Department of Biotechnology, University of Verona, Strada Le Grazie 15, 37134 Verona, Italy.
Department of Biotechnology, University of Verona, Strada Le Grazie 15, 37134 Verona, Italy; and Corresponding author. Email:
Funct Plant Biol. 2021 Aug;48(9):916-923. doi: 10.1071/FP20356.
In Arabidopsis thaliana (L.) Heynh., MYB59 transcription factor participates in regulating Ca homeostasis and signal transduction and is induced by Cd excess. To investigate its role in the facultative metallophyte Arabidopsis halleri ssp. halleri (L.) O'Kane and Al-Shehbaz, MYB59 expression was investigated under Cd treatment or Ca depletion in three populations belonging to distinct phylogeographic units (metallicolous PL22 and I16 and non-metallicolous I29), and compared with the expression in A. thaliana. In control conditions, MYB59 transcription in A. thaliana and the non-metallicolous population I29 follow a comparable trend with higher expression in roots than shoots, whereas in metallicolous populations I16 and PL22 its expression is similar in roots and shoots, suggesting a convergent evolution associated with adaptation to metalliferous environments. After 6 h of Ca depletion, MYB59 transcript levels were very high in I16 and PL22 populations, indicating that the adaptation to metalliferous environments requires tightly regulated Ca homeostasis and signalling. Cd treatment caused variability in MYB59 expression. In I29, MYB59 expression, as in A. thaliana, is likely associated to stress response, whereas its modulation in the two metallicolous populations reflects the different strategies for Cd tolerance and accumulation. In conclusion, MYB59 regulation in A. halleri is part of the network linking mineral nutrition and Cd tolerance/accumulation.
在拟南芥(L.)Heynh.中,MYB59 转录因子参与调节钙稳态和信号转导,并被过量的 Cd 诱导。为了研究其在兼性金属植物拟南芥 halleri ssp. halleri(L.)O'Kane 和 Al-Shehbaz 中的作用,在三个属于不同系统发育单元的群体(金属区 PL22 和 I16 和非金属区 I29)中,在 Cd 处理或 Ca 耗尽下研究了 MYB59 的表达,并与拟南芥的表达进行了比较。在对照条件下,拟南芥和非金属区 I29 的 MYB59 转录遵循类似的趋势,根部的表达高于茎部,而在金属区 I16 和 PL22 中,其表达在根部和茎部相似,表明与适应金属环境相关的趋同进化。在 Ca 耗尽 6 小时后,I16 和 PL22 群体的 MYB59 转录物水平非常高,表明适应金属环境需要严格调节钙稳态和信号转导。Cd 处理导致 MYB59 表达的可变性。在 I29 中,MYB59 的表达与拟南芥一样,可能与应激反应有关,而其在两个金属区群体中的调节反映了 Cd 耐受性和积累的不同策略。总之,MYB59 在拟南芥中的调节是连接矿物营养和 Cd 耐受性/积累的网络的一部分。