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1.
水稻Dwarf1移码突变的新突变体鉴定   总被引:1,自引:0,他引:1  
Chen HX  Zhou CB  Xing YZ 《遗传》2011,33(4):397-403
从一批水稻品种"中花11"组织培养苗里分离到一个矮化突变株"C6PS",它的T2代群体株高呈现3:1分离。利用该群体矮化单株与"珍汕97"、"牡丹江8"构建2个F2群体F2(CZ)、F2(CM),两个群体中高株与矮株均呈现3:1分离,证明该性状变异为单基因控制。"C6PS"表现型与已经报道的Dwarf1隐性突变体"d1"相似,以D1附近标记RM430检测F2(CZ)群体基因型,结果显示群体表型与RM430基因型呈极显著相关(P=0.0001),将该基因初步定位于Dwarf1附近。对"C6PS"及"中花11"进行D1序列分析显示,突变株中D1基因在其第九个外显子与第九个内含子的剪接位点上发生6个碱基的缺失,根据缺失两侧序列设计C6PS-D1L/R标记,在T2代群体该标记与表型呈现共分离,表明"C6PS"是一种新的Dwarf1突变体。cDNA测序显示突变体d1基因转录产物发生26个碱基的缺失,导致移码产生终止突变,从而无法翻译出有功能的Gα蛋白,因此,它是一个Gα功能缺失突变体。叶倾斜度检测显示"C6PS"对油菜素内酯响应比野生型"中花11"弱。  相似文献   

2.
通过EMS化学诱变在拟南芥Columbia(Col-0)野生型突变体库中筛选获得1株器官显著增大的突变体,命名为big size organ1(bso-1)。遗传分析表明,bso-1受单个隐性核基因控制。表型观察发现,突变体植株的幼苗、花、果荚及种子与野生型相比都表现出明显的增大。组织切片结果显示,突变体种子的增大主要由胚细胞个体增大导致胚体积增大而实现,因此突变体种子的重量也较野生型有明显增加。利用图位克隆方法将相关基因初步定位在4号染色体上SSLP标记T5L19与F28M11之间58kb区间内,生物信息学分析显示此区间内未见调控植物器官大小发育相关的已知基因的报道。该研究结果为进一步克隆bso-1突变体相关基因及探讨其在控制植物器官发育尤其是种子发育过程中的作用奠定了基础。  相似文献   

3.
拟南芥雄性不育突变体ms1142的遗传定位与功能分析   总被引:1,自引:0,他引:1  
常玉花  周鹊  杨仲南  张森 《植物学报》2010,45(4):404-410
经EMS诱变野生型拟南芥(Arabidopsis thaliana)群体筛选得到一株雄性不育突变体ms1142, 突变体的果荚短小, 不含种子。细胞学观察和扫描电镜结果表明, 突变体花药发育过程中, 花药中小孢子外壁异常、破裂, 最后没有花粉形成。遗传分析表明, 该突变体为隐性单核基因突变所致; 利用图位克隆的方法将MS1142基因定位于第1条染色体的BAC克隆F16P17上44 kb区间内, 目前尚未见该区间内有雄性不育基因的报道。以上结果结合生物信息学分析表明, MS1142是一个新的调控花药发育的关键基因。该工作为花药发育关键基因MS1142的克隆及功能分析奠定了基础。  相似文献   

4.
黄瓜白色果皮基因遗传规律及定位研究   总被引:3,自引:0,他引:3       下载免费PDF全文
以黄瓜嫩果深绿色果皮自交系1507(P1)和白色果皮自交系1508(P2)为亲本,构建6世代遗传群体(P1、P2、F1、F2、BC1P1、BC1P2),对黄瓜嫩果白色果皮基因(w)进行遗传规律分析和基因定位研究。结果表明,黄瓜白色果皮性状由隐性单基因(w)控制,深绿色对白色为显性。利用F2群体,结合分离群体分组分析法筛选得到了14个与w基因相关的SSR标记,构建了该基因的SSR连锁群,将其定位到黄瓜3号染色体上,两侧的标记为SSR23517和SSR23141,遗传距离分别为4.9cM和1.9cM。侧翼标记之间的物理距离为1 150kb,在该区域中共预测了500个候选基因。该研究对w基因的初步定位,为该基因精细定位及分子标记辅助选择育种奠定了良好的基础。  相似文献   

5.
一个新的水稻花器官数目突变体fon(t)的鉴定及分析   总被引:3,自引:0,他引:3  
水稻花器官数目突变体 fon(t)是在单倍体与二倍体的杂交 F2代发现的,经过多代种植,已稳定遗传。以 fon(t)为父本,以日本晴、93?11 和 R527 为母本配制杂交组合进行遗传分析,根据 F2代表型及χ2测验结果表明,该突变体的性状是由单隐性基因控制的。因为对花器官数目突变体曾有报道如 fon1、fon2 和 fon3,所以该突变体暂定名为 fon(t)。该突变体导致内外稃开裂,花器官外露;雄蕊和雌蕊的数目均增多,雄蕊一般 6~9 枚,雌蕊 1~2 枚;浆片同源转化为类内稃的结构;个别的花器官中还出现花丝上伸出类柱头的结构,浆片上部同源转化为类柱头或者类雄蕊的结构。研究结果表明,fon(t)基因可能影响水稻第三、四轮花器官的数目以及第二轮浆片的发育。  相似文献   

6.
植物胚后发育主要分为营养生长和生殖生长两个阶段,营养生长阶段又包含幼龄期和成熟期。叶片远轴面表皮毛的出现是拟南芥营养生长时相转变的形态学标志。研究利用拟南芥晚花突变体co-2和ft-1,研究了光周期途径晚花突变对营养生长时相转变(vegetative phase change,VPC)的影响。形态学指标测定和茎端分生组织解剖特征表明,光周期途径相关的两种晚花突变体比野生型Ler晚开花近一倍的时间,莲座叶的数目也比野生型多了一倍;野生型叶片远轴面表皮毛多出现在第4片真叶上,co-2和ft-1多出现在第5片真叶上,茎顶端分生组织高宽比变异趋势亦然,说明拟南芥晚花突变延迟了营养生长时相转变。  相似文献   

7.
在粳稻品种中花11为遗传背景的T-DNA突变体库中筛选获得一个遗传稳定的水稻(Oryzasativa)短根毛突变体Ossrh2(Oryza sativa short root hair2)。突变体在苗期表现为根毛数量减少,为野生型的61.4%,根毛长度明显变短,只有野生型的22.8%,同时根毛增粗,根毛形态也发生了变异,局部扭曲膨胀和分叉,除此之外突变体的地上部和根部生长情况与野生型相比没有显著差异。遗传分析表明,该突变性状受1对隐性单基因控制。通过对突变体T2和F2代的分子检测发现,该突变体表型非T-DNA插入引起。利用Ossrh2纯合体和籼稻品种Kasalath杂交构建的F2群体对OsSRH2进行基因定位,发现其与第10号染色体短臂上的SSR(simple sequence repeat)标记RM6370和RM474连锁,遗传距离分别为1.1cM和3.0cM。通过在两标记间发展3个新的STS(sequence-taggedsite)标记,将OsSRH2基因定位于标记S1227和S1531之间,物理距离约为304kb,为进一步克隆OsSRH2打下了基础。  相似文献   

8.
经EMS诱变野生型拟南芥(Arabidopsis thaliana)群体筛选得到一株雄性不育突变体ms1142,突变体的果荚短小,不含种子。细胞学观察和扫描电镜结果表明,突变体花药发育过程中,花药中小孢子外壁异常、破裂,最后没有花粉形成。遗传分析表明,该突变体为隐性单核基因突变所致;利用图位克隆的方法将MS1142基因定位于第1条染色体的BAC克隆F16P17上44kb区间内,目前尚未见该区间内有雄性不育基因的报道。以上结果结合生物信息学分析表明,MS1142是一个新的调控花药发育的关键基因。该工作为花药发育关键基因MS1142的克隆及功能分析奠定了基础。  相似文献   

9.
株高和分蘖是水稻重要的农艺性状,直接影响到产量。本研究从粳稻品种日本晴的组培苗后代中分离出一个可稳定遗传的半矮化多分蘖突变体t489,相比野生型,突变体株高明显下降、分蘖能力明显增强。遗传分析表明该性状受1对隐性基因控制。进一步基因鉴定发现,突变体中编码植物激素独脚金内酯(SLs,Strigolactones)合成途径中的类胡萝卜素裂解双加氧酶7即D17/HTD1基因编码区第916 bp位置的碱基由G突变为T,导致蛋白翻译提前终止,仅编码305个氨基酸组成的蛋白,但此突变并未造成该基因转录水平的改变。基于此突变位点开发的dCAPS-D17标记与突变体和日本晴构建的BC1F2群体中的矮化多分蘖植株共分离,这表明G916T突变与表型相关,t489可能是一个新的D17/HTD1等位突变体。  相似文献   

10.
谷子Si-SP1小穗突变基因的遗传分析和定位   总被引:1,自引:0,他引:1  
通过EMS(Ethyl methylsulfonate,甲基磺酸乙酯)诱变豫谷1号获得一个遗传稳定的谷子小穗突变体si-sp1,该突变体突出表现为穗部变小,同时伴随有株高降低、单码小花数减少和根系变小等表现型变异。与野生型豫谷1号相比,突变体的穗长和株高分别降低了37.8%和9.0%,单穗粒重和单码小花数分别降低了40.3%和31.7%,但千粒重增加了20.2%。遗传分析表明,si-sp1突变性状由1对隐性基因控制。以si-sp1为母本、辽谷1号为父本构建的F2定位群体的隐性单株,将突变基因定位在8号染色体上CAAS8003与SSR1038间约11.02 M的距离内,为下一步精细定位并分离该基因奠定了基础。  相似文献   

11.
Mo W  Ma W  Chen L  Zhu F  Li J 《Genetika》2005,41(5):702-704
Genetic regulation on body color of a mutant strain, JBM of Helicoverpa armigera with black body color of pupae and adults, was investigated. Reciprocal crosses between JBM and JBW (a wild strain with yellow brown body color of pupae and adults) were used to determine the inheritance characteristics of body color. Analysis of the ratio of phenotype segregation from the F1 generation, F2 generation, F3 generation, BC1 (F1 x JBM) generation and F1 generation of BC1 indicated that the black body color was controlled by one recessive gene.  相似文献   

12.
xs1 is a male-sterile rice mutant derived from a spontaneous mutation. The floret of the mutant, consisting of 6 stamens and 1 pistil, looks the same as that of the wild type except that the filaments are long and thin and the anthers are withered in white transparence. It is confirmed that xs1 is a no-pollen type of male-sterile mutant, for no pollen grains can be stained with I(2)-KI solution and the anther locules are always hollow. Anther transverse sections indicate that the mutant microspores are abnormally condensed and agglomerated to form a deeply stained cluster at the late microspore stage, which results in cessation of the vacuolation process of microspores, and, therefore, the mutant forms no functional pollens for reproduction. Genetic analysis of 4 F(2) populations and 3 BC(1)F(1) populations revealed that the mutation is controlled by a single recessive gene, termed VR1 (Vacuolation retardation 1). Screening of 432 F(2) mutant individuals derived from the cross of xs1 x G603 with simple sequence repeat markers revealed that VR1 is located between the molecular markers RM17411 and RM5030, at distances of 0.7 and 1.5 cM, respectively, on chromosome 4. VR1 is a new male fertility controlling gene located on chromosome 4 in rice.  相似文献   

13.
水稻籽粒大小和形状是影响稻米外观品质和产量的重要影响因素,对控制这些性状基因的定位和克隆有助于弄清籽粒大小基因的表达模式和相应的代谢系统,最终实现该性状的自由调控。运用SSR和CAPs标记对来源于蜀恢527//蜀恢527/小粒回交组合BC2F2群体800隐性长粒单株进行分析,定位了一个控制水稻籽粒长短的基因,Lk-4(t)。对F2和BC2F2群体籽粒大小形状和千粒重的遗传分析表明,回交能将大部分对目的基因效应具有干扰修饰作用的微效基因多态性除去,从而有利于对目的基因型的准确鉴定;在F2和BC2F2群体中只发现两类籽粒长短表现型,即短粒和长粒,并且二者分离比例符合3:1的典型一对等位基因分离比例。这说明群体中籽粒长短变异是受一对基因控制。通过对BC2F2群体中隐性(长粒)单株进行分子标记分析,将这个控制籽粒长短的主效基因定位在3个CAPs标记,P1-EcoRV,P2-SacⅠ和P3-MboⅠ附近。连锁分析表明,Lk-4(t)位于水稻第3染色体着丝粒附近,离标记P1-EcoRⅤ和P2-SacⅠ分别有0.90cM和0.50cM的距离。  相似文献   

14.
15.
Background and Aims The arrangement of flowers in inflorescence shoots of Arabidopsis thaliana represents a regular spiral Fibonacci phyllotaxis. However, in the cuc2 cuc3 double mutant, flower pedicels are fused to the inflorescence stem, and phyllotaxis is aberrant in the mature shoot regions. This study examined the causes of this altered development, and in particular whether the mutant phenotype is a consequence of defects at the shoot apex, or whether post-meristematic events are involved.Methods The distribution of flower pedicels and vascular traces was examined in cross-sections of mature shoots; sequential replicas were used to investigate the phyllotaxis and geometry of shoot apices, and growth of the young stem surface. The expression pattern of CUC3 was analysed by examining its promoter activity.Key Results Phyllotaxis irregularity in the cuc2 cuc3 double mutant arises during the post-meristematic phase of shoot development. In particular, growth and cell divisions in nodes of the elongating stem are not restricted in the mutant, resulting in pedicel–stem fusion. On the other hand, phyllotaxis in the mutant shoot apex is nearly as regular as that of the wild type. Vascular phyllotaxis, generated almost simultaneously with the phyllotaxis at the apex, is also much more regular than pedicel phyllotaxis. The most apparent phenotype of the mutant apices is a higher number of contact parastichies. This phenotype is associated with increased meristem size, decreased angular width of primordia and a shorter plastochron. In addition, the appearance of a sharp and deep crease, a characteristic shape of the adaxial primordium boundary, is slightly delayed and reduced in the mutant shoot apices.Conclusions The cuc2 cuc3 double mutant displays irregular phyllotaxis in the mature shoot but not in the shoot apex, thus showing a post-meristematic effect of the mutations on phyllotaxis. The main cause of this effect is the formation of pedicel–stem fusions, leading to an alteration of the axial positioning of flowers. Phyllotaxis based on the position of vascular flower traces suggests an additional mechanism of post-meristematic phyllotaxis alteration. Higher density of flower primordia may be involved in the post-meristematic effect on phyllotaxis, whereas delayed crease formation may be involved in the fusion phenotype. Promoter activity of CUC3 is consistent with its post-meristematic role in phyllotaxis.  相似文献   

16.
A novel zebra mutant, zebra-15, derived from the restorer line JinhuilO (Oryza sativa L. ssp. indica) treated by EMS, displayed a distinctive zebra leaf from seedling stage to jointing stage. Its chlorophyll content decreased (55.4%) and the ratio of Chla/Chlb increased (90.2%) significantly in the yellow part of the zebra-15, compared with the wild type. Net photosynthetic rate and fluorescence kinetic parameters showed that the decrease of chlorophyll content significantly influenced the photosynthetic efficiency of the mutant. Genetic analysis of F2 segregation populations derived from the cross of XinonglA and zebra-15 indicated that the zebra leaf trait is controlled by a single recessive nuclear gene. Ninety-eight out of four hundred and eighty pairs of SSR markers showed the diversity between the XinonglA and the zebra-15, their F2 population was then used for gene mapping. Zebra-15 (Z-15) gene was primarily restricted on the short arm of chromosome 5 by 150 F2 recessive individuals, 19.6 cM from marker RM3322 and 6.0 cM from marker RM6082. Thirty-six SSR markers were newly designed in the restricted location, and the Z-15 was finally located between markers nSSR516 and nSSR502 with the physical region 258 kb by using 1,054 F2 recessive individuals.  相似文献   

17.
Matsuda A  Takahashi M 《Genetics》2005,169(1):137-147
A genetic investigation of strain d4-95, which carries a recessive mutant allele (pwB(95)) of pawn-B, one of the controlling elements of voltage-dependent calcium channels in Paramecium tetraurelia, revealed a non-Mendelian feature. Progeny of the cross between d4-95 and wild type often expressed a clonally stable mutant phenotype, even when they had a wild-type gene. The mutant phenotype was also expressed after self-fertilization of theoretical wild-type homozygotes recovered from the cross. Our molecular analysis demonstrated that the copy number of the mutant pwB gene in the micro- and macronucleus of d4-95 was much greater than that of the wild type. Most of the amplified, extra pwB gene copies in d4-95 were heritable independently from the original pwB locus. Repeated backcrossing of d4-95 with the wild type to dilute extra pwB genes in the strain produced segregants with a completely normal Mendelian trait in testcrosses. These results strongly suggest that a non-Mendelian inheritance of d4-95 was induced by gene amplification in the micronucleus.  相似文献   

18.
罗伟雄  李明  陈军  罗琼 《植物学通报》2011,46(5):506-513
在水稻(Oryza sativa)品种台中65的组培后代中发现一个花器官发育异常突变体flower organ number6(fon6),其主要表型为:双子房,多柱头,7-8枚雄蕊。遗传分析表明,该突变表型由一对隐性基因控制。以该突变体与籼稻3037杂交的F2代分离群体作为定位群体,利用STS标记将与突变性状相关的基因定位于第6染色体短臂上STS标记PL4和PL5之间约480kb的范围内。该研究结果为进一步的基因克隆及功能研究奠定了基础。  相似文献   

19.
刘先方  马晓  侯成香  李冰  李木旺 《遗传》2013,35(3):373-378
家蚕长形卵(elp)、第二隐性赤蚁(ch-2)、暗化型(mln)均为第18染色体上的隐性突变, 在经典连锁图谱上的顺序和遗传距离已经排定。文章采用正常卵、正常黑蚁及正常白蛾品种P50与包含此3个隐性突变的三隐性测交系W18组配正反交群体, F1回交W18后获得回交群体(P50×W18)♀×W18♂ 和W18♀×(P50×W18)♂, 分别记作BC1F和BC1M, 利用已构建的家蚕SSR分子连锁图谱和根据家蚕基因组精细图设计的STS标记, 对这3个突变基因elp、ch-2、mln进行了分子定位研究, 并根据家蚕基因组精细图, 将第18连锁群的经典遗传图、分子连锁图和基因组物理图进行了对应。整合后的图谱遗传距离为94.2 cM, 突变基因和分子标记的排列顺序分别与形态标记连锁图和基因组精细图相一致, 研究结果对家蚕第18 染色体上其他突变的定位与克隆有重要的借鉴作用。  相似文献   

20.
N I Surkova  A M Malashenko 《Genetika》1977,13(9):1572-1578
The distribution of male mice of the BC1 generation was analysed with respect to the frequency of chromosome aberrations in bone marrow cells induced by thio-TEPA. The BC1 descendants were derived from the F1 of the cross (C3H X 101) X 101 and the F1 of the cross (CBA X B6) X B6. With respect to mutability the BC1 descendants of both types could be divided into two classes. The average frequencies of the cells with chromosome aberrations in the BC1 descendants of the 101 line were in the two classes 33.4 and 64.2 percent respectively. The corresponding values for the two classes of the BC1 descendants of the B6 line were 24 percent and 33.2 percent respectively. These data suggest that each of the lines studied has one recessive mutator gene. Preliminary symbols are proposed: mut-1 for the gene of the line 101/H and mut-2 for the gene of the line B6. The gene mut-2 is linked with the gene a (nonagouti) (Vth linkage group, chromosome 2).  相似文献   

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