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1.
一个小麦-中间偃麦草异代换系的形态学和细胞学鉴定   总被引:10,自引:1,他引:10  
中间偃麦草含有丰富的优良基因,在小麦的遗传改良中具有重要利用价值。对从中间偃麦草与小麦品种烟农15杂种后代(BC2F4)中选育的小麦种质系山农0095进行形态学和细胞学鉴定,结果表明:山农0095株高78cm,穗长17.3cm,旗叶长36.3cm,旗叶宽3.03cm,茎杆粗壮,繁茂性好,既长又宽的旗叶、长圆锥型穗是其显著的形态学特征;其根尖细胞染色体数日为2n=42,花粉母细胞减数分裂中期Ⅰ(PMC M Ⅰ)染色体构型为2n=21Ⅱ;它与普通小麦的杂种FⅠPMC M Ⅰ绝大多数细胞出现2个单价体,没有观察到多价体,平均染色体构型为2n=20.08Ⅱ 1.84Ⅰ。以上结果表明,山农0095是一个小麦-中间偃麦草的双体异代换系。  相似文献   

2.
抗白粉病小麦——中间偃麦草异附加系的细胞学和RAPD鉴定   总被引:21,自引:5,他引:16  
利用细胞学和RAPD技术,对从小麦与中间偃麦草杂种后代中选育的抗白粉病异附加系DAL66进行了鉴定。结果证明DAL66根尖细胞染色体数为44,花粉母细胞减数第一分裂中期(PMC MI)杂色体模型为2n=22Ⅱ。对DAL66及其双亲进行RAPD分析,从40个随机引物中筛选出1个特异引物(OPE-02)能够稳定地扩增出特异带型。  相似文献   

3.
以偃麦草 (Ag .pulcherrimum)为抗源 ,以圆锥小麦 (T .turgidum)×偃麦草的双二倍体———CPI113 5 0 0 ( 2n =70 )与普通小麦杂交、回交、自交得到的衍生系为基础材料 ,利用黄矮病抗性追踪、形态学标记、细胞遗传学分析 ,筛选到 2个抗黄矮病新种质 96S16 11,96W 14 9.通过测交分析、原位杂交和同工酶电泳分析等技术 ,对以上材料进行鉴定 ,结果表明 :96S16 11为普通小麦 偃麦草二体异附加系 ,96W 14 9为普通小麦 偃麦草 1D( 1Ap)二体异代换系 .  相似文献   

4.
普通小麦异代换系的产生和利用   总被引:2,自引:0,他引:2  
张学勇  陈淑阳  李振声 《遗传》1990,12(4):40-44
本世纪30年代,秋水仙素抑制纺锤丝形成和移动功能的发现为人工合成多倍体提供了有力手段,小黑麦(Triticosecale, wittmarck)作为一个人工合成新物种在生产上逐渐开始发挥作用。组织培养技术在远缘杂交中的应用,使许多种、属间杂交获得成功。在小麦与多倍体亲缘种、属杂交中也产生了许多新的异源八倍体,如八倍体小僵麦(Tritielytrigia or Agrotriti-cum等。但这些异源多倍体新物种由于有一个完整染色体组的导人,常带来一些不利的性状,如稳定性差、晚熟、种子饱满度差、不易脱粒等,迫使育种工作者有选择地引进个别有用基因或染色体,以助于人工合成异源多倍体在生产上的直接利用。  相似文献   

5.
本研究采用^60Co-γ射线辐照小偃麦异代换系山农0095花粉,对其M1、M2代的细胞遗传学特点进行分析,结果表明:M1、M2代均出现频率不同和染色体数目不等(2n=41、2n=40和2n:39)的染色体数目变异类型;在两个世代的花粉母细胞减数分裂过程中.普遍观察到单价体、多价体、染色体片段、落后染色体、染色体桥及微核等现象,说明辐射有效地促进了染色体数目和结构的改变,有可能导致染色体易位重组。利用已建立的山农0095中中间偃麦草染色体的特异SSR标记BARC159240对M2代进行检测,结果发现大部分M2单株仍含有该标记位点,说明这些植株仍然具有标记位点的中间偃麦草染色体特异区段:少部分单株虽然保留了该位点.但缺少普通小麦中的条带.这些单株可能发生了染色体重组。  相似文献   

6.
抗白粉病小麦-中间偃麦草种质的选育和SSR鉴定   总被引:1,自引:0,他引:1  
在从抗白粉痛小麦砷间偃麦草异附加系Ⅱ-1—1与含杀3C配子染色体的农林26杂交井自交的后代中,通过人工接种鉴定,选出4个抗白粉病种质03012、04060、04112、04146。细胞学鉴定表明,4个种质的染色体数目均为2n=42条。花粉母细胞减数分裂中期Ⅰ多形成二价体。03012/烟农15杂种F1花粉母细胞减数分裂中期Ⅰ细胞中平均形成2个单价体,可能为异代换系。04060/烟农15、04112/烟农15和04146/烟农15的F1中均出现一定数量的单价体和多价体,可能为易位系。利用SSR标记鉴定表明,引物WMC327是含中间偃麦草抗白粉病基因所在染色体的特异标记;03012可能是一个2D染色体的异代换系。  相似文献   

7.
小偃麦化学成分的比较   总被引:2,自引:0,他引:2  
  相似文献   

8.
普通小麦—簇毛麦异附加系和异代换系的C—分带鉴定   总被引:8,自引:0,他引:8  
董凤高  陈佩度 《遗传学报》1992,19(6):510-512
用改良的C-分带技术鉴定南京农业大学细胞遗传研究室获得的普通小麦的簇毛麦V_2、V_3、V_4、V_6、V_7染色体异附加系和V_2、V_5异代换系,得到与N-分带和染色体配对分析一致的结果,并且由于C-分带可同时鉴别小麦全部21对染色体,鉴定出V_2异代换系中被代换掉的小麦染色体为1A。  相似文献   

9.
八倍体小偃麦染色体组分析   总被引:9,自引:0,他引:9  
钟冠昌  张学勇 《遗传学报》1991,18(4):339-343
本文对普通小麦与长穗偃麦草(Elytrigia elongata=Agropyron elongatum.2n=70)杂交选育出来的5个八倍体小偃麦的染色体组进行了研究。通过八倍体小偃麦与普通小麦杂交,八倍体小偃麦相互间杂交,观察了杂种F_1花粉母细胞减数分裂行为。根据观察结果,讨论了长穗偃麦草染色体组的构成,认为长穗偃麦草的染色体组为E_1E_2F_2F_2N较为合适。在此基础上,确定了5个八倍体小偃麦的染色体组:7430为ABDE_1,68为ABDF_1,693为ABDF_1,7631为ABDF_2,784为ABDN。另外,还讨论了八倍体小偃麦染色组的重组问题。  相似文献   

10.
小麦抗白粉病基因Pm23对世界上很多麦区流行的白粉病表现高抗或免疫.本研究以Pm23和Chancellor为抗感亲本,用集群分离分析法对抗性基因Pm23进行了RAPD分析,从320个十碱基随机引物中筛选到一个与Pm23紧密连锁的相引相标记OPE051100. 对F2分离群体进行RAPD分析表明,该标记与Pm23基因之间的连锁距离为10.65±3.25 cM.该标记可以有效用于小麦育种分子标记辅助选择中.  相似文献   

11.
12.
野生二粒小麦抗白粉基因的转移及其RAPD分析   总被引:8,自引:0,他引:8  
白粉病已成为威胁我国小麦稳产的重要病害之一。寻找并使用新的白粉病抗源成为当今抗白粉病育种的关键。报道野生二粒小麦抗白粉病基因向普通小麦转移,无论是正交还是反交,用普通小麦作轮回亲本,随着回交代数增加,抗性单株选择难度加大,从正,反单交F6中均获得了稳定抗病株系,同时,研究利用RAPD方法对小麦-野生二粒小麦抗白粉病和感白粉病9个衍生系进行了分析研究。研究结果表明,5个随机引物(OPH-07,OPQ-08,OPQ-16,OPQ-19,OPZ-16)能在抗,感9个衍生系中分别扩增出普通小麦所没有的野生二粒小麦特异带型;其中OPH-07340bp和OPQ-19900bp为抗病系的特征带。  相似文献   

13.
Abstract

A field study was conducted to investigate powdery mildew disease incidence and fruit yield of locally available bell pepper genotypes by Kharif 2004 and Rabi 2005. The study includes a single chemical molecule in managing the powdery mildew disease during both the seasons. Field studies include five chemical treatments (T1 to T5) plus one water spray control and an untreated control in five replications each. The result shows that out all treatments T5 was best in controlling the powdery mildew disease in genotype Indra by 77.1 and 73.7% of disease decrease over control and 85.3 and 95.7% increase in yield over control respectively during Kharif and Rabi. The next best performing genotypes were Arka Basant and California Wonder in terms of less disease incidence and high yield. Further, the study was extended to relate the selected varieties for its genetic diversity using Random Amplified Polymorphic DNAs, with respect to the disease incidence and yield. The highest genetic dissimilarity of 49% was noticed between the genotypes Indra and Arka Gaurav having contrasting characters such as high and low fruit yield, respectively. The lowest genetic diversity of 21% was noticed between the genotypes Arka Mohini and California Wonder that were similar in most of the morphological characters, fruit yield and susceptibility to the powdery mildew disease. Based on the molecular data, a remarkable difference was exhibited by the commercially grown bell pepper genotypes.  相似文献   

14.
During vegetative period 2004–2005 powdery mildew (Erysiphe graminis DC. f. sp. hordei Em. Marchal) field resistance of spring barley cultivars was investigated at the Lithuanian Institute of Agriculture. The spring barley genotypes tested were Lithuania-registered cultivars, cultivars from genetic resources collection, and the new cultivars used for initial breeding. In total, 23 resistance genes were present in the 84 cultivars studied. Among mono-genes only mlo and 1-B-53 showed very high resistance. Slight powdery mildew necroses (up to 3 scores) formed on cultivars possessing these genes. The maximal powdery mildew (PM) severity reached a score of 8.5 and the area under disease progress curve (AUDPC) a value of 1216.8. The cultivars ‘Primus’, ‘Astoria’, ‘Power’, ‘Harrington’ and ‘Scarlett’ were the most resistant among the non mlo cultivars. Severity of PM on ‘Primus’ reached a score of 3.5 (3.0 of PM necrosis) in average, the other cultivars were diseased from 4.5 (3.0) to 5.0 (2.0). The AUDPC values for these cultivars except ‘Scarlett’ were the lowest (85.0–145.3) among the other cultivars. The highest contrast in development of the other leaf diseases was between highly resistant and susceptible to PM cultivar groups. The fast development of PM depressed development of the other diseases 4.7 times.  相似文献   

15.
一些小麦白粉病抗源抗性基因鉴定分析   总被引:8,自引:2,他引:6  
研究鉴定了我国37份小麦白粉病抗源的抗性基因,19份材料不具有任何抗性基因;6份材料具有来自1BL/1RS易位系的抗性基因Pm8;5份材料具有抗性基因Pm5a;3份分别具有对目前欧洲所有生理小种均抗的抗性基因Pm21、Pm16和Pm12;4份材料具有新的抗性基因。  相似文献   

16.
Powdery mildew, caused by the biotrophic fungal pathogen Blumeria graminis f. sp. tritici (Bgt), is a major threat to the production of wheat (Triticum aestivum). It is of great importance to identify new resistance genes for the generation of Bgt‐resistant or Bgt‐tolerant wheat varieties. Here, we show that the wheat copine genes TaBON1 and TaBON3 negatively regulate wheat disease resistance to Bgt. Two copies of TaBON1 and three copies of TaBON3, located on chromosomes 6AS, 6BL, 1AL, 1BL and 1DL, respectively, were identified from the current common wheat genome sequences. The expression of TaBON1 and TaBON3 is responsive to both pathogen infection and temperature changes. Knocking down of TaBON1 or TaBON3 by virus‐induced gene silencing (VIGS) induces the up‐regulation of defence responses in wheat. These TaBON1‐ or TaBON3‐silenced plants exhibit enhanced wheat disease resistance to Bgt, accompanied by greater accumulation of hydrogen peroxide and heightened cell death. In addition, high temperature has little effect on the up‐regulation of defence response genes conferred by the silencing of TaBON1 or TaBON3. Our study shows a conserved function of plant copine genes in plant immunity and provides new genetic resources for the improvement of resistance to powdery mildew in wheat.  相似文献   

17.
Plant defence against pathogens is controlled by disease resistance (R) gene products that directly or indirectly detect specific pathogen effectors. Plant-pathogen interactions have been proposed to follow a co-evolutionary arms-race model where R genes are recent and evolve rapidly in response to structural changes in matching pathogen effectors. However, the longevity and extensive polymorphism of R genes studied were more consistent with balancing selection maintaining ancient and diverse R genes or alleles. In bread wheat (Triticum aestivum), the Pm3 locus confers race-specific resistance to wheat powdery mildew (Blumeria graminis f.sp. triticii). Here we describe recently generated Pm3 resistance alleles that all derive from one susceptible allele, Pm3CS, which is widespread among hexaploid bread-wheat lines. One group of four Pm3 resistance alleles shows few, clearly delimited, polymorphic sequence blocks of ancient origin, embedded in sequences identical to Pm3CS and possibly derived from gene conversion. A second group of three alleles differs from Pm3CS by only two to five mutations, all non-synonymous, and all in the leucine-rich repeat-encoding region. Transient transformation experiments confirmed that Pm3 resistance specificities are based on one or few amino acid changes. The Pm3CS allele was found in wild tetraploid wheat, the ancestor of hexaploid bread wheat, specifically from southern Turkey, a region proposed to be the site of wheat domestication. Based on these data, we propose that the Pm3 resistance alleles were generated in agricultural ecosystems after domestication of wheat 10,000 years ago. The evolution of Pm3 alleles in wheat is best described by the model of evolved recycling, where novel genetic variation is integrated in plant populations together with recycling of old variation.  相似文献   

18.
利用荧光原位杂交和染色体 C-分带技术对普通小麦 -华山新麦草的异代换系进行了研究 .荧光原位杂交结果显示 :异代换系 H92 1- 6 - 12和 H92 4 - 3- 4均含有 2条华山新麦草的染色体 .对这 2个材料和华山新麦草进行染色体 C-分带带型比较 ,结果认为 :H92 1- 6 - 12可能是普通小麦 -华山新麦草的 5 A / N5h 代换系 ,H92 4 - 3- 4可能是 3D/ N4 h代换系 .  相似文献   

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