09. Critical periods and parameters of growth of beet at drop irrigation in Southern Steppe

https://doi.org/10.31073/agrovisnyk201610-09
Vasiuta V. V.
Pages: 47-50.

Full article: 
Abstract
The purpose. To determine critical periods of growth of beet at drop irrigation, to determine the degree of variability of productivity at change of parameters of growth in critical phases using B. Gomperts function. Methods. Field, statistical. Results. Speed of increase in crude mass of beet without fertilization decreases for 50,6%, duration of critical period of growth increases for 0,9 day, productivity of root crops decreases for 46,9% in comparison with variant N90P60K135. Direct correlation link (R=0,99) between variability of parameters of growth in critical points and productivity of root crops is revealed. Conclusions. Modelling of growth of beet using B. Gomperts function and its analysis allow determining parameters of growth in critical points at different factors of influence, and also determining their optimum ratio.


Key words: critical periods, critical points, Gomperts function, growth rate, acceleration of growth.



References
  1. Tursun N. Critical period for weed control in leek (Allium porrum L.) / N. Tursun, B. Bükün, S.C. Karacan et al. // Hort Science. – 2007. – V. 42. – №. 1. – P. 106-109.
  2. Patron P.I. Kompleksnoe deystvie agropriemov v ovoschevodstve / P.I. Patron; otv. red. professor M.V. Alekseev.- Kishinev: Shtiintsa, 1981.- 284 p.
  3. Fontes, P. C. R. Tomato yield and potassium concentrations in soil and in plant petioles as affected by potassium fertirrigation / Fontes, P. C. R., Sampaio, R. A., & Mantovani, E. C //Pesquisa Agropecuária Brasileira. – 2000. – V. 35. – №. 3. – P. 575-580.
  4. Chen C. Application of growth models to evaluate the microenvironmental conditions using tissue culture plantlets of Phalaenopsis Sogo Yukidian ‘V3’/ C. Chen //Scientia Horticulturae. – 2015. – V. 191. – P. 25-30.
  5. Tei F., Scaife A., Aikman D. P. Growth of lettuce, onion, and red beet. 1. Growth analysis, light interception, and radiation use efficiency / Tei F., Scaife A., Aikman D. P // Annals of Botany. – 1996. – V. 78. – №. 5. – P. 633-643.
  6. Shmidt V.M. Matematicheskie metodyi v botanike: ucheb. posobie / V.M. Shmidt. – L.: Izd-vo Leningr. un-ta., 1984. – 288 p.
  7. Wardhani, W. S. Describing the height growth of corn using logistic and Gompertz model Agrivita / W. S. Wardhani, P.Kusumastuti. – 2013, V. 35.-№ 3. P. 237-241.
  8. Shi P. J. Capture the time when plants reach their maximum body size by using the beta sigmoid growth equation / P. J. Shi, , L.Chen, C. Hui, H. D. Grissino-Mayer //Ecological Modelling. – 2016. – V. 320. – P. 177-181.
  9. Metodyka pol'ovykh i laboratornykh doslidzhen' na zroshuvanykh zemlyakh: naukovo-metodychne vydannya / za redaktsiyeyu R.A. Vozhehovoyi – IZZ NAAN, Kherson: Hrin' D.S., 2014. – 286 s.
  10. Metodychni rekomendatsiyi z provedennya pol'ovykh doslidzhen' za kraplynnoho zroshennya /za red. M.I. Romashchenka, A.P. Shatkovs'koho, L.H. Usatoyi.- IVPiM NAAN Ukrayiny, 2014.- 44 s.
  11. Metodyka doslidnoyi spravy v ovochivnytstvi i bashtannytstvi / za redaktsiyeyu H.L. Bondarenka, K.I. Yakovenka. Kh.: Osnova, 2001.- 369 s.