Department of Plant Agriculture, University of Guelph, 4890 Victoria Av. N, P.O. Box 7000, Vineland Station, ON, L0R 2E0, Canada.
Plant Cell Rep. 2012 Oct;31(10):1911-21. doi: 10.1007/s00299-012-1304-2. Epub 2012 Jun 28.
Auxin-binding protein1 (ABP1) is an active element involved in auxin signaling and plays critical roles in auxin-mediated plant development. Here, we report the isolation and characterization of a putative sequence from Prunus salicina L., designated PslABP1. The expected protein exhibits a similar molecular structure to that of well-characterized maize-ABP1; however, PslABP1 displays more sequence polarity in the active-binding site due to substitution of some crucial amino-acid residues predicted to be involved in auxin-binding. Further, PslABP1 expression was assessed throughout fruit ontogeny to determine its role in fruit development. Comparing the expression data with the physiological aspects that characterize fruit-development stages indicates that PslABP1 up-regulation is usually associated with the signature events that are triggered in an auxin-dependent manner such as floral induction, fruit initiation, embryogenesis, and cell division and elongation. However, the diversity in PslABP1 expression profile during the ripening process of early and late plum cultivars seems to be due to the variability of endogenous auxin levels among the two cultivars, which consequently can change the levels of autocatalytic ethylene available for the fruit to co-ordinate ripening. The effect of auxin on stimulating ethylene production and in regulating PslABP1 was investigated. Our data suggest that auxin is involved in the transition of the mature green fruit into the ripening phase and in enhancing the ripening process in both auxin- and ethylene-dependent manners thereafter.
生长素结合蛋白 1(ABP1)是参与生长素信号转导的活跃元素,在生长素介导的植物发育中发挥关键作用。在这里,我们报道了从李属植物中分离和鉴定的一个假定序列,命名为 PslABP1。预期的蛋白质表现出与玉米 ABP1 相似的分子结构;然而,由于一些关键氨基酸残基的取代,预测这些残基参与生长素结合,PslABP1 在活性结合位点显示出更多的序列极性。此外,评估了 PslABP1 在整个果实发育过程中的表达,以确定其在果实发育中的作用。将表达数据与表征果实发育阶段的生理方面进行比较表明,PslABP1 的上调通常与依赖生长素的方式触发的标志性事件有关,如花诱导、果实起始、胚胎发生以及细胞分裂和伸长。然而,在早、晚李品种的成熟过程中 PslABP1 表达谱的多样性似乎是由于两个品种之间内源生长素水平的可变性,这反过来又可以改变果实中用于协调成熟的自催化乙烯的水平。我们研究了生长素对刺激乙烯产生和调节 PslABP1 的影响。我们的数据表明,生长素参与将成熟的绿色果实过渡到成熟阶段,并以依赖生长素和乙烯的方式增强此后的成熟过程。