Abstract

Rice is one of the most widespread and cultivated crops in the world. It is necessary to increase the yield of crops or expand their sown areas to resolve a food security problem in Russia. Current impossibility of expanding rice cultivated areas in the Rostov region and the need to maintain and increase its yield require developing new disease-resistant varieties. Rice genotypes with multiple blast resistance genes avoid significant yield losses. Since pyramiding and selection of resistance genes in the same genotype through traditional selection methods are complicated, it is urgent to search for homozygous samples using marker-assisted selection methods. This study was aimed to identify Pi-1, Pi-2, Pi-33 and Pi-ta blast resistance genes in breeding rice samples by MAS-methods. The study used CTAB-method for DNA-isolation, PCR, electrophoresis on agarose and polyacrylamide gels. The resulting gels were stained in a solution of ethidium bromide and photographed in ultraviolet light. To control the presence of blast resistance genes the following parental cultivars were used: C104LAC for the Pi-1 and Pi-33 genes, C101-A-51 for the Pi-2 gene, IR36 for the Pi-ta gene; Novator and Boyarin as controls of non-functional alleles of all studied genes. The 446 selection samples of the seventh generation were analyzed. As a result of the research, 127 rice samples that combine 2 or 3 different blast resistance genes were identified. The Pi-2 and Pi-33 genes combination was identified in 43 samples (1128/1, 1149/3, 1171/2, 1177/3, 1177/4, 1186/4, et al.). Samples with three resistance genes are the most interesting for selection and further breeding. For developing new blast-resistant varieties, we recommend using rice samples with the following combinations of resistance genes Pi-1+Pi-2+Pi-33 (1197/1, 1226/2, 1271/1, 1272/2), Pi-1+Pi-2+Pi-ta (1197/4, 1304/2, 1304/3, 1482/3, 1482/4, 1486/1) and Pi-2+Pi-33+Pi-ta (1064/1, 1064/3, 1281/2, 1281/3, 1281/4, 1282/2, 1283/1, 1283/2, 1284/3).

Highlights

  • necessary to increase the yield of crops

  • urgent to search for homozygous samples using marker-assisted selection methods

  • The resulting gels were stained in a solution of ethidium bromide

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Summary

Скрининг генов устойчивости к пирикуляриозу у селекционных образцов риса

Имеющие несколько генов устойчивости к пирикуляриозу, избегают значительных потерь урожая. Цель исследования — идентификация генов устойчивости к пирикуляриозу Pi‐1, Pi‐2, Pi‐33 и Pi-ta у селекционных образцов риса методами MAS. Выявлено 127 образцов риса, сочетающих 2 или 3 различных гена устойчивости к пирикуляриозу. Рекомендуем использовать образцы риса с сочетаниями генов устойчивости Pi‐1+Pi‐2+Pi‐33 (1197/1, 1226/2, 1271/1, 1272/2), Pi‐1+Pi‐2+Pi-ta (1197/4, 1304/2, 1304/3, 1482/3, 1482/4, 1486/1) и Pi‐2+Pi‐33+Pi-ta (1064/1, 1064/3, 1281/2, 1281/3, 1281/4, 1282/2, 1283/1, 1283/2, 1284/3) для создания новых устойчивых к пирикуляриозу сортов. — концепция и дизайн исследования, анализ полученных данных, написание текста; Жогалева О.С., Дубина А.Ю., Купрейшвили Н.Т. Для цитирования: Вожжова Н.Н., Жогалева О.С., Купрейшвили Н.Т., Дубина А.Ю., Костылев П.И. Скрининг генов устойчивости к пирикуляриозу у селекционных образцов риса // Вестник Российского университета дружбы народов.

Материалы и методы исследования
Результаты исследования и обсуждения
Number of samples carrying the alleles of the gene
Наименование образцов
Name of samples
Библиографический список

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