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The results and prospects of maize breeding in the Agricultural Research Center “Donskoy”

https://doi.org/10.31367/2079-8725-2020-72-6-32-38

Abstract

The current paper has presented the results of breeding work on maize in the Agricultural Research Center “Donskoy”. The three-line and double interlinear middle early and middle ripening maize hybrids of various economic use ‘Zernogradsky 242 MV’, ‘Zernogradsky 282 MV’, ‘Zernogradsky 288 MV’, ‘Zernogradsky 299 MV’, ‘Zernogradsky 354 MV’, ‘Zernogradsky MV’, ‘Stepnyak MV’ were developed and included into the State List of Breeding Achievements from 2006 to 2020. The Competitive Variety Testing has identified a new high-heterosis simple hybrid ‘Zernogradsky 352 MB’ and the new early ripening hybrids ‘Krucha M × KB 215’, ‘Krucha M × SP 56/57’ with low harvesting grain moisture. The main method used to develop maize hybrids was an interline hybridization using heterosis in the first generation (F1 ). There have been determined the priority directions of further breeding, namely early ripeness, grain humidity-transfer intensity during ripening, drought resistance, high starch content in grain. There has been developed new initial material for each direction of breeding. There have been selected the introduced testers (‘Alpha M’, ‘Almaz M’, ‘Aurora S’, ‘Milena M’, ‘Istok S’) to develop early-ripening hybrids. There have been identified the early and middle-early ripening self-pollinated lines ‘C 207’, ‘RD 12’, ‘TVA 308’, ‘PLS 61’, ‘KB 215’, etc., with a high grain humidity-transfer intensity during ripening (0.95–1.30% per day), low harvest moisture content of grain (10.8–13.8%). There have been developed the new self-pollinated waxy maize lines (24/29/5, 25/64/10, 26/8, 26/4, 26/80, 24/28) with 68.1–69.8% of amylopectin starch in grain. There have been identified the new self-pollinated maize lines resistant to water stress (DS 498/217-3, DS 257/85-5, DS 498/203, KB 262, etc.) promising for breeding drought-resistant maize hybrids.

About the Authors

G. Ya. Krivosheev
Agricultural Research Center “Donskoy”
Russian Federation

Candidate of Agricultural Sciences, leading researcher of the laboratory for maize breeding and seed production

347740, Rostov region, Zernograd, Nauchny Gorodok, 3



N. A. Shevchenko
Agricultural Research Center “Donskoy”
Russian Federation

research technician of the laboratory for maize breeding and seed production

347740, Rostov region, Zernograd, Nauchny Gorodok, 3



A. S. Ignatiev
Agricultural Research Center “Donskoy”
Russian Federation

Candidate of Agricultural Sciences, leading researcher of the laboratory for maize breeding and seed production

347740, Rostov region, Zernograd, Nauchny Gorodok, 3



References

1. Alabushev A. V., Metlina G. V., Vasil'chenko S. A. Vliyanie udobrenij na produktivnost' sorgo zernovogo v yuzhnoj zone Rostovskoj oblasti [The effect of fertilizers on the grain sorghum productivity in the southern zone of the Rostov region] // Zernovoe hozyajstvo Rossii. 2011. № 6(24). S. 49–52.

2. Gorpinichenko S. I., Kovtunov V. V. Perspektivy proizvodstva bioetanola iz sorgo [Prospects for bioethanol production from sorghum] // Zernovoe hozyajstvo Rossii. 2009. № 4(10). S. 26–31.

3. Gricenko A. A. Agrometeorologicheskie usloviya v Zernogradskom rajone Rostovskoj oblasti (1930–2002 gody) [Agrometeorological conditions in the Zernograd district of the Rostov region (1930–2002)]. Rostov n/D., ZAO “Kniga”, 2005. 78 s.

4. Dospekhov B. A. Metodika polevogo opyta [Methodology of a field trial]. M., 1985. 416 s.

5. Krivosheev G. Ya., Ignat'ev A. S., Shevchenko N. A. Osnovnye napravleniya selekcii kukuruzy vo VNIIZK im. I. G. Kalinenko [The main directions of maize breeding in the ARIGC named after I. G. Kalinenko] // Zernovoe hozyajstvo Rossii. 2016. № 2(50). S. 30–34.

6. Sotchenko V. S. Kukuruza. Sovremennaya tekhnologiya vozdelyvaniya [Maize. Modern cultivation technology]. M.: RosAgroHim, 2009. 127 s.

7. Hatefov E. B., Kegermazov A. M. Selekciya geneticheskih istochnikov priznaka zasuhoustojchivosti dlya sozdaniya novyh gibridov kukuruzy [Selection of genetic sources of the drought tolerance trait to develop the new maize hybrids] // Agrarnyj vestnik Urala. 2011. № 8(87). S. 8–11.

8. Shmaraev G. E. Genofond i selekciya kukuruzy [Gene pool and maize breeding]. Spb.: VIR, 1999. T. 4. 390 s.

9. Yugenhejmer R. U. Kukuruza: uluchshenie sortov, proizvodstvo semyan, ispol'zovanie [Maize: improvement of the varieties, seed production, use]. M.: Kolos, 1978. 519 s.


Review

For citations:


Krivosheev G.Ya., Shevchenko N.A., Ignatiev A.S. The results and prospects of maize breeding in the Agricultural Research Center “Donskoy”. Grain Economy of Russia. 2020;(6):32-38. (In Russ.) https://doi.org/10.31367/2079-8725-2020-72-6-32-38

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ISSN 2079-8725 (Print)
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