Abstract

Relationship between the diel leaf growth of capsicum and proliferative activity of cells has been investigated using a computer-aided image analysis. It has been established the leaf growth pattern observed in this species allows to refer it to the second type of growth of dicotyledons, which is characterized by the maximum growth rate in the evening or at the beginning of the night. A DNA cytometry study of leaf cells shows that their proliferative activity is also higher at night than during the day. This suggests that the diel rhythm of capsicum leaf growth is due to the synchronization of cell cycle with a lighting.

Highlights

  • Время сутокСр. значение интенсивности флуоресценции бромида этидия ± SD, усл. ед. 9857,15 ± 2557,31 11159,20 ± 2775,18 10 101,17 ± 2321,66 10 578,91 ± 4073,92 12 079,48 ± 4518,18 10 591,61 ± 3340,95 10 666,99 ± 3507,45 13 348,22 ± 4619,67 10 993,35 ± 3442,46 12 378,50 ± 4915,89 12 757,69 ± 4698,43 11 080,79 ± 3288,39 11 361,47 ± 3865,38 13 853,67 ± 5276,24 11427,27 ± 3662,82 349,53 ± 3998,41 776,71 ± 4461,57 10 879,04 ± 3309,16

  • A DNA cytometry study of leaf cells shows that their proliferative activity is higher at night than during the day

  • Flow cytometry and fluorescence-activated cell sorting in plants: the past, present, and future / D

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Summary

Время суток

Ср. значение интенсивности флуоресценции бромида этидия ± SD, усл. ед. 9857,15 ± 2557,31 11159,20 ± 2775,18 10 101,17 ± 2321,66 10 578,91 ± 4073,92 12 079,48 ± 4518,18 10 591,61 ± 3340,95 10 666,99 ± 3507,45 13 348,22 ± 4619,67 10 993,35 ± 3442,46 12 378,50 ± 4915,89 12 757,69 ± 4698,43 11 080,79 ± 3288,39 11 361,47 ± 3865,38 13 853,67 ± 5276,24 11427,27 ± 3662,82 349,53 ± 3998,41 776,71 ± 4461,57 10 879,04 ± 3309,16. Значение интенсивности флуоресценции бромида этидия ± SD, усл. Достоверность различий относительного содержания ДНК в изученные временные периоды. Распределение клеток листьев стручкового перца по периодам клеточного цикла в зависимости от времени суток

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