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在茄科植物中,一系列bHLH蛋白赋予花青素调控复合体不同的靶标特异性。

In the Solanaceae, a hierarchy of bHLHs confer distinct target specificity to the anthocyanin regulatory complex.

作者信息

Montefiori Mirco, Brendolise Cyril, Dare Andrew P, Lin-Wang Kui, Davies Kevin M, Hellens Roger P, Allan Andrew C

机构信息

The New Zealand Institute for Plant & Food Research Ltd, Private Bag 92 169, Auckland, New Zealand.

The New Zealand Institute for Plant and Food Research Ltd, Private Bag 11 600, Palmerston North, New Zealand.

出版信息

J Exp Bot. 2015 Mar;66(5):1427-36. doi: 10.1093/jxb/eru494. Epub 2015 Jan 26.

Abstract

The anthocyanin biosynthetic pathway is regulated by a transcription factor complex consisting of an R2R3 MYB, a bHLH, and a WD40. Although R2R3 MYBs belonging to the anthocyanin-activating class have been identified in many plants, and their role well elucidated, the subgroups of bHLH implicated in anthocyanin regulation seem to be more complex. It is not clear whether these potential bHLH partners are biologically interchangeable with redundant functions, or even if heterodimers are involved. In this study, AcMYB110, an R2R3 MYB isolated from kiwifruit (Actinidia sp.) showing a strong activation of the anthocyanin pathway in tobacco (Nicotiana tabacum) was used to examine the function of interacting endogenous bHLH partners. Constitutive expression of AcMYB110 in tobacco leaves revealed different roles for two bHLHs, NtAN1 and NtJAF13. A hierarchical mechanism is shown to control the regulation of transcription factors and consequently of the anthocyanin biosynthetic pathway. Here, a model is proposed for the regulation of the anthocyanin pathway in Solanaceous plants in which AN1 is directly involved in the activation of the biosynthetic genes, whereas JAF13 is involved in the regulation of AN1 transcription.

摘要

花青素生物合成途径受一个由R2R3 MYB、一个bHLH和一个WD40组成的转录因子复合体调控。尽管在许多植物中已鉴定出属于花青素激活类的R2R3 MYB,并且它们的作用也已得到充分阐明,但参与花青素调控的bHLH亚组似乎更为复杂。尚不清楚这些潜在的bHLH伙伴在生物学上是否具有冗余功能且可相互替换,甚至也不清楚是否涉及异源二聚体。在本研究中,从猕猴桃(Actinidia sp.)中分离出的R2R3 MYB——AcMYB110,在烟草(Nicotiana tabacum)中表现出对花青素途径的强烈激活作用,被用于研究相互作用的内源性bHLH伙伴的功能。AcMYB110在烟草叶片中的组成型表达揭示了两个bHLH,即NtAN1和NtJAF13的不同作用。研究表明存在一种层级机制来控制转录因子的调控,进而控制花青素生物合成途径的调控。在此,提出了一个茄科植物花青素途径调控模型,其中AN1直接参与生物合成基因的激活,而JAF13参与AN1转录的调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d82a/4339601/a086fcece430/exbotj_eru494_f0001.jpg

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