Chen Li-Qing
New Phytol. 2014 Mar;201(4):1150-5. doi: 10.1111/nph.12445. Epub 2013 Aug 19.
Many intercellular solute transport processes require an apoplasmic step, that is, efflux from one cell and subsequent uptake by an adjacent cell. Cellular uptake transporters have been identified for many solutes, including sucrose; however, efflux transporters have remained elusive for a long time. Cellular efflux of sugars plays essential roles in many processes, such as sugar efflux as the first step in phloem loading, sugar efflux for nectar secretion, and sugar efflux for supplying symbionts such as mycorrhiza, and maternal efflux for filial tissue development. Furthermore, sugar efflux systems can be hijacked by pathogens for access to nutrition from hosts. Mutations that block recruitment of the efflux mechanism by the pathogen thus cause pathogen resistance. Until recently, little was known regarding the underlying mechanism of sugar efflux. The identification of sugar efflux carriers, SWEETs (Sugars Will Eventually be Exported Transporters), has shed light on cellular sugar efflux. SWEETs appear to function as uniporters, facilitating diffusion of sugars across cell membranes. Indeed, SWEETs probably mediate sucrose efflux from putative phloem parenchyma into the phloem apoplasm, a key step proceeding phloem loading. Engineering of SWEET mutants using transcriptional activator-like effector nuclease (TALEN)-based genomic editing allowed the engineering of pathogen resistance. The widespread expression of the SWEET family promises to provide insights into many other cellular efflux mechanisms.
许多细胞间溶质转运过程都需要一个质外体步骤,即从一个细胞流出,随后被相邻细胞摄取。已经鉴定出许多溶质的细胞摄取转运蛋白,包括蔗糖;然而,长期以来,流出转运蛋白一直难以捉摸。糖的细胞流出在许多过程中起着重要作用,例如作为韧皮部装载第一步的糖流出、花蜜分泌的糖流出、为菌根等共生体提供糖的糖流出以及为子代组织发育提供母源物质的糖流出。此外,病原菌可以利用糖流出系统从宿主获取营养。因此,阻断病原菌招募流出机制的突变会导致病原菌抗性。直到最近,关于糖流出的潜在机制仍知之甚少。糖流出载体SWEETs(糖最终输出转运蛋白)的鉴定为细胞糖流出提供了线索。SWEETs似乎作为单向转运体发挥作用,促进糖跨细胞膜的扩散。事实上,SWEETs可能介导蔗糖从假定的韧皮部薄壁细胞流出到韧皮部质外体,这是韧皮部装载的关键步骤。使用基于转录激活样效应物核酸酶(TALEN)的基因组编辑技术对SWEET突变体进行工程改造,实现了病原菌抗性的工程化。SWEET家族的广泛表达有望为许多其他细胞流出机制提供见解。