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1.
环境、基因型及其互作对小麦主要品质性状的影响   总被引:12,自引:0,他引:12       下载免费PDF全文
  为了解环境(E)、基因型(G)及其互作(G×E)对小麦(Triticum aestivum)主要品质性状的影响效应, 连续两年进行了2组不同试验: 试验1在河南省5个不同纬度点分别种植强筋、中筋和弱筋6个小麦品种, 其品质性状的基因型差异相对较大; 试验2采用9个品种(多为中筋类型), 分别种植于我国主产麦区的8个省份, 其环境差异相对较大。研究结果表明, 2组试验中所有品质性状的基因型差异均达5%或1%的显著水平。试验2中所有品质性状的地点变异均达1%的极显著水平, 而试验1中仅蛋白质含量、湿面筋含量、沉降值、吸水率和延伸性的地点变异显著, 其多数加工品质性状的地点变异不显著。试验1中所以品质性状的地点×基因型互作均不显著; 而试验2中籽粒硬度、灰分、吸水率、形成时间、稳定时间和最大抗延伸阻力存在显著的地点×基因型互作。2组试验结果给我们的启示是: 1)基因型对多数品质性状的影响是第一位的, 因此生产中品种选择对获得理想的加工品质至关重要。2)地点对多数品质性状影响明显, 但其效应大小与试验的环境差异性有关。3)基因型与环境的互作效应明显小于基因型或环境主效应, 且受试验材料(基因型)与环境差异的影响。4)年际间多数品质性状有显著差异, 主要与灌浆期降雨、光照及温度条件有关; 过多降雨、较少日照时数及较低日均温对强筋小麦品质形成不利。  相似文献   

2.
分析基因型、环境及其互作对小麦品质性状的影响。对两年度3个试点13个小麦品种的16个主要品质性状进行分析。结果表明:品质性状在不同小麦品种及不同试点间皆存在显著差异,其中硬度、PPO活性、AWRC、稀懈值的变异系数较大;膨胀势、最终粘度、峰值粘度的变异系数较小;糊化温度、碱性水保持力、峰值时间、蛋白质含量、湿面筋含量的环境效应大于基因型效应;SDS沉降值、PPO活性、黄色素含量、膨胀势、峰值粘度、保持粘度、稀懈值、最终粘度、回升值、Zeleng沉降值、硬度的基因型效应大于环境效应,保持粘度这一品质性状基本上不受环境影响,比较稳定。  相似文献   

3.
基因型与生态环境对小麦籽粒品质与蛋白质组分的影响   总被引:43,自引:4,他引:43  
荆奇  姜东  戴廷波  曹卫星 《应用生态学报》2003,14(10):1649-1653
通过2年3点试验,研究了40个小麦(Triticum aestivum)品种(品系)籽粒品质性状和蛋白质组分含量的变异。结果表明,籽粒品质和蛋白质组分在基因型间存在较大的差异;根据小麦籽粒品质的综合性状,可将40个小麦品种(品系)分为6组不同的品质类型,在本试验点的生态环境条件下。基本以中筋及弱筋小麦为主;生态环境对小麦籽粒的容重、沉降值、湿面筋含量、蛋白质含量、赖氨酸含量与蛋白质组分含量均有极显著的影响,而面筋指数、淀粉含量和直链淀粉含量对环境反应不敏感,适宜的生态环境条件有利于形成合理的谷蛋白/醇溶蛋白比。面粉面筋质量好,基因型与生态环境的互作对小麦籽粒品质。谷蛋白与醇溶蛋白及两者的比值有显著影响,对球蛋白影响不大,而面粉蛋白质含量、面筋含量、沉降值及千粒重主要受基因的表达和环境的独立影响,蛋白质组分含量在基因型间和环境间的变化与小麦籽粒烘烤品质密切相关。  相似文献   

4.
基因型和环境对小麦主要品质性状参数的影响   总被引:13,自引:0,他引:13  
利用8个冬小麦品种(系)于2002年种植在8个不同地点的试验结果,分析了品种(系)、环境以及品种(系)与环境的互作对谷蛋白大聚合体(GMP)及其组成、面团揉混仪参数及烘烤品质等主要品质性状的影响。结果表明,基因型对GMP、高、低分子量谷蛋白亚基有显著影响,说明GMP及其组成主要受基因型控制;沉淀值、峰值时间(MPT)、8min带宽(8TW)受环境影响程度比基因型小;而品种、环境及其互作对面包体积都有显著影响。小麦品质性状间的相关系数受环境条件的影响,不同地点品质性状问的相关系数不同。品种(系)和地点的互作效应在同一品种不同地点间是不同的,即使在不利的环境下,也有表现好的品种(系)。综合考虑对烘烤品质的影响,烟台点和济麦20表现最好。因此,进行品质评价时,不同地点间不仅考虑蛋白质含量的变化,还要考虑蛋白质质量、GMP及其组成、沉淀值、中线峰值时间以及8min带宽的变化规律。  相似文献   

5.
小麦品种蛋白质品质性状稳定性研究   总被引:16,自引:2,他引:16  
用陕西省关中小麦品种区域试验所选用的12个小麦品种(品系)在12个试点的数据资料。分析了品种,环境及品种与环境互作(CEI)对籽粒硬度,蛋白质含量,沉淀值及湿面筋含量的影响。结果表明:基因型效应对所有品质参数均有显著影响,基因型与环境互作对沉淀值影响较大,而对籽粒硬度,蛋白质含量与湿面筋含量影响较小,环境效应对湿面筋含量和好粒硬度影响较大,而对蛋白质含量与沉淀值影响较小,蛋白质品质参数的回归系数(b值)表明,基因型对不同环境的反应存在着显著差异。对于籽粒硬度,蛋白质含量与湿面筋含量回归偏差显著的品种很少,这表明线性回归模式占了基因型变异的绝大部分,一些品种的沉淀值显著偏离了回归,上述结果表明,要改善小麦品种的蛋白质品质,也应重视环境对小麦蛋白质品质的影响。  相似文献   

6.
 池栽试验条件下,设置渍水、干旱和对照3个水分处理,每个水分处理下设置两个施氮水平 ,研究了花后渍水或干旱逆境下氮素营养对两个不同类型小麦(Triticum aestivum) 品种籽粒产量和品质性状的影响。结果表明,与对照相比,花后渍水或干旱处理显著降低了小麦的千粒重、穗粒数和籽粒产量。在适宜水分和干旱条件下,增施氮肥增加了小麦籽粒产量,而在渍水条件下,增施氮肥降低了产量。干旱处理提高了蛋白质含量,干、湿面 筋含量,沉降值和降落值;而渍水处理则降低了小麦籽粒蛋白质含量和干、湿面筋含量。同 一水分处理下,增施氮肥提高了蛋白质含量,谷蛋白/醇溶蛋白比,支链淀粉含量和支/直链淀粉比。在小麦籽粒主要品质性状上存在显著的水氮互作效应,且水分、氮肥及水氮互作效 应对小麦籽粒产量和品质的影响因品种的不同而异。  相似文献   

7.
稻米碾磨品质性状遗传主效应及其与环境互作的遗传分析   总被引:22,自引:2,他引:22  
采用包括遗传主效应和基因型与环境互作效应的种子三倍体遗传模型,分析了不同环境条件下籼稻稻米碾磨品质的遗传特性。结果表明,各碾磨品质性状除了受制于种子基因效应、细胞质效应和母体植株基因效应等遗传主效应外,还会明显受到各遗传效应与环境互作效应的影响。其中精米重和精米率两个性状的表现主要是以遗传主效应为主,而糙米重和糙米率则以基因型x环境互作效应为主。在各遗传体系中,除了精米率性状的种子直接遗传效应与环境的互作效应略大于母体植株遗传效应与环境的互作效应外,其他碾磨品质性状的母体植株基因的表达受环境条件的影响程度要大于种子基因。细胞质x环境互作效应对精米重和糙米率的影响也较为重要。遗传效应预测值结果表明,P7和P8两个亲本的遗传主效应表现突出,可以明显改良杂交后代多数碾磨品质性状。P1和P2两个亲本的碾磨品质性状预测值在两年中的环境互作效应较为-致,不易受到外界条件的影响。上述亲本在水稻品质育种中可加以利用。  相似文献   

8.
选用 6个不同品质类型小麦品种在 4个生态点进行分期播种试验, 系统分析了不同生态环境下小麦籽粒产量与品质的变异特征及其与主要气候生态因子间的关系。结果表明 :生态点、品种以及地点×品种互作对籽粒产量、千粒重、蛋白质、湿面筋和淀粉含量、沉降值与降落值的影响均达到显著水平 ;不同播种期处理对产量与淀粉含量的影响达到极显著水平, 而播种期×品种互作对千粒重、降落值、淀粉含量及沉降值的效应达到显著水平 ;地点×播种期×品种互作仅对产量、湿面筋、淀粉含量与沉降值有显著的影响。在 4个不同生态点中, 南京点的籽粒蛋白质与湿面筋含量最低, 但淀粉含量最高 ;徐州点的产量和千粒重最大 ;泰安点的蛋白质含量与湿面筋含量最高, 沉降值最小 ;保定点的产量、千粒重最小, 但沉降值最大。不同播种期处理下, 适播与晚播的籽粒蛋白质含量、湿面筋含量、淀粉含量、沉降值与降落值都显著高于早播, 而早播期的产量和千粒重最大。各小麦品种在不同地点与播种期下产量与品质性状的变异中以降落值的变异系数为最大, 淀粉的变异为最小。开花至成熟期的日均温与淀粉含量呈线性负相关, 与产量、蛋白质和湿面筋含量及降落值呈二次曲线相关关系 ;日温差与产量和千粒重呈二次曲线相关关系, 籽粒蛋白质和湿面筋含量、沉降值及降落值则随昼温差的增加线性递增 ;开花至成熟期降雨量与产量、千粒重都呈现先升后降的二次曲线相关关系, 而与籽粒蛋白质含量和降落值呈现线性负相关关系 ;籽粒蛋白质和湿面筋含量与降落值随开花至成熟期的累计日照时数呈现线性正相关关系。  相似文献   

9.
黄淮麦区小麦品种(系)品质性状多样性分析   总被引:7,自引:6,他引:7  
本文以黄淮麦区 100个小麦品种(系)为材料,对19个蛋白质品质和淀粉品质性状进行了多样性分析.结果表明,100个小麦品种(系)存在丰富的多样性.蛋白质性状的多样性指数(H′)为1.44~2.33,其中蛋白质含量性状(GMP含量、蛋白质含量、干和湿面筋含量)的H′均大于2;变异系数为10.18%~101.13%,其中粉质仪参数的变异系数均在70%以上.淀粉性状的多样性指数为0.86~2.96,其中直链淀粉含量、降落值、稀懈值的H′均大于2;变异系数为4.26%~25.28%,其中降落值、低谷粘度和稀懈值的变异系数超过20%.采用离差平方和聚类法,根据蛋白质性状和淀粉性状将100个品种(系)分别划分为具有不同特点的4个类别,为小麦品质改良提供了参考.  相似文献   

10.
以2个粳型光温敏核不育系和4个籼稻品种为材料,配制籼粳交组合,用包括基因型×环境互作效应的胚乳性状遗传模型对3个蒸煮品质性状(直链淀粉含量、胶稠度、碱消值)进行了遗传研究,结果表明:直接加性和母体加性效应对三个性状的遗传变异起主要作用.基因型×环境互作主要表现为显性×环境以及细胞质×环境互作.直链淀粉含量的普通遗传率都不显著,只有较高的互作母体遗传率;胶稠度具有显著的普通直接遗传率和互作细胞质遗传率;碱消值的普通直接遗传率和普通母体遗传率都极显著.根据遗传效应预测值对供试亲本的利用价值作了评价。  相似文献   

11.
采用de Wit替代系列实验研究了传统地方品种和尚头和现代品种定西-24在土壤水肥梯度下混播时的竞争结局以及竞争能力和单播产量之间的关系。在各个水肥处理条件下,混播时,虽然和尚头对定西-24的影响效应有所减弱,但是,和尚头对定西-24的竞争结局并没有发生改变:和尚头最终完全排除定西-24,成为竞争中的优胜者。在低水无肥和高水高肥条件下,定西-24的单播产量显著高于和尚头的单播产量,二者的竞争能力与其单播产量之间呈负相关;在低水低肥条件下,和尚头的单播产量与定西-24的单播产量几乎相等,二者的竞争能力与其单播产量之间没有特定的关系;在中水中肥条件下,和尚头的单播产量高于定西-24的单播产量,二者的竞争能力与其单播产量之间呈正相关,据此可以认为和尚头和定西-24混播时的竞争能力与其单播产量之间没有特定的关系。在低水无肥和高水高肥条件下,定西-24的单播地上生物量显著高于和尚头的单播地上生物量。在水分严重亏缺的条件下,和尚头的水分利用效率显著低于定西-24的水分利用效率;随着水分供给的改变,和尚头的水分利用效率得到了显著提高,然而当水分不再成为和尚头生长限制因子时,其水分利用效率降低,结果表明一定程度水分利用效率的提高有利于春小麦适应半干旱区的水分环境。  相似文献   

12.
不同环境条件下小麦氮代谢关键酶活性及籽粒品质   总被引:11,自引:0,他引:11  
研究了两种环境条件下3个不同蛋白含量小麦品种的氮代谢关键酶活性及籽粒品质的差异.结果表明,龙口试验点的小麦旗叶硝酸还原酶(NR)、谷胺酰氨合成酶(GS)和籽粒谷胺酰氨合成酶活性均显著高于泰安试验点,3个品种间的酶活性顺序均为:济麦20>优麦3号>PH971942.优质强筋小麦品种的籽粒综合品质性状在龙口试验点的表现优于泰安试验点. 灌浆期环境因素与小麦籽粒品质和酶活性存在显著的相关性,灌浆期间的较高气温、适当干旱和寡照环境有利于提高小麦籽粒品质.龙口试验点的中、强筋小麦品种和泰安试验点的中筋小麦品种蛋白质含量与旗叶NR和GS活性均达显著正相关.小麦品种用途不同,对环境条件的要求不同,适宜的环境条件提高了氮代谢关键酶的活性,利于改善小麦品质.  相似文献   

13.
采用开顶式气室和盆栽方法,以冬小麦品种‘小偃22’为材料,探讨了分期施氮与CO2浓度升高对小麦抽穗期和灌浆中期旗叶光合、地上部物质积累和产量的互作效应.结果显示:(1)不施氮条件下CO2浓度升高对小麦旗叶叶绿素含量(SPAD)和可溶性蛋白含量、光合能力、地上部花后干物质和氮素累积量、籽粒产量的影响不明显(P>0.05)或产生显著负效应;在施氮(300mg/kg土)条件下各指标均不同程度增加,且大多数达到显著水平.(2)与氮肥全部基施相比,分期施氮时CO2浓度升高使灌浆期旗叶光合能力、地上部花后干物质和氮素累积以及产量增加的幅度较大,其中以播前、返青期和孕穗期施氮比例为5∶3∶2时最明显.研究表明,适当分期施氮可能更有利于发挥CO2浓度升高对冬小麦的增产作用.  相似文献   

14.
Final grain dry weight, a component of yield in wheat, is dependent on the duration and the rate of grain filling. The purpose of the study was to compare the grain filling patterns between common wheat, (Triticum aestivum L.), and durum wheat, (Triticum turgidum L. var. durum), and investigate relationships among grain filling parameters, yield components and the yield itself. The most important variables in differentiating among grain filling curves were final grain dry weight (W) for common wheat genotypes and grain filling rate (R) for durum wheat genotypes; however, in all cases the sets of variables important in differentiating among grain filling curves were extended to either two or all three parameters. Furthermore, in one out of three environmental conditions and for both groups of genotypes, the most important parameter in the set was grain filling duration (T). It indicates significant impact of environmental conditions on dry matter accumulation and the mutual effect of grain filling duration and its rate on the final grain dry weight. The medium early anthesis date could be associated with further grain weight and yield improvements in wheat. Grain filling of earlier genotypes occurs in more temperate environments, which provides enough time for gradual grain fill and avoids the extremes of temperature and the stress of dry conditions.  相似文献   

15.
The unpredictability and large fluctuation of the climatic conditions in rainfed regions do affect spring wheat yield and grain quality. These variations offer the opportunity for the production of better quality wheat. The effect of variable years, locations and sowing managements on wheat grain yield and quality was studied through field experiments using three genotypes, three locations for two years under rainfed conditions. The two studied years as contrasting years at three locations and sowing dates depicted variability in temperature and water stress during grain filling which resulted considerable change in grain yield and quality. Delayed sowing, years (2009–10) and location (Talagang) with high temperature and water stress resulted increased proline, and grain quality traits i.e. grain protein (GP) and grain ash (GA) than optimum conditions (during 2008–09, at Islamabad and early sowing). However, opposite trend was observed for dry gluten (DG), sodium dodecyl sulphate (SDS), SPAD content and grain yield irrespective of genotypes. The influence of variable climatic conditions was dominant in determining the quality traits and inverse relationship was observed among some quality traits and grain yield. It may be concluded that by selecting suitable locations and different sowing managements for subjecting the crop to desirable environmental conditions (temperature and water) quality traits of wheat crop could be modified.  相似文献   

16.
Response functions for the effect of ozone on cadmium (Cd) (toxic to humans) and zinc (Zn) (essential nutrient for plants and humans) in wheat grain were derived for the first time. Data from four open‐top chamber (OTC) experiments with field‐grown wheat, performed in southwest Sweden, were used. Ozone exposure was expressed as the phytotoxic ozone dose above a threshold of 6 nmol/m2 per sec (POD6), and AOT40. Grain Zn concentration was significantly enhanced by ozone, while Zn yield was not affected. The positive ozone effect on grain Zn concentration was almost twice as large as the corresponding effect on grain protein concentration, most likely as a result of nitrogen availability being more limiting than Zn availability. Cd concentration was unaffected by ozone, but Cd yield was significantly negatively affected. For the variables studied, correlation was stronger with POD6 than AOT40, but in several cases, for example, for Zn concentration and Cd yield, there was practically no difference in the performance between the two exposure indices. From the literature, it is obvious that ozone has important adverse effects on wheat yield and certain quality traits. As shown in this study, there are also examples of ozone leading to improved quality, for example, in terms of enhanced Zn concentration of wheat grain. While OTC enclosure did not affect Zn accumulation in wheat grain, Cd accumulation was significantly positively affected, most likely through transpiration being enhanced by the OTC environment, promoting Cd uptake and transport through the plant.  相似文献   

17.
Increasing attention is being paid to environment characterisation as a means of identifying the environmental factors determining grain protein content (GPC) in durum wheat. New insights in crop physiology and agronomy have led to the development of crop simulation models. Those models can reconstruct plant development for past cropping seasons. One major advantage of these models is that they can also indicate the intensity of limiting factors affecting plants during particular developmental stages. The main environmental factors determining GPC in durum wheat can be investigated by introducing the intensity of limiting factors into genotype × environment (G×E) models. In our case, limiting factors corresponding to water deficit and nitrogen availability were calculated for the development period between booting and heading. These variables were then introduced into a clustering model. This model is an extension of factorial regression applied to discrete environment and genotypic variables. This procedure effectively described the environment main effect: around 30.9% of the sum of squares of the environment main effect was accounted for, using less than 33% of the degrees of freedom. It also partially accounted for G×E interaction. Our methodology, coupling the use of crop simulation and G×E analysis models, is of potential value for improving our understanding of the main development stages and identification of environmental limiting factors for the development of GPC.  相似文献   

18.
二氧化碳浓度增高对稻、麦品质影响研究进展   总被引:13,自引:0,他引:13  
作物品质的形成是品种遗传特性和环境条件综合作用的结果.一般认为大气中CO2浓度增高将对作物品质产生重要影响.本文分别从蛋白质与氮含量、微量元素以及其他品质性状等3个方面综述了国内外关于CO2浓度增高对水稻、小麦品质影响的研究进展,强调了该领域研究的必要性和紧迫性,并提出了研究的重点内容及主要方向.主要包括:大气中CO2浓度增高对水稻、小麦品质的直接影响及品种间的差异;大气中CO2浓度增高及其与其它气候因子协同作用对水稻、小麦品质的综合影响及其指标量化;大气中CO2浓度增高及气候变化对水稻、小麦品质形成过程的影响机理;适应CO2浓度增高的水稻、小麦品质改良育种的方向与策略;适应CO2浓度增高的水稻、小麦品质改良的综合生产技术体系和分子标记及转基因技术在水稻、小麦品质改良育种方面的应用.  相似文献   

19.
我国旱地春小麦产量及主要农艺指标的变异分析   总被引:1,自引:0,他引:1  
采用4年、13个品种(系)、18个试点组成的全国旱地春小麦区域试验产量资料,通过联合方差分析和基因型及其与环境互作(GGE)双标图分析,研究了基因型、环境、基因型与环境互作效应(GEI)对产量变异的影响及品种的产量稳定性.结果表明:环境对产量变异的影响远大于基因型和GEI,环境引起的产量变异占87.5%~92.0%.互作因素中以地点×基因型的互作效应最大,基因型×年份的互作效应最小.我国旱地春小麦基因型多年多点的平均产量水平为2550 kg·hm-2.产量三要素中,千粒重受环境的影响最小.影响产量变异的主要环境因子有:≥10 ℃年积温、生育期降雨量、平均气温、海拔、年降雨量和无霜期.产量与单位面积穗数(0.675**)、穗粒数(0.581**)、千粒重(0.456**)呈极显著正相关,产量三要素间也呈正相关(0.244~0.480**),处于可同步提高范围.  相似文献   

20.

Background and aims

Limited information is available on how cadmium (Cd) applied in phosphate fertilizer interacts with soil and environmental conditions over time to affect crop Cd concentrations.

Methods

Field studies from 2002 to 2009 at seven locations evaluated the cumulative effects of P fertilizer rate and Cd concentration on seed Cd concentration of durum wheat (Triticum turgidum L.) and flax (Linum usitatissiumum L.).

Results

Soil characteristics and environment affected Cd availability. Durum wheat grain Cd increased with P fertilizer rate but effect on flaxseed Cd concentration was smaller. Cadmium concentration in fertilizer had a greater effect on flaxseed than durum wheat Cd concentration. Seed Cd concentration of both crops was greatest with the highest rate P fertilizer containing the highest Cd concentration. There was not a strong cumulative effect of fertilization over the 8 years of the study, indicating attenuation of Cd availability over time.

Conclusions

Cadmium in phosphate fertilizer increases Cd available for crop uptake, but crop Cd concentration is also affected by soil characteristics and annual environmental conditions. Type of crop produced and soil and environmental characteristics that affect phytoavailability must be taken into account when assessing the Cd risk from P fertilization.  相似文献   

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