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1.
Genetika ; 49(5): 595-601, 2013 May.
Artigo em Russo | MEDLINE | ID: mdl-24159800

RESUMO

The sy19 mutation, which impairs the homology of meiotic chromosome synapsis in rye, were mapped using a specially created F2 population by means of isozyme Acph 1 locus and microsatellite (SSR) markers. The sy19gene was localized in the chromosome 7R in the pericentromeric region of long armbased on the linked inheritance with the Acph 1 locus. The locus was linked with five rye SSR markers, with the Xrems 1234 locus being located closest to the sy19 gene (6.4 cM). The genetic map of the analyzed chromosome 7R region includes ten markers and the sy19 locus. A possible function of the Sy1 and Sy19 genes based on the data on comparative genomics is discussed.


Assuntos
Pareamento Cromossômico/genética , Cromossomos de Plantas/genética , Genes de Plantas , Meiose/genética , Repetições de Microssatélites/genética , Mutação , Secale/genética , Mapeamento Cromossômico/métodos , Loci Gênicos/fisiologia , Isoenzimas/genética
2.
Genetika ; 49(4): 472-8, 2013 Apr.
Artigo em Russo | MEDLINE | ID: mdl-23866624

RESUMO

The recessive spontaneous sy18 mutation with nonhomologous synapsis was mapped in rye. The sy18 gene was located in the centromeric region of chromosome 2R in relation to three rye SSR (simple sequence repeats) loci, i.e., Xrems1130, Xrems1203, and Xscm43, and one wheat SSR locus Xgwm132. The desynaptic sy18 gene is located in the interval between Xrems1130 and Xrems1203 markers at a distance of 0.5 cM and 3.1 cM, respectively. The possible evolutionary relationships of the mapped gene with homologous loci of the related species are discussed.


Assuntos
Cromossomos de Plantas , Genes de Plantas , Meiose/genética , Repetições de Microssatélites , Secale/genética , Centrômero , Mapeamento Cromossômico/métodos , Pareamento Cromossômico , Mutação
3.
Genetika ; 46(6): 774-81, 2010 Jun.
Artigo em Russo | MEDLINE | ID: mdl-20734769

RESUMO

A study was made of the expression and inheritance of the sy11 mutation, which alters homologous chromosome synapsis in meiotic prophase I of rye. The abnormal phenotype proved to be determined by a recessive allele of a single sy11 gene. Univalents and multivalents were observed in homozygotes for the mutant allele. Analysis of the synaptonemal complex revealed a combination of homologous and nonhomologous synapsis in the mutant. The nonhomologous synapsis frequency significantly decreased in the course of meiotic prophase I in the mutant. The number of chiasmata per bivalent in metaphase I was 1.1 x 0.01 versus 1.8 x 0.01 in wild-type plants, and the number of univalents was 2.7 x 0.06 versus 0.5 x 0.05 in wild-type plants. As a result, a broad range of abnormalities was observed at subsequent stages of meiosis and led to the formation of defective microspores. Mutant plants were semisterile.


Assuntos
Pareamento Cromossômico/genética , Cromossomos de Plantas/genética , Meiose/genética , Mutação , Infertilidade das Plantas/genética , Secale/genética
4.
Genetika ; 46(10): 1371-5, 2010 Oct.
Artigo em Russo | MEDLINE | ID: mdl-21254559

RESUMO

The Peterhof Collection of spontaneous meiotic mutants of rye was used as a model to study the genetic control of meiosis key events in an organism with a large genome. A combination of methods, which included fluorescence in situ DNA-DNA hybridization, sequencing of recombinogenic proteins, and immunocytochemical analysis of meiosis proteins, clearly showed that mutation sy1 affects recombination events, asynapsis in mutant sy9 is connected with defects of the assembly of synaptonemal complex axial cores, and that synapsis defects in mutant sy10 are coupled with the presence of protein Zyp1 in the core region. The assembly of proteins Asyl and Zyp1 on the axes of meiotic chromosomes was shown to occur separately, which is a specific feature of rye, as compared to arabidopsis.


Assuntos
Cromossomos de Plantas/genética , Mutação , Recombinação Genética , Secale/genética , Complexo Sinaptonêmico/genética , Arabidopsis/genética , Arabidopsis/metabolismo , Cromossomos de Plantas/metabolismo , Secale/metabolismo , Complexo Sinaptonêmico/metabolismo
5.
Genetika ; 45(11): 1565-74, 2009 Nov.
Artigo em Russo | MEDLINE | ID: mdl-20058803

RESUMO

AExpression and inheritance of the sy18 mutation causing impairment of synapsis homology were studied. It was established that the abnormal phenotype is determined by a recessive allele of the sy18 gene. Univalents and multivalents are observed in homozygotes for this mutant allele. According to the electron microscopic analysis of synaptonemal complexes in mutants, homologous synapsis occurs together with nonhomologous synapsis. The sy18 gene was found to have no allelism with asynaptic genes sy1 and sy9 and with genes sy10 and sy19 causing, like sy18, disturbances in synapsis homology.


Assuntos
Alelos , Genes de Plantas/genética , Genes Recessivos/fisiologia , Mutação , Secale/genética , Complexo Sinaptonêmico/genética , Secale/metabolismo , Complexo Sinaptonêmico/metabolismo
6.
Genetika ; 45(12): 1634-40, 2009 Dec.
Artigo em Russo | MEDLINE | ID: mdl-20198974

RESUMO

Studies of phenotypical expression of synaptic mutations in combination with the localization of corresponding genes on a genetic map permit individual stages of the meiotic process to be differentiated. Two rye asynaptic genes, sy1 and sy9, were mapped with the use of microsatellite markers (SSR) in the pericentromeric regions of the long chromosome arms 7R and 2R, respectively. The sy9 gene cosegregated with two SSR markers Xscm43 and Xgwm132. The asynaptic gene sy1 was mapped within the interval between the isozyme locus Aat2 and two cosegregating loci Xrems1188 and Xrems1135 that are located at a distance of 0.4 cM proximally and 0.1 cM distally with respect to the gene lous. Possible evolutionary relationships of the mapped genes with homeological loci of the Triticeae species and more distant cereal species, such as maize and rice, are discussed.


Assuntos
Cromossomos de Plantas/genética , Evolução Molecular , Genes de Plantas/genética , Loci Gênicos/genética , Repetições de Microssatélites/genética , Secale/genética , Mapeamento Cromossômico , Grão Comestível/genética , Oryza/genética , Especificidade da Espécie , Zea mays/genética
7.
Ann Bot ; 101(6): 873-80, 2008 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-17766846

RESUMO

BACKGROUND AND AIMS: Much of our understanding of the genetic control of meiosis has come from recent studies of model organisms, which have given us valuable insights into processes such as recombination and the synapsis of chromosomes. The challenge now is to determine to what extent these models are representative of other groups of organisms, and to what extent generalisations can be made as to how meiosis works. Through a comparative proteomic approach with Arabidopsis thaliana, this study describes the spatial and temporal expression of key structural and recombinogenic proteins of cereal rye (Secale cereale). METHODS: Antibodies to two synaptonemal complex-associated proteins (Asy1 and Zyp1) and two recombination-related proteins (Spo11 and Rad51) of A. thaliana were bound to meiocytes throughout meiotic prophase of rye, and visualized using conventional fluorescence microscopy and confocal laser scanning microscopy. Western analysis was performed on proteins extracted from pooled prophase I anthers, as a prelude to more advanced proteomic investigations. KEY RESULTS: The four antibodies of A. thaliana reliably detected their epitopes in rye. The expression profile of Rad51 is consistent with its role in recombination. Asy1 protein is shown for the first time to cap the ends of bivalents. Western analysis reveals structural variants of the transverse filament protein Zyp1. CONCLUSIONS: Asy1 cores are assembled by elongation of early foci. The persistence of foci of Spo11 to late prophase does not fit the current model of molecular recombination. The putative structural variants of Zyp1 may indicate modification of the protein as bivalents are assembled.


Assuntos
Meiose , Biossíntese de Proteínas , Proteômica , Secale/citologia , Western Blotting , Eletroforese em Gel Bidimensional , Secale/genética
8.
Genetika ; 43(10): 1424-33, 2007 Oct.
Artigo em Russo | MEDLINE | ID: mdl-18069347

RESUMO

The cytological phenotype was studied in a desynaptic form isolated from a population of rye cultivar Vyatka. The primary defect of desynaptic plants was identified as nonhomologous (heterologous) chromosome synapsis, which was observed by electron microscopy of synaptonemal complexes (SCs) in meiotic prophase I. Synapsis defects involved switches of synapsing axial elements to nonhomologous partners, asynapsis in the switching region, and foldbacks formed by the SC lateral elements. Defective bivalent formation was observed at later stages: the univalent number varied and multivalent chromosome associations were observed in single cells in metaphase I. The desynaptic phenotype was controlled by two recessive genes, sy8a and sy8b, which acted and were inherited independently. In a hybrid combination with line Ku-2/63, the desynaptic phenotype was suppressed by the dominant allele of a third gene for inhibitor I; the segregation in hybrid families corresponded to 57:7.


Assuntos
Aberrações Cromossômicas , Pareamento Cromossômico/genética , Cromossomos de Plantas/genética , Secale/genética , Secale/ultraestrutura , Alelos , Meiose/genética , Mutação , Fenótipo
9.
Genetics ; 174(3): 1247-58, 2006 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-16980383

RESUMO

Assembly of two orthologous proteins associated with meiotic chromosome axes in Arabidopsis thaliana (Asy1 and Zyp1) was studied immunologically at meiotic prophase of meiosis of wild-type rye (Secale cereale) and its synaptic mutant sy10, using antibodies derived from A. thaliana. The temporal and spatial expression of the two proteins were similar in wild-type rye, but with one notable difference. Unlike A. thaliana, in which foci of the transverse filament protein Zyp1 appear to linearize commensurately with synapsis, linear tracts of Asy1 and Zyp1 protein form independently at leptotene and early zygotene of rye and coalign into triple structures resembling synaptonemal complexes (SCs) only at later stages of synapsis. The sy10 mutant used in this study also forms spatially separate linear tracts of Asy1 and Zyp1 proteins at leptotene and early zygotene, and these coalign but do not form regular triple structures at midprophase. Electron microscopy of spread axial elements reveals extensive asynapsis with some exchanges of pairing partners. Indiscriminate SCs support nonhomologous chiasma formation at metaphase I, as revealed by multi-color fluorescence in situ hybridization enabling reliable identification of all the chromosomes of the complement. Scrutiny of chiasmate associations of chromosomes at this stage revealed some specificity in the associations of homologous and nonhomologous chromosomes. Inferences about the nature of synapsis in this mutant were drawn from such observations.


Assuntos
Pareamento Cromossômico/genética , Meiose/genética , Mutação , Proteínas de Plantas/genética , Secale/genética , Cromossomos de Plantas/genética , Cromossomos de Plantas/ultraestrutura , Imuno-Histoquímica , Hibridização in Situ Fluorescente
10.
Genetika ; 41(10): 1310-21, 2005 Oct.
Artigo em Russo | MEDLINE | ID: mdl-16316002

RESUMO

Genetic collection of meiotic mutants of winter rye Secale cereale L. (2n = 14) was created. Mutations were detected in inbred F2 generations after self-fertilization of the F1 hybrids, obtained by individual crossing of rye plants (cultivar Vyatka) or weedy rye with plants from autofertile lines. The mutations cause partial or complete plant sterility and are maintained in collection in a heterozygous state. Genetic analysis accompanied by cytogenetic study of meiosis has revealed six mutation types. (1) Nonallelic asynaptic mutations sy1 and sy9 caused the formation of only axial chromosome elements in prophase and anaphase. The synaptonemal complexes (SCs) were absent, the formation of the chromosome "bouquet" was impaired, and all chromosomes were univalent in meiotic metaphase I in 96% (sy1) and 67% (sy2) of cells. (2) Weak asynaptic mutation sy3, which hindered complete termination of synapsis in prophase II. Subterminal asynaptic segments were always observed in the SC, and at least one pair of univalents was present in metaphase I, but the number of cells with univalents did not exceed 2%. (3) Mutations sy2, sy6, sy7, sy8, sy10, and sy19, which caused partially nonhomologous synapsis: change in pairing partners and fold-back chromosome synapsis in prophase I. In metaphase I, the number of univalents varied and multivalents were observed. (4) Mutation mei6, which causes the formation of ultrastructural protrusions on the lateral SC elements, gaps and branching of these elements. (5) Allelic mutations mei8 and mei10, which caused irregular chromatin condensation along chromosomes in prophase I, sticking and fragmentation of chromosomes in metaphase I. (6) Allelic mutations mei5 and mei10, which caused chromosome hypercondensation, defects of the division spindle formation, and random arrest of cells at different meiotic stages. However, these mutations did not affect the formation of microspore envelopes even around the cells, whose development was blocked at prophase I. Analysis of cytological pictures of meiosis in double rye mutants reveled epistatic interaction in the mutation series sy9 > sy1 > sy3 > sy19, which reflects the order of switching these genes in the course of meiosis. The expression of genes sy2 and sy19 was shown to be controlled by modifier genes. Most meiotic mutations found in rye have analogs in other plant species.


Assuntos
Montagem e Desmontagem da Cromatina/genética , Cromossomos de Plantas/genética , Cruzamentos Genéticos , Mutação , Secale/genética , Complexo Sinaptonêmico/genética
11.
Cytogenet Genome Res ; 109(1-3): 215-20, 2005.
Artigo em Inglês | MEDLINE | ID: mdl-15753580

RESUMO

Spontaneous meiotic mutations of winter rye Secale cereale L. (2n = 14) were revealed in inbred F2 progenies, which were obtained by self-pollination of F1 hybrids resulting from crosses of individual plants of cultivar Vyatka or weedy rye with plants of self-fertile inbred lines. The mutations cause partial or complete sterility, and are maintained in heterozygote condition. Six types of mutations were distinguished as the result of cytological analysis of meiosis and genetic analysis. (1) Plants with nonallelic asynaptic mutations sy1 and sy9 lacked bivalents in 96.8 and 67.0% metaphase I cells, respectively, formed only axial elements but not the mature synaptonemal complex (SC), and had defects in telomere clustering in early prophase I. (2) Weak asynaptic mutant sy3 showed incomplete synapsis at the start of SC degradation at diplotene and lower chiasma number; yet only 2% meiocytes lacked bivalents in MI. (3) Mutations sy2, sy6, sy7, sy8, sy10, and sy19 caused nonhomologous synapsis; i.e., a varying number of univalents and occasional multivalents were observed in MI, which was preceded by switches of pairing partners and fold-back synapsis at mid-prophase I. (4) Mutation mei6 led to the formation of protrusions and minor branched structures of the SC lateral elements. (5) Allelic mutations mei8 and mei8-10 caused irregular chromatin condensation along the chromosome length in prophase I, which was accompanied by chromosome sticking and fragmentation in MI. (6) Allelic mutations mei5 and mei10 determined chromosome supercondensation, caused the disturbance of meiotic spindle assembly, arrested meiosis at various stages but did not affect formation of the pollen wall, thus arrested meiocytes got covered with the pollen wall. Analysis of double mutants revealed recessive epistatic interactions for some mutations; the epistatic group was sy9 > sy1 > sy3 > sy19. This reflects the sequence of meiotic events controlled by the corresponding genes. The expression of sy2 and sy19 proved to be modified by additional genes. Most meiotic mutations found in rye have analogs in other plants.


Assuntos
Meiose/genética , Secale/genética , Pareamento Cromossômico/genética , Cromossomos de Plantas/genética , Mutação , Proteínas de Plantas/genética
12.
Cytogenet Genome Res ; 109(1-3): 221-7, 2005.
Artigo em Inglês | MEDLINE | ID: mdl-15753581

RESUMO

We describe how we are furthering our understanding of meiosis in rye (Secale cereale L.) using a combination of cytogenetic and molecular biological approaches. Fluorescent in situ hybridisation, electron microscopy of synaptonemal complexes, sequencing of meiosis-specific genes, and the immunolocalisation of recombinogenic proteins are being combined to build up phenotypic "identikits" of wild type, asynaptic mutants sy1 and sy9, and desynaptic mutant sy10. From this information, we review the status of our current understanding of the genetic control of meiosis in rye, and consider strategies for determining more precisely the interrelationships between meiosis-specific genes and their products.


Assuntos
Meiose/genética , Proteínas de Plantas/genética , Secale/genética , DNA de Plantas/genética , Corantes Fluorescentes , Genes de Plantas , Triagem de Portadores Genéticos , Microscopia Confocal , Secale/citologia , Secale/ultraestrutura , Triticum/genética
13.
Genetika ; 39(6): 775-82, 2003 Jun.
Artigo em Russo | MEDLINE | ID: mdl-12884516

RESUMO

It is shown that mutations mei8 (irregular condensation and fragmentation of meiotic chromosomes), sy1 (asynapsis), and sy10 (heterologous synapsis) of rye Secale cereal are nonallelic. In double mutants mei8 sy1 and mei8 sy10 both mutations are expressed simultaneously and independently of each other. A study of joint inheritance of mutations sy1 and sy10 revealed their interaction by means of recessive epistasis: the double mutants has the sy10 phenotype. This means that the sy10 gene controls an earlier stage of synapsis in meiotic prophase than the sy1 gene. Mutation mei8 is inherited independently of sy1 but it is linked to sy10 (recombination frequency 26.8 +/- 3.58%).


Assuntos
Meiose , Mutação , Secale/genética , Pareamento Cromossômico , Epistasia Genética , Recombinação Genética
14.
Genetika ; 39(6): 783-90, 2003 Jun.
Artigo em Russo | MEDLINE | ID: mdl-12884517

RESUMO

Genetic analysis has demonstrated that meiotic mutations mei8 (irregular condensation and fragmentation of meiotic chromosomes) and mei10 (chromosome overcompaction) are nonallelic. Mutation mei10 exhibits digenic inheritance (with a segregation ratio of 13:3) in the combinations of crosses studied. It is assumed that the phenotypic expression of mutation mei10 is suppressed by the effect of recessive gene lch1 or lch2 (long chromosomes), both of which have been revealed in one of the parental lines (Mc10). These genes determine weak condensation of meiotic chromosomes. In double mutants mei8 mei10, the mutations are expressed independently of each other. Gene mei10 is linked with gene mei8 (r = 36.8 +/- 5.38%); genes lch1 and lch2 are not linked either with them or with each other. Taking into account the data on the linkage between genes mei10 and sy10 and between mei8 and sy10, the order of genes in the linkage group is shown to the following: mei8-sy10-mei10.


Assuntos
Cromossomos de Plantas , Meiose , Mutação , Secale/genética , Cruzamentos Genéticos , Genes de Plantas , Ligação Genética , Fenótipo , Recombinação Genética
15.
Genetika ; 39(3): 362-9, 2003 Mar.
Artigo em Russo | MEDLINE | ID: mdl-12722636

RESUMO

Inheritance of two spontaneous meiosis-specific mutations with similar cytologic phenotype was studied. Both mutations were independently obtained from two rye populations (Vyatka variety and weedy rye). Both mutations are recessive, allelic, and monogenically inherited; the corresponding gene is designated mei8. The mutant alleles of the gene cause abnormal meiotic chromosome structure expressed as irregular compaction along the chromosome length, chromatin stickiness at all stages of meiosis, and chromosome fragmentation in anaphase I.


Assuntos
Cromossomos de Plantas/fisiologia , Meiose/fisiologia , Mutação , Secale/genética , Anáfase/genética , Cromossomos de Plantas/genética , Cromossomos de Plantas/ultraestrutura , Fertilidade/genética , Genes de Plantas , Genética Populacional , Homozigoto , Meiose/genética
16.
Genetika ; 38(2): 216-26, 2002 Feb.
Artigo em Russo | MEDLINE | ID: mdl-11898613

RESUMO

The cytological expression of spontaneous mutation sy2 isolated from a population of weedy rye was examined. It was demonstrated that the primary defect of meiosis in the mutant plants is nonhomologous synapsis, which occurs simultaneously with the homologous one. An electron microscope study of the synaptonemal complex (SC) at prophase I showed synaptic abnormalities that manifested as "switches" of synapting axial elements to the nonhomologous partner and the formation of foldbacks of lateral SC elements. The sy2 mutants are characterized by one to two such events per meiosis. Nonhomologous synapsis leads to the appearance of univalents at metaphase I (on average 4.16 +/- 0.022 per meiocyte) and multivalents (on average 0.12 +/- 0.007 per meiocyte). The presence of multivalents in 12.0% of meiocytes at metaphase I may result from recombination in ectopic regions of homology. It is suggested that the sy2 mutation impairs a component of the system that limits synapsis in meiocytes to only homologous chromosome pairs.


Assuntos
Meiose , Mutação , Secale/genética , Pareamento Cromossômico , Diploide , Secale/ultraestrutura
17.
J Cell Sci ; 114(Pt 10): 1875-82, 2001 May.
Artigo em Inglês | MEDLINE | ID: mdl-11329374

RESUMO

The nuclear dispositions of subtelomeric and pericentromeric domains in pollen mother cells (PMCs) were tracked during meiosis in wildtype and two asynaptic mutants of rye (Secale cereale L.) by means of fluorescence in situ hybridization (FISH). Homozygotes for sy1 and sy9 non-allelic mutations form axial elements during leptotene of male meiosis, but fail to form synaptonemal complexes. Consequently, recombination is severely impaired, and high univalency is observed at metaphase I. Simultaneous FISH with pSc200 subtelomeric tandem repeat and CCS1 centromeric sequence revealed that at pre-meiotic interphase the two domains are in a bipolar Rabl orientation in both the PMCs and tapetal cells. At the onset of meiotic prophase, the subtelomeric regions in PMCs of wildtype and sy9 cluster into a typical bouquet conformation. The timing of this event in rye is comparable with that in wheat, and is earlier than that observed in other organisms, such as maize, yeast and mammals. This arrangement is retained until later in leptotene and zygotene when the pericentromeric domains disperse and the subtelomeric clusters fragment. The mutant phenotype of sy9 manifests itself during leptotene to zygotene, when the pericentromeric regions become distinctly more distended than in wildtype, and largely fail to pair during zygotene. This indicates that difference in the nature or timing of chromosome condensation in this region is the cause or consequence of asynapsis. By contrast, sy1 fails to form comparable aggregates of subtelomeric regions at leptotene in only half of the nuclei studied. Instead, two to five aggregates are formed that fail to disperse at later stages of meiotic prophase. In addition, the pericentromeric regions disperse prematurely at leptotene and do not associate in pairs at any subsequent stage. It is supposed that the sy1 mutation could disrupt the nuclear disposition of centromeres and telomeres at the end of pre-meiotic interphase, which could cause, or contribute to, its asynaptic phenotype.


Assuntos
Núcleo Celular/genética , Centrômero/genética , Secale/genética , Complexo Sinaptonêmico/genética , Telômero/genética , Núcleo Celular/metabolismo , Centrômero/metabolismo , DNA de Plantas/análise , Epistasia Genética , Hibridização in Situ Fluorescente , Interfase/genética , Metáfase/fisiologia , Microscopia Confocal , Mutação/fisiologia , Fenótipo , Pólen/genética , Complexo Sinaptonêmico/metabolismo , Telômero/metabolismo
18.
Genetika ; 37(1): 81-90, 2001 Jan.
Artigo em Russo | MEDLINE | ID: mdl-11234429

RESUMO

Analysis of manifestation and inheritance of a new mutation inducing irregular synapsis in rye showed that abnormal phenotype is determined by a recessive allele of the sy19 gene. In the homozygotes for this mutation, even at the light microscopic level, abnormal formation of bivalents is already observed at pachytene-diakinesis. At metaphase I, the univalent frequency varies from 0 to 14; in a few cells, multivalent associations of chromosomes, which are not clearly oriented in the spindle, are detected. Electron microscopy of synaptonemal complexes revealed both homologous and heterologous synapsis in homozygotes for sy19, namely partial loss of the ability to stringent homology search. Analysis of joint inheritance of sy19 and asynaptic sy1 mutations showed that they are nonallelic, inherited independently, and interact by recessive epistasis. The phenotype of double sy1sy19 mutants indicates that the sy19 gene conditioning heterologous synapsis operates at meiosis later than the synaptic gene sy1. The epistatic group of mutations, sy9 > sy1 > sy19 and sy3, was determined.


Assuntos
Cromossomos , Genes de Plantas , Secale/genética , Mutação , Fenótipo
19.
Theor Appl Genet ; 84(7-8): 979-85, 1992 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-24201503

RESUMO

A mutant form of weedy rye characterized by male and female sterility and having a hereditary block in the chromosome synapsis has been found and described. Genetic analysis has shown the synapsis block to be determined by the recessive allele of a gene designated as sy-1. Electron microscopy of surface-spread microsporocyte nuclei revealed the complete absence of the synaptonemal complex over the whole meiotic prophase I, although the axial cores were perfectly formed by each chromosome. Only univalents were observed at metaphase I, their average number ranging from 13.1 to 14.0 per cell. A precocious distribution of univalents at the poles is observed at metaphase I. All of the later stages of meiosis were irregular and resulted in the formation of abnormal microspores. Thus, the mutant proves to be asynaptic because of the blocked initiation of synapses at prophase I.

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