Key Laboratory of Tropical Crop Biotechnology, Ministry of Agriculture, Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Haikou, 571101, China.
Key Laboratory of Genetic Improvement of Bananas, Hainan Province, Haikou Experimental Station, Chinese Academy of Tropical Agricultural Sciences, Haikou, 570102, China.
Sci Rep. 2017 Jun 14;7(1):3536. doi: 10.1038/s41598-017-03872-w.
Sugars Will Eventually be Exported Transporters (SWEET) are a novel type of sugar transporter that plays crucial roles in multiple biological processes. From banana, for the first time, 25 SWEET genes which could be classified into four subfamilies were identified. Majority of MaSWEETs in each subfamily shared similar gene structures and conserved motifs. Comprehensive transcriptomic analysis of two banana genotypes revealed differential expression patterns of MaSWEETs in different tissues, at various stages of fruit development and ripening, and in response to abiotic and biotic stresses. More than 80% MaSWEETs were highly expressed in BaXi Jiao (BX, Musa acuminata AAA group, cv. Cavendish), in sharp contrast to Fen Jiao (FJ, M. acuminata AAB group) when pseudostem was first emerged. However, MaSWEETs in FJ showed elevated expression under cold, drought, salt, and fungal disease stresses, but not in BX. Interaction networks and co-expression assays further revealed that MaSWEET-mediated networks participate in fruit development signaling and abiotic/biotic stresses, which was strongly activated during early stage of fruit development in BX. This study provides new insights into the complex transcriptional regulation of SWEETs, as well as numerous candidate genes that promote early sugar transport to improve fruit quality and enhance stress resistance in banana.
糖转运蛋白(Sugars Will Eventually be Exported Transporters,SWEET)是一类新型的糖转运蛋白,在多种生物学过程中发挥着关键作用。首次从香蕉中鉴定出 25 个 SWEET 基因,可分为四个亚家族。每个亚家族的大多数 MaSWEETs 具有相似的基因结构和保守基序。对两个香蕉基因型的综合转录组分析表明,MaSWEETs 在不同组织、果实发育和成熟的不同阶段以及对非生物和生物胁迫的反应中表现出不同的表达模式。超过 80%的 MaSWEETs 在芭蕉蕉(BX,Musa acuminata AAA 组,cv. Cavendish)中高度表达,与第一期假茎出现时的粉蕉(FJ,M. acuminata AAB 组)形成鲜明对比。然而,FJ 中的 MaSWEETs 在冷、旱、盐和真菌病害胁迫下表达上调,但在 BX 中则没有。相互作用网络和共表达分析进一步表明,MaSWEET 介导的网络参与果实发育信号和非生物/生物胁迫,在 BX 果实发育的早期阶段被强烈激活。本研究为 SWEET 复杂的转录调控以及促进早期糖转运以提高果实品质和增强香蕉抗逆性的大量候选基因提供了新的见解。