Identification of resistant tomato genotypesusing the gamete technologies

Relevance. High temperatures are among the environmental factors that negatively affect the development of most crops including tomatoes. Thus, important condition for the realization of potential plant productivity is the heat resistance.Methods of the gamete selection in combination with classical...

Full description

Bibliographic Details
Main Authors: T. I. Saltanovish, A. N. Doncila
Format: Article
Language:English
Published: Federal State Budgetary Scientific Institution "Federal Scientific Vegetable Center" 2020-08-01
Series:Ovoŝi Rossii
Subjects:
Online Access:https://www.vegetables.su/jour/article/view/1104
id doaj-5e58e00d8e9f441e844ae3feb97be053
record_format Article
spelling doaj-5e58e00d8e9f441e844ae3feb97be0532021-07-28T16:24:55ZengFederal State Budgetary Scientific Institution "Federal Scientific Vegetable Center"Ovoŝi Rossii2072-91462618-71322020-08-0104505410.18619/2072-9146-2020-4-50-54736Identification of resistant tomato genotypesusing the gamete technologiesT. I. Saltanovish0A. N. Doncila1Institute of Genetics, Physiology and Plant ProtectionInstitute of Genetics, Physiology and Plant ProtectionRelevance. High temperatures are among the environmental factors that negatively affect the development of most crops including tomatoes. Thus, important condition for the realization of potential plant productivity is the heat resistance.Methods of the gamete selection in combination with classical approaches can be used to select resistant genotypes and create initial breeding material with resistance to the temperature factor. Materials and methods.The experiments were carried out with intraspecific hybrids F4 of tomato: Elvira x Milenium, Elvira x Tomis, Elvira x Prestij, Mihaela x Milenium, Mihaela x Tomis, Mihaela x Prestij, Jubiliar х Milenium, Jubiliar x Tomis, Jubiliar x Prestij, Milenium x Elvira, Milenium x  Mihaela. Plants were grown in the field. Flowers were collected, anthers were separated, pollen was isolated. Pollen was heated for 2 or 4 hours at 43°C in the experimental variants. In the control, pollen was maintained at a temperature of 26°C. Then pollen was sown and germinated on a cultural medium. The viability was determined by the length of pollen tubes.Results.A different reaction of pollen grains to temperature influence was established. The main sources of variability and their contribution to the variability of the pollen and seedling traits were determined. The temperature and genotype mainly determine the variability of the gametophyte and sporophyte. More than half of the hybrids combined high indicators of resistance of both pollen and seedlings, formed a larger number of flowers and better set fruits. Thus, tomato genotypes with good indicators of heat-resistance for applying in breeding have been identified based on a complex of methods for assessing the resistance of hybrids using gametophyte and sporophyte characteristics, as well as results of genetic-statistical analysis.https://www.vegetables.su/jour/article/view/1104tomatopollentemperaturevariability
collection DOAJ
language English
format Article
sources DOAJ
author T. I. Saltanovish
A. N. Doncila
spellingShingle T. I. Saltanovish
A. N. Doncila
Identification of resistant tomato genotypesusing the gamete technologies
Ovoŝi Rossii
tomato
pollen
temperature
variability
author_facet T. I. Saltanovish
A. N. Doncila
author_sort T. I. Saltanovish
title Identification of resistant tomato genotypesusing the gamete technologies
title_short Identification of resistant tomato genotypesusing the gamete technologies
title_full Identification of resistant tomato genotypesusing the gamete technologies
title_fullStr Identification of resistant tomato genotypesusing the gamete technologies
title_full_unstemmed Identification of resistant tomato genotypesusing the gamete technologies
title_sort identification of resistant tomato genotypesusing the gamete technologies
publisher Federal State Budgetary Scientific Institution "Federal Scientific Vegetable Center"
series Ovoŝi Rossii
issn 2072-9146
2618-7132
publishDate 2020-08-01
description Relevance. High temperatures are among the environmental factors that negatively affect the development of most crops including tomatoes. Thus, important condition for the realization of potential plant productivity is the heat resistance.Methods of the gamete selection in combination with classical approaches can be used to select resistant genotypes and create initial breeding material with resistance to the temperature factor. Materials and methods.The experiments were carried out with intraspecific hybrids F4 of tomato: Elvira x Milenium, Elvira x Tomis, Elvira x Prestij, Mihaela x Milenium, Mihaela x Tomis, Mihaela x Prestij, Jubiliar х Milenium, Jubiliar x Tomis, Jubiliar x Prestij, Milenium x Elvira, Milenium x  Mihaela. Plants were grown in the field. Flowers were collected, anthers were separated, pollen was isolated. Pollen was heated for 2 or 4 hours at 43°C in the experimental variants. In the control, pollen was maintained at a temperature of 26°C. Then pollen was sown and germinated on a cultural medium. The viability was determined by the length of pollen tubes.Results.A different reaction of pollen grains to temperature influence was established. The main sources of variability and their contribution to the variability of the pollen and seedling traits were determined. The temperature and genotype mainly determine the variability of the gametophyte and sporophyte. More than half of the hybrids combined high indicators of resistance of both pollen and seedlings, formed a larger number of flowers and better set fruits. Thus, tomato genotypes with good indicators of heat-resistance for applying in breeding have been identified based on a complex of methods for assessing the resistance of hybrids using gametophyte and sporophyte characteristics, as well as results of genetic-statistical analysis.
topic tomato
pollen
temperature
variability
url https://www.vegetables.su/jour/article/view/1104
work_keys_str_mv AT tisaltanovish identificationofresistanttomatogenotypesusingthegametetechnologies
AT andoncila identificationofresistanttomatogenotypesusingthegametetechnologies
_version_ 1721266723789733888