THE EFFECT OF ORGANIC FERTILIZERS ON THE CONTENT OF TRACE ELEMENTS IN THE GREEN MASS OF CORN

UDK 633.39

Keywords: iron, copper, manganese, zinc, green mass of corn, index of accumulation of trace elements, by-products of animal husbandry, accumulator plants, agrozems

Abstract

The optimal content of trace elements in green feeds is of fundamental importance for ensuring high productivity of cattle. For the production of green fodder, corn grown in fields located near livestock complexes and fertilized by by-products of animal husbandry (BPA) is used. In conditions of a high load of BPA (manure, manure runoff), the accumulation of trace elements in the green mass of corn (GMC) occurs more intensively than when using fertilizers in mineral form. Corn cultivation promotes active removal of Fe, Zn, Mn from the soil and weak removal of Cu. The accumulation of trace elements in plants grown on acidic soils fertilized by BPA is higher than when grown on neutral soils. According to the absolute content in GMC, trace elements are arranged in the following sequence: Mn>Fe>Zn>Cu. The corresponding series coincides with the sequence of decreasing concentrations of mobile forms of elements in agro-ecosystems, but differs from the sequence of changes in the indices of accumulation (IA) of trace elements. The IA values calculated on the basis of experimental data are arranged as follows: Fe>Zn>Mn>Cu. The IA of all trace elements, except Cu, in the GMC was higher than one, so corn can be classified as battery plants. IA Cu in different agro-ecosystems was below 1 and practically did not depend on the level of metabolic acidity. The weak accumulation is probably due to the low Cu content in sod-podzolic soils, the high stability of Cu complexes with organic ligands and the significant content of nitrogen available to plants in soils fertilized by BPA.

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Author Biographies

Nadezhda Viktorovna Syrchina, Vyatka State University

Candidate of Chemical Sciences, Associate Professor, Senior Researcher at the Biomonitoring Research Laboratory

Larisa Valentinovna Pilip, Vyatka State Agricultural Academy

Candidate of Veterinary Sciences, Associate Professor of the Department of Animal Hygiene, Physiology and Biochemistry

Tamara Yakovlevna Ashikhmina, Vyatka State University, Institute of Biology of Komi Science Centre of the Ural Branch of RAS

Doctor of Technical Sciences, Professor, Chief Researcher of the Biomonitoring Research Laboratory

References

Chichayeva V.N., Vorob'yeva N.V., Serednev Yu.S. Vestnik Ul'yanovskoy GSKhA, 2014, no. 4 (28), pp. 147–162. (in Russ.).

Fedorova Z.L., Romanenko L.V. Genetika i razvedeniye zhivotnykh, 2016, no. 3, pp. 3–14. (in Russ.).

Cabrita A.R.J., Dewhurst R.J., Melo D.S.P., Moorby J.M., Fonseca A.J.M. Journal of Dairy Science, 2011, vol. 94, no. 9, pp. 4647–4656. DOI: 10.3168/jds.2010-4097.

Andrade F.L.D., Rodrigues J.P.P., Detmann E., Valadares Filho S.D.C., Castro M.M.D., Trece A.S., Silva T.E., Fischer V., Weiss К., Marcondes M.I. Tropical animal health and production, 2016, vol. 48, no. 4, pp. 747–753. DOI: 10.1007/s11250-016-1020-y.

Tereshchenko S.A., Mudrova L.D. Izvestiya KGTU, 2019, no. 52, pp. 133–142. (in Russ.).

Sazanov A.V., Terent'yev Yu.N., Syrchina N.V., Ashikhmina T.Ya., Kozvonin V.A. Teoreticheskaya i prikladnaya ekologiya, 2017, no. 3, pp. 85–90. DOI: 10.25750/1995-4301-2017-3-085-090. (in Russ.).

Пилип Л.В., Сырчина Н.В. Agrarnaya nauka – sel'skomu khozyaystvu. [Agricultural science – agriculture]. Barnaul, 2019, pp. 193–196. (in Russ.).

Pilip L.V., Syrchina N.V., Ashikhmina T.Ya. Izvestiya Komi nauchnogo tsentra UrO RAN. Seriya «Eksperimental'na-ya biologiya i ekologiya», 2021, no. 5 (51), pp. 88–91. DOI: 10.19110/1994-5655-2021-5-88-91. (in Russ.).

Syrchina N.V., Pilip L.V., Ashikhmina T.Ya. Teoreticheskaya i prikladnaya ekologiya, 2022, no. 3, pp. 219–225. DOI: 10.25750/1995-4301-2022-3-219-225. (in Russ.).

Pilip L.V., Syrcina N.V., Ashikhmina T.Ya., Kazakova M.E. Butlerovskiye soobshcheniya, 2022, vol. 72, no. 10, pp. 89–94. DOI: jbc-01/22-72-10-89. (in Russ.).

Michaud A.M., Cambier P., Sappin-Didier V., Deltreil V., Mercier V., Rampon J.N., Houot S. Environmental Science and Pollution Research, 2020, vol. 27, no. 5, pp. 5367–5386. DOI: 10.1007/s11356-019-07166-8.

Jakubus M., Graczyk M. Agronomy, 2020, vol. 10, no. 5, article 642. DOI: 10.3390/agronomy10050642.

Kabata-Pendias A. Rossiyskiy khimicheskiy zhurnal, 2005, vol. XLIX, no. 3, pp. 15–19. (in Russ.).

Dylenova Ye.P., Zhigzhitzhapova S.V. Randalova T.E., Radnayeva L.D., Shiretorova V.G., Pavlov I.A. Khimiya Ras-titel'nogo Syr'ya, 2019, no. 4, pp. 199–205. DOI: 10.14258/jcprm.2019045126. (in Russ.).

Clemente R., Escolar Á., Bernal M.P. Bioresource Technology, 2006, vol. 97, no. 15, pp. 1894–1901. DOI: 10.1016/j.biortech.2005.08.018.

Kabata-Pendias A., Pendias Kh. Mikroelementy v pochvakh i rasteniyakh. [Microelements in soils and plants]. Mos-cow, 1989, 439 p. (in Russ.).

Wajid K., Ahmad K., Khan Z.I., Nadeem M., Bashir H., Chen F., Ugulu I. Bulletin of environmental contamination and toxicology, 2020, vol. 104, no. 5, pp. 649–657. DOI: 10.1007/s00128-020-02841-w.

Kiselova N.D., Dvurechenskiy V.G. Izvestiya Irkutskogo gosudarstvennogo universiteta. Seriya Biologiya. Ekologiya, 2021, vol. 37, pp. 89–100. DOI: 10.26516/2073-3372.2021.37.89. (in Russ.).

Litvinovich A.V., Lavrishchev A.V., Bure V.M., Pavlova O.Yu., Kovleva A.O., Khomyakov Yu.V. Agrokhimiya, 2018, no. 8, pp. 52–63. DOI: 10.1134/S0002188118080100. (in Russ.).

Bakhitova A.R., Lapushkin V.M. Plodorodiye, 2018, no. 4 (103), pp. 18–21. (in Russ.).

Vremennyy maksimal'no dopustimyy uroven' (MDU) soderzhaniya nekotorykh khimicheskikh elementov i gossipola v kormakh dlya sel'skokhozyaystvennykh zhivotnykh i kormovykh dobavkakh [Temporary maximum permissible level (MLL) for the content of certain chemical elements and gossypol in feed for farm animals and feed additives]. URL: https://standartgost.ru/g/pkey-14293725464. (in Russ.).

Il'in V.B. Tyazhelyye metally v sisteme pochva-rasteniye. [Heavy metals in the soil-plant system]. Novosibirsk, 1991, 151 p. (in Russ.).

Qin F., Shan X., Wei B. Chemosphere, 2004, vol. 57, no. 4, pp. 253–263. DOI: 10.1016/j.chemosphere.2004.06.010.

Kumar V., Pandita S., Sidhu G.P.S., Sharma A., Khanna K., Kaur P., Bali A.S., Setia R. Chemosphere, 2021, vol. 262, article 127810. DOI: 10.1016/j.chemosphere.2020.127810

Kuznetsova Ye.A., Gavrilina V.A., Zomitev V.Yu. Tekhnologiya i tovarovedeniye innovatsionnykh pishchevykh produktov, 2016, vol. 2(37), no. 4, pp. 30–34. (in Russ.).

Kosolapov V.M., Chuykov V.A., Khudyakova Kh.K., Kosolapova V.G. Mineral'nyye elementy v kormakh i metody ikh analiza: monografiya. [Mineral elements in feed and methods of their analysis: monograph]. Moscow, 2019, 272 p. (in Russ.).

Sibgatullina M.Sh., Valiyev V.S. Sotsial'no-ekologicheskiye tekhnologii, 2019, vol. 9, no. 3, pp. 325–342. DOI: 10.31862/2500-2961-2019-9-3-325-342. (in Russ.).

Khawla K., Besma K., Enrique M., Mohamed H. Ecotoxicology and Environmental Safety, 2019, vol. 170, pp. 530–537. DOI: 10.1016/j.ecoenv.2018.12.025.

Galaktionov A.Yu., Karpukhin A.I. Izvestiya TSKhA, 2007, no. 3, pp. 47–56. (in Russ.).

Published
2024-03-06
How to Cite
1. Syrchina N. V., Pilip L. V., Ashikhmina T. Y. THE EFFECT OF ORGANIC FERTILIZERS ON THE CONTENT OF TRACE ELEMENTS IN THE GREEN MASS OF CORN // chemistry of plant raw material, 2024. № 1. P. 372-380. URL: http://journal.asu.ru/cw/article/view/12298.
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