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Soybean ( Glycine max ) SWEET gene family: insights through comparative genomics, transcriptome profiling and whole genome re-sequence analysis

机译:大豆(大豆最大)SWEET基因家族:通过比较基因组学,转录组谱分析和全基因组重测序分析获得的见解

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SWEET (MtN3_saliva) domain proteins, a recently identified group of efflux transporters, play an indispensable role in sugar efflux, phloem loading, plant-pathogen interaction and reproductive tissue development. The SWEET gene family is predominantly studied in Arabidopsis and members of the family are being investigated in rice. To date, no transcriptome or genomics analysis of soybean SWEET genes has been reported. In the present investigation, we explored the evolutionary aspect of the SWEET gene family in diverse plant species including primitive single cell algae to angiosperms with a major emphasis on Glycine max. Evolutionary features showed expansion and duplication of the SWEET gene family in land plants. Homology searches with BLAST tools and Hidden Markov Model-directed sequence alignments identified 52 SWEET genes that were mapped to 15 chromosomes in the soybean genome as tandem duplication events. Soybean SWEET (GmSWEET) genes showed a wide range of expression profiles in different tissues and developmental stages. Analysis of public transcriptome data and expression profiling using quantitative real time PCR (qRT-PCR) showed that a majority of the GmSWEET genes were confined to reproductive tissue development. Several natural genetic variants (non-synonymous SNPs, premature stop codons and haplotype) were identified in the GmSWEET genes using whole genome re-sequencing data analysis of 106 soybean genotypes. A significant association was observed between SNP-haplogroup and seed sucrose content in three gene clusters on chromosome 6. Present investigation utilized comparative genomics, transcriptome profiling and whole genome re-sequencing approaches and provided a systematic description of soybean SWEET genes and identified putative candidates with probable roles in the reproductive tissue development. Gene expression profiling at different developmental stages and genomic variation data will aid as an important resource for the soybean research community and can be extremely valuable for understanding sink unloading and enhancing carbohydrate delivery to developing seeds for improving yield.
机译:SWEET(MtN3_saliva)域蛋白是最近发现的一组外排转运蛋白,在糖外排,韧皮部负载,植物-病原体相互作用和生殖组织发育中起着不可或缺的作用。 SWEET基因家族主要在拟南芥中研究,该家族的成员正在水稻中研究。迄今为止,尚未报道大豆SWEET基因的转录组或基因组学分析。在本研究中,我们探索了SWEET基因家族在包括原始单细胞藻类到被子植物在内的多种植物物种中的进化方面,其中主要侧重于Glycine max。进化特征表明SWEET基因家族在陆地植物中的扩增和复制。使用BLAST工具进行的同源性搜索和隐马尔可夫模型指导的序列比对确定了52个SWEET基因,这些基因被定位为大豆基因组中的15个染色体,为串联重复事件。大豆SWEET(GmSWEET)基因在不同组织和发育阶段表现出广泛的表达谱。使用定量实时PCR(qRT-PCR)分析公共转录组数据和表达谱分析表明,大多数GmSWEET基因都局限于生殖组织发育。使用106种大豆基因型的全基因组重测序数据分析,在GmSWEET基因中鉴定了几种天然遗传变异(非同义SNP,提前终止密码子和单倍型)。在6号染色体上的三个基因簇中,SNP-单倍型群与种子蔗糖含量之间存在显着关联。目前的研究利用比较基因组学,转录组谱分析和全基因组重测序方法,对大豆SWEET基因进行了系统描述,并确定了可能的候选者。在生殖组织发育中的可能作用。在不同发育阶段的基因表达谱分析和基因组变异数据将作为大豆研究社区的重要资源而提供帮助,对于理解水槽卸荷和增强碳水化合物向发育中的种子的输送以提高产量具有极其重要的价值。

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