Starkevič Pavel, Paukštytė Jurgita, Kazanavičiūtė Vaiva, Denkovskienė Erna, Stanys Vidmantas, Bendokas Vidmantas, Šikšnianas Tadeušas, Ražanskienė Aušra, Ražanskas Raimundas
Vilnius University Institute of Biotechnology, V.A. Graičiūno 8, Vilnius, LT-02241, Lithuania.
Institute of Horticulture, Lithuanian Research Centre for Agriculture and Forestry, Kaunas st 30, Babtai, LT-54333, Kaunas, Lithuania.
PLoS One. 2015 May 15;10(5):e0126991. doi: 10.1371/journal.pone.0126991. eCollection 2015.
Anthocyanins are essential contributors to fruit coloration, an important quality feature and a breed determining trait of a sweet cherry fruit. It is well established that the biosynthesis of anthocyanins is regulated by an interplay of specific transcription factors belonging to MYB and bHLH families accompanied by a WD40 protein. In this study, we isolated and analyzed PaWD40, PabHLH3, PabHLH33, and several closely related MYB10 gene variants from different cultivars of sweet cherry, analyzed their expression in fruits with different anthocyanin levels at several developmental stages, and determined their capabilities to modulate anthocyanin synthesis in leaves of two Nicotiana species. Our results indicate that transcription level of variant PaMYB10.1-1 correlates with fruit coloration, but anthocyanin synthesis in Nicotiana was induced by another variant, PaMYB10.1-3, which is moderately expressed in fruits. The analysis of two fruit-expressed bHLH genes revealed that PabHLH3 enhances MYB-induced anthocyanin synthesis, whereas PabHLH33 has strong inhibitory properties.
花青素是甜樱桃果实颜色形成的重要因素,而果实颜色是甜樱桃的一个重要品质特征和品种决定性状。众所周知,花青素的生物合成受属于MYB和bHLH家族的特定转录因子与WD40蛋白相互作用的调控。在本研究中,我们从不同甜樱桃品种中分离并分析了PaWD40、PabHLH3、PabHLH33以及几个密切相关的MYB10基因变体,分析了它们在几个发育阶段花青素水平不同的果实中的表达情况,并确定了它们调节两种烟草叶片中花青素合成的能力。我们的结果表明,变体PaMYB10.1-1的转录水平与果实颜色相关,但烟草中的花青素合成是由另一个变体PaMYB10.1-3诱导的,该变体在果实中适度表达。对两个在果实中表达的bHLH基因的分析表明,PabHLH3增强了MYB诱导的花青素合成,而PabHLH33具有很强的抑制特性。