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Freezing Tolerance Enhancement and Thermographic Observation of Whole Peach Trees Applied with Cellulose Nanocrystals under Realistic Spring Frost Conditions Using a Soil-Fruit-Daylit-Systemopen access

Authors
Lee, SeonghoJeong, Jae HoonKim, Seung HeuiShin, Hyunsuk
Issue Date
Nov-2021
Publisher
MDPI
Keywords
CNCs; frost; IR camera; peach; SFDS; whole plant
Citation
PLANTS-BASEL, v.10, no.11
Indexed
SCIE
SCOPUS
Journal Title
PLANTS-BASEL
Volume
10
Number
11
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/3112
DOI
10.3390/plants10112301
ISSN
2223-7747
2223-7747
Abstract
Due to recent abnormal weather caused by global warming, peach flowering has gradually accelerated, and spring frost damage caused by premature de-acclimation has increased. In this study, under a simulated spring frost environment using a Soil-Fruit-Daylit-System (SFDS) chamber, we investigated whether treatment with 2% cellulose nanocrystals (CNCs) could enhance the freezing tolerance of the flower buds from 2-year-old whole peach trees. Visual changes in the ice propagation were observed using an infrared camera at the same time. After the peach flower buds in the calyx red stage were placed in the SFDS chamber with a minimum temperature of -4 degrees C for similar to 20 h, the percentage of browning in the pistils and stamens was 57.0% in the control group and 14.1% in the group treated with 2% CNCs. During the first pink stage, the percentages of browning in the pistils and stamens in the control group and the group treated with 2% CNCs were 98.2% and 70.3%, respectively. However, when peach flower buds in the group treated with 2% CNCs were exposed to a -6 degrees C-targeted chamber, they could not mitigate frost injury. Almost all flower buds were damaged. Infrared thermal images showed that the first exotherm in the control group began at 2:33:03 am, whereas that of the group treated with 2% CNCs began at 3:01:33 am. The control started to express exothermic behavior at -4.2 degrees C, while the group treated with 2% CNCs started expressing exothermic behavior at -5.1 degrees C. Thus, treatment with 2% CNCs enhanced the freezing tolerance by -0.9 degrees C and delayed the first instance of exothermic behavior by similar to 28 min. These results indicate that treatment with 2% CNCs could mitigate the frost damage of peach flower buds in a frost environment of -5 degrees C.
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농업생명과학대학 (원예과학부)
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