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整合生理和代谢物分析鉴定郁金香花瓣衰老过程中乙烯的作用。

Integrating physiological and metabolites analysis to identify ethylene involvement in petal senescence in Tulipa gesneriana.

机构信息

Key Laboratory of Horticultural Plant Biology, Ministry of Education, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, China.

Yunnan Academy of Agricultural Sciences, Kunming, China.

出版信息

Plant Physiol Biochem. 2020 Apr;149:121-131. doi: 10.1016/j.plaphy.2020.02.001. Epub 2020 Feb 7.

Abstract

Flower senescence is classified into ethylene-dependent and ethylene-independent manners and determines the flower longevity which is valuable for ornamental plants. However, the manner of petal senescence in tulip is still less defined. In this study, we characterized the physiological indexes in the process of petal senescence, as well as metabolic and ethylene responses in tulip cultivar 'American Dream', and further identified the role of ethylene biosynthesis genes TgACS by transgenic and transient assays. Primary metabolites profiling revealed that sugars, amino acids and organic acids preferentially accumulated in senescent petals. Additionally, senescence-associated genes were identified and significantly up-regulated, coupled with increased ROS contents, rapid water loss and accelerated cell membrane breakdown. Moreover, ethylene production was stimulated as evidenced by increasing in ACS activity and ethylene biosynthesis-related genes expression. Exogenous treatment of cutting flowers with 1-MCP or ethephon resulted in delayed or enhanced petal senescence, respectively. Transient down-regulation of TgACS by VIGS assay in tulip petals delayed senescence, while over-expressed TgACS1 in tobacco promoted leaf senescence. Taken together, this study provides evidences to certify ethylene roles and TgACS functions during flower senescence in tulip.

摘要

花朵衰老分为依赖乙烯和不依赖乙烯两种方式,决定了花朵的寿命,这对观赏植物很有价值。然而,郁金香花瓣衰老的方式仍不明确。在这项研究中,我们描述了郁金香品种‘美国梦’花瓣衰老过程中的生理指标,以及代谢和乙烯反应,并通过转基因和瞬时测定进一步鉴定了乙烯生物合成基因 TgACS 的作用。初级代谢产物分析表明,衰老花瓣中糖、氨基酸和有机酸优先积累。此外,与 ROS 含量增加、快速失水和加速细胞膜破裂相关的衰老相关基因被鉴定并显著上调。此外,ACS 活性和乙烯生物合成相关基因表达的增加表明乙烯的产生受到了刺激。用 1-MCP 或乙烯利处理切花会导致花瓣衰老分别延迟或增强。VIGS 试验在郁金香花瓣中瞬时下调 TgACS 会延迟衰老,而在烟草中过表达 TgACS1 会促进叶片衰老。总之,这项研究提供了证据,证明了乙烯在郁金香花衰老过程中的作用和 TgACS 的功能。

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