Australian Research Council Centre of Excellence in Plant Energy Biology, College of Medicine, Biology and Environment, Research School of Biology, The Australian National University, Canberra, Australia.
PLoS One. 2013 Jul 29;8(7):e70069. doi: 10.1371/journal.pone.0070069. Print 2013.
Plant-specific PIN-formed (PIN) efflux transporters for the plant hormone auxin are required for tissue-specific directional auxin transport and cellular auxin homeostasis. The Arabidopsis PIN protein family has been shown to play important roles in developmental processes such as embryogenesis, organogenesis, vascular tissue differentiation, root meristem patterning and tropic growth. Here we analyzed roles of the less characterised Arabidopsis PIN6 auxin transporter. PIN6 is auxin-inducible and is expressed during multiple auxin-regulated developmental processes. Loss of pin6 function interfered with primary root growth and lateral root development. Misexpression of PIN6 affected auxin transport and interfered with auxin homeostasis in other growth processes such as shoot apical dominance, lateral root primordia development, adventitious root formation, root hair outgrowth and root waving. These changes in auxin-regulated growth correlated with a reduction in total auxin transport as well as with an altered activity of DR5-GUS auxin response reporter. Overall, the data indicate that PIN6 regulates auxin homeostasis during plant development.
植物特异性 PIN 形成(PIN)外排转运蛋白对于植物激素生长素的组织特异性定向运输和细胞内生长素稳态是必需的。拟南芥 PIN 蛋白家族已被证明在胚胎发生、器官发生、血管组织分化、根分生组织模式和向性生长等发育过程中发挥重要作用。在这里,我们分析了功能不太明确的拟南芥 PIN6 生长素转运蛋白的作用。PIN6 是生长素诱导的,在多个生长素调节的发育过程中表达。pin6 功能丧失会干扰主根生长和侧根发育。PIN6 的异位表达会影响生长素的运输,并干扰其他生长过程中的生长素稳态,如顶端优势、侧根原基发育、不定根形成、根毛生长和根摆动。这些生长素调节生长的变化与总生长素运输的减少以及 DR5-GUS 生长素反应报告基因活性的改变相关。总的来说,数据表明 PIN6 调节植物发育过程中的生长素稳态。