1. |
Cytological Relationships and Genome Structure of SomeFestucaSpecies |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 1-39
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摘要:
The object of the present study was to gain additional information about the genomic structure ofF. pratensis, F. arundinaceavar.glaucescens, F. arundinacea(2n= 42), F. Mairei and to confirm through chromosome pairing in these species and their interspecific hybrids the homologies suggested on karyotypic basis between their chromosome complements. Based on two sources of evidence (karyotype and meiosis of F1progeny) genomic formulae to different species are assigned.1.In the triploid hybrids involvingF. pratensis X F. arundinaceavar.glaucescens, chromosome pairing at M-I could be represented by a mean of 7.48I, 5.48II, 85III. In some cells as many as 19 chromosomes were associated.(a)This pairing is regarded as allosyndetic though some amount of intergenomic pairing was also observed.(b)Considering the karyotypic similarities between the satellited chromosomes ofF. pratensisand some of those ofglaucescens, and also the meiosis of their F1progeny, the genomic constitution ofpratensisandglaucescensmay be represented as AA and AA BB respectively.(c)In the tetraploidglaucescenspossibly a genetic mechanism exists which ordinarily suppresses intergenomic pairing (A-B).2.F. pratensiswas also crossed withF. arundinacea(2n=42). In the latter both the bred variety S.170 and the wild North African population Bn 274 were used.(a)In the crossF. arundinaceaBn 274 XF. pratensis, 23 of the 28 chromosomes paired and only 11.11% formed multivalents. The mean pairing at metaphase I was 4.88I, 10II, 59IIIand 33IV. In the other crossF. pratensisXF. arundinaceaS.170 hybrids had either 28 or 35 chromosomes. In the tetraploid hybrid 24 chromosomes paired and 18.55% formed multivalents. Thus in the latter cross there was a high percentage of multivalents.The pentaploid hybrid possibly had onepratensisgenome in excess.(b)In the tetraploid hybrid, pairing was mainly allosyndetic between sevenpratensisand sevenarundinaceachromosomes suggesting close homologies of their genomes. The remainder of the paired chromosomes were fromFestucawhich showed a variable amount of autosyndesis and partial homologies of the two genomes inarundinacea.This is further supported by the meiotic analysis of the pentaploid where there was an increase in the multivalent formation, especially trivalents.(c)The genomic constitution ofF. arundinacea(2n= 42) is suggested to be AA BB B'B'.(d)It is also suggested that there are residual homologies between the B and B' genomes ofarundinacea, the expression of which is suppressed at the normal meiosis of species. This is possibly accomplished either by strong preferential pairing, or is more likely to be due to some genetic control.3.In the F1progeny of the crossF. arundinaceavar.glaucescensandF. arundinacea(2n=42) about 28 of the 35 chromosomes associated with a mean of 7.0I, 10.9II, 1.3III, 5IVand 06Vper cell.(a)This pairing is interpreted as allosyndetic (A-A; B-B) though some amount of intergenomic pairing is also observed.(b)Structural hybridity between the A and B genomes of the two forms is suggested.4.A high amount of pairing among the chromosomes ofF. arundinaceavar.glaucescensXF. Maireihybrid (26.15 out of 28) suggests that the genomes in these two species are very closely related and possibly arose from the species which were genomically similar. The genomic formula forF. Maireiis suggested as A'A' BB.5.In the origin of theF. elatiorL. complexF. pratensisor a similar form is a likely donor of the A genome as the latter is common in all the forms includingF. arundinaceavar.glaucescensandF. arundinacea(2n= 42). In the origin of the hexaploid form probably three species were involved. The presentglaucescensdid not originate from the cross ofpratensisXarundinacea(2n= 42). BothF. arundinaceavar.glaucescensandF. arundinacea(2n=42) are suggested to be allo and segmental auto-allopolyploid forms respectively. In the latter the autoploid portion of B was segmental in character (B, B').6.A study of chromosome pairing in the octaploid hybrid between the decaploid and hexaploidarundinaceaforms revealed that 45 out of 56 chromosomes were associated as II to IV. The mean number of univalents per cell was 10.41 and only 10% of the chromosomes formed multivalents. Two alternative explanations are given to account for this:(a)The paired configurations were due to autosyndesis and allosyndesis and also that A and B genomes in the two forms have undergone differentiation.(b)Alternatively the decaploid had a genomic formula of AA A'A′ BB B′B′ B″B″ and pairing in the octaploid was exclusively due to allosyndesis.7.The origin of decaploidarundinaceafrom a tetraploid (glaucescens) and hexaploidarundinaceacross, followed by a fixation of gene mutations leading to a diploid-like meiotic behaviour of the decaploid, is discussed.
ISSN:0008-7114
DOI:10.1080/00087114.1967.10796244
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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2. |
Cytological Site of Glycogen inNostoc CommuneVaucher |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 41-49
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摘要:
It has been put into evidence by electron microscopy with the technique of Hanker, Seaman, Weissand others (1964) the presence of glycogen in the cells ofNostoc communeVaucher and it has been observed its disappearence with a pretreatment of the cells with diastase solutions at different concentration and for different lenghts of time.
ISSN:0008-7114
DOI:10.1080/00087114.1967.10796245
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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3. |
Identification of Chromosomes Carrying Genes for Resistance to Race 15, 122 and 34 of Stem Rust (Puccinia Graminis Tritici) In Wheat VarietyYaqui-53 |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 51-60
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摘要:
This study was undertaken in the variety Yaqui-53 to find the chromosomes carrying genes for resistance to three races of black rust. Critical monosomic analysis indicated (a) that resistance to race 15 is governed by a single factor located in chromosome 3B and a minor gene conferring additional resistance is present in chromosome 6D (b) Yaqui-53 carries two dominant genes for resistance to race 34 in chromosome 2A and 7B (c) Resistance to race 122 is conditioned by three genes located in chromosome 3A, 3B and 6D.
ISSN:0008-7114
DOI:10.1080/00087114.1967.10796246
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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4. |
A new Chromosome Number inNitella Tenuissima(Desv.) Kütz. Em. R.D.W. |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 61-63
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ISSN:0008-7114
DOI:10.1080/00087114.1967.10796247
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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5. |
Le Relazioni Tra il Cariotipo diAnuri Diplasioceli: I. il Corredo Cromosomico di AlcuniRanidae |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 65-85
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摘要:
Viene descritto il cariotipo di 6Ranidae: Rana esculenta, R. ridibunda, R. graeca, R. temporaria, R. arvaliseMantella aurantiaca.
ISSN:0008-7114
DOI:10.1080/00087114.1967.10796248
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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6. |
Heterogeneity of Nuclear Populations in Root Meristems |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 87-100
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摘要:
1.Several methods for relating the volumes of individual nuclei to their relative interphase stage have been applied to rapidly proliferating cells of the cortex in root tips of broad bean(Vicia faba).The methods are based upon analysis of the frequency with which particular volume classes appear within a population of nuclei. Presuming random sampling of a particular homogeneous population, it is possible and convenient to relate the volume of an individual nucleus to its age in relative interphase time by using the geometric mean volume and standard deviation of the sampled population to locate a straight line on probability paper. This graph can then be used to estimate the relative interphase time for any given nuclear volume in the population.2.In cases of heterogeneous populations of nuclei, as found for cells of bean root meristems, synthetically active cells can be distinguished from inactive or quiescent cells by means of isotopic labeling. The individual quiescent cells which occur sporadically throughout the cortex of bean meristems do not incorporate H3-thymidine even after prolonged labeling periods, suggesting a possible relationship with cells of the discrete quiescent center previously described for this and other angiosperm root apices.
ISSN:0008-7114
DOI:10.1080/00087114.1967.10796249
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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7. |
Ultraviolet Microscopy Distinguishes the Insoluble Polysaccharides from the Non-Polysaccharides in Periodic Acid-Schiff-Colored Biological Tissues |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 101-105
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摘要:
In bright field microscopy of plant material, the cytoplasm, nucleoli and insoluble polysaccharides are colored magenta by the periodic acid-Schiff reaction. Blue-violet light causes an obvious distinction between the polysaccharide and non-polysaccharide tissue components by producing a yellow fluorescence of the cytoplasm and nucleoli, while the polysaccharides appear red.
ISSN:0008-7114
DOI:10.1080/00087114.1967.10796250
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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8. |
Sulla Presenza di Cromosomi Soprannumerari in Una Popolazione diAsellus Coxalis |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 107-113
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摘要:
Ho potuto osservare la presenza di cromosomi soprannumerari in alcuni individui di una popolazione di un crostaceo isopodeAsellus (Proasellus) coxalisraccolta presso Cittaducale, il cui corredo cromosomico normale è 2n=12. I cromosomi soprannumerari sono presenti in numero variabile da 1 a 3 nei vari individui e nelle cellule dello stesso individuo. La presenza di due soprannumerari sembra essere la situazione più stabile.
ISSN:0008-7114
DOI:10.1080/00087114.1967.10796251
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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9. |
Un Particolare Sistema di Membrane e Lomasomi inAgaricus CampesterFr. Var.Bisporus |
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Caryologia,
Volume 20,
Issue 1,
1967,
Page 115-133
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ISSN:0008-7114
DOI:10.1080/00087114.1967.10796252
出版商:Taylor & Francis
年代:1967
数据来源: Taylor
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