Zanon Laura, Falchi Rachele, Santi Simonetta, Vizzotto Giannina
Dipartimento di Scienze Agrarie e Ambientali, University of Udine, 33100, Udine, Italy.
Physiol Plant. 2015 Jun;154(2):179-93. doi: 10.1111/ppl.12304. Epub 2014 Nov 25.
Several complex physiological processes, which include long-distance translocation in the phloem and unloading in sink tissues, govern the partitioning of sugars in economically important organs, such as peach fruit. In this study, we took advantage of a symplastic tracer, carboxyfluorescein (CF), providing evidence for an apoplastic sucrose transfer in the early (SI) and middle (SIII) phases of peach fruit development. Moreover, using a combination of in situ hybridization and laser microdissection-assisted expression analysis, three putative sucrose transporters encoding genes (PpSUT1, PpSUT2, PpSUT4) were transcriptionally analyzed to relate their expression with sucrose storage in this organ. Our study revealed that PpSUT2 and PpSUT4 are the genes predominantly expressed in fruit flesh, and the detailed analysis of their expression pattern in the different cell types enabled us to suggest a specialized role in sucrose distribution. Both PpSUTs transporters could be involved in the retrieval of sucrose lost from the symplastic continuum of the phloem and, when expressed in parenchyma cells, they could be active in the import of sucrose into sink tissues, via symport from the apoplast. An alternative hypothesis has been proposed and discussed for PpSUT4 because of its putative tonoplastic localization. Taken together, our results provide new insights into the molecular mechanisms underpinning sucrose unloading and accumulation in peach fruit.
几个复杂的生理过程,包括韧皮部中的长距离运输和库组织中的卸载,控制着糖分在诸如桃果实等经济重要器官中的分配。在本研究中,我们利用了一种共质体示踪剂羧基荧光素(CF),为桃果实发育早期(SI)和中期(SIII)的质外体蔗糖转运提供了证据。此外,通过原位杂交和激光显微切割辅助表达分析相结合的方法,对三个推定的蔗糖转运蛋白编码基因(PpSUT1、PpSUT2、PpSUT4)进行了转录分析,以将它们的表达与该器官中的蔗糖储存联系起来。我们的研究表明,PpSUT2和PpSUT4是主要在果肉中表达的基因,对它们在不同细胞类型中的表达模式进行详细分析使我们能够提出它们在蔗糖分配中的特殊作用。这两种PpSUT转运蛋白都可能参与从韧皮部共质体连续体中流失的蔗糖的回收,并且当在薄壁细胞中表达时,它们可能通过从质外体的共转运而在将蔗糖导入库组织中发挥作用。由于PpSUT4假定的液泡膜定位,我们提出并讨论了另一种假设。综上所述,我们的结果为桃果实中蔗糖卸载和积累的分子机制提供了新的见解。