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CsSWEET1a 和 CsSWEET17 通过促进糖跨质膜运输来介导生长和抗冻性。

CsSWEET1a and CsSWEET17 Mediate Growth and Freezing Tolerance by Promoting Sugar Transport across the Plasma Membrane.

机构信息

National Center for Tea Plant Improvement, Tea Research Institute, Chinese Academy of Agricultural Sciences, Key Laboratory of Tea Biology and Resources Utilization, Ministry of Agriculture and Rural Affairs, Hangzhou 310008, China.

出版信息

Plant Cell Physiol. 2020 Sep 1;61(9):1669-1682. doi: 10.1093/pcp/pcaa091.

Abstract

Sugars Will Eventually be Exported Transporters (SWEETs) are important in plant biological processes. Expression levels of CsSWEET1a and CsSWEET17 are induced by cold acclimation (CA) and cold stress in Camellia sinensis. Here, we found that CsSWEET17 was alternatively spliced, and its exclusion (Ex) transcript was associated with the CA process. Both plasma membrane-localized CsSWEET1a and CsSWEET17 transport hexoses, but cytoplasm-localized CsSWEET17-Ex does not. These results indicate that alternative splicing may be involved in regulating the function of SWEET transporters in response to low temperature in plants. The extra C-terminal of CsSWEET17, which is not found in the tonoplast fructose transporter AtSWEET17, did not affect its plasma membrane localization but promoted its sugar transport activities. The overexpression (OE) of CsSWEET1a and CsSWEET17 genes resulted in an increased sugar uptake in Arabidopsis, affecting plant germination and growth. The leaf and seed sizes of the CsSWEET17-OE lines were significantly larger than those of the wild type. Moreover, the OE of CsSWEET1a and CsSWEET17 significantly reduced the relative electrolyte leakage levels under freezing stress. Compared with the wild type, the expression of AtCWINV genes was suppressed in both CsSWEET1a-OE and CsSWEET17-OE lines, indicating the alteration in sugar contents in the cell walls of the OE lines. Furthermore, the interaction between CsSWEET1a and CsSWEET17 was confirmed using yeast two-hybrid and bimolecular fluorescence complementation assays. We showed that CsSWEET1a and CsSWEET17 form homo-/heterodimers in the plasma membrane and mediate the partitioning of sugars between the cytoplasm and the apoplast, thereby regulating plant growth and freezing tolerance.

摘要

糖将最终被输出载体(SWEETs)在植物的生物过程中起着重要作用。CsSWEET1a 和 CsSWEET17 的表达水平受到低温驯化(CA)和冷胁迫的诱导。在这里,我们发现 CsSWEET17 发生了选择性剪接,其排除(Ex)转录本与 CA 过程有关。质膜定位的 CsSWEET1a 和 CsSWEET17 都能转运己糖,但细胞质定位的 CsSWEET17-Ex 不能。这些结果表明,选择性剪接可能参与调节 SWEET 转运蛋白的功能,以响应植物中的低温。在液泡膜果糖转运体 AtSWEET17 中未发现的 CsSWEET17 的额外 C 端不影响其质膜定位,但促进了其糖转运活性。CsSWEET1a 和 CsSWEET17 基因的过表达(OE)导致拟南芥中糖的摄取增加,从而影响植物的萌发和生长。CsSWEET17-OE 系的叶片和种子大小明显大于野生型。此外,CsSWEET1a 和 CsSWEET17 的 OE 显著降低了冷冻胁迫下相对电解质渗漏水平。与野生型相比,AtCWINV 基因在 CsSWEET1a-OE 和 CsSWEET17-OE 系中的表达均受到抑制,表明 OE 系细胞壁中的糖含量发生了变化。此外,使用酵母双杂交和双分子荧光互补测定法证实了 CsSWEET1a 和 CsSWEET17 之间的相互作用。我们表明,CsSWEET1a 和 CsSWEET17 在质膜中形成同型/异型二聚体,并介导细胞质和质外体之间的糖分配,从而调节植物的生长和抗冻性。

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