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生长素响应因子2A是榴莲中通过生长素-乙烯相互作用介导果实成熟的调控网络的一部分。

Auxin Response Factor 2A Is Part of the Regulatory Network Mediating Fruit Ripening Through Auxin-Ethylene Crosstalk in Durian.

作者信息

Khaksar Gholamreza, Sirikantaramas Supaart

机构信息

Molecular Crop Research Unit, Department of Biochemistry, Faculty of Science, Chulalongkorn University, Bangkok, Thailand.

Omics Sciences and Bioinformatics Center, Chulalongkorn University, Bangkok, Thailand.

出版信息

Front Plant Sci. 2020 Sep 9;11:543747. doi: 10.3389/fpls.2020.543747. eCollection 2020.

Abstract

Fruit ripening is a highly coordinated developmental process driven by a complex hormonal network. Ethylene is the main regulator of climacteric fruit ripening. However, a putative role of other key phytohormones in this process cannot be excluded. We previously observed an increasing level of auxin during the post-harvest ripening of the durian fruit, which occurred concomitantly with the rise in the climacteric ethylene biosynthesis. Herein, we connect the key auxin signaling component, auxin response factors (ARFs), with the regulatory network that controls fruit ripening in durian through the identification and functional characterization of a candidate ripening-associated ARF. Our transcriptome-wide analysis identified 15 ARF members in durian (s), out of which 12 were expressed in the fruit pulp. Most of these s showed a differential expression, but had a marked ripening-associated expression pattern during post-harvest ripening in Monthong, a commercial durian cultivar from Thailand. Phylogenetic analysis of DzARF2A based on its tomato orthologue predicted a role in ripening through the regulation of ethylene biosynthesis. Transient expression of in leaves significantly upregulated the expression levels of ethylene biosynthetic genes, pointing to a ripening-associated role of DzARF2A through the transcriptional regulation of ethylene biosynthesis. Dual-luciferase reporter assay determined that DzARF2A trans-activates durian ethylene biosynthetic genes. We previously reported significantly higher auxin level during post-harvest ripening in a fast-ripening cultivar (Chanee) compared to a slow-ripening one (Monthong). expression was significantly higher during post-harvest ripening in the fast-ripening cultivars (Chanee and Phuangmanee) compared to that of the slow-ripening ones (Monthong and Kanyao). Thus, higher auxin level could upregulate the expression of during ripening of a fast-ripening cultivar. The auxin-induced expression of confirmed its responsiveness to exogenous auxin treatment in a dose-dependent manner, suggesting an auxin-mediated role of DzARF2A in fruit ripening. We suggest that high expression would activate ARF2A-mediated transcription of ethylene biosynthetic genes, leading to increased climacteric ethylene biosynthesis (auxin-ethylene crosstalk) and faster ripening. Hence, we demonstrated DzARF2A as a new component of the regulatory network possibly mediating durian fruit ripening through transcriptional regulation of ethylene biosynthetic genes.

摘要

果实成熟是一个由复杂激素网络驱动的高度协调的发育过程。乙烯是跃变型果实成熟的主要调节因子。然而,不能排除其他关键植物激素在这一过程中的假定作用。我们之前观察到榴莲果实在采后成熟过程中生长素水平不断升高,这与跃变型乙烯生物合成的增加同时发生。在此,我们通过鉴定和功能表征一个与成熟相关的候选生长素响应因子(ARF),将关键的生长素信号成分生长素响应因子与控制榴莲果实成熟的调控网络联系起来。我们的全转录组分析在榴莲中鉴定出15个ARF成员,其中12个在果肉中表达。这些成员大多表现出差异表达,但在泰国商业榴莲品种“金枕头”采后成熟过程中,有一个成员具有明显的与成熟相关的表达模式。基于其番茄同源物对DzARF2A进行系统发育分析,预测其通过调节乙烯生物合成在成熟过程中发挥作用。在叶片中瞬时表达显著上调了乙烯生物合成基因的表达水平,表明DzARF2A通过对乙烯生物合成的转录调控在成熟过程中发挥作用。双荧光素酶报告基因检测确定DzARF2A可反式激活榴莲乙烯生物合成基因。我们之前报道,与慢熟品种(金枕头)相比,快熟品种(尖竹汶)在采后成熟过程中生长素水平显著更高。与慢熟品种(金枕头和卡尧)相比,快熟品种(尖竹汶和芳玛妮)在采后成熟过程中表达显著更高。因此,在快熟品种成熟过程中,较高的生长素水平可上调的表达。生长素诱导的表达证实了其对外源生长素处理的剂量依赖性反应,表明DzARF2A在果实成熟中具有生长素介导的作用。我们认为,高表达会激活ARF2A介导的乙烯生物合成基因转录,导致跃变型乙烯生物合成增加(生长素 - 乙烯相互作用)并加速成熟。因此,我们证明了DzARF2A是调控网络的一个新成分,可能通过对乙烯生物合成基因的转录调控介导榴莲果实成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd67/7509138/8278842fda5f/fpls-11-543747-g001.jpg

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