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Research of compatibility scion/stock combinations of the apricot with use of biochemical parameters

https://doi.org/10.25556/VSTISP.2018.3.14172

Abstract

Results of long-term of field and biochemical researches on studying of compatibility of the apricot with clonal rootstocks are presented. It is shown, that in conditions of the Moscow area development of plants and their state depend on the degree of compatibility scion/stock combinations. Reduction of trees longevity of combinations of varieties ‘Alesha’ and ‘Samarskiy’on SVG-11-19 is marked. Incompatibility of apricot with the stock SVG-11-19 had a slowed down nature and was manifested in the form of fractures at the place of inoculation in the garden at the age of 1-6 years. In laboratory conditions it is established high antioxidant activity of leaves and bark at well compatible combinations (varieties ‘Alesha’ and ‘Samarskiy’ on stock OD-2-3). It is marked reduction of this parameter on 20 % at scion/stock combinations with insufficient compatibility (varieties ‘Alesha’ and ‘Samarskiy’ on stock SVG-11-19). Differences on antioxidant activity of leaves during active growth of plants have been expressed more strongly, than at research of bark in the beginning of vegetation. The effect of rootstock on the qualitative composition of secondary metabolites of leaves was established by the method of high-performance liquid chromatography, as evidenced by differences in the chromatographic profiles of alcohol extracts of the leaves of the studied varieties. With the help of electronic microscopy anomalies in regeneration and differentiations of fabrics in zone of accretion at incompatible combinations of apricot were revealed.

About the Authors

G. Yu. Upadysheva
FSBSI ARHIBAN
Russian Federation
115598, Moscow, Zagorievskaja str., 4


S. M. Motyleva
FSBSI ARHIBAN
Russian Federation
115598, Moscow, Zagorievskaja str., 4


M. E. Mertvishcheva
FSBSI ARHIBAN
Russian Federation
115598, Moscow, Zagorievskaja str., 4


References

1. Eremin G. V., Provorchenko A. V., Gavrish V. F., Podorozhnyy V. N., Eremin V. G. Stone-fruit crops. Cultivation on clonal rootstocks and own roots, Rostov-na-Donu: «Feniks», 2000, 256 p. (in Russian).

2. Upadysheva G. Yu. Introduction of clonal rootstocks is the most important reserve for increasing the efficiency of growing stone fruits in the Non-Black Earth Region, Plodovodstvo i yagodovodstvo Rossii, 2012, Vol. XXXII, pp. 343-353. (in Russian).

3. Revyakina N. T., Upadysheva G. Yu., Mikheyev A. M. Clone rootstocks for intensive cherry orchards of the NonBlack Earth Region of Russia, Moscow: VSTISP, 2000, 21 p. (in Russian).

4. Upadysheva G. Yu. On the influence of clonal rootstocks on the productivity and longevity of plum tree domestic, Orel: VNIISPK, 2017, Vol. 4, No. 1-2, pp. 145-148. (in Russian).

5. Krska B., Gogolkova K., Ondrášek I., Dokoupil L. Preliminary evaluation of basic biological traits // Acta Hort., 2012, 966: XV International Symposium on Apricot Breeding and Culture, pp. 183-187.

6. Upadysheva G. Yu. Evaluation of the compatibility of apricot with clonal rootstocks, Agroekologicheskiye aspekty ustoychivogo razvitiya APK: mater. XIII mezhdun. nauchn. konf., Bryansk, 2016, pp. 273-276. (in Russian).

7. Shishkanu G. V., Suvak M. I., Piskorskaya V. P. Pigment content in the leaves of fruit-bearing apricot trees depending on the variety and rootstock, Fiziologicheskiye osobennosti plodovykh i vinograda v svyazi s usloviyami proizrastaniya, Kishinev, 1984, pp. 36-52. (in Russian).

8. Silayeva A. M., Dolid A. V. Compatibility of scion/stock combinations of pears and the efficiency of the photosynthetic apparatus of the pear, Sadovodstvo i vinogradarstvo, 1999, No. 3, pp. 12-14. (in Russian).

9. Arestova N. O., Ryabchun I. O. Dependence of the compatibility of the scion/stocks pairs of grapes on the activity of oxidative enzymes of their components, Adaptivnyy potentsial i kachestvo produktsii sortov i sorto-podvoynykh kombinatsiy plodovykh kul’tur: mater. mezhd. nauchn.-prakt. konf., Orel: VNIISPK, 2012, pp. 11-15. (in Russian).

10. Borisova A. A. Accelerated reproduction of fruit crops in the central zone of Russia:doctoral dissertation in agriculture, Moscow, 1999, 51 p. (in Russian).

11. Upadysheva G. Yu., Motyleva S. M., Mertvishcheva M. E. Antioxidant activity in grafted apricot plants due to different compatibility of components, Plodovodstvo i yagodovodstvo Rossii, 2016, Vol. 44, pp. 238-243. (in Russian).

12. Motyleva S. M., Upadysheva G. Yu., Mertvishcheva M. E. Morphological and anatomical studies of the zone of accretion of inoculum components of apricot by the SEM method // Tezisy dokladov 19 Rossiyskogo simpoziuma po rastrovoy elektronnoy mikroskopii I analiticheskim metodam issledovania tverdih tel (REM 2015).1-4 june 2015. – Chernogolovka, Moscowskoi obl.: IPTM RAS, 2015, pp. 514-516. (in Russian).

13. Volkov V. A. Physicochemical regularities of the interaction of 2,2-diphenyl-1-picrylhydrazyl with antioxidants of vegetable origin: abstract of PhD thesis, Tver’, 2010, 20 p. (in Russian).

14. Brand-Williams W., Cuvelier M. E., Berset C. Use of a free radical method to evaluate antioxidant activity // Lebensmittel Wissenschaft und Technologie – Food Science and Technology, 1995, V. 28, pp. 25-30. https://doi.org/10.1016/ S0023-6438(95)80008-5

15. Zhang W. S. et al. Bioactive components and antioxidant capacity of Chinese bayberry (Myricarubra Sieb. and Zucc.) fruit in relation to fruit maturity and postharvest storage, European Food Research and Technology, 2008, Vol. 227, No. 4, pp. 1091-1097.


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For citations:


Upadysheva G.Yu., Motyleva S.M., Mertvishcheva M.E. Research of compatibility scion/stock combinations of the apricot with use of biochemical parameters. Horticulture and viticulture. 2018;(3):35-41. (In Russ.) https://doi.org/10.25556/VSTISP.2018.3.14172

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