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脱落酸调控肉质果实成熟的生理及分子机制

The Physiological and Molecular Mechanism of Abscisic Acid in Regulation of Fleshy Fruit Ripening.

作者信息

Bai Qian, Huang Yun, Shen Yuanyue

机构信息

College of Horticulture, China Agricultural University, Beijing, China.

College of Plant Science and Technology, Beijing University of Agriculture, Beijing, China.

出版信息

Front Plant Sci. 2021 Jan 11;11:619953. doi: 10.3389/fpls.2020.619953. eCollection 2020.

Abstract

The ripening of fleshy fruits is coupled with the degradation of both chlorophyll and cell walls, as well as changes in the metabolism of phenylpropanoids, flavonoids, starch/sucrose, and carotenoids. These processes are controlled by phytohormones and other factors, including abscisic acid (ABA), ethylene, auxin, polyamines, sugar, and reactive oxygen species. The ripening of climacteric fruits is controlled by ethylene and non-climacteric fruit ripening is regulated mainly by ABA. Also, ABA and ethylene may interact in both types of fruit ripening. ABA concentrations in fleshy fruits are regulated in response to developmental and environmental cues and are controlled by the relative rates of ABA biosynthesis and catabolism, the former mainly 9-cis-epoxycarotenoid dioxygenases (NCEDs) and β-glucosidases and the latter ABA 8'-hydroxylases (CYP707As) and β-glycosyltransferases. In strawberry fruit ripening, ABA is perceived at least two receptors, Pyrabactin resistance (PYR)/PYR-like (PYL) and putative abscisic acid receptor (ABAR), which are linked separately to the conserved signaling pathway ABA-FaPYR1-FaABIl-FaSnRK2 and the novel signaling pathway ABA-FaABAR-FaRIPK1-FaABI4. Downstream signaling components include important transcription factors, such as AREB (ABA responsive element binding protein)/ABF (ABRE binding factors ABA responsive factor), ethylene response factor (ERF), and V-myb Myeloblastosis viral oncogene homolog (MYB), as well as ripening-related genes. Finally, a comprehensive model of ABA linked to ethylene, sugar, polyamines, auxin and reactive oxygen species in the regulation of strawberry fruit ripening is proposed. Next, new integrated mechanisms, including two ABA signaling pathways, ABA and ethylene signaling pathways, and ABA/ethylene to other phytohormones are interesting and important research topics in ripening, especially in non-climacteric fruits.

摘要

肉质果实的成熟与叶绿素和细胞壁的降解、苯丙烷类、黄酮类、淀粉/蔗糖以及类胡萝卜素代谢的变化相关联。这些过程受植物激素和其他因素控制,包括脱落酸(ABA)、乙烯、生长素、多胺、糖和活性氧。跃变型果实的成熟受乙烯控制,而非跃变型果实的成熟主要受ABA调节。此外,ABA和乙烯可能在这两类果实成熟过程中相互作用。肉质果实中ABA的浓度根据发育和环境信号进行调节,并受ABA生物合成和分解代谢的相对速率控制,前者主要由9-顺式环氧类胡萝卜素双加氧酶(NCEDs)和β-葡萄糖苷酶控制,后者由ABA 8'-羟化酶(CYP707As)和β-糖基转移酶控制。在草莓果实成熟过程中,ABA至少被两种受体感知,即吡唑素抗性(PYR)/PYR样(PYL)和假定的脱落酸受体(ABAR),它们分别与保守的信号通路ABA-FaPYR1-FaABIl-FaSnRK2和新的信号通路ABA-FaABAR-FaRIPK1-FaABI4相连。下游信号成分包括重要的转录因子,如AREB(脱落酸响应元件结合蛋白)/ABF(ABRE结合因子脱落酸响应因子)、乙烯响应因子(ERF)和V-myb髓细胞白血病病毒癌基因同源物(MYB),以及与成熟相关的基因。最后,提出了一个在草莓果实成熟调控中与乙烯、糖、多胺、生长素和活性氧相关的ABA综合模型。接下来,包括两条ABA信号通路、ABA和乙烯信号通路以及ABA/乙烯与其他植物激素的新的整合机制,是果实成熟尤其是非跃变型果实成熟中有趣且重要的研究课题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4334/7829184/bc4ea21b9fb4/fpls-11-619953-g001.jpg

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