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THE YIELD OF LETTUCE BREEDING LINE UNDER LED LAMPS IN WINTER GREENHOUSE IN THE NORTH

https://doi.org/10.18619/2072-9146-2017-3-38-41

Abstract

The lettuce (Lactuca sativa L.) is widely known and favorite vegetable crop among people. In Europe the main production of lettuce is performed on protected ground with application of  artificial  light  sources. The artificially-lighted  culture  of salad became very actually acquired in the north. Previously, on the basis of multi-year studies on yield registration and experiments with different regimes of lighting we have defined the appropriate parameters of supplementary lighting for lettuce with sodium high-pressure lamps that provided the production in different seasons per year. The aim was to study the accumulation of biomass and yield quality in lettuce ‘Aphytsion’ being grown in winter rotation under light-emitting diodes lamps. The accumulation of biomass and yield quality was studied in ‘Aphytsion’,  grown in winter rotation under lightemitting diodes lamps ECOLED-BIO-112-185WD120 UniversaLED (ООО ‘GK’  ‘CET’), Perm, in  industrial greenhouse OOO ‘Prigorodniy’  at Syktyvkar city. The commodity  output  was obtained  for  two  cycle  of  cultivation, November-December  and  December-January.  Yield  of foliage biomass was 2.4 kg/m2 with flow density PAR (Photosynthetically active radiation) about 90 μmole quantum/m2  s. at 20 W/m2 with total light energy 54 MJ/m2  supplied to plants from LED lamps. The plants produced about 0.5 g. of dry weight calculated on one mole of spent light energy. Energy efficiency of PAR was 3% that corresponded with data observed earlier with sodium high-pressure lamps. The conclusion was made about the suitableness of this type of light-emitting diode lamps for lettuce cultivation in winter rotation in first photic zone. It was recommended to increase duration of supplemental lighting up to 22-24 hours in December and up to 20-22 hours in January to improve the productivity and biological value of plant output. It enables to raise RAP income in plants by 35 %, on average for one cycle of cultivation.

About the Authors

I. V. Dalke
Institute of Biology of Komi Scientific Centre of the Ural Branch of the Russian Academy of Sciences (IB Komi SC UB RAS)
Russian Federation

Laboratory of Ecological Plant Physiology.

Syktyvkar



I. G. Zakhozhiy
Institute of Biology of Komi Scientific Centre of the Ural Branch of the Russian Academy of Sciences (IB Komi SC UB RAS)
Russian Federation

Laboratory of Ecological Plant Physiology.

Syktyvkar



R. V. Malyshev
Institute of Biology of Komi Scientific Centre of the Ural Branch of the Russian Academy of Sciences (IB Komi SC UB RAS)
Russian Federation
Laboratory of Ecological Plant Physiology.
Syktyvkar


E. E. Grigoray
LLC ‘Prigorodniy’
Russian Federation

Syktyvkar



G. N. Tabalenkova
Institute of Biology of Komi Scientific Centre of the Ural Branch of the Russian Academy of Sciences (IB Komi SC UB RAS)
Russian Federation

Laboratory of Ecological Plant Physiology.

Syktyvkar



O. V. Dymova
Institute of Biology of Komi Scientific Centre of the Ural Branch of the Russian Academy of Sciences (IB Komi SC UB RAS)
Russian Federation

Laboratory of Ecological Plant Physiology.

Syktyvkar



T. K. Golovko
Institute of Biology of Komi Scientific Centre of the Ural Branch of the Russian Academy of Sciences (IB Komi SC UB RAS)
Russian Federation

Laboratory of Ecological Plant Physiology.

Syktyvkar


E. Y. Karakaytis
LLC Group of Companies ‘Light and Electrical Technologies’
Russian Federation

Perm http://ecoled.ru



References

1. Скопинцева Е. Минсельхоз пообещал построить 1500 га теплиц // Экономика и жизнь. – 2016. – №22 (9638) (https://www.eg-online.ru/article/316766 Проверено 08.06.2017).

2. Тихомиров А.А., Шарупич В.П., Лисовский Г.М. Светокультура растений: биофизические и биотехнологические основы. – 2000. – 213 с.

3. Полякова М.Н., Мартиросян Ю.Ц., Диловарова Т.А., Кособрюхов А.А. Фотосинтез и продуктивность у растений базилика (Ocimum basilicum L.) при облучении различными источниками света // Сельскохозяйственная биология. – 2015. – Т. 50. – № 1. – С. 124-130.

4. Емелин А.А., Прикупец Л.Б., Тараканов И.Г. Спектральный аспект при использовании облучателей со светодиодами для выращивания салатных растений в условиях светокультуры // Светотехника. – 2015. – № 4. – С. 47-52.

5. Аверчева О.В., Бассарская Е.М., Жигалова Т.В., Беркович Ю.А., Смолянина С.О., Леонтьева М.Р., Ерохин А.Н. Фотохимическая и фосфорилирующая активность хлоропластов и мезоструктура листьев китайской капусты при выращивании под светодиодами // Физиология растений. – 2010. – Т. 57. С. – 404-414.

6. Amoozgar A., Mohammadi A., Sabzalian M.R. Impact of lightemitting diode irradiation on photosynthesis, phytochemical composition and mineral element content of lettuce cv. Grizzly // Photosynthetica. – 2017. – V. 55. –№ 1. – P. 85-95.

7. Muneer S., Kim E.J., Park J.S., Lee J.H. Influence of green, red and blue light emitting diodes on multiprotein complex proteins and photosynthetic activity under different light intensities in lettuce leaves (Lactuca sativa L.) // International Journal of Molecular Sciences. – 2014. – V. 15. – № 3. – P. 4657-4670.

8. Olle M., Virљile A. The effects of light-emitting diode lighting on greenhouse plant growth and quality // Agricultural and Food Science. – 2013. – V. 22. – № 2. – P. 223-234.

9. Далькэ И.В., Буткин А.В., Табаленкова Г.Н., Малышев Р.В., Григорай Е.Е., Головко Т.К. Эффективность использования световой энергии и продуктивность тепличной культуры листового салата // Известия ТСХА. – 2013. – № 5. – C. 60-68.

10. Аникина Л.М., Конончук П.Ю., Судаков В.Л., Удалова О.Р., Хомяков Ю.В. Экономическая эффективность использования в технологиях малообъемной интенсивной светокультуры питательных растворов на основе промышленно выпускаемых удобрений // Овощи России. – 2016 . – № 4 (33). – С. 10-14.

11. МР 2.3.1.2432—08 Нормы физиологических потребностей в энергии и пищевых веществах для различных групп населения Российской Федерации . – 2008.

12. Единые санитарно-эпидемиологические и гигиенические требования к товарам, подлежащим санитарно-эпидемиологическому надзору (контролю). Глава II Раздел 1. Плодоовощная продукция (Содержание нитратов в свежем салате латуке, выращенном в защищенном грунте с 1 октября по 31 марта) / Утверждены Решением Комиссии таможенного союза от 28 мая 2010 года № 299.

13. Головко Т.К., Табаленкова Г.Н., Далькэ И.В., Захожий И.Г., Григорай Е.Е., Буткин А.В. Продукционный процесс и пищевая ценность зеленных культур защищенного грунта на севере // Гавриш. – 2010. – № 5. – C. 32-35.


Review

For citations:


Dalke I.V., Zakhozhiy I.G., Malyshev R.V., Grigoray E.E., Tabalenkova G.N., Dymova O.V., Golovko T.K., Karakaytis E.Y. THE YIELD OF LETTUCE BREEDING LINE UNDER LED LAMPS IN WINTER GREENHOUSE IN THE NORTH. Vegetable crops of Russia. 2017;(3):38-41. (In Russ.) https://doi.org/10.18619/2072-9146-2017-3-38-41

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ISSN 2072-9146 (Print)
ISSN 2618-7132 (Online)