Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture

Relevance.The solution to the problem of providing the population of our country with high - quality plant production all year round is possible when creating high-tech automated phytotechnological complexes based on innovative, resource-saving technologies for growing plants in an artificial climat...

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Main Authors: O. R. Udalova, L. M. Anikina, Yu. V. Khomyakov, V. E. Vertebniy, V. I. Dubovitskaya, G. G. Panova
Format: Article
Language:English
Published: Federal State Budgetary Scientific Institution "Federal Scientific Vegetable Center" 2021-03-01
Series:Ovoŝi Rossii
Subjects:
Online Access:https://www.vegetables.su/jour/article/view/1222
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spelling doaj-8bcc3533af604b4eb9dec609fddb4ab92021-07-28T16:24:56ZengFederal State Budgetary Scientific Institution "Federal Scientific Vegetable Center"Ovoŝi Rossii2072-91462618-71322021-03-0101333810.18619/2072-9146-2021-1-33-38797Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light cultureO. R. Udalova0L. M. Anikina1Yu. V. Khomyakov2V. E. Vertebniy3V. I. Dubovitskaya4G. G. Panova5Agrophysical Research InstituteAgrophysical Research InstituteAgrophysical Research InstituteAgrophysical Research InstituteAgrophysical Research InstituteAgrophysical Research InstituteRelevance.The solution to the problem of providing the population of our country with high - quality plant production all year round is possible when creating high-tech automated phytotechnological complexes based on innovative, resource-saving technologies for growing plants in an artificial climate, including the development of a new generation of root inhabited thin-layer analogues of soils.Materials and methods. The research was carried out under controlled conditions of intensive artificial-light culture, when growing lettuce plants of the Typhoon variety on thin - layer analogs of soil of various composition and a low-volume soil analogue based on high-moor peat with a low degree of decomposition "Agrofit", selected as a reference for comparison, in plant growing light equipment developed at Agrophysical Institute.Results. Evaluation of the influence of thin-film analogues of the soil based on the suspensions Cambrian clay, and /or sapropel in different ratios on the production process of lettuces showed when compared with control (hydrophilic fabric): a positive tendency to increase of height, number of leaves per plant; a significant increase in wet mass by 25-35%, dry mass in 54-80%, percent dry matter in 16-36%; increase of leaf area and photosynthetic capacity at 20-36%, net productivity of photosynthesis by 16-45%; a significant or in a form of tendency to increase in the content of potassium by 14-17%, calcium by 27-35%, zinc by 29-53% and disaccharides by 28-68%. In comparison with the low-volume analogue of the soil based on high-moor peat of a low degree of decomposition "Agrophyte" (standard), it was found an increase in the form of a pronounced positive trend in growth indicators - the height and number of leaves. wet, dry mass of plants, percentage of dry matter; net productivity of photosynthesis, a reliable or in form of trend to increase in leaf area, photosynthetic potential by 20-30%; an increase in the content of mineral elements in lettuce leaves. Possible reasons for the lower productivity of lettuce plants in the control were determined, and it associated with an increase in water intake in leaf tissues against the background of the absence of additional mineral and / or organic nutrition. The content of heavy metals and nitrates did not exceed the maximum permissible concentration (MPC) in all variants. All thin-layer analogs of the soil with the application of suspensions of various compositions can be recommended for growing lettuce in any cultivation facilities in conditions of intensive artificial-light culture.https://www.vegetables.su/jour/article/view/1222intensive artificial-light cultureroot inhabited environmentthin-layer analog of soillow-volume analog of soilproductivityleaf surface areaphotosynthetic potentialbiochemical compositio
collection DOAJ
language English
format Article
sources DOAJ
author O. R. Udalova
L. M. Anikina
Yu. V. Khomyakov
V. E. Vertebniy
V. I. Dubovitskaya
G. G. Panova
spellingShingle O. R. Udalova
L. M. Anikina
Yu. V. Khomyakov
V. E. Vertebniy
V. I. Dubovitskaya
G. G. Panova
Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture
Ovoŝi Rossii
intensive artificial-light culture
root inhabited environment
thin-layer analog of soil
low-volume analog of soil
productivity
leaf surface area
photosynthetic potential
biochemical compositio
author_facet O. R. Udalova
L. M. Anikina
Yu. V. Khomyakov
V. E. Vertebniy
V. I. Dubovitskaya
G. G. Panova
author_sort O. R. Udalova
title Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture
title_short Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture
title_full Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture
title_fullStr Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture
title_full_unstemmed Influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture
title_sort influence of thin-layer soil analogues on the production process of lettuce plants in intensive artificial-light culture
publisher Federal State Budgetary Scientific Institution "Federal Scientific Vegetable Center"
series Ovoŝi Rossii
issn 2072-9146
2618-7132
publishDate 2021-03-01
description Relevance.The solution to the problem of providing the population of our country with high - quality plant production all year round is possible when creating high-tech automated phytotechnological complexes based on innovative, resource-saving technologies for growing plants in an artificial climate, including the development of a new generation of root inhabited thin-layer analogues of soils.Materials and methods. The research was carried out under controlled conditions of intensive artificial-light culture, when growing lettuce plants of the Typhoon variety on thin - layer analogs of soil of various composition and a low-volume soil analogue based on high-moor peat with a low degree of decomposition "Agrofit", selected as a reference for comparison, in plant growing light equipment developed at Agrophysical Institute.Results. Evaluation of the influence of thin-film analogues of the soil based on the suspensions Cambrian clay, and /or sapropel in different ratios on the production process of lettuces showed when compared with control (hydrophilic fabric): a positive tendency to increase of height, number of leaves per plant; a significant increase in wet mass by 25-35%, dry mass in 54-80%, percent dry matter in 16-36%; increase of leaf area and photosynthetic capacity at 20-36%, net productivity of photosynthesis by 16-45%; a significant or in a form of tendency to increase in the content of potassium by 14-17%, calcium by 27-35%, zinc by 29-53% and disaccharides by 28-68%. In comparison with the low-volume analogue of the soil based on high-moor peat of a low degree of decomposition "Agrophyte" (standard), it was found an increase in the form of a pronounced positive trend in growth indicators - the height and number of leaves. wet, dry mass of plants, percentage of dry matter; net productivity of photosynthesis, a reliable or in form of trend to increase in leaf area, photosynthetic potential by 20-30%; an increase in the content of mineral elements in lettuce leaves. Possible reasons for the lower productivity of lettuce plants in the control were determined, and it associated with an increase in water intake in leaf tissues against the background of the absence of additional mineral and / or organic nutrition. The content of heavy metals and nitrates did not exceed the maximum permissible concentration (MPC) in all variants. All thin-layer analogs of the soil with the application of suspensions of various compositions can be recommended for growing lettuce in any cultivation facilities in conditions of intensive artificial-light culture.
topic intensive artificial-light culture
root inhabited environment
thin-layer analog of soil
low-volume analog of soil
productivity
leaf surface area
photosynthetic potential
biochemical compositio
url https://www.vegetables.su/jour/article/view/1222
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