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Kosina, R.

Publications and source records attributed to Kosina, R..

2 recordsLinked to original sources

Oat species and interspecific amphiploids show predominance of diploid nuclei in the syncytial endosperm

Apart from apomictic types, the Polygonum-type eight-nuclear embryo sac is considered to be dominant in grasses. A triploid endosperm is formed as a result of double fertilisation. This study showed, for the first time, the dominance of diploid nuclei in the syncytial stage of the central cell of embryo sac in oat species and amphiploids. The dominance of diploid nuclei, which were the basis for the formation of polyploid nuclei, was weaker in amphiploids due to aneuploid events. The genomic in situ hybridisation method applied in the study did not distinguish the maternal and paternal haploid nuclei of embryo sac. However, this method demonstrated the lack of a set of genomes of one haploid nucleus. It can be assumed that the formation of diploid oat endosperm occurred after the fusion of one polar nucleus and the nucleus of a sperm cell, while the second polar nucleus formed 1n nuclei. The levels of syncytial ploidy were not influenced by both aneuploid events and correlated with pollen developmental anomalies. The differences in the analysed cytogenetic events distinguished amphiploids and their parental species in the ordination space.

plant biology↗

A contribution to the variability of Prunus spinosa L. in the vicinity of the mediaeval Castle Kolno, near Brzeg, S-W Poland

In the present work, the variability of stone characteristics of mediaeval fossil forms and modern ones from a small blackthorn population in the vicinity of Castle Kolno was analysed. A modern hybrid form obtained from crossing with cultivated plums and appropriate fossil morphotypes were discovered. The analysis of the correlation of features indicated developmental relationships between them. The pattern of variability of the examined stones in the ordination space confirmed the development of the Prunus spinosa-Prunus domestica complex as an element of the dynamic syngameon. The population also showed variations in leaf morphotypes, which may be used in taxonomic analysis.

plant biology↗