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木薯采后生理劣变:一种涉及钙信号传导、活性氧和程序性细胞死亡的复杂现象。

Cassava postharvest physiological deterioration: a complex phenomenon involving calcium signaling, reactive oxygen species and programmed cell death.

作者信息

Djabou Astride S M, Carvalho Luiz J C B, Li Qing X, Niemenak Nicolas, Chen Songbi

机构信息

Tropical Crops Genetic Resources Institute, Chinese Academy of Tropical Agricultural Sciences/Key Laboratory of Ministry of Agriculture for Germplasm Resources Conservation and Utilization of Cassava, Hainan, China.

Laboratory of Plant Physiology, Department of Biological Science, Higher Teachers' Training College, University of Yaounde I, Yaounde, Cameroon.

出版信息

Acta Physiol Plant. 2017;39(4):91. doi: 10.1007/s11738-017-2382-0. Epub 2017 Mar 3.

Abstract

Postharvest physiological deterioration (PPD) of cassava () storage roots is a complex physiological and biochemical process which involve many regulatory networks linked with specific proteins modulation and signaling transduction pathways. However, it is poorly understood regarding biological regulation, and the interactions among protein groups and signals to determine PPD syndrome in cassava storage roots. This review sheds some light on the possible molecular mechanisms involved in reactive oxygen species (ROS), calcium signaling transduction, and programmed cell death (PCD) in cassava PPD syndrome. A model for predicting crosstalk among calcium signaling, ROS and PCD is suggested to fine-tune PPD syndrome. This would clues to cassava molecular breeding to alleviate the PPD effects on the shelf-life.

摘要

木薯贮藏根的采后生理劣变(PPD)是一个复杂的生理生化过程,涉及许多与特定蛋白质调节和信号转导途径相关的调控网络。然而,关于其生物学调控以及蛋白质组与信号之间的相互作用以确定木薯贮藏根中的PPD综合征,我们了解甚少。本综述揭示了木薯PPD综合征中活性氧(ROS)、钙信号转导和程序性细胞死亡(PCD)可能涉及的分子机制。提出了一个预测钙信号、ROS和PCD之间相互作用的模型,以微调PPD综合征。这将为木薯分子育种提供线索,以减轻PPD对货架期的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c51/5336541/95e5fb16c316/11738_2017_2382_Fig1_HTML.jpg

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