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拟南芥MtN3/saliva基因家族分析 被引量:8
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作者 何佳 黄学勇 +3 位作者 关跃峰 孙铭希 朱骏 杨仲南 《上海师范大学学报(自然科学版)》 2010年第3期290-298,共9页
MtN3/saliva基因家族是含有2个MtN3/saliva跨膜结构域的膜整合蛋白,其成员广泛存在于真核生物中.目前对该家族功能研究较少,对其跨膜结构域的分子功能还不清楚.在拟南芥中该家族有18个成员,除了最近克隆的RPG1以外其他MtN3/saliva基因... MtN3/saliva基因家族是含有2个MtN3/saliva跨膜结构域的膜整合蛋白,其成员广泛存在于真核生物中.目前对该家族功能研究较少,对其跨膜结构域的分子功能还不清楚.在拟南芥中该家族有18个成员,除了最近克隆的RPG1以外其他MtN3/saliva基因的功能均不清楚.对拟南芥MtN3/saliva基因家族进行了较为全面的分析,包括基因结构、染色体分布、蛋白结构域、系统进化关系、基因表达谱等.对其中预测在花药中高表达的4个基因进行了实时定量PCR分析,证实有3个基因在花中高效表达.这些结果促进了对MtN3/saliva基因家族的深入了解. 展开更多
关键词 mtn3/saliva基因家族 拟南芥 表达分析
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Rice MtN3/Saliva/SWEET Family Genes and Their Homologs in Cellular Organisms 被引量:59
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作者 Meng Yuan Shiping Wang 《Molecular Plant》 SCIE CAS CSCD 2013年第3期665-674,共10页
The MtN3/saliva/SWEET-type genes, existing either alone or in a family group, are found in diverse organisms, from monocellular protozoa to higher eukaryotes, indicating their importance in cellular organisms. These g... The MtN3/saliva/SWEET-type genes, existing either alone or in a family group, are found in diverse organisms, from monocellular protozoa to higher eukaryotes, indicating their importance in cellular organisms. These genes encode polytopic membrane proteins that feature an MtN3/saliva domain, also known as a PQ loop repeat, The rice MtN3/saliva/SWEET gene family consists of 21 members and is among the largest families in sequenced organisms. Accumulating data suggest that these genes are involved in multiple physiological processes, including reproductive development, senescence, environmental adaptation, and host-pathogen interaction, in different species. In rice, some members of the family, including Xa13/Os8N3/OsSWEET11, which is essential for reproductive development, are used by the pathogenic bacterium Xanthomonas oryzae pv. oryzae to invade its host. Emerging data have also revealed that at least some MtN3/saliva/SWEET-type proteins may regulate different physiological processes by facilitating ion transport via interaction with ion transporters or as sugar transporters. The accumulating knowledge about MtN3/saliva/SWEET- type genes will help to elucidate the molecular bases of their function in different organisms. 展开更多
关键词 mtn3/saliva PQ loop repeat membrane protein SWEET transporter.
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Rice MtN3/saliva/SWEET gene family: Evolution,expression profiling, and sugar transport 被引量:14
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作者 Meng Yuan Junwei Zhao +3 位作者 Renyan Huang Xianghua Li Jinghua Xiao Shiping Wang 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2014年第6期559-570,共12页
The rice MtN3/saliva/SWEET gene family consists of 21 paralogs. However, their functions in physiological processes are largely unknown, although at least three of the 21 paralogs are used by pathogenic bacteria to in... The rice MtN3/saliva/SWEET gene family consists of 21 paralogs. However, their functions in physiological processes are largely unknown, although at least three of the 21 paralogs are used by pathogenic bacteria to infect rice. Here, we report the evolutionary features, transcriptional characteristics, and putative functions in sugar transport of this gene family. The wild rice accessions in this study included those with AA, BB, CC, BBCC, CCDD, EE, and GG genomes, which appeared approximately 0.58-14.6 million years ago. The structures, chromosomal locations, phylogenetic relationships, and homologous distribution among the accessions suggest that the number of rice MtN3/saliva/SWEET paralogs gradual y increased as the Oryza genus evolved, and one third of the paralogs may have originated recently. These paralogs are differentially expressed in vegetative and reproductive tissues, in the leaf senescence process, and in signaling dependent on gibberel ic acid, cytokinin, or 1-naphthalene acetic acid (an analog of auxin), suggesting that they may be associated with multiple physiological processes. Four paralogs could transport galactose in yeast, which suggests that they may have a similar function in rice. These results will help to elucidate their roles and biochemical functions in rice development, adaptation to environment, host-pathogen interaction, and so forth. 展开更多
关键词 EVOLUTION mtn3/saliva domain Oryza sotivo TRANSPORTER
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SWEET蛋白家族研究进展 被引量:8
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作者 玄元虎 朱毅勇 胡一兵 《中国科学:生命科学》 CSCD 北大核心 2014年第7期676-684,共9页
SWEET是新发现的一类具有7次跨膜?-螺旋的糖运输蛋白,它们由2个重复的具有3次跨膜?-螺旋的MtN3 motif和一个起连接作用的跨膜?-螺旋组成.SWEET广泛存在于真核单细胞生物、高等植物以及动物中.它们在生殖发育、植物与微生物的相互作用、... SWEET是新发现的一类具有7次跨膜?-螺旋的糖运输蛋白,它们由2个重复的具有3次跨膜?-螺旋的MtN3 motif和一个起连接作用的跨膜?-螺旋组成.SWEET广泛存在于真核单细胞生物、高等植物以及动物中.它们在生殖发育、植物与微生物的相互作用、植物的逆境反应及衰老等许多方面起重要作用.最近的研究显示,原核生物中存在与真核生物SWEET类似的、只含有一个3次跨膜?-螺旋的蛋白,这些蛋白属于MtN3或PQ-Loop家族.从慢生根瘤菌中克隆的SWEET同源蛋白BjSemiSWEET1和已经鉴定的部分真核生物SWEET蛋白一样具有运输蔗糖的能力,这个结果与其他相关研究一起暗示真核生物7次跨膜?-螺旋的糖或氨基酸运输蛋白可能由原核生物中3次跨膜?-螺旋的小分子蛋白通过复制或横向基因转移融合进化而来,并且它们在行使功能时可能形成和其他许多膜转运蛋白相似的、具有12次跨膜结构的功能单位.对SWEET的研究将为揭示多种生命现象提供重要线索. 展开更多
关键词 SWEET SemiSWEET1 mtn3 转运蛋白 研究进展
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