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1.
近等基因系法对小麦显性矮源的研究   总被引:12,自引:0,他引:12  
【目的】开拓小麦育种新矮源,克服自小麦矮化育种“绿色革命”以来,仅使用Rht1、Rht2、Rht8等少数几个隐性矮源的局限性,为选育高度集约化的小麦新品种提供条件。【方法】将国内外已定名的5个显性矮源Rht10、Rht3、Rht12、Rht21、奥尔森矮(Olesen dwarf)和西南大学农学与生物科技学院培育与征集的7个致矮力弱的显性矮源回交导入4个中、高秆(85~105 cm)轮回父本品种(BC4F1),建立了4套矮秆基因的近等基因系。2005~2006两年,在非竞争群体条件下开展了近等基因系的多因素品系比较试验,研究矮源及轮回父本遗传背景两个主因素对近等基因系主要农艺性状的影响效应。【结果】12个显性矮源在本试验统一遗传背景条件下株高为37.9~74.3 cm,显性矮源的株高与其株粒重呈高度正相关(r=0.8884),株高每上升1 cm,则株粒重增加0.24 g。随显性矮源株高的提升、致矮力减弱,其近等基因系的农艺性状得到改善。显性矮源的株高提升到60 cm以上时,即有可能达到和超过中、高秆轮回父本的单株生产力,从而作为新型矮源应用于小麦矮化育种。此外,12个显性矮源具有一致的延迟早熟轮回父本抽穗以及降低轮回父本千粒重的多效性效应,这些不利的多效性效应可以通过轮回父本遗传背景的修饰作用加以改良。【结论】株高在50 cm以下的强致矮力显性矮源,难以直接用于小麦育种,但通过矮秆主基因突变以及特殊遗传背景的修饰等途径可以衍生出株高呈不同程度提升、以致达到70~80 cm理想株高的弱致矮力显性矮源。加强株高提升的弱致矮力显性矮源的研究是将显性矮源应用于小麦杂交育种的有效途径。推荐株高在60~75 cm的弱致矮力显性矮源SW07、SW05、女水妖矮、SW02、Rht21用于小麦矮化育种。  相似文献   

2.
显性矮秆基因Rht10用于杂交小麦育种的研究   总被引:5,自引:1,他引:4  
将极度矮化的显性矮源矮变1号与渝麦4号等小麦常规良种杂交,选育出株高较矮变1号显著增高的衍生矮源西农02,西农04,西农05,发现由于核遗传背景的改变,衍生矮源西农02在杂交1代种中对父本株高的致矮能力较矮变1号大为减弱,而与携带Rht3的显性矮源“大姆指矮”衍生而来的“矮苏3”致矮能力相当。采用赤霉酸(GA3)化学标记,矮秆基因的不等位性测交,以及矮秆基因的染色体定位,确认了西农02确系携有Rh  相似文献   

3.
矮败小麦是太谷核不育基因 Ms2和矮秆基因 Rht10紧密连锁体,是一种具有矮秆标记性状的显性核不育新材料。其独特之处在于不育株接受任一非矮秆父本的花粉,后代总是分离出一半矮秆不育一半高秆可育。这在遗传育种中有极其重要的实用价值。为了利用好这个宝贵材料,我们用矮败小麦不育株为母本,40个普通小麦品种(系)为父本四年内连续回  相似文献   

4.
矮败小麦育种技术研究进展   总被引:2,自引:0,他引:2  
矮败小麦是我国自主创制的小麦特异种质资源。其4D染色体上紧密连锁有显性矮秆基因Rht D1c和显性雄性核不育基因Ms2,因此,矮败小麦后代始终会分离出一半异交结实的矮秆不育株和一半自交结实的高矮秆可育株,是理想的遗传改良工具。经过多年研究与实践,建立了方便高效的矮败小麦育种技术体系,在我国小麦育种中发挥了重要作用。近年来,分子生物学研究的快速发展为矮败小麦育种技术的进一步提升提供了强有力的工具,同时,矮败小麦育种技术体系也为分子生物学研究成果在小麦育种中的应用提供了高效的技术平台。矮败小麦育种技术与现代分子育种技术结合,将为我国小麦育种技术的发展开辟新的途径。总结了矮败小麦育种技术研究进展,并对该项技术今后的发展趋势进行了讨论。  相似文献   

5.
采用NCⅡ设计,用6个不同株高类型(高、中、矮各2个)八倍体小黑麦作母本,用含Rhtl,Rht2,Rht3,Rht10,和RhtlRht2Rhty的5个小麦矮源作父本配制30个杂交组合,通过F_1的显性度(D值)、降秆强度(R值)及F_2株高分布频率,分析了Rht基因在不同株高类型八倍体小黑麦中的反应。主要结果为:1)不同矮秆基因对高、中、矮秆小黑麦降秆趋势一致,即对高秆小黑麦降秆效果最强,中秆次之,矮秆最弱,而不同矮秆基因降秆作用大小顺序为:Rht10>Rht3>Rht1Rht2Rhty>Rht1Rht2.2) 各矮秆基因在F_2染色体数分布不平衡的遗传背景下表达基本正常,Rht10、Rht3显示以矮秆为主的高低峰分布,农林10号、OlesenDwarf显示正态分布,3)连续回交能提高矮秆小黑麦株的选择效率。  相似文献   

6.
利用矮败基因源育成冬小麦新品系陇麦108的实践   总被引:2,自引:0,他引:2  
冬小麦新品系陇麦108是应用显性雄性核不育单基因(MS2)和显性矮秆基因(Rht10)连锁控制的“矮败”小麦基因源为育种工具选育而成。其亲本系谱血缘关系复杂,遗传基础丰富,包含欧、亚、美三大洲16个品种(系),该品系具有高产、优质、多抗等优良性状,为小麦育种开辟了一条行之有效的育种途径。  相似文献   

7.
矮秆小麦XN0004的矮秆基因Rht21的染色体臂定位   总被引:2,自引:0,他引:2  
XNOOO4是青431与小偃6号杂交选育的一个新的具有部分矮秆显性效应的小麦新矮源品系。和高秆亲本相比,其杂种F_1代的降秆作用平均为13.8%,对外源赤霉酸反应不敏感,在杂种小麦研究中,其配合力优良,增产显著,穗粒数增加,抗倒能力增强,收获指数提高等,无某些矮源对杂种F_1产生的不良效应,是杂种小麦比较理想的矮秆亲本,可作为常规育种的优良矮秆品种资源。用中国春缺—四体和双端体分析的方法,对XNOOO4丰矮秆显性基因进行了染色体定位,证明其矮秆显性基因位于2A染色体的短臂上,是一个不同于世界上已定位的20个Rht基因的新矮源,故暂定名为显性矮秆基因Rht21。  相似文献   

8.
矮败小麦及其在矮化育种中的应用   总被引:14,自引:2,他引:12  
矮败小麦是具有矮秆基因标记的显性核不育材料。它接受非矮秆品种的花粉,后代分离的矮秆株为雄性不育,非矮秆株为雄性可育。矮败小麦在轮回选择和矮化育种中有重要价值。  相似文献   

9.
本试验选用了5个茎秆高度不同的矮秆普通小麦材料,通过双列杂交,并在同一年种植亲本、F_1、F_2、研究了矮秆的遗传特点。结果表明,控制植株高度的基因多表现为独立遗传,基因间具有累加作用,矮秆对高秆在多数情况下表现为不同程度的隐性。茎秆高度不同的材料,具有不同的株高基因,这些基因可能是非等位基因,也可能是复等位基因。最后,结合对矮秆遗传特点的分析,对矮化育种提出了一些看法。  相似文献   

10.
矮败小麦是具有矮秆基因标记的显性核不育材料,它接受非矮秆品质的花粉,后代分离的矮秆株性为雄性不育,非矮秆株为雄性可育。矮败小麦在轮回选择和矮化育种中具有重要的价值。  相似文献   

11.
Studies of Multi-Allelic Polymorphism of Dominant Dwarfing Genes in Wheat   总被引:1,自引:0,他引:1  
Dwarfing breeding of wheat in the world is confined to the exploitation of recessive dwarfing sources. None of the dominant dwarfing sources discovered in common wheat (Triticum aestivum L. ) has found wide exploitation in wheat breeding due to the extreme dwarfness of their plants (20 -55 cm). We found in our work that some stable mutant lines with their plant height enhanced to different extents could be obtained in large populations derived from the stock seeds of the dominant dwarfing sources Aibian1 carrying Rht10 on 4DS and being 20 - 55 cm tall and Aisu2 carrying Rht3 on 4BS and being 55 cm tall, or from their descendants of induced mutation treatments, or from the segregating descendants of their crosses with mid- or tall-statured genotypes. Subsequently, we studied these mutation-derived lines differing in plant height with near isogenic lines and observed that the character of their enhanced plant height bred true, each carrying a semidominant dwarfing gene for a definite height and that as the plant height of the mutation-derived lines increased, the yield-contributing characters of their near isogenic lines were significantly improved. When test crosses with marker genes and physiological and biochemical genetic marker tests were performed to re-localize the semi-dominant dwarfing genes carried by the mutation-derived lines, it was confirmed that they shared common loci with Rht10 and Rht3 and that they were all mutation-derived multiple alleles. It is thus speculated that dominant dwarfing genes are of "multi-allelic polymorphism". In other words, dominant dwarfing genes, which are ultra-dwarfing, are liable to develop by mutation into a group of multiple alleles with plant height enhanced to different extents and some may have a height close to the ideal plant height for wheat breeding. Therefore, these results offer a fundamentally new approach for the exploitation of dominant dwarfing sources in wheat breeding.  相似文献   

12.
[目的]分析宁夏春小麦育种材料常用矮秆基因的分布,为本地小麦改良株高性状提供理论依据。[方法]以宁夏大学小麦遗传育种实验室212个(其中54个材料由中国农业科学院引进)春小麦育种亲本为材料,调查其株高、穗长、穗下茎节等农艺性状,利用分子标记检测分析材料中常用矮秆基因Rht-B1b(Rht1)、Rht-D1b(Rht2)和Rht8的分布。[结果]中国农业科学院引进材料的株高、穗长、穗茎节的平均值(分别为69.2、7.8、28.5 cm)明显低于现有亲本材料(分别为83.6、11.1、32.0 cm)。矮秆基因检测发现166份材料携带Rht-B1b基因,占总检测材料的75.1%;88份材料含有Rht-D1b基因,占39.8%;191份材料含Rht8基因,占总检测材料的86.4%。携带Rht-D1b基因的9个材料同时含有Rht-B1b和Rht8基因。其中,引进材料中Rht8、Rht-B1b、Rht-D1b分别占85.1%、72.0%、33.3%,与整体材料中各矮秆基因分布相似。[结论]目前宁夏春小麦育种材料中普遍含有矮秆基因Rht8,其次是Rht-B1b,但主栽品种和主推品种以及核心育种亲本材料均含有Rht-D1b,即现有亲本材料中含Rht8+Rht-B1b的材料所占比例较Rht8+Rht-D1b多,但新培育的品种以含有Rht8+Rht-D1b为主。这可能是主栽品种宁春4号(Rht8+Rht-D1b)在当地长期种植,并作为育种骨干亲本被长期利用的结果。  相似文献   

13.
对小麦品系Saratovskaya29的不同Rht等位的一套近等基因系进行了田间试验,以测定6个矮杆基因的育种值。在不灌溉、灌溉并施用不同剂量的肥料(N120,P100,K60和N180,P160,K100)三种条件下测定Rht基因对株高、产量及产量构成因子、品质的影响。结果表明,Rht基因可以用于伏尔加河地区条件下魏杆小麦品系的选育。  相似文献   

14.
目前在小麦中虽然已经命名了20余个矮秆基因,但小麦矮秆基因资源应用单一化的现状仍然存在,因此对小麦新矮源的筛选与研究显得十分必要。本研究以1个小麦矮秆突变体‘矮128’为材料,通过赤霉酸处理、遗传分析、基因等位性测验和DNA分子标记等手段分析了该矮秆突变体矮秆基因的性质及可能来源。结果表明:‘矮128’属赤霉酸不敏感型矮秆突变体,其矮秆性状受1对隐性基因控制,该基因与Rht8、Rht9、Rht13、RhtB1b(Rht1)、RhtD1b(Rht2)、RhtD1c(Rht10)和Rht16等矮秆基因不是等位基因,也不同于Rht4、Rht5、Rht8、Rht9、Rht12、Rht13等6个已知矮秆基因。尽管如此,‘矮128’中的矮秆基因是否为新的矮秆基因仍然需进一步的遗传分析加以明确。  相似文献   

15.
The value of different dwarfing genes in winter wheat breeding was studied using 6 nearisogenic lines carrying different Rht dwarfing genes over three years experiment.Results showed that both the Rhtl and Rht2 semi-dwarfing genes had significantly positive effects on kernel number and grain weight per spike, and had significantly negative effects on 1 000-grain weight comparing to the tall line(rht) and the Rht3 line.The Rht3 dwarfing gene had a significantly negative effect on kernel number per spike,and had positive effect on 1 000-grain weight. The combination of the Rht2 and Rht3 gene showed significantly negative effect on yield components. All of these 5 dwarfing or semidwarfing genotypes mentioned above had a significantly negative effect on plant height and no significant effect on the area of flag leaf, spikelets per spike and spike length.  相似文献   

16.
Understanding the effects of wheat dwarfing genes on the coleoptile length and plant height is crucial for the proper utilization of dwarfing genes in the improvement of wheat yield. Molecular marker analysis combined with pedigree information were used to classify wheat cultivars widely planted in major wheat growing regions in China into different categories based on the dwarfing genes they carried. The effects of the dwarfing genes with different sensitivity to gibberellins (GA3) on the coleoptile length and plant height were analyzed. Screening of 129 cultivars by molecular marker analysis revealed that 58 genotypes of wheat contained the dwarfing gene Rht-B1b, 24 genotypes of wheat contained Rht-D1b gene and 73 genotypes of wheat possessed Rht8 gene. In addition, among these 129 cultivars, 35 genotypes of wheat cultivars contained both Rht-B1b and Rht8 genes and 16 genotypes of wheat cultivars contained both Rht-D1b and Rht8 genes. Wheat cultivars with the dwarfing genes Rht-B1b or Rht-D1b were insensitive to GA3, while the cultivars with the dwarfing gene Rht8 were sensitive to GA3. Most of the wheat genotypes containing combination of Rht8 gene with either Rht-B1b or Rht-D1b gene were insensitive to GA3. The plant height was reduced by 24.6, 30.4, 28.2, and 32.2%, respectively, for the wheat cultivars containing Rht-B1b, Rht-D1b, Rht-B1b + Rht8, and Rht-D1b + Rht8 genes. The plant height was reduced by 14.3% for the wheat cultivar containing GA3-sensitive gene Rht8. The coleoptile length was shortened by 25.4, 31.3, 28.4 and 31.3%, respectively, in the wheat cultivars containing Rht-B1b, Rht-D1b, Rht-B1b +Rht8 and Rht-D1b + Rht8 genes, while the coleoptile length was shortened only by 6.2% for the wheat cultivar containing Rht8 gene. We conclude that GA3-insensitive dwarfing genes (Rht-B1b and Rht-D1b) are not suitable for the wheat improvement in dryland because these two genes have effect on reducing both plant height and coleoptile length. In contrast, GA3- sensitive dwarfing gene (Rht8) is a relatively ideal candidate for the wheat improvement since it significantly reduces the plant height of wheat, but has less effect on the coleoptile length.  相似文献   

17.
唐娜  姜莹  何蓓如  胡银岗 《中国农业科学》2009,42(11):3774-3784
 【目的】明确赤霉素敏感性不同的矮秆基因对小麦株高和胚芽鞘长度的效应,促进小麦不同矮秆基因的合理利用。【方法】利用分子标记和系谱分析相结合,对中国小麦主产区部分小麦品种及品系中所含的矮秆基因Rht-B1b、Rht-D1b和Rht8进行分类,结合田间株高和室内胚芽鞘长度调查,比较赤霉素(GA3)敏感性不同的矮秆基因对胚芽鞘长度和株高的效应。【结果】分子标记检测结合系谱分析对129份供试品种进行分类,含有矮秆基因Rht-B1b的小麦品种58份,含有Rht-D1b的24份,含有Rht8的73份。其中35份品种含有2个矮秆基因Rht-B1b和Rht8,16份品种含有Rht-D1b和Rht8。赤霉素敏感性检测发现含有矮秆基因Rht-B1b或Rht-D1b的小麦品种多对赤霉素反应不敏感,含有矮秆基因Rht8的小麦品种多对赤霉素反应敏感,而同时含有2个矮秆基因Rht-B1b+Rht8或Rht-D1b+Rht8的小麦品种绝大多数对赤霉素反应不敏感。赤霉素不敏感的矮秆基因Rht-B1b和Rht-D1b以及同时含有赤霉素不敏感和赤霉素敏感2个矮秆基因的小麦品种(Rht-B1b+Rht8和Rht-D1b+ Rht8)降低株高的效应较大,分别为24.6%、30.4%、28.2%和32.2%,而赤霉素敏感的矮秆基因Rht8降低株高的效应为14.3%。赤霉素不敏感的矮秆基因Rht-B1b、Rht-D1b以及Rht-B1b+Rht8和Rht-D1b+Rht8在降低株高的同时,也缩短了胚芽鞘长度,其效应分别为25.4%、31.3%、28.4%和31.3%,而赤霉素敏感的矮秆基因Rht8缩短胚芽鞘长度的效应较小,仅为6.0%。【结论】以上分析结果表明,赤霉素不敏感的矮秆基因Rht-B1b和Rht-D1b在降低株高的同时也限制了胚芽鞘的伸长,不适于旱地小麦改良利用,而赤霉素敏感的矮秆基因Rht8既降低了株高又不影响胚芽鞘长度,是旱地小麦改良中比较理想的矮秆基因。  相似文献   

18.
利用2套近等基因系,在人工模拟气候室,研究了不同Rht近等基因系营养性状的遗传差异.结果证明:Rht-B1b和Rht-D1b矮秆基因系不但具有很好的降秆作用,而且可以在生长前期形成较多的干物质和较坚硬的秆子,为后期籽粒产量的形成奠定基础;Rht-D1b半矮秆基因根系长度明显长于其它基因系,可能较其它基因系具有较强的耐旱能力;Rht-B1c基因系的分蘖数量及次生根或总根发生量多于其它基因系,无论苗高或株高均显著低于其它基因系,可在单纯的提高单株分蘖或次生根生长量及降秆为目的的育种中发挥一定作用.  相似文献   

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