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1.
对水稻BT型和WA型细胞质的雄性不育系,相应保持系和恢复系以及杂种的mtDNA用12个线粒体探针进行了RFLP分析,结果如下(1)BT型和WA型不育系的mtDNA在组织结构上存在差异;(2)不育系的mtDNA与其保持系间存在显著差异,推测mtDNA与水稻的cms有关;(3)atp9探针检测到WA型不育系与F1之间的多态性,Frag36探针检测到BT型不育系与F1之间的多态性,Frag9探针检测到WA型和BT型不育系与其F1之间的多态性,证明核恢复基因影响mtDNA的结构;(4)对mtDNA的结构变异与细胞质雄性不育的关系进行了分析与探讨.  相似文献   

2.
对水稻BT型和WA型细胞质的雄性不育系,相应保持系和恢复系以及杂种的mtD-NA用12个线粒探针进行了RFLP分析,结果如下:(1)BT型和WA型不育系的mtDNA在组织结构上存在差异;(2)不育系的mtDNA与其保持系间存在显著差异,推测mtDNA与水稻的cms有关;(3)atp9探针检测到WA型不育系与F1之间的多态性,Frag36探针检测到BT型不育系与F1之间的多态性,Frag9探针检测到WA型和BT型不育系与其F1之间的多态性,证明核恢复基因影响mtDNA的结构;(4)对mtDNA的结构变异与细胞质雄性不育的关系进行了分析与探讨。  相似文献   

3.
对新选育的甘蓝型油菜PL CMS不育系和Pol CMS及Ogu CMS不育系材料花器形态进行比较,并对3种不育系10份材料mtDNA进行RAPD分析.结果表明,新选育的PL CMS不育系与Pol CMS、Ogu CMS在花瓣长和宽、花冠直径、雄蕊大小等形态特征方面有极显著差异;mtDNA分析结果表明,新发现的细胞质雄性不育材料L04-02A、L04-05A、L04-01A为同一类型的细胞质雄性不育系,它们与Pol CMS及Ogu CMS不育材料有很大差异,由此推知PL CMS不育系是一种新型甘蓝型油菜不育系.  相似文献   

4.
红莲型细胞质雄性不育水稻线粒体DNA的AP-PCR分析   总被引:4,自引:0,他引:4  
为了研究红莲型细胞质雄性不育与线粒体基因组的关系。以水稻红莲型粤泰细胞质雄性不育系A和保持系B及杂种一代F1为材料。应用AP-PCR分析,用10个单引物对其线粒体DNA进行扩增。实验结果表明,不同的引物在3种材料间均有不同程度的差异。为红莲型细胞质雄性不育分子机理的研究提供了线索;此外,在引物6F1的扩增图谱中找到一条在YTA和F1中特异的带TAF6F2,Sounthern分析TAF6F2不育胞质的特异性,可能与红莲型水稻细胞质雄性 不育性状的形成有关。  相似文献   

5.
细胞质雄性不育是小麦杂种优势利用的重要途径,为了鉴定3例小麦雄性不育系的细胞质类型,对其线粒体DNA(mtDNA)进行扩增片段长度多态性(Amplified fragment length polymorphism,AFLP)分析。文中利用差速离心法和不连续蔗糖密度梯度超速离心法提取纯化小麦线粒体。结果表明:通过该提取方法获得的mtDNA,其质量和纯度能够满足PCR反应和遗传学分析。在64对选扩引物中,筛选到了4对特异性引物,其中引物E1/M7在ms(Kots)-90-110不育系扩增出3条特异条带;引物E4/M2在ms(Ven)-90-110不育系扩增出2条特异条带;引物E7/M6在ms(S)-90-110不育系中扩增出2条特异条带;引物E6/M4在ms(Kots)-90-110不育系中扩增出2条特异条带。这些特异引物可以用来作为鉴定具有粘果山羊草Aegilops kotschyi、偏凸山羊草Ae.ventricosa、斯卑尔脱小麦Triticum spelta 3类不育细胞质型小麦雄性不育系的细胞质分子标记,为研究小麦细胞质雄性不育机理奠定了分子基础。  相似文献   

6.
利用250条10-聚寡核苷酸随机引物对具粘果山羊草(Aegilops kotschyi)、易变山羊草(Ae.variabilis)、偏凸山羊草(Ae.ventricosa)和二角山羊草(Ae.bicornis)细胞质不育系及其保持系5-1的总DNA进行了RAPD多态性分析,其中31条引物对4种不育系及其保持系总DNA均无扩增,217条引物扩增条带完全相同。有2条随机引物在2种不育系之间有特异的扩增片段,其中引物S22在偏凸山羊草细胞质雄性不育系基因组DNA中扩增出分子量约为1600bp的特异带,引物S202在粘果山羊草细胞质雄性不育系基因组DNA中扩增出约1300bp特异带。线粒体基因组DNA的RAPD分析表明,4种不育系及其保持系mtDNA存在明显的差异。证明了S22—1600为偏凸山羊草细胞质不育系及其mtDNA基因组DNA的RAPD特异片段.S202—1300可能为粘果山羊草细胞质不育系及其ctDNA基因组DNA的RAPD特异片段。  相似文献   

7.
应用单向SDS—PAGE结合蛋白质铬银染色技术对水稻野败型细胞质雄性不育系珍汕97A和其保持系的叶绿体、线粒体和细胞质的蛋白质多肽进行了比较研究,发现两系之间存在明显的差异,生殖器官(穗子)上的差异比营养器官(叶片)上的差异更为显著。在成熟穗上,叶绿体可溶性蛋白不育系有25条带,保持系仅16条带,两者间有19个多肽不同;线粒体可溶性蛋白不育系有28条带,保持系比不育系少30.1和21.8KD两个多肽;细胞质可溶性蛋白丙酮沉淀物的水溶性蛋白组分不育系有24条带,保持系为29条带,两系间却有7条多肽存在差别;细胞质可溶性蛋白丙酮沉淀物的SDS-增溶性蛋白组分不育系有18条带,保持系只有11条带,两者间亦有7条多肽出现差异。由此可以看出,水稻野败型CMS表型的表达可能需要较多个基因的启动和关闭,既与叶绿体和线粒体有关,还涉及到核基因组的作用。  相似文献   

8.
BT型细胞质雄性不育水稻及其三系的线粒体DNA研究   总被引:2,自引:0,他引:2  
用RAPD技术对BT型水稻胞质雄性不育系秀A及其保持系秀B、恢复系湘晴以及杂种F1代的线粒体DNA进行了比较分析。结果表明不育系与其保持系间存在显著差异;不育系与其F1之间mtDNA也存在差异。在引物OPJ-08的扩增产物中,秀A扩增出一条分子量为800bp的多态性片段,在引物OPK-10的扩增产物中,杂种F1扩增出一条分子量为900bp的片段。把这两片段回收、克隆并制备探针,OPJ-08800的Southern杂交结果显示不育系与其F1杂交图谱存在多态性;OPK-10900的Suthern杂交结果显示不育系与其保持系同存在差异。推测这两片段与育性可能有一定的联系。  相似文献   

9.
本研究选用7种细胞质源不同的滇型不育系为母本,10个常用品种或品系为父本,得到70个杂交组合.通过分析70个杂交后代的花粉可育度和自然结实率可知,这7个细胞质源不同的滇型不育系之间的保持关系基本一致;5个滇一型恢复系对这7个不育系的恢复能力差异较大.鉴于7种不同细胞质源不育系的保持关系相同,使转育同核异质不育系成为可能,从而为实现滇型杂交水稻细胞质多样化提供了实验依据.  相似文献   

10.
玉米三系及其杂种根尖染色体C-带带型的遗传分析   总被引:3,自引:2,他引:1  
用玉米的两个雄性不育系,和它们共同的保持系、恢复系以及两个不育系和恢复系杂交的F_1进行了根尖染色体C-带带型的遗传分析。从明显的C-带带型看,不育系与保持系相同,恢复系与不育系和保持系显著不同。在F_1中,从父母本之间带型有明显差异的4对染色体看,每对同源染色体的一条,其带型和一个亲本相似,另一条和另一个亲本相似。以明显的C-带带型作为标记,在杂交后代中可以直接对不同亲本遗传下来的染色体进行追踪。 文中讨论了在明显C-带带型方面细胞质对细胞核有无影响,用品种间明显C-带带型的差异大小作为选配强杂种优势组合的依据,以及从细胞学上鉴定核代换程度的标准的可能性。  相似文献   

11.
A line (named Cl) of cytoplasmic sterility of sugar beet whose cytoplasm derived from Betacicla Turkey was obtained by interspecific hybrid. Its cytoplasm and a spontaneous male sterile cytoplasm from wild beet Beta maritima (named M) were compared with that of Owen's sterile line (S-cms) and a common maintainer of them named N was used as control. RFLP and RAPD methods were mainly used in our experiments. The restriction fragment patterns of mtDNAs were found to be likely but for a few of specific low-lighted electrophoresis bands in Cl. The results of Southern hybridization of six heterogeneous mitochondrial genes as probes to digests of mtDNAs by six restriction enzymes showed to be analogous between S and M lines. But the Cl mtDNA was sorted out by hybridization of atpA probe. Difference of low-molecular-weight mitochondrial DNAs was found among the three sterile lines. Three RNA molecules weighing about 4.2kb stably existed in Cl mitochondria. Our results of RAPD also supported that the Cl cytoplas  相似文献   

12.
Two distinct patterns of mitochondrial DNA (mtDNA) segregation were found in different mouse-rat hybrid cell lines. On mouse-rat hybrid cell line, H2, retained complete sets of chromosomes and mtDNAs of both mouse and rat. Even after cultivation for about one year after cloning, the H2 cell population still retained both parental mtDNAs. However, when mtDNAs of H2 subclones were examined, it was found that some individual cells in the H2 cell population contained only mouse or only rat mtDNA, although they still retained complete sets of both kinds of parental chromosomes. This type of mtDNA segregation, named stochastic segregation, is bidirectional and may be caused by the repetition of random sharing of mouse and rat mtDNAs with daughter cells. This segregation occurred spontaneously during long-term cultivation. The second type of mtDNA segregation, named chromosome-dependent segregation, was found in the other mouse-rat hybrid cell lines that segregated either mouse or rat chromosomes. In these hybrid cells, chromosomes and mtDNA of the same species co-segregated. This second type of segregation is unidirectional. The types of mtDNA segregation appear to depend on the stability of the parental chromosomes in the hybrid cells. When both mouse and rat chromosomes retain stably, mtDNA shows stochastic segregation. On the contrary, when either species of chromosomes is segregated from the cells, mtDNA shows chromosome-dependent segregation.  相似文献   

13.
以小麦T细胞质雄性不育系75-3369A和相应保系75-3369B为材料,用限制性内切酶BamHⅠ、EcoRⅠ、hINDⅢ完全酶解,以Oenothera mtDNA qtp6,小麦线粒体基因nad3/rps12、cos1为探针进行Southern杂交,杂交结果表明,75-3369A和 75-3369B在这3个基因上或附近有显著的组织结果差异,推测这些差异可能影响了线粒体基因组的正常功能,最终引起了75-3369A雄性不育。  相似文献   

14.
应用AFLP分析技术,比较了红莲型水稻雄性不育系和保持系线粒体DNA,找到一不育系特异条带TA1。以该条带DNA为探针与不育系、保持系以及F1杂种线粒体总RNA杂交,结果显示该片段黄化苗期三者均转录一个RNA分子,但转录产物分子量各不相同,说明三者该片段阅读框架不同。经测序,该片段长202bp,序列内含密码子ATG、ATT、AGA、AGG以及正向重复序列5’TGTAC3’、5’ATTATTTT3’和倒重复序列5’GGGAAACA3’。上述特点表明该片段可能是某一蛋白编码序列,并可能与红莲型水稻雄性不育性状形成有关。  相似文献   

15.
16.
Rand DM 《Genetica》2011,139(5):685-697
Biological variation exists across a nested set of hierarchical levels from nucleotides within genes to populations within species to lineages within the tree of life. How selection acts across this hierarchy is a long-standing question in evolutionary biology. Recent studies have suggested that genome size is influenced largely by the balance of selection, mutation and drift in lineages with different population sizes. Here we use population cage and maternal transmission experiments to identify the relative strength of selection at an individual and cytoplasmic level. No significant trends were observed in the frequency of large (L) and small (S) mtDNAs across 14 generations in population cages. In all replicate cages, new length variants were observed in heteroplasmic states indicating that spontaneous length mutations occurred in these experimental populations. Heteroplasmic flies carrying L genomes were more frequent than those carrying S genomes suggesting an asymmetric mutation dynamic from larger to smaller mtDNAs. Mother-offspring transmission of heteroplasmy showed that the L mtDNA increased in frequency within flies both between and within generations despite sampling drift of the same intensity as occurred in population cages. These results suggest that selection for mtDNA size is stronger at the cytoplasmic than at the organismal level. The fixation of novel mtDNAs within and between species requires a transient intracellular heteroplasmic stage. The balance of population genetic forces at the cytoplasmic and individual levels governs the units of selection on mtDNA, and has implications for evolutionary inference as well as for the effects of mtDNA mutations on fitness, disease and aging.  相似文献   

17.
Rand DM  Fry A  Sheldahl L 《Genetics》2006,172(1):329-341
Under the mitochondrial theory of aging, physiological decline with age results from the accumulated cellular damage produced by reactive oxygen species generated during electron transport in the mitochondrion. A large body of literature has documented age-specific declines in mitochondrial function that are consistent with this theory, but relatively few studies have been able to distinguish cause from consequence in the association between mitochondrial function and aging. Since mitochondrial function is jointly encoded by mitochondrial (mtDNA) and nuclear genes, the mitochondrial genetics of aging should be controlled by variation in (1) mtDNA, (2) nuclear genes, or (3) nuclear-mtDNA interactions. The goal of this study was to assess the relative contributions of these factors in causing variation in Drosophila longevity. We compared strains of flies carrying mtDNAs with varying levels of divergence: two strains from Zimbabwe (<20 bp substitutions between mtDNAs), strains from Crete and the United States (approximately 20-40 bp substitutions between mtDNAs), and introgression strains of Drosophila melanogaster carrying mtDNA from Drosophila simulans in a D. melanogaster Oregon-R chromosomal background (>500 silent and 80 amino acid substitutions between these mtDNAs). Longevity was studied in reciprocal cross genotypes between pairs of these strains to test for cytoplasmic (mtDNA) factors affecting aging. The intrapopulation crosses between Zimbabwe strains show no difference in longevity between mtDNAs; the interpopulation crosses between Crete and the United States show subtle but significant differences in longevity; and the interspecific introgression lines showed very significant differences between mtDNAs. However, the genotypes carrying the D. simulans mtDNA were not consistently short-lived, as might be predicted from the disruption of nuclear-mitochondrial coadaptation. Rather, the interspecific mtDNA strains showed a wide range of variation that flanked the longevities seen between intraspecific mtDNAs, resulting in very significant nuclear x mtDNA epistatic interaction effects. These results suggest that even "defective" mtDNA haplotypes could extend longevity in different nuclear allelic backgrounds, which could account for the variable effects attributable to mtDNA haplogroups in human aging.  相似文献   

18.
Two different molecular types of rat mitochondrial DNAs   总被引:4,自引:0,他引:4  
Experiments with restriction endonucleases showed that Sprague-Dawley strain rats have two types of mitochondrial DNAs (mtDNAs), named α- and β-types, which differ in primary structure. Individual rats have only one type. Individuals of other strains, such as Wistar, Fischer, and Donryu, also all have one of these types of mtDNA. Thus irrespective of their strain, all rats can be classified into one of two groups according to the type of their mtDNA.  相似文献   

19.
Incomplete Maternal Transmission of Mitochondrial DNA in Drosophila   总被引:22,自引:7,他引:15       下载免费PDF全文
The possibility of incomplete maternal transmission of mitochondrial DNA (mtDNA) in Drosophila, previously suggested by the presence of heteroplasmy, was examined by intra- and interspecific backcrosses of Drosophila simulans and its closest relative, Drosophila mauritiana. mtDNAs of offspring in these crosses were characterized by Southern hybridization with two alpha-32P-labeled probes that are specific to paternal mtDNAs. This method could detect as little as 0.03% paternal mtDNA, if present, in a sample. Among 331 lines that had been backcrossed for ten generations, four lines from the interspecific cross D. simulans (female) x D. mauritiana (male) showed clear evidence for paternal leakage of mtDNA. In three of these the maternal type was completely replaced while the fourth was heteroplasmic. Since in this experiment the total number of fertilization is known to be 331 x 10 = 3310, the proportion of paternal mtDNA per fertilization was estimated as about 0.1%. The mechanisms and evolutionary significance for paternal leakage are discussed in light of this finding.  相似文献   

20.
We have investigated the organization of sequences in ten rho- petite mtDNAs by restriction enzyme analysis and electron microscopy. From the comparison of the physical maps of the petite mtDNAs with the physical map of the mtDNA of the parental rho+ strain we conclude that there are at least three different classes of petite mtDNAs: I. Head-to-tail repeats of an (almost) continuous segment of the rho+ mtDNA. II. Head-to-tail repeats of an (almost) continuous segment of the rho+ mtDNA with a terminal inverted duplication. III. Mixed repeats of an (almost) continuous rho+ mtDNA segment. In out petite mtDNAs of the second type, the inverted duplications do not cover the entire conserved rho+ mtDNA segment. We have found that the petite mtDNAs of the third type contain a local inverted duplication at the site where repeating units can insert in two orientations. At least in one case this local inverted duplication must have arisen by mutation. The rearrangements that we have found in the petite mtDNAs do not cluster at specific sites on the rho+ mtDNA map. Large rearrangements or deletions within the conserved rho+ mtDNA segment seem to contribute to the suppressiveness of a petite strain. There is also a positive correlation between the retention of certain segments of the rho+ mtDNA and the suppressiveness of a petite strain. We found no correlation between the suppressiveness of a petite strain and its genetic complexity. The relevance of these findings for the mechanism of petite induction and the usefulness of petite strains for the physical mapping of mitochondrial genetic markers and for DNA sequence analysis are discussed.  相似文献   

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