自引:1,他引:0  
以有色小麦皖麦38、绿麦1号和kz6061为材料,在大田条件下,研究灌水和生长调节剂对有色小麦产量和品质的影响。结果表明,灌水处理对有色小麦千粒重、容重、籽粒产量和蛋白质产量影响不显著,灌3水较灌2水处理显著提高有色小麦醇溶蛋白含量,而显著降低干、湿面筋含量。不同粒色小麦的籽粒产量和蛋白质产量差异显著,kz6061的籽粒产量和蛋白质产量均显著高于皖麦38和绿麦1号。蛋白质及其组分含量、沉降值、面筋含量和面筋指数在不同粒色小麦中差异显著,沉降值和面筋指数以皖麦38最高,干、湿面筋含量以kz6061最高。生长调节剂处理对皖麦38的清蛋白和球蛋白,绿麦1号的球蛋白,kz6061的清蛋白、球蛋白、醇溶蛋白和谷蛋白含量均有一定影响,对有色小麦面筋指数亦有显著影响。  相似文献   

7.
花后土壤干旱和渍水对不同专用小麦籽粒品质的影响   总被引:18,自引:4,他引:18  
在温室盆栽条件下,以4个籽粒蛋白质含量不同的小麦基因型为材料,研究了花后土壤干旱(SRWC=45%~50%)、渍水和适宜水分条件(SRWC=75%~80%)下小麦籽粒主要品质特性。干旱显著提高各品种籽粒蛋白质含量、谷蛋白含量及谷蛋白/醇溶蛋白比值,并显著提高面粉干/湿面筋含量。渍水显著降低了籽粒谷蛋白含量及谷蛋白/醇溶蛋白比值。干旱和渍水均显著降低籽粒淀粉产量和支链淀粉含量,直链淀粉含量提高,从而不同程度地降低籽粒直/支链淀粉比。干旱和渍水对各品种籽粒面筋指数、沉降值和降落值的影响因品种而异。与对照相比,干旱和渍水下小麦籽粒各品质性状间的相关性降低,表明土壤水分逆境下各籽粒品质特征值与正常水分条件下差异明显,从而改变了专用小麦的籽粒品质特性。  相似文献   

8.
水氮耦合对强筋冬小麦子粒蛋白质和淀粉品质的影响   总被引:4,自引:2,他引:4  
在高肥力条件下,研究水氮耦合对小麦子粒产量、蛋白质含量及组成、蛋白质质量、淀粉含量及组成和淀粉品质的影响。结果表明,无论施氮与否,灌水均显著提高小麦子粒产量,同时显著降低子粒粗蛋白、单体蛋白及湿面筋含量;但不同灌水量间(W1、W2、W3)差异不显著。在低灌水频次(W0、W1)条件下,施氮具有明显的增产效应;而高灌水频次(W2、W3),施氮的增产效应不显著。随着灌水次数增加,谷蛋白总量保持稳定,而谷蛋白组分产生了显著的变化,其中可溶性谷蛋白含量呈上升趋势,不溶性谷蛋白含量和谷蛋白聚合指数呈下降趋势,粉质仪参数(形成时间和稳定时间)也呈下降趋势。小麦子粒蛋白质含量及组分和子粒品质均因施氮(N.168.kg/hm2)而有不同程度的提高,其中非面筋蛋白(清蛋白和球蛋白)的增加幅度高于面筋蛋白(醇溶蛋白和谷蛋白),可溶性谷蛋白增加幅度高于不溶性谷蛋白,即降低了谷蛋白聚合指数。水氮对子粒的淀粉含量及其组成的影响存在明显的交互效应。在不施氮肥条件下,随灌水次数增加,支链淀粉和总淀粉含量呈上升趋势;施氮条件下,各灌水处理(W1、W2、W3)的总淀粉和支链淀粉含量均显著高于不灌水处理(W0),但各灌水处理间差异不显著。随灌水次数增加,直链淀粉含量和直/支比均呈下降趋势,黏度仪指标(峰值黏度、稀值、最终黏度和反弹值)均呈上升趋势。施氮在低灌水频次(W0、W1)条件下促进支链淀粉的合成,同时降低直链淀粉含量和直/支比;高灌水频次(W2、W3)条件下则相反。  相似文献   

9.
施氮量对小麦氮代谢相关酶活性和子粒蛋白质品质的影响   总被引:5,自引:1,他引:5  
在2003~2004年和2004~2005年小麦生长季,以强筋小麦济麦20为材料,分别设置N 0、96、168、240、276 kg/hm2 5个施氮量处理和0、96、168、240 kg/hm2 4个施氮量处理,研究不同施氮量对小麦氮代谢相关酶活性和子粒蛋白质品质的影响。两年度的试验结果均表明,在一定施氮量范围内,随施氮量增加,公顷穗数、穗粒数、蛋白质含量、子粒产量和蛋白质产量均显著升高;继续增加施氮量子粒产量显著降低,公顷穗数、穗粒数、蛋白质产量降低或无显著差异。其中2004~2005年生长季,在0~168 kg/hm2施氮量范围内,随施氮量增加,旗叶谷氨酰胺合成酶(GS)活性、开花21d后的旗叶內肽酶(EP)活性、旗叶游离氨基酸含量、子粒醇溶蛋白含量、高分子量谷蛋白亚基(HMW-GS)和低分子量谷蛋白亚基(LMW-GS)含量、HMW-GS / LMW-GS比值、子粒蛋白质含量、公顷穗数和穗粒数、子粒产量均显著升高,面团形成时间和稳定时间延长;继续增加施氮量至240 kg/hm2,GS活性无显著变化,但开花21 d后的EP活性、-醇溶蛋白、-醇溶蛋白、HMW-GS、LMW-GS和子粒蛋白质含量仍显著提高,面团稳定时间继续延长,子粒产量显著降低。说明施氮过多对小麦氮素同化和产量无益;提高开花后旗叶GS活性和灌浆后期旗叶EP活性,有利于HMW-GS和LMW-GS的积累及HMW-GS/ LMW-GS比值的提高。适量施氮不仅提高了子粒灌浆所需氮源的供给能力,而且显著增加公顷穗数和穗粒数,扩大了单位面积库容,增加了单位面积上的氮素和光合产物在子粒中的贮存,这是适量施氮实现子粒品质和产量同步提高的生理原因。本试验条件下高产优质高效的施氮量为168~240 kg/hm2。  相似文献   

10.
为探寻硝态氮和铵态氮及其配施对专用型小麦蛋白质形成的影响规律,以郑麦366、矮抗58和郑麦004为供试材料,在大田试验条件下,研究了硝态氮和铵态氮及其配施对专用型小麦籽粒蛋白质组分和GMP含量的影响。结果表明,籽粒蛋白及其组分含量、GMP含量和蛋白质产量均表现为郑麦366矮抗58郑麦004,品种间差异显著。N3处理(硝态氮∶铵态氮=50∶50)下3品种在灌浆期籽粒蛋白质含量均显著高于其它处理,成熟期N4(硝态氮∶铵态氮=25∶75)或N5(硝态氮∶铵态氮=0∶100)蛋白质含量最低。籽粒蛋白质组分含量的变化因氮素配施和品种不同而异,N3处理能促进3品种小麦清蛋白、醇溶蛋白和谷蛋白含量的提高,硝态氮处理次之,铵态氮处理最低。成熟期3品种籽粒谷蛋白大聚合体含量均以N3处理最高,N4或N5最低。为强化专用小麦的优质专用特性,强筋小麦和中筋小麦以硝态氮:铵态氮=75∶25或硝态氮∶铵态氮=50∶50为宜,弱筋小麦以硝态氮∶铵态氮=25∶75或硝态氮∶铵态氮=0∶100为宜。  相似文献   

11.
The objectives of this study were to assess how functional properties of proteins in whole meal wheat (Triticum aestivum L.) flour vary across different growth environments. Grain from three commercial Australian Hard milling wheat cultivars was analyzed from four growth locations in 2008 and from two of the corresponding cultivars and locations in 2009. The protein content of the grain, soluble and insoluble extractable protein fractions, swelling index of glutenin (SIG), glutenin‐to‐gliadin ratio (Glu:Gli), percent unextractable polymeric protein (%UPP), and dough properties including force at maximum resistance (Rmax) and extensibility were measured. Based on analysis of variance of aggregated data for the cultivars, growth locations, and seasons, growth environment factors made significant contributions to variability in the total grain protein, Glu:Gli ratio, %UPP, SIG, Rmax, and extensibility of the wheat flour. Variability of protein content of the soluble and insoluble extractable protein fractions was mostly owing to genotype.  相似文献   

12.
施氮水平对小麦子粒蛋白质组分和加工品质的影响   总被引:13,自引:3,他引:13  
选用两个优质小麦品种烟农15号和济麦19号,研究了施氮水平对小麦子粒蛋白质组分和加工品质的影响。田间试验设4个施氮水平,即N.0、120、240和360.kg/hm2。结果表明,施用氮肥对子粒发育前期清蛋白和球蛋白含量有明显的提高效应,但随子粒灌浆充实,这种效应逐渐削弱,到成熟期,施氮处理虽能提高子粒清蛋白和球蛋白的含量,但不同施氮水平间无明显差异。施用氮肥还能显著地提高子粒醇溶蛋白和麦谷蛋白的含量,尤其是子粒麦谷蛋白的含量,使子粒麦谷蛋白/醇溶蛋白比值提高。试验还表明,施用氮肥能明显提高子粒湿面筋含量,延长面团形成时间、面团稳定时间和断裂时间。综合分析看出,子粒醇溶蛋白和麦谷蛋白的含量以及麦谷蛋白/醇溶蛋白比值是影响小麦加工品质的重要因素,可以作为小麦品质育种中亲本及后代材料的选择、评价和优质栽培技术评价的依据。  相似文献   

13.
The effect of genetic variation in the glutenin and gliadin protein alleles of Alpha 16, a Canada Prairie Spring (CPS) wheat line, on the dough mixing, bread, and noodle quality properties were evaluated. The presence of a gliadin component (BGGL) and the low molecular weight glutenin subunit (LMW-GS) 45 found in the selection Biggar BSR were associated with significant increases in dough strength characteristics. The results of the study showed that gliadins, LMW-GS, and high molecular weight glutenin subunits (HMW-GS) can influence bread- and noodle-making properties of wheat flour. Genotype-by-environment interactions were not significant for most of the quality parameters studied, indicating that the differences observed in quality characteristics were mainly due to the effect of genotype.  相似文献   

14.
不同施氮时期对冬小麦子粒蛋白质组分及其动态变化的影响   总被引:12,自引:4,他引:12  
2002~2003年在新疆乌鲁木齐和昌吉两个试验点,进行新疆不同栽培条件下氮肥施用时期对冬小麦子粒产量和蛋白质组分变化的研究。试验结果表明,在氮肥施用量一定的情况下,拔节期施氮处理小麦产量显著高于返青期和孕穗期施氮的处理,说明拔节期施氮有利于实现小麦高产。在新疆冬小麦栽培条件下,随施氮时期后移,子粒清蛋白和球蛋白含量有所减少,而醇溶蛋白和麦谷蛋白的含量增加;孕穗期施氮可以明显提高子粒麦谷蛋白的含量,有利于小麦加工品质的改善。不同施氮时期对小麦产量和品质的影响不同,施氮时期后移能提高小麦子粒的麦谷/醇溶比值;但不同品种在不同地区种植,其施氮时期后移的效应存在一定的差异。  相似文献   

15.
Improvement of food processing quality has become a major breeding objective in China. Nineteen Chinese leading winter wheat cultivars with improved quality and two Australian cultivars with high bread and noodle-making qualities were sown in four locations for two years to investigate dough properties, pan bread, and Chinese white salted noodle (CWSN) qualities, and their association with the quantity of protein fractions. The results indicated that genotype, environment, and genotype-by-environment interaction significantly affected most of quality traits and amount of protein fractions. Genotype mainly determined the quantity of gluten protein fractions and pan bread quality parameters, while environment was the most important source of variation for the noodle quality parameters. Chinese cultivars were characterized by acceptable protein content (11.1–13.4%), medium to strong dough strength (maximum resistance 176.9–746.5 BU), medium to poor dough extensibility (166.5–216.4 mm), fair to very good pan bread qualities, and good to very good CWSN qualities. Gliadin contributed more in quantity to protein content (r = 0.80, P < 0.001), however, glutenin and its subgroups were more important to dough strength. The quantity of glutenin, HMW-GS, and LMW-GS were highly and significantly correlated with dough strength-related traits such as farinograph development time, stability, extensigraph maximum resistance, and extension area (r = 0.70–0.91, 0.65–0.89, and 0.70–0.91, respectively; P < 0.001). The quantity of LMW-GS could explain 82.8% of the total variation of dough maximum resistance. The quantity of gliadin and the ratio of HMW-GS to LMW-GS determined dough extensibility (r = 0.75 and r = –0.59, respectively; P < 0.001 and P < 0.01, respectively). Higher quantity of glutenin and lower ratio of gliadin to glutenin resulted in higher bread score with r = 0.70 (P < 0.001) and r = –0.74 (P < 0.001), respectively. However, protein content and its fractions have a moderate undesirable effect on CWSN parameters such as color, firmness, and taste. Therefore, both allelic variation and quantity of storage protein fractions should be considered in breeding cultivars with improved pan bread making quality.  相似文献   

16.
Criteria for durum wheat quality are continuously evolving in response to market pressure and consumer's preference. Specific attributes of durum wheat for different end products require more rapid and objective means to grade and classify wheat parcels based on processing potential. A total of 10 durum wheat cultivars were compared for compositional, protein, and starch characteristics. Mean values for the gross composition differed for total protein, gluten, and starch. Two-dimensional electrophoresis (2DE) analysis showed the proteome diversity among the cultivars. As shown by the principal component analysis (PCA) applied to 2DE data of gliadin and glutenin fractions, cultivars differed mainly from the number of proteins and levels of protein expression. As determined by the rapid viscoanalyzer (RVA), swelling power, starch damage, amylose content, and starch pasting properties of 10 cultivars differed significantly. 2DE fingerprinting and amylose content seemed to distinguish specific cultivars being useful tools for selecting suitable durum wheat cultivars for pasta making.  相似文献   

17.
Proteolytic degradation of 50% 1-propanol insoluble (50PI) glutenin of six common wheat cultivars by wheat bug (Eurygaster maura) protease was investigated using reversed-phase HPLC. Wheat at the milk-ripe stage was manually infested with adult bugs. After harvest, bug-damaged kernels were blended (2:1, kernel basis) with undamaged grain of the same cultivar. Samples of ground wheat were incubated in distilled water for different times (0, 30, 60, and 120 min). The incubated whole meal samples were subsequently freeze-dried and stored until analysis. The degree of proteolytic degradation of 50PI glutenin was determined based on the quantity of total glutenin subunits (GS), high molecular weight GS (HMW-GS), and low molecular weight GS (LMW-GS). For ground wheat samples incubated for ≥30 min, 50PI glutenin was substantially degraded as evidenced by a >80% decrease on average in total GS, HMW-GS, and LMW-GS. Some cultivars showed different patterns of glutenin proteolysis as revealed by differences in the ratios of HMW-GS to LMW-GS between sound and bug-damaged samples; a significant decrease in this ratio was found for four cultivars. This evidence, combined with other observations, indicated that there were intercultivar differences in polymeric glutenin resistance to the protease of the wheat bug Eurygaster maura. While the nature of this resistance is unknown, it should be possible to select and develop wheat cultivars with improved tolerance for wheat bug damage. Propanol insoluble glutenin, which corresponds to relatively large glutenin polymers, appears to be an excellent quantitative marker for this purpose.  相似文献   

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