A molecular genetic research of the Triticum sinskajae A. Filat. et Kurk. by RAPD analysis and by comparing the nucleotide sequences of the variable intergenic region of the petN-trnC-GCA chloroplast genome and intron of the histone H3.2 gene

Azat R. Kuluev , Rustam T. Matnijazov , Bulat R. Kuluev , Alexey V. Chemeris

Ecological Genetics ›› 2018, Vol. 16 ›› Issue (1) : 53 -59.

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Ecological Genetics ›› 2018, Vol. 16 ›› Issue (1) : 53 -59. DOI: 10.17816/ecogen16153-59
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A molecular genetic research of the Triticum sinskajae A. Filat. et Kurk. by RAPD analysis and by comparing the nucleotide sequences of the variable intergenic region of the petN-trnC-GCA chloroplast genome and intron of the histone H3.2 gene

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Abstract

Background. Triticum sinskajae A. Filat. et Kurk. was discovered in the early 70th in the last century at the regular reproduction in the Central Asian and Dagestan VIR-stations of T. monococcum samples.

Materials and methods. The objects of the study were 4 species of diploid wheat — Triticum urartu Thum. ex Gandil. (lines k-62477, k-62465), Triticum monococcum L. (lines k-20970, k-39471), Triticum boeoticum Boiss. (lines k-59161, k-28132, k-40118) and Triticum sinskajae A. Filat. et Kurk. (line k-48993).

Results. We found differences between T. sinskajaeand T. monococcum in the variable region of the histone gene H3.2, and the RAPD analysis showed the presence of unique polymorphic loci in T. sinskajae.

Conclusion. In gene ral, T. boeoticum, T. monococcum, and T. sinskajae are most likely to be closely related species of diploid wheat, whereas T. urartu is quite significantly different from them.

Keywords

Triticum sinskajae / Triticum sinskajae / diploid wheat / einkorn, RAPD-analysis / histone H3.2 / phylogeny

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Azat R. Kuluev, Rustam T. Matnijazov, Bulat R. Kuluev, Alexey V. Chemeris. A molecular genetic research of the Triticum sinskajae A. Filat. et Kurk. by RAPD analysis and by comparing the nucleotide sequences of the variable intergenic region of the petN-trnC-GCA chloroplast genome and intron of the histone H3.2 gene. Ecological Genetics, 2018, 16(1): 53-59 DOI:10.17816/ecogen16153-59

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Kuluev A.R., Matnijazov R.T., Kuluev B.R., Chemeris A.V.

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