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排序方式: 共有77条查询结果,搜索用时 15 毫秒
1.
新麦草遗传多样性等位酶分析   总被引:1,自引:1,他引:0  
杨艳  韩建国  孙彦  单战 《草业科学》2007,24(8):59-63
采用不连续系统的聚丙烯酰胺垂直板凝胶电泳(VPAGE)对新疆新麦草的5个天然居群和1个栽培种遗传多样性和居群结构进行了分析.测定的6个酶系统中,确定了9个等位酶位点,多态位点百分率平均值为90.48%,平均等位基因数为2.920 7,平均预期杂合值为0.542 7.总的基因多样性中,86%存在于居群内,14%来自居群间.聚类分析以遗传距离D=0.14为分界线将6份材料明显地分为2组.研究表明,新麦草具有丰富的遗传多样性,其多样性可能与生境、人工驯化、风媒异交等因素有关.  相似文献   
2.
Stripe rust (yellow rust), caused by Puccinia striiformis f. sp. tritici (Pst), is one of the most devastating diseases of wheat throughout the world. H9020-1-6-8-3 is a translocation line originally developed from interspeciifc hybridization between wheat line 7182 and Psathyrostachys huashanica Keng and is resistant to most Pst races in China. To identify the resistance gene(s) in the translocation line, H9020-1-6-8-3 was crossed with susceptible cultivar Mingxian 169, and seedlings of the parents, F1, F2, F3, and BC1 generations were tested with prevalent Chinese Pst race CYR32 under controlled greenhouse conditions. The results indicated that there is a single dominant gene, temporarily designated as YrH9020a, conferring resistance to CYR32. The resistance gene was mapped by the F2 population from Mingxian 169/H9020-1-6-8-3. It was linked to six microsatellite markers, including Xbarc196, Xbarc202, Xbarc96, Xgpw4372, Xbarc21, and Xgdm141, lfanked by Xbarc96 and Xbarc202 with at 4.5 and 8.3 cM, respectively. Based on the chromosomal locations of these markers and the test of Chinese Spring (CS) nullitetrasomic and ditelosomic lines, the gene was assigned to chromosome 6D. According to the origin and the chromosomal location, YrH9020a might be a new resistance gene to stripe rust. The lfanking markers linked to YrH9020a could be useful for marker-assisted selection in breeding programs.  相似文献   
3.
本研究以山丹新麦草为材料,通过秋水仙素处理萌动种子、胚芽、二倍体植株幼苗染色体加倍研究,探讨了不同诱变材料的适宜处理浓度和时间,从而比较出最适宜的染色体加倍方法。结果显示:最好的加倍方法是用0.1%的秋水仙素溶液处理二倍体幼苗24h诱变率最高,为62.5%。  相似文献   
4.
普通小麦和华山新麦草及其属间杂种F_1同工酶分析   总被引:20,自引:0,他引:20  
刘芳  孙根楼 《作物学报》1992,18(3):169-175
用聚丙烯酰胺凝胶电泳法对普通小麦和华山新麦草及其属间杂种 F_1的三叶期叶片、拔节期叶片、剑叶、幼穗和幼根进行了酯酶同工酶分析。结果表明,不同器官及同一器官的不同发育时期酯酶同工酶酶谱表型有明显差异。普通小麦和华山新麦草就同一器官、同一发育时期相比,酶谱差异较大,佐证了普通小麦和华山新麦草间亲缘关系较远。  相似文献   
5.
利用分子标记、细胞学、基因组原位杂交(GISH)等技术,结合田间农艺性状调查,对小麦–华山新麦草七倍体材料H8911与硬粒小麦D4286杂交F4代分离群体中株系DH2322进行了综合鉴定。华山新麦草基因组特异SCAR标记鉴定表明,DH2322含有华山新麦草遗传物质;细胞遗传学观察显示,DH2322染色体构型为2n=42=21 II;有丝分裂和花粉母细胞减数分裂中期I基因组原位杂交(GISH)鉴定表明,DH2322的染色体由40条小麦染色体和2条华山新麦草Ns染色体构成,且2条Ns染色体能完全配对为一个二价体;SSR和STS分子标记分析表明,DH2322缺失小麦D基因组的2D染色体,而含有华山新麦草的2Ns染色体;农艺性状分析结果表明,DH2322具有双亲的形态学特征,结实性好,穗长和穗粒数显著大于亲本。  相似文献   
6.
C. H. Park  P. D. Walton 《Euphytica》1990,45(3):217-222
Summary Fifty four hybrid plants between Elymus canadensis and Psathyrostachys juncea were obtained by handpollination and embryo culture. The average cross compatibility between both species was 31.2 percent. One amphiploid plant was induced by colchicine treatment. The hybrid and amphiploid plants resembled P. juncea in appearance but showed a higher plant height and dry matter yield than the parents. The hybrids showed extremely low pollen stainability and were completely sterile. With the exception of one plant (2n=3x+1=22), all hybrid plants were allotriploids (SHN, 2n=3x=21). The amphiploid plant (SSHHNN, 2n=6x=42) showed 58.9% pollen stainability and 11.6% seed fertility.Mean chromosome associations of the hybrids and amphiploid at metaphase I were 0.02IV+0.06III+2.03II+16.91I and 0.07III+18.00II+5.85I, respectively. Lagging chromosomes, chromosome bridges, abnormal cytokinesis, and micronuclei were occasionally observed at the anaphase, telophase, or tetrad stage.  相似文献   
7.
<正> An intergeneric hybrid between Aegilops tauschti Cosson. an annual diploid grass. and Psathyrostachys huashanica Keng, a perenmal diploid grass. The F_1 hybrid plant had chromosome number of 2n=2x=14. and was annual and morphologically intermediate between two parents. Meiotic analysis showed that this F_1 hybrid had an average of 12.20 univalants, 0.12 rod bivalents ad 0.004 quadrivalents at MI of the pollen-mother-cells. Multipolar division, irregular ctyokinesis. conjungation opening and coenocyte were observed in this hybrid. These results suggested that the D genome in the Ae. tauschii was distantly related to the N genome in the P huashanica.  相似文献   
8.
普通小麦-华山新麦草异附加系的SSR分析   总被引:1,自引:0,他引:1  
为了建立一套完整的小麦-华山新麦草异附加系,从筛选出的46对在华山新麦草与小麦间具有多态性的SSR引物中选出7对扩增条带清晰的引物,对20个小麦-华山新麦草二体附加系进行归类分析。结果发现:出现了11个小麦-华山新麦草异附加系类型,说明在这20个附加系中包括了华山新麦草7个同源群的附加系,并探讨了小麦与华山新麦草杂交及其后代衍生过程中发生华山新麦草染色体间重排的可能。  相似文献   
9.
利用染色体C-分带技术,对普通小麦-华山新麦草异代换系和附加系进行了细胞学鉴定。鉴定结果表明,普通小麦-华山新麦草的3个异代换系H921-6-12为5A/Nh5代换、H922-9-12为3B/Nh4代换、H924-3-4为3D/Nh4代换,2个异附加系H8911-1-2-6为Nh4附加、H9014-154-2为Nh7附加。初步推断华山新麦草的Nh5和Nh4染色体分别能补偿普通小麦的5A和3B,3D的缺失。  相似文献   
10.
Investigations were carried out to assess the suitability of the intergeneric cross Hordeum vulgare×Psathyrostachys fragilis for haploid barley production. H. vulgare cvs. ‘Emir’ and ‘Vada’ were each pollinated with P. fragilis P.I. 343192 and plants regenerated from embryos cultured on a modified B5 medium. Seed sets on ‘Vada’ were significantly lower than on ‘Emir’, and all the planes from ‘Vada’×P. fragile remained hybrid. Several of these flowered but there was little pairing between the parental chromosomes. Most of the plants from ‘Emir’×P. fragilis died, as seedlings but 3 plants developed into haploid barley. Because of the practical limitations of pollen availability from P. fragilis and the inconsistencies in haploid plant formation, it is unlikely that the cross will prove as valuable as that between H. vulgare×H. bulbosum for a doubled haploid barley programme.  相似文献   
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