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褐飞虱(Stål)中糖转运蛋白基因的全基因组鉴定及表达模式

Genome-Wide Identification and Expression Pattern of Sugar Transporter Genes in the Brown Planthopper, (Stål).

作者信息

Shangguan Xinxin, Yang Xiaoyu, Wang Siyin, Geng Lijie, Wang Lina, Zhao Mengfan, Cao Haohao, Zhang Yi, Li Xiaoli, Yang Mingsheng, Xu Kedong, Zheng Xiaohong

机构信息

Key Laboratory of Plant Genetics and Molecular Breeding, Zhoukou Normal University, Zhoukou 466001, China.

Henan Key Laboratory of Crop Molecular Breeding & Bioreactor, Zhoukou 466001, China.

出版信息

Insects. 2024 Jul 7;15(7):509. doi: 10.3390/insects15070509.

Abstract

Sugar transporters play important roles in controlling carbohydrate transport and are responsible for mediating the movement of sugars into cells in numerous organisms. In insects, sugar transporters not only play a role in sugar transport but may also act as receptors for virus entry and the accumulation of plant defense compounds. The brown planthopper, , inflicts damage on rice plants by feeding on their phloem sap, which is rich in sugars. In the present study, we identified 34 sugar transporters in , which were classified into three subfamilies based on phylogenetic analysis. The motif numbers varied from seven to eleven, and motifs 2, 3, and 4 were identified in the functional domains of all 34 NlST proteins. Chromosome 1 was found to possess the highest number of genes, harboring 15. The gut, salivary glands, fat body, and ovary were the different tissues enriched with gene expression. The expression levels of , , , , , , , and were higher in the gut than in the other tissues. When expressed in a hexose transporter deletion mutant (strain EBY.VW4000), only ApST4 (previously characterized) and NlST4, 28, and 31 were found to transport glucose and fructose, resulting in functional rescue of the yeast mutant. These results provide valuable data for further studies on sugar transporters in and lay a foundation for finding potential targets to control .

摘要

糖转运蛋白在控制碳水化合物运输中发挥着重要作用,并负责介导多种生物体中糖类进入细胞的过程。在昆虫中,糖转运蛋白不仅在糖运输中起作用,还可能充当病毒进入的受体以及植物防御化合物的积累位点。褐飞虱通过吸食富含糖分的水稻韧皮部汁液对水稻植株造成损害。在本研究中,我们在褐飞虱中鉴定出34个糖转运蛋白,根据系统发育分析将它们分为三个亚家族。基序数量从7个到11个不等,并且在所有34个NlST蛋白的功能域中都鉴定出了基序2、3和4。发现1号染色体拥有最多的基因,有15个。肠道、唾液腺、脂肪体和卵巢是富含该基因表达的不同组织。ApST4(先前已鉴定)以及NlST4、28和31在肠道中的表达水平高于其他组织。当在酿酒酵母己糖转运蛋白缺失突变体(菌株EBY.VW4000)中表达时,仅发现ApST4和NlST4、28和31能够转运葡萄糖和果糖,从而实现了对酵母突变体的功能拯救。这些结果为进一步研究褐飞虱中的糖转运蛋白提供了有价值的数据,并为寻找控制褐飞虱的潜在靶点奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1471/11277001/ae5082de03e7/insects-15-00509-g001.jpg

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