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1.
利用揉面特性鉴定小麦1BL/1RS易位系   总被引:3,自引:1,他引:3  
1BL/1RS易位系曾广泛用于小麦农艺性状改良,但对加工品质有明显的负面影响。利用404份F5至F8高代品系(试验I)和175份山东省主栽品种及高代品系(试验II),研究1BL/1RS易位对小麦揉面参数的影响,分析不同高低分子量蛋白亚基(HWM/LWM-GS)背景下1BL/1RS的揉面特性,探讨利用揉面特性鉴定1BL/1RS易位系的方法。结果表明,1BL/1RS易位系的揉面时间、峰值带宽及峰后1 min带宽显著低于非1BL/1RS易位系,而衰落角和带宽比(峰值带宽/峰后1 min带宽)显著高于非1BL/1RS易位系,说明1BL/1RS易位导致小麦的揉面特性显著变劣。易位系的揉面谱带的主要特征为峰后1 min谱带急剧衰落并变窄,带宽比显著增大,而非1BL/1RS易位系的峰后谱带衰落、变窄平缓或者稳定时间较长,带宽比较小。带宽比1.6可作为判断易位系的有效指标,即大于或等于1.6为1BL/1RS易位系,小于1.6为非1BL/1RS易位系,准确率达85.2%(试验I)和96.8%(试验II)。尽管优质HWM-GS背景对Glu-B3j(1BL/1RS易位系)的揉面特性有一定正向补偿作用,但品质特性仍显著劣于其他Glu-B3位点,带宽比表现尤为突出。因此,揉面特性不仅能测定育种材料的面团流变学特性,而且还能有效鉴别1BL/1RS易位系。  相似文献   

2.
利用404份高代品系(试验Ⅰ)和175份山东省主栽品种及高代品系(试验Ⅱ),研究了1BL/1RS易位对小麦揉面参数的影响,探讨利用揉面特性鉴定1BL/1RS易位系的方法.结果表明,1BL/1RS易位导致小麦的揉面特性显著变劣,1BL/1RS易位系的揉面时间、峰值带宽及峰后1 min带宽显著低于非1BL/1RS易位系,而衰落角和带宽比(峰值带宽/峰后1 min带宽)显著高于非1BL/1RS易位系.易位系的揉面谱带的主要特征为峰后1 min谱带急剧衰落并变窄,带宽比显著增大.带宽比1.6可作为判断易位系的有效指标,即大于或等于1.6为1BL/1RS易位系,小于1.6为非1BL/1RS易位系,准确率达85.2%(试验Ⅰ)和96.8%(试验Ⅱ).因此,揉面图谱可作为快速有效鉴别1BL/1RS易位系的新方法.  相似文献   

3.
53个小麦品种中1BL/1RS易位系的分子检测   总被引:2,自引:0,他引:2  
为合理利用小麦种质资源,快速准确检测小麦品种中的1BL/1RS易位系,采用ω-secalin和Glu-B3两个特异性分子标记检测了1BL/1RS在53个小麦品种中的分布情况。正相关引物ω-secalin在TcLr26和大粒王等8个品种中检测到1076bp的特异性条带,在Thatcher及其它品种中未检测到特异性条带。负相关引物Glu-B3在TcLr26和大粒王等8个品种中未扩增到636bp条带,Thatcher和其它品种中能扩增出636bp条带。通过两个正负相关标记相互验证,获得一致的结果,表明大粒王、鲁夫16系、太空8号、太育28、温麦8号、冀麦30、北京837、牛朱特是1BL/1RS易位系。  相似文献   

4.
HMW-GS和LMW-GS组成及1BL/1RS易位对春小麦品质性状的影响   总被引:17,自引:2,他引:17  
分析了221份春小麦品种(系)的HMW-GS、LMW-GS组成和1BL/1RS易位状况,并用其中104份品种(系)研究了HMW-GS和LMW-GS等位变异及1BL/1RS易位对品质性状的影响。结果表明,1、7+9、5+10、GluA3a和GluB3j分布较广,频率分别为57.5%、45.2%、63.8%、29.0%和42.5%。1BL/1RS易位系相当普遍,西北春麦区和东北春麦区频率分别为44.3  相似文献   

5.
以1BL/1RS易位系小麦川农18(1, 7+9, 2+12)分别作母本和父本与川农19(N, 7+8, 2+12)杂交, 统计正反交F2单株后代中1BL/1RS易位染色体所占的比例及HMW-GS的遗传规律, 研究了1BL/1RS易位染色体对HMW-GS遗传的影响。结果表明, 1BL/1RS易位染色体在雌配子和雄配子中都不能完全传递至后代, 且雄配子的传递率低于雌配子。HMW-GS在正、反交F1中呈共显性遗传。在F2中, Glu-A1位点上亚基的分离正常; 而Glu-B1位点上亚基的分离以及Glu-A1与Glu-B1位点之间的组合都与理论值不符。在川农19×川农18杂交F1中发现了一粒变异, 其HMW-GS组成为(1, 7+8, x+9, 2+12)。分别检测了其F2代HMW-GS和醇溶蛋白的组成, 并用SSR分子标记分析了F1变异和非变异株, 结果证实该变异粒确系两个亲本的杂交后代, 变异的亚基在SDS-PAGE电泳图上位于1Dx5和1Bx7亚基之间, 迁移率与1Bx6相似。  相似文献   

6.
李韬  郑飞  秦胜男  李磊  顾世梁 《作物学报》2016,42(3):320-329
黑麦1R染色体短臂(1RS)携带条锈病、叶锈病、秆锈病、白粉病和蚜虫等抗性基因。为了检测1RS上是否携带与赤霉病抗性相关的基因,本研究采用1RS特异标记Xscm9对192个来自不同国家的品种/系构成的小麦自然群体和1个重组自交系(RIL)群体(宁7840与Chokwang杂交的F_7群体,共184个系)进行了分子检测,并在2011 2013年采用单花滴注法于温室中进行赤霉病抗性鉴定。结果发现,自然群体中22个品种携带1RS,携带1RS的株系三季赤霉病平均病小穗率(PSS)均显著低于不携带1RS株系的PSS(P0.01),表明1RS对降低病小穗率有显著作用。分子标记和基因组原位杂交(GISH)检测结果表明,宁7840携带1RS。通过对宁7840/Chokwang衍生的RIL群体进行赤霉病抗性鉴定和基因型分析,发现不论主效赤霉病抗性基因Fhb1(标记Xsts142)存在与否,携带1RS株系的PSS显著低于不携带1RS株系的PSS(P0.01);方差分析表明,宁7840携带的Fhb1与1RS在赤霉病抗扩展性上无显著互作(P0.05)。因此认为,黑麦1RS染色体很可能携带赤霉病扩展抗性相关基因,与Fhb1基因有累加效应。  相似文献   

7.
1BL/1RS易位系在我国小麦育种中的应用   总被引:52,自引:10,他引:52  
采用SDS-PAGE和SCAR标记对我国小麦主产区近30年来主要推广品种和新近育成的部分品系共179份进行了1BL/1RS鉴定,结果表明:我国20世纪80年代后育成的小麦品种中约38%为1BL/1RS品种,其中北方冬麦区和黄淮冬麦区频率较高,分别为59%和42%;长江中下游冬麦区和西南冬麦区频率较低,均为20%;东北春麦区未发现1BL/1RS品种。大多  相似文献   

8.
以小麦-黑麦1BL·1RS易位系(Kavkaz、山农030-1)、1AL·1RS易位系(Amigo)、荆州黑麦、八倍体小黑麦劲松49、1R-7R二体异附加系以及普通小麦中国春、辉县红、铭贤169、Chancellor等为材料,对65个黑麦1RS特异标记进行鉴定,从中筛选出8个稳定的标记,即NOR-1、SECA2/SECA3、SCSS30.2、Sec1Gene、Sec1Pro、ω-Sec-P1/P2、ω-Sec-P3/P4和IB-267,可用于检测1AL·1RS易位系或1BL·1RS易位系;另外3个特异标记O-SEC5′-A/O-SEC3′-R、IAG95-1和SCM-9可用于区别1RS来源不同的1AL·1RS和1BL·1RS易位系。利用这11个标记和染色体原位杂交技术对40份山东省近年育成小麦品种(系)进行检测,发现潍麦8号、鲁麦14、济宁13、山农664、山农优麦3号和烟农25为1BL·1RS易位系,而且是1RS的整臂易位系,未检测到1AL·1RS易位系和其他易位类型。  相似文献   

9.
小麦(Triticum aestivum L.)1BL.1RS易位含有来自Petkus黑麦(Secale cereale 1.)的1RS;这种易位的短臂含有叶锈(Lr26)、茎锈(Sr31)、条锈(Yr9)和白粉病(Pm8)抗性基因。并且有几个研究表明,该1RS在小麦的特定遗传背景中可以改良适应性并提高产量。然而,由于常规生产中的  相似文献   

10.
为了选育有经济价值的易位系,探讨小麦-黑麦间产生易位的频率,本研究以小麦-黑麦代换系DS5R/5A和DS6R/6A为母本,以小麦-黑麦易位系克珍(Kezhen)和带有杀配子染色体的代换系DSGC1为父本,分别进行田间杂交。结果表明:DS5R/5A、DS6R/6A与DSGC1(2S)杂交结实率低,平均为27.7%,与克珍(T3B.3R)杂交结实率高于前者,平均结实率为59.3%,二者均好于远缘杂交的结实率,这也表明带有杀配子染色体的亲本影响结实率;对选出的54株DS5R/5A×DSGC1、DS6R/6A×DSGC1杂种后代与80株DS5R/5A×克珍、DS6R/6A×克珍杂种后代进行C-分带、原位杂交和分子标记鉴定后发现,二者的易位频率分别为11.1%和8.8%,并且多为染色体端部小片段易位,这种小片段易位可能是代换系间杂交部分同源染色体交换产生的。此外,也表明杀配子染色体在引起染色体断裂后可发生染色体易位。本研究共获得T5RL.5AS、T5RS.5DL、T5RS.5BL、T6RL.6DS、6RL.6BS以及T6RS.6BL等13个易位系,平均易位频率为9.6%。  相似文献   

11.
S. Landjeva    V. Korzun    V. Tsanev    R. Vladova    G. Ganeva 《Plant Breeding》2006,125(1):102-104
The distribution of the wheat–rye translocation 1RS.1BL was studied in 31 winter wheat varieties from Bulgaria. The presence of the translocation was verified in 17 varieties using chromosome N‐banding analysis, PAGE‐analysis of grain storage proteins and DNA‐marker analysis. The 1RS.1BL has been transmitted in 54% of varieties with a known source of the translocation in their pedigree.  相似文献   

12.
Comparisons involving 28 random F2-derived F6 wheat (Triticum aestivum L.) lines from the cross, ‘Nacozari’/‘Seri 82’, suggested that advanced derivatives with the 1BL/1RS chromosome translocation possess superior agronomic performance in both full and reduced irrigation conditions when compared with 1B derivatives. This performance advantage was attributed to high grain yield, above-ground biomass at maturity, grains/spike, 1000-grain weight and test weight. The 1BL/1RS lines were shorter with delayed flowering and maturity. The superiority of the 1BL/1RS translocation group on grains/m2 was expressed only under the full irrigation environment. Higher harvest index, longer spike-length and grain-filling period were detected only under reduced irrigation conditions. A significant grain yield relationship with test weight was detected only among the 1BL/1RS genotypes, indicating that they possess heavier and plumper grains than the 1B genotypes.  相似文献   

13.
Z. X. Tang    S. L. Fu    Z. L. Ren    H. Q. Zhang    Z. J.Yang    B. J. Yan 《Plant Breeding》2009,128(5):524-527
The wheat-rye 1BL.1RS translocation chromosomes have been used widely around the world in commercial wheat ( Triticum aestivum L.) production because of the presence of several disease resistance genes and a yield enhancement factor on the rye ( Secale cereale L.) chromosome. However, the recent reports of the loss of complete effectiveness of the disease resistance genes on the most commonly used 1BL.1RS chromosome have highlighted the need to seek and deploy additional sources of disease resistance genes. Three new sibling wheat cultivars, 'CN12', 'CN17' and 'CN18', were developed carrying 1RS arms derived from the rye inbred line L155. Genomic in situ hybridization and C-banding analysis revealed that all the three cultivars contained the rye chromosome 1RS arm fused to the wheat 1BL wheat chromosome arm. The three cultivars displayed high yields and high resistance to local powdery mildew and stripe rust pathotypes. Fluorescence in situ hybridization analysis indicated the different structure of 1BL.1RS chromosome between 'CN18' and the other two cultivars. The present study provides a new 1RS resource for wheat improvement.  相似文献   

14.
The T1BL.1RS wheat (Triticum aestivum L.) - rye (Secale cereale L.) translocations have been of particular interest and are widely used in bread wheat breeding programs. The objective of this study was to determine the effect of the T1BL.1RS chromosome on grain yield and its components using 20 near-isolines of spring bread wheat cultivar ‘Seri M82’ (10 homozygous for chromosome 1B substitution and 10 homozygous for T1BL.1RS). The test lines have been produced by substituting the 1B chromosome in Seri M82 (T1BL.1RS, T1BL.1RS) through backrossing. Two field experiments were evaluated under optimum (five irrigations) and reduced (one irrigation) moisture conditions for two consecutive production cycles at the Mexican National Agricultural Research Institute, Ciudad Obregon, Sonora, Mexico. The presence of T1BL.1RS had a significant effect on grain yield, harvest index, grains/m2, grains/spike, 1000-grain weight, test weight, flowering date and physiological maturity in both moisture conditions. The agronomic advantage of the 1B substitution lines on above-ground biomass yield at maturity, spikes/m2and grain-filling duration was expressed only under the optimum moisture condition. The presence of T1BL.1RS increased grain yield 1.6% and 11.3% for optimum and reduced moisture conditions, respectively. These results encourage further use of T1BL.1RS wheats in improving agronomic traits, especially for reduced irrigation or rainfed environments. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   

15.
Nearly 50 percent of the 1988 advanced breeding lines of the CIMMYT bread wheat breeding program possess the 1B/1R homozygous translocation. Hence, a trial was conducted to estimate the effect of 1B/1R chromosome translocation on the yield potential of some of our high-yielding spring wheats, where non-limiting levels of fertility, moisture, preventive pest and disease programs were used. In conclusing the 1B/1R lines seemed to have increased their above-ground biomass yield, number of spikes per meter2, 1000-grain weight and test weight. They also exhibited a slight advantage over the 1B homozygous lines on grain yield. The observed difference, however, was non-significant, as was the plant height difference observed among the two groups. Varietal comparisons indicated that the 1B/1R group headed later than the 1B group.  相似文献   

16.
Bread-making quality and yield performance of 1BL/1RS wheat isogenic lines   总被引:2,自引:0,他引:2  
Isogenic lines were developed in order to assess the precise effects of the 1BL/1RS translocation on quality characteristics and agronomic traits. Results showed that the translocation has a detrimental effect on sodium dodecyl sulphate sedimentation volume, in any background. Yield was similar between translocated and non-translocated lines; however, lines carrying lBL/1RS showed a significant increase in grain weight, together with a decrease in spike number per plant.  相似文献   

17.
18.
小麦育种亲本材料Dx5、Bx14亚基及1BL/1RS易位的分子检测   总被引:1,自引:0,他引:1  
为给小麦优质育种的亲本选配等研究提供参考,利用优质谷蛋白Dx5、Bx14亚基及1BL/1RS易位的特异性分子标记,对本课题组近年常用的38份杂交亲本材料进行了分子检测.结果表明,在引进品种和自育品种(系)中,含Dx5亚基的材料分别占16.0%和7.7%,含Bx14亚基的材料分别占16.0%和23.1%,1BL/1RS易位材料分别占24.0%和38.5%.与引进品种相比,自育品种(系)含Dx5亚基的材料很少,而含Bx14亚基和1BL/1RS易位的材料较多.总体来看,育种亲本含Dx5、Bx14亚基的材料较少,而含1BL/1RS易位的材料相对较多.因此,今后小麦优质育种中应重视含Dx5、Bx14亚基材料的引进和利用,合理使用1BL/1RS易位材料,并加强杂种后代的分子鉴定与选择.  相似文献   

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