College of Horticulture, Qingdao Agricultural University, Qingdao, China.
College of Horticulture, Nanjing Agricultural University, Nanjing, China.
J Sci Food Agric. 2022 Feb;102(3):1124-1136. doi: 10.1002/jsfa.11449. Epub 2021 Aug 13.
Although the grape berries are deliberated as a non-climacteric fruit, ethylene seems to be involved in grape berry ripening. However, the precise role of ethylene in regulating the ripening of non-climacteric fruits is poorly understood.
Exogenous ethephon (ETH) can stimulate the concentration of internal ethylene and accelerate the accumulation of anthocyanins in berries of 'Fujiminori', including malvidin-, delphinidin-, and petunidin-derivatives (3',4',5'-trihydroxylated anthocyanins) and cyanidin-derivatives (3',4'-dihydroxylated anthocyanins). The content of 3',4',5'-trihydroxylated anthocyanins was extremely higher than 3',4'-dihydroxylated anthocyanins, and ethylene did not affect the composition of anthocyanins in grape. Furthermore, we observed the expression of anthocyanin structural and regulatory genes as well as ethylene biosynthesis and response genes in response to ETH treatment. The anthocyanins accumulation is significantly associated with increased expression of anthocyanin structural (VvPAL, Vv4CH, VvCHS, VvCHI, VvF3H, and VvUFGT) and regulatory genes (VvMYBA1, VvMYBA2, and VvMYBA3), which persisted over the 12 days. In addition, exogenous ETH affected the endogenous ethylene biosynthesis (VvACO2 and VvACO4) and the downstream ethylene regulatory network (VvERS1, VvETR2, VvCTR1, and VvERF005).
These findings bring new insights into the physiological and molecular function of ethylene during berry development and ripening in grapes. © 2021 Society of Chemical Industry.
尽管葡萄浆果被认为是非跃变型果实,但乙烯似乎参与了葡萄浆果的成熟过程。然而,乙烯在调控非跃变型果实成熟过程中的精确作用还知之甚少。
外源乙烯利(ETH)可以刺激内部乙烯的浓度,并加速‘藤稔’浆果中花色苷的积累,包括矢车菊素、飞燕草素和锦葵素衍生物(3',4',5'-三羟基化花色苷)和花青素衍生物(3',4'-二羟基化花色苷)。3',4',5'-三羟基化花色苷的含量极高,高于 3',4'-二羟基化花色苷,而乙烯不影响葡萄花色苷的组成。此外,我们观察到花色苷结构和调节基因以及乙烯生物合成和响应基因对外源 ETH 处理的表达。花色苷的积累与花色苷结构基因(VvPAL、Vv4CH、VvCHS、VvCHI、VvF3H 和 VvUFGT)和调节基因(VvMYBA1、VvMYBA2 和 VvMYBA3)的表达增加显著相关,这种相关性持续了 12 天。此外,外源 ETH 影响了内源乙烯生物合成(VvACO2 和 VvACO4)和下游乙烯调节网络(VvERS1、VvETR2、VvCTR1 和 VvERF005)。
这些发现为乙烯在葡萄浆果发育和成熟过程中的生理和分子功能提供了新的见解。© 2021 化学工业协会。