National Center for Tea Plant Improvement, Tea Research Institute, Chinese Academy of Agricultural Sciences, 9th South of Meiling Road, Hangzhou, 310008, China.
Key Laboratory of Tea Biology and Resources Utilization, Ministry of Agriculture, Hangzhou, 310008, China.
Plant Mol Biol. 2018 Apr;96(6):577-592. doi: 10.1007/s11103-018-0716-y. Epub 2018 Apr 3.
Thirteen SWEET transporters were identified in Camellia sinensis and the cold-suppression gene CsSWEET16 contributed to sugar compartmentation across the vacuole and function in modifying cold tolerance in Arabidopsis. The sugars will eventually be exported transporters (SWEET) family of sugar transporters in plants is a recently identified protein family of sugar uniporters that contain seven transmembrane helices harbouring two MtN3 motifs. SWEETs play important roles in various biological processes, including plant responses to environmental stimuli. In this study, 13 SWEET transporters were identified in Camellia sinensis and were divided into four clades. Transcript abundances of CsSWEET genes were detected in various tissues. CsSWEET1a/1b/2a/2b/2c/3/9b/16/17 were expressed in all of the selected tissues, whereas the expression of CsSWEET5/7/9a/15 was not detected in some tissues, including those of mature leaves. Expression analysis of nine CsSWEET genes in leaves in response to abiotic stresses, natural cold acclimation and Colletotrichum camelliae infection revealed that eight CsSWEET genes responded to abiotic stress, while CsSWEET3 responded to C. camelliae infection. Functional analysis of 13 CsSWEET activities in yeast revealed that CsSWEET1a/1b/7/17 exhibit transport activity for glucose analogues and other types of hexose molecules. Further characterization of the cold-suppression gene CsSWEET16 revealed that this gene is localized in the vacuolar membrane. CsSWEET16 contributed to sugar compartmentation across the vacuole and function in modifying cold tolerance in Arabidopsis. Together, these findings demonstrate that CsSWEET genes play important roles in the response to abiotic and biotic stresses in tea plants and provide insights into the characteristics of SWEET genes in tea plants, which could serve as the basis for further functional identification of such genes.
在茶树中鉴定出 13 个 SWEET 转运蛋白,冷胁迫基因 CsSWEET16 有助于液泡中糖的区室化,并在拟南芥中调节冷耐受性方面发挥作用。这些糖最终将被输出。转运蛋白(SWEET)家族是植物中最近鉴定出的一种糖转运蛋白家族,包含七个跨膜螺旋,含有两个 MtN3 基序。SWEET 在各种生物学过程中发挥重要作用,包括植物对环境刺激的反应。在这项研究中,在茶树中鉴定出 13 个 SWEET 转运蛋白,并将其分为四个分支。在各种组织中检测到 CsSWEET 基因的转录丰度。CsSWEET1a/1b/2a/2b/2c/3/9b/16/17 在所有选定的组织中均有表达,而 CsSWEET5/7/9a/15 在一些组织中未检测到表达,包括成熟叶片。对叶片中 9 个 CsSWEET 基因在非生物胁迫、自然冷驯化和炭疽菌感染下的表达分析表明,8 个 CsSWEET 基因对非生物胁迫有响应,而 CsSWEET3 对炭疽菌感染有响应。在酵母中对 13 个 CsSWEET 活性的功能分析表明,CsSWEET1a/1b/7/17 对葡萄糖类似物和其他类型的己糖分子具有转运活性。对冷抑制基因 CsSWEET16 的进一步表征表明,该基因定位于液泡膜上。CsSWEET16 有助于液泡中糖的区室化,并在拟南芥中调节冷耐受性。总之,这些发现表明 CsSWEET 基因在茶树对非生物和生物胁迫的反应中发挥重要作用,并为茶树中 SWEET 基因的特性提供了深入了解,这可为进一步鉴定这些基因的功能提供依据。