Aspects of agrotechnology of the perennial wall-rocket in open ground

UDC 635.4
https://doi.org/10.25630/PAV.2019.61.1.004

A.V. Litnetskii, M.I. Ivanova, A.I. Kashleva, D.N. Baleev, A.F. Bukharov, V.V. Mikhailov, N.L. Devochkina

The agrotechnology of the perennial wall-rocket is presented on the example of LLC Felichita, specializing in its industrial cultivation in the central strip of Russia. In the Moscow region in the open ground seeds are sown from May to mid-August, Tula region - from the end of April to the end of August by an interval of 7 days. The productivity varies from 1.9 to 8.4 g/plant, the yield is from 0.5 to 1.8 t / ha for each growing cycle, the total yield exceeds 35 t/ha.

Keywords: Perennial wall-rocket, Diplotaxis tenuifolia (L.) D.C., agrotechnology, yield, open ground.

A.V. Litnetskii, applicant

M.I. Ivanova, DSc, professor of RAS, head of laboratory of breeding and seed growing of green crops. E-mail: ivanova_170@mail.ru

A.I. Kashleva, PhD, senior research fellow, laboratory of breeding and seed growing of green crops

D.N. Baleev, PhD, senior research fellow, laboratory of seed research

A.F. Bukharov, DSc, head of laboratory of seed research

V.V. Mikhailov, PhD, senior research fellow, laboratory of breeding and seed growing of green crops

N.L. Devochkina, DSc, chief research fellow of the department for greenhouse plant crop breeding

All-Russian Research Institute of Vegetable Growing – branch of the FSBSI «Federal Scientific Vegetable  Center»

  1. Ivanova M.I., Bukharov A.F., Litnetsky A.V., Razin A.F., Meshcheryakova R.A. Fundamental differences between the thin-leaved diplotaxis (Diplotaxis tenuifolia (L.)).) and indau sowing (Eruca sativa Mill.) when cultured under production conditions. Journal of Agricultural Science. 2018. No. 1. Pp. 14–19 (In Russ.).
  2. Caruso G., Parrella G., Giorgini M., Nicoletti R. Crop Systems, Quality and Protection of Diplotaxis tenuifolia. Agriculture. 2018. No. 8. P. 55 (In Russ.).
  3. Bonasia A., Lazzizera C., Elia A., Conversa G. Nutritional, biophysical and physiological characteristics of wild rocket genes as affected by soilless cultivation system, salinity level of nutrient solution and growing period. Front. Plant Sci. 2017. No. 8. P. 35.
  4. Schiattone M. I., Viggiani R., Di Venere D., Sergio L., Cantore V., Todorovic M., Perniola M., Candido V. Impact of irrigation regime and nitrogen rate on yield, quality and water use efficiency of wild rocket under greenhouse conditions. Sci. Hortic. 2018. Vol. 229. Pp. 182–192.
  5. Litnetsky A.V., Litnetskaya O. I., Ivanova M. I. Production of organic seedlings (baby leaf) of thin-leaved double-row. Potato and vegetables. 2016. No.5. Pp. 25–27 (In Russ.).
  6. Conforti F., Perri V., Menichini F., Marrelli M., Uzunov D., Statti G.A., Menichini F. Wild Mediterranean dietary plants as inhibitors of pancreatic lipase. Phytother. Res. 2012. Vol. 26. Pp. 600–604.
  7. Kovacic M., Veberic R., Ugrinovic K., Jakše M. Glucosinolate analysis of wild rocket [Diplotaxis tenuifolia (L.) D.C.] from different Slovenian regions cultivated on two growing systems. Eur. J. Hortic. Sci. 2015. Vol. 80. Pp. 199–207.
  8. Klein E., Katan J., Gamliel A. Combining residues of herb crops with soil heating for control of soilborne pathogens in a controlled laboratory system. Crop Prot. 2011. Vol. 30. Pp. 368–374.

PDF (Rus)

For citing:Litnetskii A.V., Ivanova M.I., Kashleva A.I., Baleev D.N., Bukharov A.F., Mikhailov V.V., Devochkina N.L. Aspects of agrotechnology of the perennial wall-rocket in open ground.  Potato and Vegetables. 2019. No1. Pp. 16-18.

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