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低温调控不同季节采后红芽胞细胞结构和叶绿素除纤维素代谢以外的功能。

Low-Temperature Regulates the Cell Structure and Chlorophyll in Addition to Cellulose Metabolism of Postharvest Red Buds across Different Seasons.

机构信息

Faculty of Agronomy, Jilin Agricultural University, Changchun 130118, China.

Institute of Horticulture, Guizhou Provincial Academy of Agricultural Sciences, Guiyang 550006, China.

出版信息

Int J Mol Sci. 2024 Jul 14;25(14):7719. doi: 10.3390/ijms25147719.

Abstract

Postharvest fibrosis and greening of buds significantly affect their quality during storage. This study aimed to clarify the effects of low-temperature storage on postharvest red TSB quality harvested in different seasons. Red TSB samples were collected from Guizhou province, China, 21 days after the beginning of spring (Lichun), summer (Lixia), and autumn (Liqiu), and stored at 4 °C in dark conditions. We compared and analyzed the appearance, microstructure, chlorophyll and cellulose content, and expression levels of related genes across different seasons. The results indicated that TSB harvested in spring had a bright, purple-red color, whereas those harvested in summer and autumn were green. All samples lost water and darkened after 1 day of storage. Severe greening occurred in spring-harvested TSB within 3 days, a phenomenon not observed in summer and autumn samples. Microstructural analysis revealed that the cells in the palisade and spongy tissues of spring and autumn TSB settled closely during storage, while summer TSB cells remained loosely aligned. Xylem cells were smallest in spring-harvested TSB and largest in autumn. Prolonged storage led to thickening of the secondary cell walls and pith cell autolysis in the petioles, enlarging the cavity area. Chlorophyll content was higher in leaves than in petioles, while cellulose content was lower in petioles across all seasons. Both chlorophyll and cellulose content increased with storage time. Gene expression analysis showed season-dependent variations and significant increases in the expression of over half of the chlorophyll-related and cellulose-related genes during refrigeration, correlating with the observed changes in chlorophyll and cellulose content. This research provides valuable insights for improving postharvest storage and freshness preservation strategies for red TSB across different seasons.

摘要

采后纤维化和花蕾变绿在贮藏过程中显著影响其品质。本研究旨在阐明低温贮藏对不同季节收获的红桃酥采后品质的影响。红桃酥样品取自中国贵州省,在立春(立春)、立夏(立夏)和立秋(立秋)后 21 天采集,在 4°C 黑暗条件下贮藏。我们比较和分析了不同季节外观、微观结构、叶绿素和纤维素含量以及相关基因表达水平的差异。结果表明,春季收获的桃酥颜色鲜艳,呈紫红色,而夏季和秋季收获的桃酥则呈绿色。所有样品在贮藏 1 天后都会失水变暗。春季收获的桃酥在 3 天内严重变绿,而夏季和秋季样品则没有这种现象。微观结构分析表明,春季和秋季收获的桃酥栅栏组织和海绵组织的细胞在贮藏过程中排列紧密,而夏季收获的桃酥细胞仍排列松散。春季收获的桃酥木质部细胞最小,秋季收获的桃酥木质部细胞最大。长期贮藏导致叶柄次生细胞壁和髓细胞自溶变厚,腔室面积增大。叶绿素含量在叶片中高于叶柄,而纤维素含量在叶柄中则低于各季节。叶绿素和纤维素含量随贮藏时间的延长而增加。基因表达分析表明,在冷藏过程中,超过一半的叶绿素相关和纤维素相关基因的表达存在季节性差异,并显著增加,这与观察到的叶绿素和纤维素含量的变化相关。本研究为改善不同季节红桃酥采后贮藏和保鲜策略提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8a7/11276666/df400318cb7f/ijms-25-07719-g001.jpg

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