Ye Zhihua, Du Bingshuai, Zhou Jing, Cao Yibo, Zhang Lingyun
Key Laboratory of Forest Silviculture and Conservation of the Ministry of Education, The College of Forestry, Beijing Forestry University, Beijing 100083, China.
Plants (Basel). 2023 Jul 29;12(15):2818. doi: 10.3390/plants12152818.
Sugar transport from the source leaf to the sink organ is critical for seed development and crop yield, as well as for responding to abiotic stress. SWEETs (sugar will eventually be exported transporters) mediate sugar efflux into the reproductive sink and are therefore considered key candidate proteins for sugar unloading during seed development. However, the specific mechanism underlying the sugar unloading to seeds in remains elusive. Here, we identified a SWEET gene named CoSWEET10, which belongs to Clade III and has high expression levels in the seeds of . CoSWEET10 is a plasma membrane-localized protein. The complementation assay of CoSWEET10 in SUSY7/ura3 and EBY.VW4000 yeast strains showed that CoSWEET10 has the ability to transport sucrose, glucose, and fructose. Through the seeds in vitro culture, we found that the expression of CoSWEET10 can be induced by hexose and sucrose, and especially glucose. By generating the restoration lines of CoSWEET10 in , we found that CoSWEET10 restored the seed defect phenotype of the mutant by regulating soluble sugar accumulation and increased plant drought tolerance. Collectively, our study demonstrates that CoSWEET10 plays a dual role in promoting seed development and enhancing plant drought resistance as a sucrose and hexose transporter.
糖从源叶向库器官的转运对于种子发育和作物产量至关重要,同时也关乎对非生物胁迫的响应。SWEETs(糖最终输出转运蛋白)介导糖外排至生殖库,因此被视为种子发育过程中糖卸载的关键候选蛋白。然而,糖卸载至种子的具体机制仍不清楚。在此,我们鉴定出一个名为CoSWEET10的SWEET基因,它属于III类,在[具体植物名称]种子中具有高表达水平。CoSWEET10是一种定位于质膜的蛋白。CoSWEET10在SUSY7/ura3和EBY.VW4000酵母菌株中的互补试验表明,CoSWEET10具有转运蔗糖、葡萄糖和果糖的能力。通过对[具体植物名称]种子进行体外培养,我们发现CoSWEET10的表达可被己糖和蔗糖诱导,尤其是葡萄糖。通过在[具体植物名称]中构建CoSWEET10的恢复系,我们发现CoSWEET10通过调节可溶性糖积累恢复了突变体的种子缺陷表型,并提高了植物的耐旱性。总之,我们的研究表明,CoSWEET10作为蔗糖和己糖转运蛋白在促进种子发育和增强植物抗旱性方面发挥双重作用。