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1.
粳型水稻显性半矮秆突变体的发现与初步研究   总被引:14,自引:1,他引:14  
 在中粳杂交组合“M9056 × R8018选”的F6 选种圃中,发现半矮秆突变单株。以纯合半矮秆单株为父、母本, 与稳定野生型高秆单株进行正、反杂交。种植 P1 、P2 、F1、F2 世代群体。结果表明F1 植株与半矮秆亲本基本相同, 仍然表现半矮秆。 说明该半矮秆突变材料的矮生性表达为显性, 无细胞质效应。F2 群体植株株高性状发生分离,其分离比符合一对等位基因的遗传模式,说明该半矮秆材料的矮生性表达受一对核基因控制。  相似文献   

2.
春小麦新种质陇矮l号矮秆性状的遗传研究   总被引:2,自引:1,他引:2       下载免费PDF全文
为了深入了解春小麦新创种质陇矮1号的矮秆性遗传规律,2000~2001年对“陇矮1号”的矮秆遗传特性进行了较为系统的研究。从“陇矮1号”分别与三个高秆亲本“老芒麦”、“和尚头”和“高原602”的杂种F1代株高表现可知,其F1代株高介于高亲值与中亲值之间,且D为负值,说明“陇矮1号”的矮秆特性受隐性矮秆基因控制。“陇矮1号”与“老芒麦”、“和尚头”和“高原602”的F2代株高分离表明,“陇矮1号”的矮秆特性受2对或2对以上隐性基因控制。此外,超亲分离表明“陇矮1号”的矮秆特性还受到一些微效基因的影响。对各组合回交世代BCl和BC2株高分离结果进行x^2测验,BCl的矮秆株数与半矮秆株数之比为3:1,而BC2的半矮秆株数与高秆株数之比为1:3。因此,推断“陇矮1号”的矮秆特性受2对主效隐性矮秆基因控制。  相似文献   

3.
本文利用矮变1号研究了赤霉酸不敏感性与矮秆基因的关系,证实了赤霉酸不敏感基因与矮秆基因为同一基因或紧密连锁。利用这一特性,通过矮秆基因等位性测验法和矮秆品种赤霉酸反应鉴定与系谱分析法相结合,分析了我国46个矮秆小麦品种所携带的赤霉酸不敏感矮秆基因。Rht1基因型有.11个,占24%;Rht2基因型有32个,占69%;Rht1+Rht2基因型有3个,占7%。我国生产上种植的矮秆品种不含Rht1十Rht2基因型。  相似文献   

4.
比较了从7份半矮秆品种8/高秆品种的B7F2中分离的高矮秆近等基因系,sdl基因抑制了节间伸长,从基部到倒第1节及穗长分别为高秆的38.2%、26.0%、40.8%、71.1%和92.6%,缩短程度逐步减轻。sdl基因还可促进有效穗数、结实率和收获指数的提高而使矮秆类型的产量潜力高于高秆类型,但sdl工基因并不影响抽穗天数、每穗粒数和干粒重。对sdl基因的多效性以及秆高和穗数的关系进行了讨论。  相似文献   

5.
矮秆基因对小麦不同农艺性状的影响   总被引:3,自引:2,他引:3  
矮秆基因不仅降低株高,而且在许多情况下也影响其它农艺性状。利用小麦品种丰抗8号,北京841和京411遗传背景的近等基因系,研究矮秆基因对农艺性状的影响,结果表明:Rht10,Rht12延迟小麦抽穗期,Rht1b在丰抗8号背景下抽穗较迟,Rht1,Rht1s,Rht2和Rht3基因对轴抽穗期无影响;矮秆基因在降低株高的同时一般也降低单株生物产量,但含有Rht1,Rht1s,Rht1b,Rht2基因的矮秆系与对应的高秆系相比单株生物产量差异不显著,单株粒重差异也不显著,单株生物量的降低主要表现为秸秆重量的减少。含有Rht3,Rht10和Rht12基因的矮秆系与高秆系相比,单株生物量,单株籽粒产量和收获指数显著降低。  相似文献   

6.
水稻矮秆小粒突变体潇湘矮的特征特性及其遗传鉴定   总被引:1,自引:0,他引:1  
潇湘矮是在杂交籼稻组合93d72//湘/晚籼1号//桂朝2号/鉴7-4后代分离群体中发现的水稻矮秆小粒新突变体,株高55 cm左右,千粒重11 g左右,每穗总粒数198粒,结实正常,苗期对外源赤霉素(GA3)敏感,抽穗期不敏感。遗传分析表明,潇湘矮的矮生性由2对独立遗传的隐性半矮秆基因控制,其中1对为已知的半矮秆基因sd-1,另1对为未知的sd-t4。sd-t4单独存在时植株表现为半矮秆小粒,与sd-1共同存在时植株表现为矮秆小粒。  相似文献   

7.
新的玉米显性矮秆基因的发现及初步分析   总被引:6,自引:0,他引:6  
玉米杂交种CL1077中的矮秆突变体52333与5个高秆自交系进行杂交,对P1、P2、F1、F2、BC1和BC2群体株高变异进行分析。结果表明,正反交杂种F1均表现为矮秆,没有显著差异;F2代矮株与高株的分离比为3∶1,杂种F1与高株自交系回交后代的分离比为1∶1,与矮秆突变体回交的后代全为矮株,证明该矮秆材料的矮秆性状受一对显性矮秆基因控制,且不受细胞质的影响。对纯合矮秆植株及杂种F1芽期和苗期进行赤霉素处理,结果表明,此矮秆基因对赤霉素敏感,表明与以前报道的所有矮秆基因不同,此矮秆基因可能是一新的矮秆基因,并将此矮秆基因初步定名为D(t)。  相似文献   

8.
油菜矮秆基因资源的研究与利用   总被引:1,自引:0,他引:1  
赵福永  田志宏 《作物研究》2009,23(2):157-160,F0003
就近几年来国内外在油菜矮化育种上的研究进行了综述,主要阐述了矮秆资源的矮化机制、矮秆或半矮秆基因的定位与克隆、矮秆基因与资源的利用等方面,并对今后油菜矮秆育种进行了展望。  相似文献   

9.
水稻显性半矮秆基因对株高表达的影响及其对GA3的敏感性   总被引:5,自引:0,他引:5  
对具有显性半矮秆基因的6对高矮秆近等基因系的株高表达特性进行了比较。水稻显性半矮秆基因抑制了茎秆节间的伸长,矮秆系倒4~5、3、2、1节及穗长分别为高秆系的97.2%、53.3%、65.1%、61.9%和94.7%。通过对Y98149(突变体)和Y98148(野生型)在苗期和成株期对GA3反应的研究,发现Y98149较Y98148对外源赤霉素更敏感;内源赤霉素测定结果显示显性半矮秆突变体内源赤霉素含量较低,是野生型的78%。  相似文献   

10.
水稻半矮秆基因sd1对农艺性状的影响   总被引:3,自引:0,他引:3  
比较了从7份半矮秆品种/高秆品种的B7F2中分离的高矮秆近等基因系,sd1基因抑制了节间伸长,从基部到倒第1节及穗长分别为高秆的38. 2%, 26. 0%, 48. 0%, 71. 1%和 92. 6%,缩短程度逐步减轻。sd1基因还可促进有效穗数、结实率和收获指数的提高而使矮秆类型的产量潜力高于高秆类型,但sd1基因并不影响抽穗天数、每穗粒数和千粒重。对sd1基因的多效性以及秆高和穗数的关系进行了讨论。  相似文献   

11.
矮泰引-2中半矮秆基因的分离与鉴定研究   总被引:11,自引:1,他引:11  
In order to discover new semidwarf genes which can be used in breeding program in indica rice, a dwarf variety Aitaiyin 2, was crossed with a tall native cultivar Naming 6. The segregation of the F1 generation appeared to be 9 tall:6 semidwarf:1 dwarf, which meant two semidwarf genes were involved. While Aitaiyin 2 was also crossed with two semidwarf varieties, Nanjing 11 with sd-1 and Xingui'ai with sd-g, the segregation of the F2 generation in the former cross was 3 semidwarf:1 dwarf and that in the latter cross was 27 tall:27 semidwarf:9 dwarf:1 extra dwarf. This indicated that there were two semidwarf genes in Aitaiyin 2, one of them was allelic to sd-1 and the other was a new semidwarf gene which was nonallelic to both sd-1 and sd-g. This new semidwarf gene was named sd-t(t).  相似文献   

12.
两个双矮地方种质中新矮生基因的遗传和等位性分析   总被引:6,自引:0,他引:6  
对黔农和特矮两个双矮地方种质株高性状的遗传分析结果表明,黔农和特矮的矮生性均由2对隐性矮生基因控制,其中各有1对矮生基因与sd-1等位,另1对与sd-1不等位。黔农中两对矮生基因降低株高的效应不同,与sd-1不等位的矮生基因控制的株高比sd-1略矮;而特矮的两对矮生基因具有相同的降低株高效应。将分别来自黔农和特矮的携带新半矮生基因的材料命名为“新黔矮”和“新特矮”,各携带新的半矮生基因sd-q(t)和sd-e(t);其中新黔矮携带sd-q(t)与sd-g(t)等6个矮秆半矮秆基因均不等位。新黔矮在每穗粒数、结实率和千粒重等农艺性状上表现较好,有希望应用在育种和生产上替代sd-1。  相似文献   

13.
籼稻矮秆等基因系分析   总被引:3,自引:0,他引:3  
 以11个籼稻矮秆品种(系)高秆籼稻棉花条和南京6号为轮回亲本,连续回交5代,育成两套籼稻矮秆等基因系。比较分析了有关株高、叶片配置和产量等22种性状的变异。结果表明:株高、地上部节间长、穗长、上部3叶片的长宽、剑叶和倒二叶的夹角等14个性状明显受矮秆基因多效性的影响。sd-1和非等位基因间存在差别。等基因系与原品种(系)之间,株高和地上部节间长多数性状有显著差别。讨论了非基因多效性引起的变异的遗传原因。  相似文献   

14.
空间诱变水稻矮秆突变体CHA-1对赤霉素的反应及其遗传分析   总被引:10,自引:0,他引:10  
应用不同浓度的赤霉素(GA[sub]3[/sub])溶液在苗期处理CHA-1特华占原种、日本晴、矮脚南特等4个材料,研究它们对GA[sub]3[/sub]反应的敏感性。结果表明,经空间诱变的矮秆突变体在苗期对GA[sub]3[/sub]的反应敏感,但与已知带[i]sd-1[/i]基因的籼、粳稻代表品种矮脚南特、日本晴敏感性有差异。进一步的遗传分析表明,控制CHA-1的一对隐性矮秆基因与[i]sd-1[/i]基因不等位。  相似文献   

15.
紫叶水稻苗期叶色的遗传研究   总被引:20,自引:2,他引:20  
紫叶水稻苗期叶色的遗传研究牟同敏,李春海,杨国才,卢兴桂(湖北省农业科学院粮食作物研究所,武汉430064)关键词:遗传分析;叶色;紫叶水稻GeneticalStudiesonSeedlingLeafColorinPurpleRice¥MouTong...  相似文献   

16.
Great achievements have been made in breeding of semidwarf varieties (indica) since 1960s. Results showed that the dwarf traits widely used at present were controlled by the same recessive major gene, sd 1, thus we faced the potential danger of losing genetic diversity. The low yield of semidwarf varieties newly bred in domestic or abroad may be related to the narrow use of dwarf resource. So it was important to explore, appraise, and use new semidwarf resource. In the last decade, we have found two non allelic semidwarf genes, sd t and sd n. To utilize the new semidwarf genes in breeding efficiently, genetic analysis was necessary.  相似文献   

17.
The plant material used in the study was rice line 162d, a new small grain dwarf mutant. Polymorphic analysis of 221 SSR loci demonstrated that 162d derived from a semidwarf variety Shuhui 162 through mutation, and 162d and Shuhui 162 were just a pair of near isogenic lines. Genetic analysis of F1 and F2 populations suggested that dwarfism in 162d was controlled by a single recessive gene. Phenotypic characteristics of the mutant gene were that plant height was about a quarter of normal height, grain size about a quarter of normal size, leaf was short and broad, and seed setting rate was very low,compared with the near isogenic line Shuhui 162. The mutant gene was sensitive to gibberellin (GA3) treatment and did not located on the region near the centromere of rice chromosome 5, where dl gene located. Therefore, it was concluded that the mutant gene of 162d was a new small grain dwarf gene in rice.  相似文献   

18.
Genetic Identification of a New Small Grain Dwarf Gene in Rice   总被引:1,自引:0,他引:1  
The plant material used in the study was rice line 162d, a new small grain dwarf mutant. Polymorphic analysis of 221 SSR loci demonstrated that 162d derived from a semidwarf variety Shuhui 162 through mutation, and 162d and Shuhui 162 were just a pair of near isogenic lines. Genetic analysis of Fl and F2 populations suggested that dwarfism in 162d was controlled by a single recessive gene. Phenotypic characteristics of the mutant gene were that plant height was about a quarter of normal height, grain size about a quarter of normal size, leaf was short and broad, and seed setting rate was very low,compared with the near isogenic line Shuhui 162. The mutant gene was sensitive to gibberellin (GA3) treatment and did not located on the region near the centromere of rice chromosome 5, where dl gene located. Therefore, it was concluded that the mutant gene of 162d was a new small grain dwarf gene in rice.  相似文献   

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