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Genome-Wide Characterization and Expression Profiling of Sugar Transporter Family in the Whitefly, Bemisia tabaci (Gennadius) (Hemiptera: Aleyrodidae).


ABSTRACT: Sugar transporters (STs) play pivotal roles in the growth, development, and stress responses of phloem-sucking insects, such as the whitefly, Bemisia tabaci. In this study, 137 sugar transporters (STs) were identified based on analysis of the genome and transcriptome of B. tabaci MEAM1. B. tabaci MEAM1 encodes a larger number of STs than other selected insects. Phylogenetic and molecular evolution analysis showed that the 137 STs formed three expanded clades and that the genes in Sternorrhyncha expanded clades had accelerated rates of evolution. B. tabaci sugar transporters (BTSTs) were divided into three groups based on their expression profiles across developmental stages; however, no host-specific BTST was found in B. tabaci fed on different host plants. Feeding of B. tabaci adults with feeding diet containing dsRNA significantly reduced the transcript level of the target genes in B. tabaci and mortality was significantly improved in B. tabaci fed on dsRNA compared to the control, which indicates the sugar transporters may be used as potential RNAi targets for B. tabaci bio-control. These results provide a foundation for further studies of STs in B. tabaci.

SUBMITTER: Yang Z 

PROVIDER: S-EPMC5440588 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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Genome-Wide Characterization and Expression Profiling of Sugar Transporter Family in the Whitefly, <i>Bemisia tabaci</i> (Gennadius) (Hemiptera: Aleyrodidae).

Yang Zezhong Z   Xia Jixing J   Pan Huipeng H   Gong Cheng C   Xie Wen W   Guo Zhaojiang Z   Zheng Huixin H   Yang Xin X   Yang Fengshan F   Wu Qingjun Q   Wang Shaoli S   Zhang Youjun Y  

Frontiers in physiology 20170523


Sugar transporters (<i>STs</i>) play pivotal roles in the growth, development, and stress responses of phloem-sucking insects, such as the whitefly, <i>Bemisia tabaci</i>. In this study, 137 sugar transporters (<i>STs</i>) were identified based on analysis of the genome and transcriptome of <i>B. tabaci</i> MEAM1. <i>B. tabaci</i> MEAM1 encodes a larger number of <i>STs</i> than other selected insects. Phylogenetic and molecular evolution analysis showed that the 137 <i>STs</i> formed three expa  ...[more]

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