Wheat is a staple food crop in the world as well as in China. Because of the progress of wheat breeding and other agricultural "sci-technologies, the wheat grain yield per unit area has increased more than five folds...Wheat is a staple food crop in the world as well as in China. Because of the progress of wheat breeding and other agricultural "sci-technologies, the wheat grain yield per unit area has increased more than five folds from 1952 to 2006 in China. The first part of this article briefly reviews the history of wheat breeding in China. Second, the establishment of "Triticum aestivum-Agropyron" distant hybridization system and its contribution to wheat production and breeding in China are summarized. Finally, the future challenges of wheat breeding are discussed, which include how to increase the utilization efficiencies of water, soil nutrient and light energy through breeding. As an example, our research progress on how to increase light use efficiency in wheat through breeding is introduced and discussed.展开更多
利用已知植物抗病基因编码氨基酸保守区域NBS-LRR(核苷酸结合位点-富亮氨酸区域)设计了42个简并引物组合,运用抗病基因类似物多态性(resistance gene analog polymorphism,RGAP)分子标记技术,对中国春、中国春-长穗偃麦草双二倍体及其...利用已知植物抗病基因编码氨基酸保守区域NBS-LRR(核苷酸结合位点-富亮氨酸区域)设计了42个简并引物组合,运用抗病基因类似物多态性(resistance gene analog polymorphism,RGAP)分子标记技术,对中国春、中国春-长穗偃麦草双二倍体及其附加系和代换系基因组DNA进行PCR扩增。结果表明,共有38对引物组合获得扩增产物,其中35对在普通小麦中国春、中国春-长穗偃麦草双二倍体中能扩增出多态性,平均每个引物组合扩增出38.5个片段。在普通小麦背景下,共获得275条长穗偃麦草E基因组多态性谱带,占扩增总谱带数的17.44%,揭示出在普通小麦背景下E基因组和普通小麦A、B、D基因组间的高丰度遗传变异。另外,利用RGAP分子标记技术,构建了一套完整的长穗偃麦草1E^7E染色体的特异RGAP标记。为小麦背景中长穗偃麦草外源遗传物质的快速检测提供了新途径。展开更多
Loss of variety resistance to stripe rust (Puccinia striiformis Westend f. sp.tritici) is an important factor causing massive periodical epidemic of rust in wheat production. Creation and development of new races of...Loss of variety resistance to stripe rust (Puccinia striiformis Westend f. sp.tritici) is an important factor causing massive periodical epidemic of rust in wheat production. Creation and development of new races of rust pathogen have led to serious crisis of resistance loss in widely planted varieties. This has quickened the search for new resistance resources. Molecular marker could facilitate the identification of the location of novel genes. A line A-3 with high resistance (immune) to currently epidemic yellow rust races (CY29, 31, 32) was screened out in offspring of Triticum aestivura x Thinopyrum ponticum. Segregation in F2 and BC1 populations indicated that the resistance was controlled by two independent genes: one dominant and one recessive. SSR markers were employed to map the two resistant genes in the F2 and BC1 populations. A marker WMC477-167bp located on 2BS was linked to the dominant gene with genetic distance of 0.4 cM. Another marker WMC364-2os bp located on 7BS was linked to the recessive-resistant gene with genetic distance of 5.8 cM. The two genes identified in this paper might be two novel stripe rust resistant genes, which were temporarily designated as YrTpl and YrTp2, respectively. The tightly linking markers facilitate transfer of the two resistant genes into the new varieties to control epidemic of yellow rust.展开更多
Researches on the relationship between photosynthesis and wheat yield have equally attracted the attention of both domestic and overseas scholars. No report has existed so far on the study of the effects of exogenous ...Researches on the relationship between photosynthesis and wheat yield have equally attracted the attention of both domestic and overseas scholars. No report has existed so far on the study of the effects of exogenous chromosomes on photosynthesis using the substitution series as materials. In this research, Triticum aestivum cv. Chinese Spring-Lophopyrum elongatum (Host) A.Loeve disomic substitution series were used as materials and flag leaves as the measuring position. And the CI-310 Portable Photosynthesis System made by CID Co. in USA was used to measure the net rate of photosynthesis of flag leaves in different developing stages and also to correlate photosynthesis with yield. Results showed that, out of the whole developing stages, at the anthesis stage the line of DS2Ee (2A) had the highest photosynthetic rate, therefore it could be used in improving process of the character of kernel number. The flag leaves of DS4Ee (4A, 4B, 4D) lines demonstrated certain high net photosynthetic rate from heading to grain filling stage, so it is valuable in the researh of promoting the yield index like 1 000-grain weight through improvement of the photosynthetic rate at grain filling stage.展开更多
偃麦草属是小麦近缘种属中应用较为广泛的野生资源之一,作为小麦遗传改良和种质创新的重要基因源,在创制小麦桥梁材料和遗传育种方面发挥了重要作用。小偃麦创制工作始于20世纪20年代,是通过远缘杂交,将偃麦草属植物的染色体或染色体组...偃麦草属是小麦近缘种属中应用较为广泛的野生资源之一,作为小麦遗传改良和种质创新的重要基因源,在创制小麦桥梁材料和遗传育种方面发挥了重要作用。小偃麦创制工作始于20世纪20年代,是通过远缘杂交,将偃麦草属植物的染色体或染色体组遗传成分导入到普通小麦中,培育小偃麦(部分)双二倍体、异附加系、异代换系、易位系和渐渗系。小偃麦(部分)双二倍体主要是八倍体小偃麦(AABBDDXX, 2n=8x=56)和六倍体小偃麦(AABBXX,2n=6x=42),来源于偃麦草的染色体组(XX)多为混合染色体组(异源染色体组)。我国自20世纪50年代开始小麦与偃麦草远缘杂交工作,创制了类型丰富的小偃麦,在小麦抗病研究和新种质创制方面表现突出,在此基础上培育出一系列高产优质的小麦品种。小偃麦创制过程中,中间偃麦草(Thinopyrum intermedium (Host) Barkworth&D. R. Dewey)和3种长穗偃麦草(Thinopyrum elongatum (Host) D. R.Dewey×ponticum(Podp.) Barkworth&D. R. Dewey)因易于同小麦杂交,具有抗寒、抗旱、耐盐碱、抗小麦多种病虫害等特性,成为创制小偃麦的主要亲本来源,应用范围最广。本研究从5部分综述小偃麦的创制与应用研究进展,旨在为小偃麦的研发利用和小麦遗传资源创新提供科学依据。展开更多
十倍体长穗偃麦草[Thinopyrum ponticum(Popd.)Barkworth and Dewey]具有抗寒、抗旱、耐盐碱、茎秆粗壮、穗长花多等优异性状,是小麦遗传改良的重要基因资源。本课题组从小麦与十倍体长穗偃麦草的杂交后代中筛选出一份抗条锈病的衍生系C...十倍体长穗偃麦草[Thinopyrum ponticum(Popd.)Barkworth and Dewey]具有抗寒、抗旱、耐盐碱、茎秆粗壮、穗长花多等优异性状,是小麦遗传改良的重要基因资源。本课题组从小麦与十倍体长穗偃麦草的杂交后代中筛选出一份抗条锈病的衍生系CH18067,本研究对其进行形态学、细胞学、原位杂交、分子标记、抗条锈病性等综合鉴定。细胞学观察结果显示,CH18067的体细胞染色体数目为42条,在减数分裂中期Ⅰ的染色体构型为2n=21Ⅱ,在减数分裂后期Ⅰ同源染色体可均等分离,表明其细胞学遗传稳定。利用寡核苷酸探针Oligo-pTa535(红色)和Oligo-pSc119.2(绿色)对CH18067进行FISH鉴定,结果显示,CH18067缺失小麦2D和4D染色体,同时含有2对具有特殊带型的染色体;通过对CH18067进行FISH-GISH、mc-GISH、液相芯片以及染色体核型分析,发现2对具有特殊带型的染色体中,在长臂和短臂末端均呈现Oligo-pTa535探针红色带型的染色体为十倍体长穗偃麦草的2J染色体,在着丝粒位置和长臂末端均呈现Oligo-pTa535探针红色带型的染色体为十倍体长穗偃麦草的4J^(S)染色体,说明CH18067为小麦-十倍体长穗偃麦草2J(2D)+4J^(S)(4D)双重异代换系。在第二部分同源群和第四部分同源群分别筛选出3个特异性标记,可用于追踪小麦遗传背景中长穗偃麦草的2J和4J^(S)染色体。形态学和条锈病抗性鉴定结果显示,CH18067具有矮秆、长粒等特性,且在成株期高抗小麦条锈病。以上结果表明,CH18067可作为小麦条锈病抗性育种和遗传研究的候选种质。展开更多
Thinopyrum elongatum (2n = 2x = 14, EE), a wild relative of wheat, has been suggested as a potentially novel source of resistance to several major wheat diseases including Fusarium Head Blight (FHB). In this study...Thinopyrum elongatum (2n = 2x = 14, EE), a wild relative of wheat, has been suggested as a potentially novel source of resistance to several major wheat diseases including Fusarium Head Blight (FHB). In this study, a series of wheat (cv. Chinese Spring, CS) substitution and ditelosomic lines, including Th. elongatum additions, were assessed for Type II resistance to FHB. Results indicated that the lines containing chromosome 7E of Th. elongatum gave a high level of resistance to FHB, wherein the infection did not spread beyond the inoculated floret. Furthermore, it was determined that the novel resistance gene(s) of 7E was located on the short-ann (7ES) based on sharp difference in FHB resistance between the two 7E ditelosomic lines for each arm. On the other hand, Th. elongatum chromosomes 5E and 6E likely contain gene(s) for susceptibility to FHB because the disease spreads rapidly within the inoculated spikes of these lines. Genomic in situ hybridization (GISH) analysis revealed that the alien chromosomes in the addition and substitution lines were intact, and the lines did not contain discernible genomic aberrations. GISH and multicolor-GISH analyses were further performed on three trans- location lines that also showed high levels of resistance to FHB. Lines TA3499 and TA3695 were shown to contain one pair of wheat-Th. elongatum translocated chromosomes involving fragments of 7D plus a segment of the 7E, while line TA3493 was found to contain one pair of wheat-Th, elongatum translocated chromosomes involving the D- and A-genome chromosomes of wheat. Thus, this study has established that the short-arm of chromosome 7E of Th. elongatum harbors gene(s) highly resistant to the spreading of FHB, and chromatin of 7E introgressed into wheat chromosomes largely retained the resistance, implicating the feasibility of using these lines as novel material for breeding FHB-resistant wheat cultivars.展开更多
基金Chinese Academy of Sciences (No. KSCXZ-YW-N-059 and KSCX1-YW-03)the National Natural Science Foundation of China (No. 30330390 and 30521001)the State Key Basic Research and Development Plan of China (No.2005CB 120904
文摘Wheat is a staple food crop in the world as well as in China. Because of the progress of wheat breeding and other agricultural "sci-technologies, the wheat grain yield per unit area has increased more than five folds from 1952 to 2006 in China. The first part of this article briefly reviews the history of wheat breeding in China. Second, the establishment of "Triticum aestivum-Agropyron" distant hybridization system and its contribution to wheat production and breeding in China are summarized. Finally, the future challenges of wheat breeding are discussed, which include how to increase the utilization efficiencies of water, soil nutrient and light energy through breeding. As an example, our research progress on how to increase light use efficiency in wheat through breeding is introduced and discussed.
文摘利用已知植物抗病基因编码氨基酸保守区域NBS-LRR(核苷酸结合位点-富亮氨酸区域)设计了42个简并引物组合,运用抗病基因类似物多态性(resistance gene analog polymorphism,RGAP)分子标记技术,对中国春、中国春-长穗偃麦草双二倍体及其附加系和代换系基因组DNA进行PCR扩增。结果表明,共有38对引物组合获得扩增产物,其中35对在普通小麦中国春、中国春-长穗偃麦草双二倍体中能扩增出多态性,平均每个引物组合扩增出38.5个片段。在普通小麦背景下,共获得275条长穗偃麦草E基因组多态性谱带,占扩增总谱带数的17.44%,揭示出在普通小麦背景下E基因组和普通小麦A、B、D基因组间的高丰度遗传变异。另外,利用RGAP分子标记技术,构建了一套完整的长穗偃麦草1E^7E染色体的特异RGAP标记。为小麦背景中长穗偃麦草外源遗传物质的快速检测提供了新途径。
文摘Loss of variety resistance to stripe rust (Puccinia striiformis Westend f. sp.tritici) is an important factor causing massive periodical epidemic of rust in wheat production. Creation and development of new races of rust pathogen have led to serious crisis of resistance loss in widely planted varieties. This has quickened the search for new resistance resources. Molecular marker could facilitate the identification of the location of novel genes. A line A-3 with high resistance (immune) to currently epidemic yellow rust races (CY29, 31, 32) was screened out in offspring of Triticum aestivura x Thinopyrum ponticum. Segregation in F2 and BC1 populations indicated that the resistance was controlled by two independent genes: one dominant and one recessive. SSR markers were employed to map the two resistant genes in the F2 and BC1 populations. A marker WMC477-167bp located on 2BS was linked to the dominant gene with genetic distance of 0.4 cM. Another marker WMC364-2os bp located on 7BS was linked to the recessive-resistant gene with genetic distance of 5.8 cM. The two genes identified in this paper might be two novel stripe rust resistant genes, which were temporarily designated as YrTpl and YrTp2, respectively. The tightly linking markers facilitate transfer of the two resistant genes into the new varieties to control epidemic of yellow rust.
文摘Researches on the relationship between photosynthesis and wheat yield have equally attracted the attention of both domestic and overseas scholars. No report has existed so far on the study of the effects of exogenous chromosomes on photosynthesis using the substitution series as materials. In this research, Triticum aestivum cv. Chinese Spring-Lophopyrum elongatum (Host) A.Loeve disomic substitution series were used as materials and flag leaves as the measuring position. And the CI-310 Portable Photosynthesis System made by CID Co. in USA was used to measure the net rate of photosynthesis of flag leaves in different developing stages and also to correlate photosynthesis with yield. Results showed that, out of the whole developing stages, at the anthesis stage the line of DS2Ee (2A) had the highest photosynthetic rate, therefore it could be used in improving process of the character of kernel number. The flag leaves of DS4Ee (4A, 4B, 4D) lines demonstrated certain high net photosynthetic rate from heading to grain filling stage, so it is valuable in the researh of promoting the yield index like 1 000-grain weight through improvement of the photosynthetic rate at grain filling stage.
文摘偃麦草属是小麦近缘种属中应用较为广泛的野生资源之一,作为小麦遗传改良和种质创新的重要基因源,在创制小麦桥梁材料和遗传育种方面发挥了重要作用。小偃麦创制工作始于20世纪20年代,是通过远缘杂交,将偃麦草属植物的染色体或染色体组遗传成分导入到普通小麦中,培育小偃麦(部分)双二倍体、异附加系、异代换系、易位系和渐渗系。小偃麦(部分)双二倍体主要是八倍体小偃麦(AABBDDXX, 2n=8x=56)和六倍体小偃麦(AABBXX,2n=6x=42),来源于偃麦草的染色体组(XX)多为混合染色体组(异源染色体组)。我国自20世纪50年代开始小麦与偃麦草远缘杂交工作,创制了类型丰富的小偃麦,在小麦抗病研究和新种质创制方面表现突出,在此基础上培育出一系列高产优质的小麦品种。小偃麦创制过程中,中间偃麦草(Thinopyrum intermedium (Host) Barkworth&D. R. Dewey)和3种长穗偃麦草(Thinopyrum elongatum (Host) D. R.Dewey×ponticum(Podp.) Barkworth&D. R. Dewey)因易于同小麦杂交,具有抗寒、抗旱、耐盐碱、抗小麦多种病虫害等特性,成为创制小偃麦的主要亲本来源,应用范围最广。本研究从5部分综述小偃麦的创制与应用研究进展,旨在为小偃麦的研发利用和小麦遗传资源创新提供科学依据。
文摘十倍体长穗偃麦草[Thinopyrum ponticum(Popd.)Barkworth and Dewey]具有抗寒、抗旱、耐盐碱、茎秆粗壮、穗长花多等优异性状,是小麦遗传改良的重要基因资源。本课题组从小麦与十倍体长穗偃麦草的杂交后代中筛选出一份抗条锈病的衍生系CH18067,本研究对其进行形态学、细胞学、原位杂交、分子标记、抗条锈病性等综合鉴定。细胞学观察结果显示,CH18067的体细胞染色体数目为42条,在减数分裂中期Ⅰ的染色体构型为2n=21Ⅱ,在减数分裂后期Ⅰ同源染色体可均等分离,表明其细胞学遗传稳定。利用寡核苷酸探针Oligo-pTa535(红色)和Oligo-pSc119.2(绿色)对CH18067进行FISH鉴定,结果显示,CH18067缺失小麦2D和4D染色体,同时含有2对具有特殊带型的染色体;通过对CH18067进行FISH-GISH、mc-GISH、液相芯片以及染色体核型分析,发现2对具有特殊带型的染色体中,在长臂和短臂末端均呈现Oligo-pTa535探针红色带型的染色体为十倍体长穗偃麦草的2J染色体,在着丝粒位置和长臂末端均呈现Oligo-pTa535探针红色带型的染色体为十倍体长穗偃麦草的4J^(S)染色体,说明CH18067为小麦-十倍体长穗偃麦草2J(2D)+4J^(S)(4D)双重异代换系。在第二部分同源群和第四部分同源群分别筛选出3个特异性标记,可用于追踪小麦遗传背景中长穗偃麦草的2J和4J^(S)染色体。形态学和条锈病抗性鉴定结果显示,CH18067具有矮秆、长粒等特性,且在成株期高抗小麦条锈病。以上结果表明,CH18067可作为小麦条锈病抗性育种和遗传研究的候选种质。
基金supported by the grant of the National High Technology Research and Development Program("863"Program)of China(No.2011AA100101)
文摘Thinopyrum elongatum (2n = 2x = 14, EE), a wild relative of wheat, has been suggested as a potentially novel source of resistance to several major wheat diseases including Fusarium Head Blight (FHB). In this study, a series of wheat (cv. Chinese Spring, CS) substitution and ditelosomic lines, including Th. elongatum additions, were assessed for Type II resistance to FHB. Results indicated that the lines containing chromosome 7E of Th. elongatum gave a high level of resistance to FHB, wherein the infection did not spread beyond the inoculated floret. Furthermore, it was determined that the novel resistance gene(s) of 7E was located on the short-ann (7ES) based on sharp difference in FHB resistance between the two 7E ditelosomic lines for each arm. On the other hand, Th. elongatum chromosomes 5E and 6E likely contain gene(s) for susceptibility to FHB because the disease spreads rapidly within the inoculated spikes of these lines. Genomic in situ hybridization (GISH) analysis revealed that the alien chromosomes in the addition and substitution lines were intact, and the lines did not contain discernible genomic aberrations. GISH and multicolor-GISH analyses were further performed on three trans- location lines that also showed high levels of resistance to FHB. Lines TA3499 and TA3695 were shown to contain one pair of wheat-Th. elongatum translocated chromosomes involving fragments of 7D plus a segment of the 7E, while line TA3493 was found to contain one pair of wheat-Th, elongatum translocated chromosomes involving the D- and A-genome chromosomes of wheat. Thus, this study has established that the short-arm of chromosome 7E of Th. elongatum harbors gene(s) highly resistant to the spreading of FHB, and chromatin of 7E introgressed into wheat chromosomes largely retained the resistance, implicating the feasibility of using these lines as novel material for breeding FHB-resistant wheat cultivars.