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Genome-Wide Analysis of the AP2/ERF Superfamily Genes and their Responses to Abiotic Stress in Medicago truncatula

机译:苜蓿AP2 / ERF超家族基因的全基因组分析及其对非生物胁迫的响应

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摘要

The AP2/ERF superfamily is a large, plant-specific transcription factor family that is involved in many important processes, including plant growth, development, and stress responses. Using Medicago truncatula genome information, we identified and characterized 123 putative AP2/ERF genes, which were named as MtERF1–123. These genes were classified into four families based on phylogenetic analysis, which is consistent with the results of other plant species. MtERF genes are distributed throughout all chromosomes but are clustered on various chromosomes due to genomic tandem and segmental duplication. Using transcriptome, high-throughput sequencing data, and qRT-PCR analysis, we assessed the expression patterns of the MtERF genes in tissues during development and under abiotic stresses. In total, 87 MtERF genes were expressed in plant tissues, most of which were expressed in specific tissues during development or under specific abiotic stress treatments. These results support the notion that MtERF genes are involved in developmental regulation and environmental responses in M. truncatula. Furthermore, a cluster of DREB subfamily members on chromosome 6 was induced by both cold and freezing stress, representing a positive gene regulatory response under low temperature stress, which suggests that these genes might contribute to freezing tolerance to M. truncatula. In summary, our genome-wide characterization, evolutionary analysis, and expression pattern analysis of MtERF genes in M. truncatula provides valuable information for characterizing the molecular functions of these genes and utilizing them to improve stress tolerance in plants.
机译:AP2 / ERF超家族是一个大型的植物特异性转录因子家族,涉及许多重要过程,包括植物生长,发育和胁迫响应。利用Medi藜苜蓿基因组信息,我们鉴定并鉴定了123个推定的AP2 / ERF基因,它们被命名为MtERF1–123。根据系统发育分析,将这些基因分为四个科,这与其他植物物种的结果一致。 MtERF基因分布在所有染色体上,但由于基因组串联和节段重复而聚集在各种染色体上。使用转录组,高通量测序数据和qRT-PCR分析,我们评估了发育过程中和非生物胁迫下组织中MtERF基因的表达模式。总共在植物组织中表达了87个MtERF基因,其中大多数在发育过程中或在特定的非生物胁迫处理下在特定的组织中表达。这些结果支持了MtERF基因参与了M. truncatula的发育调控和环境反应的观点。此外,冷和冰冻胁迫都诱导了第6号染色体上的DREB亚家族成员簇,这代表了低温胁迫下的正基因调节响应,这表明这些基因可能有助于对截叶分枝杆菌的冰冻耐受性。总而言之,我们在全基因组中对MtERF基因进行了全基因组表征,进化分析和表达模式分析,为表征这些基因的分子功能以及利用它们改善植物的胁迫耐受性提供了宝贵的信息。

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