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跃变型和非跃变型果实中生长素、水杨酸和褪黑素的生物合成、代谢及功能

Biosynthesis, Metabolism and Function of Auxin, Salicylic Acid and Melatonin in Climacteric and Non-climacteric Fruits.

作者信息

Pérez-Llorca Marina, Muñoz Paula, Müller Maren, Munné-Bosch Sergi

机构信息

Department of Evolutionary Biology, Ecology and Environmental Sciences, University of Barcelona, Barcelona, Spain.

Institute for Research on Nutrition and Food Safety, University of Barcelona, Barcelona, Spain.

出版信息

Front Plant Sci. 2019 Feb 18;10:136. doi: 10.3389/fpls.2019.00136. eCollection 2019.

Abstract

Climacteric and non-climacteric fruits are differentiated by the ripening process, in particular by the involvement of ethylene, high respiration rates and the nature of the process, being autocatalytic or not, respectively. Here, we focus on the biosynthesis, metabolism and function of three compounds (auxin, salicylic acid and melatonin) sharing not only a common precursor (chorismate), but also regulatory functions in plants, and therefore in fruits. Aside from describing their biosynthesis in plants, with a particular emphasis on common precursors and points of metabolic diversion, we will discuss recent advances on their role in fruit ripening and the regulation of bioactive compounds accumulation, both in climacteric and non-climacteric fruits.

摘要

更年性果实和非更年性果实是根据成熟过程来区分的,特别是根据乙烯的参与情况、高呼吸速率以及该过程的性质,分别是自催化还是非自催化。在这里,我们关注三种化合物(生长素、水杨酸和褪黑素)的生物合成、代谢和功能,它们不仅共享一个共同的前体(分支酸),而且在植物中,因此也在果实中具有调节功能。除了描述它们在植物中的生物合成,特别强调共同前体和代谢分支点外,我们还将讨论它们在更年性和非更年性果实的果实成熟以及生物活性化合物积累调节中的作用的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed76/6387956/089c169562c2/fpls-10-00136-g001.jpg

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