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叶绿素降解和类胡萝卜素生物合成途径:在西兰花黄化过程中的基因表达和色素含量。

Chlorophyll degradation and carotenoid biosynthetic pathways: Gene expression and pigment content in broccoli during yellowing.

机构信息

Department of Food Science, Shenyang Agricultural University, Shenyang 110866, PR China.

Department of Food Science, Shenyang Agricultural University, Shenyang 110866, PR China.

出版信息

Food Chem. 2019 Nov 1;297:124964. doi: 10.1016/j.foodchem.2019.124964. Epub 2019 Jun 8.

Abstract

Broccoli undergoes yellowing in unfavorable conditions, thereby diminishing the sensory quality and commodity value. This study aimed to investigate systematically cellular and/or biomolecular changes involved in broccoli yellowing by analyzing changes in microstructural integrity, pigment content, and gene expression. On day-5 of storage at 20 °C, the buds turned yellow without blooming and showed structural damage; ultrastructural analysis revealed plastid transformation and abnormal chloroplast development. Genes regulating pigment content and chloroplast structure directly were identified. More specifically, BoCAO and BoNYC1 regulated chlorophyll turnover, affecting chlorophyll a and b contents. Changes in the β-cryptoxanthin content were influenced by the combined action of up- (BoHYD) and downstream (BoZEP) genes. BoZEP and BoVDE were activated after cold-temperature induction. High BoHO1 expression delayed yellowing at low temperature, inducing BoZEP expression. Color intensity correlated significantly with the chlorophyll b, β-cryptoxanthin, and β-carotene contents, which were associated with increased yellowing of plant tissues.

摘要

在不利条件下,西兰花会变黄,从而降低其感官品质和商品价值。本研究旨在通过分析微观结构完整性、色素含量和基因表达的变化,系统研究西兰花变黄过程中涉及的细胞和/或生物分子变化。在 20°C 下储存 5 天后,花蕾没有开花就变黄了,并出现了结构损伤;超微结构分析显示质体转化和叶绿体发育异常。鉴定了直接调节色素含量和叶绿体结构的基因。具体来说,BoCAO 和 BoNYC1 调节叶绿素周转,影响叶绿素 a 和 b 的含量。β-隐黄质含量的变化受到上游(BoHYD)和下游(BoZEP)基因的共同作用的影响。BoZEP 和 BoVDE 在低温诱导后被激活。高表达的 BoHO1 延迟了低温下的黄化,诱导了 BoZEP 的表达。颜色强度与叶绿素 b、β-隐黄质和β-胡萝卜素含量显著相关,这些物质与植物组织变黄有关。

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