| Literature DB >> 24273469 |
Andrzej Kurenda1, Piotr M Pieczywek1, Anna Adamiak1, Artur Zdunek1.
Abstract
The biospeckle phenomenon is used for non-destructive monitoring the quality of fresh fruits and vegetables, but in the case of plant tissues there is a lack of experimentally confirmed information about the biological origin of the biospeckle activity (BA). As a main sources of BA, processes associated with the movement inside the cell, such as cytoplasmic streaming, organelle movement and intra- and extracellular transport mechanisms, are considered. The aim of this study is to investigate the effect of metabolism inhibitors, connected with intracellular movement such as cytochalasin B, lantrunculin B, colchicine, cycloheximid, dimethyl sulfoxide (DMSO) and mixture of ion channel inhibitors, injected into apples, on BA. Two methods of BA analysis based on cross-correlation coefficient and Laser Speckle Contrast Analysis (LASCA) were used. DMSO, lantrunculin B and mixture of ion channel inhibitors have a significant effect on BA, and approximately 74 % of BA of apple tissue is potentially caused by biological processes. Results indicate that the functioning of actin microfilaments and ion channels significantly affect BA.Entities:
Keywords: Apple tissue; Biological processes; Biospeckle; Image analysis; Intracellular movements; Metabolism inhibitors
Year: 2013 PMID: 24273469 PMCID: PMC3825619 DOI: 10.1007/s11483-013-9302-7
Source DB: PubMed Journal: Food Biophys ISSN: 1557-1858 Impact factor: 3.114
Fig. 1Schematic presentation of the injection method
Fig. 2Scheme of experimental setup for BA measurements (top view)
Characteristics of BA before and after the injection of solutions of metabolism inhibitors
| SS | 1 % DMSO | MANN | CB | LANTR | COLCH | CYCL | ICI | 100 % DMSO | |
|---|---|---|---|---|---|---|---|---|---|
| MBA ± SD | 0.61±0.002a ( | ||||||||
| BA during last 300 min. of experiment ± SD | 0.626 ± 0.021a ( | 0.637 ± 0.043a ( | 0.607 ± 0.042a ( | 0.540 ± 0.056a ( | 0.492 ± 0.103b ( | 0.634 ± 0.034a ( | 0.722 ± 0.081a ( | 0.370 ± 0.137c ( | 0.163 ± 0.064d ( |
| Change of BA (%) | +1.5 | +3.24 | −1.62 | −12.47 | −20.25 | +2.75 | +17.01 | −40.03 | −73.58 |
| Percentage effect of individual solutions on the BA resulting only from biological processes (in relation to BA of 100% DMSO) (%) | 2.04 | 4.4 | 2.2 | 16.96 | 27.53 | 3.74 | 23.12 | 54.40 | 100 |
The same superscript letter means no significant difference at p = 0.05. + or – in the row “Change of BA (%)” is an increase or decrease of BA after injection, respectively
MBA mean biospeckle activity before injection, SS standard solution, 1% DMSO 1% solution of dimethyl sulfoxide, MANN solution of mannitol, CB solution of cytochalasin B, LANTR solution of lantrunculin B, COLCH solution of colchicine, CYCL solution of cycloheximid, ICI solution of mixture of ion channel inhibitors, 100%DMSO 100% dimethyl sulfoxide, n number of apples examined
Fig. 3Biospeckle activity before and after injection of solutions indicated in the legend. Additionally, SP is BA observed on a steel plate
Fig. 4Examples of: A apples 600 min after injection and just before recording a biospeckle patterns for LASCA, B biospeckle pattern recorded for LASCA analysis. C results of LASCA analysis, D micrographs of apple tissues close to the place of injection. Scale for LASCA analysis is presented beside (values on the scale are not equal with BA derived from the cross-correlation method). Width of images shown in the rows A-C is 5 cm and in d 8 mm