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1.
Zusammenfassung Die Zellkerne vonPseudolysimachion spicatum, Veronica cymbalaria undV. gentianoides enthalten zweierlei Eiweißkörper von je nach dem Entwicklungszustand unterschiedlicher Konsistenz. Bis zum Höhepunkt ihrer Entwicklung liegen sie als anscheinend amorphe flüssige oder gelartige Gebilde vor. Später tritt — mit gewebespezifischen Unterschieden — Verfestigung und Kristallisation ein, und zwar bei beiden nicht gleichzeitig und z. T. auch nur beim großen. Beiderlei Körper unterscheiden sich deutlich in physikalischer und chemischer Hinsicht, außerdem in ihrer Entwicklungsgeschichte und Strukturveränderung. Sie fehlen in den Schließzellen, im Antherentapetum, in den Pollenmutterzellen, Pollenkörnern, im Embryosack, im Endosperm und im Embryo.Die Zellkerne in der Blattepidermis vonPenstemon barbatus enthalten ebenfalls zweierlei Eiweißkörper. Davon liegt einer als kugeliges Gebilde, der andere als Kristallstapel vor.
Summary In the nuclei ofPseudolysimachion spicatum, Veronica cymbalaria, V. gentianoides there occur two different kinds of protein bodies. They clearly differ from one another in physical and chemical regard as well as in their ontogeny. At first they are amorphous, liquid or geluous. As a rule a consolidation or crystallization with differences according to the tissue takes place after the climax of the development, and that not at the same time within both bodies. In the stomata cells, pollen mother cells, in the embryo sac, in the endosperm, in the endothelium and in the embryo both bodies do not occur.The nuclei in the epidermis of the leaves ofPenstemon barbatus also contain two different kinds of protein bodies, one of them appearing as a round body, and the other one as a pile of crystal plates.
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2.
Genome size was measured in 75 samples of the wild pea species Pisum abyssinicum, P. elatius, P. fulvum and P. humile by ethidium-bromide (EB) flow cytometry (internal standard: Triticum monococcum) and Feulgen densitometry (internal standard: Pisum sativum Kleine Rheinländerin). Total variation of EB-DNA between samples covered 97.7% to 114.9% of the P. sativum value, and Feulgen DNA values were strongly correlated with EB-DNA values (r=0.9317, P < 0.001). Only P. fulvum was homogeneous in genome size (108.9% of P. sativum). Wide variation was observed between samples in P. abyssinicum (100.9–109.7%), P. elatius (97.7–114.9%) and P. humile (98.3–111.1% of P. sativum). In view of the world-wide genome size constancy in P. sativum, the present data are interpreted to show that the pea taxa with variable genome size are genetically inhomogeneous and that the current classification is not sufficient to describe the biological species groups adequately.  相似文献   
3.
Eleven species of the Scilla siberica alliance, a well defined monophyletic group within the "genus by tradition" Scilla , have been investigated embryologically with special reference to embryo sac and endosperm development. Data are now available for 15 out of 20 known species. In most species embryo sacs develop according to the bisporic Allium-type, only in Scilla rosenii according to the tetrasporic Drusa-type. Endosperm development is either nuclear or helobial (in 10 and 4 species respectively, unknown in 1). The taxonomic significance of these traits is evaluated after character polarisation by out-group comparison. Among the out-group taxa, S. persica may be considered as the sister group of the S. siberica alliance because only these two groups have an Allium-type embryo sac, a synapomorphy derived from the plesiomorphic Polygonurn-type. The Drusa-type in S. rosenii is an autapomorphy for that species and evolved from an Allium-type embryo sac. S. rosenii is distinct from its sister species S. koenigii , previously thought to be conspecific. Nuclear endosperm is considered to be plesiomorphic rather than apomorphic within the S. siberica alliance, with respect to its occurrence in the presumed sister group and other outgroup taxa (S. hohenackeri group, S. bifolia alliance), but some doubt remains because of a helobial endosperm occurring in the out-group taxon S. messeniaca . The distribution of other synapomorphies within the S. siberica alliance suggests that a helobial endosperm evolved as a synapomorphy for S. bithynica, S. melaina and S. mischtschenkoana , but as a parallel trait in S. leepii . Species status for S. leepii is supported.  相似文献   
4.
Dasypyrum villosum (2n=14), a Mediterranean grass species of the Triticeae, exhibits intraindividual fruit colour polymorphism from pale yellow to almost black. Several studies have reported differences between the plants emerging from pale and dark fruits. They include histone content in root meristem nuclei, cell cycle duration, heterochromatin banding pattern, frequency of a tandemly repeated sequence, and nuclear genome size. In the present study, we examine whether the reports of genome size being up to 1.24-fold larger in seedlings from the lighter caryopses are reproducible. In all, 29 accessions from various countries, totaling 186 plants, were investigated for genome size using flow cytometry with propidium iodide as the DNA stain. Individuals differed 1.12-fold at most and accessions 1.07-fold. The mean genome size (1C-value) was 5.07 pg or 4954 Mbp. Within-accession comparisons of seedlings derived from light and dark caryopses were insignificant (P>0.100). Thus, we found no evidence for a modificatory genome size plasticity in D. villosum. In the light of our data, the previously reported genome size variation, up to 1.66-fold within populations and 1.67-fold between populations, appears unrealistically high. Suboptimal technical procedures for quantitative Feulgen staining are probably responsible for these earlier observations.  相似文献   
5.
Genome size in Arachis duranensis: a critical study.   总被引:2,自引:0,他引:2  
E M Temsch  J Greilhuber 《Génome》2001,44(5):826-830
Arachis duranensis is a diploid wild relative of the tetraploid cultivated peanut Arachis hypogaea. The literature indicates two 2C genomic DNA mean values (genome size) for A. duranensis, 4.92 and 5.64 pg, and intraspecific variation of up to 11% negatively correlated with altitude above sea level of the collection sites has been reported. Our recent investigations of Arachis species have shown that unrecognized technical problems with peanut material may have influenced previous genome-size data and rendered them open to critical comments. In the present study, 20 accessions of A. duranensis were investigated by means of DNA flow cytometry (propidium iodide staining) and several of these also by Feulgen DNA image analysis. Pisum sativum was used as the internal standard (2C = 8.84 pg). 2C values in A. duranensis were about half those described previously and varied between 2.49 and 2.87 pg (flow cytometry). This variation was statistically significant and reproducible. There was a negative correlation of genome size with latitude and altitude above sea level of the collection sites. Such a correlation had been already found in one of the previous studies. However, the incongruences between the absolute DNA content values obtained in the present investigation and those in the literature point to the importance of carrying out methodological studies on best practice in DNA-content determinations in plants.  相似文献   
6.
7.
This investigation presents a look back to ancient times of karyology with modern optical instruments. `Cryptopolyploidy', i.e. an intrinsically polyploid but numerically non-polyploid structure of chromosome complements, today is an obsolete concept of chromosome architecture and evolution, but was actively discussed up to the mid-seventies of the past century. We focus here at a hypothesis of cryptooctoploidy in Vinca difformis (2n = 46), which was based on a measured four-fold chromosome volume compared with V. minor (2n = 46), the proposed diploid. We used DNA flow cytometry and Feulgen densitometry to see, if the postulate of cryptooctoploidy in V. difformis in the retrospect could be justified. It was found not defendable, because V. difformis differed only about 1.55-fold in C-value from V. minor, which is far from a regular multiple and much less than the 4-fold. C-values are given also for V. major, V. herbacea and V. rosea.  相似文献   
8.
The genus Dahlia (Asteraceae–Coreopsideae) is monophyletic according to a recent DNA phylogeny (ETS and ITS of rDNA). Traditionally, the genus has been divided into sections, but these have been shown not to be monophyletic. We have studied variation in genome size (DNA C-values) in a sample of species to investigate the possible effects of secondary metabolites on flow cytometry and Feulgen densitometry, and to see whether genome size variation has any systematic or phylogenetic significance. Using a range of cultivars, secondary compounds from corollas were shown to have only minor effects on the Feulgen method; the floral pigments were found to be relatively inert and seemed to have been extracted on fixation with acetic methanol. Freshly expanded corollas showed apparent apoptotic DNA decay in epidermal cells, so need to be used with caution. Flow cytometric measurements with propidium iodide in some cultivars resulted in a very similar average genome size (2C = 8.62 pg) as compared with Feulgen densitometry (2C = 8.84 pg). Leaf cytosol of D. variabilis has a demonstrable inhibitory effect on propidium iodide fluorescence, which may explain some of the intraspecific variation of C-values observed. DNA 2C-values ranged from 3.30 pg in D. dissecta (2n = 34) to 9.62 pg in a D. variabilis cultivar (2n = 64). The D. variabilis cultivars had broadly similar C-values showing a 1.16-fold range between cultivars. Some of this variation probably results from technical variables and the extent of genuine variation is uncertain. The highest 2Cx-value occurred in one D. coccinea accession (2.47 pg, 2n = 32; x = 8). D. coccinea with 2n = 64 showed slightly reduced Cx-values compared to D. coccinea with 2n = 32. Artificially produced interspecific hybrids had C-values that corresponded closely with expectations from the measured values obtained from their parents.  相似文献   
9.
10.
Estimation of nuclear DNA content in plants using flow cytometry   总被引:5,自引:0,他引:5  
Flow cytometry (FCM) using DNA-selective fluorochromes is now the prevailing method for the measurement of nuclear DNA content in plants. Ease of sample preparation and high sample throughput make it generally better suited than other methods such as Feulgen densitometry to estimate genome size, level of generative polyploidy, nuclear replication state and endopolyploidy (polysomaty). Here we present four protocols for sample preparation (suspensions of intact cell nuclei) and describe the analysis of nuclear DNA amounts using FCM. We consider the chemicals and equipment necessary, the measurement process, data analysis, and describe the most frequent problems encountered with plant material such as the interference of secondary metabolites. The purpose and requirement of internal and external standardization are discussed. The importance of using a correct terminology for DNA amounts and genome size is underlined, and its basic principles are explained.  相似文献   
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