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Genome-Wide Analysis of Soybean?LATERAL ORGAN BOUNDARIES Domain?-Containing Genes: A Functional Investigation of?GmLBD12

机译:大豆?侧器官边界域?基因的全基因组分析:?GmLBD12的功能研究

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Plant-specific?LBD?(LATERAL ORGAN BOUNDARIES Domain) genes play critical roles in various plant growth and development processes. However, the number and characteristics of?LBD?genes in soybean [Glycine max?(L.) Merr.] remain unknown. Here, we identified 90?LBD?homologous genes in the soybean genome that phylogenetically clustered into two classes (I and II). The majority of the?GmLBD?genes were evenly distributed across all 20 soybean chromosomes, and 77 (81.11%) of them were detected in segmental duplicated regions. Furthermore, the exon–intron organization and motif composition for each?GmLBD?were analyzed. A close phylogenetic relationship was identified between the soybean?LBD?genes and 41 previously reported genes of different plants in the same group, providing insights into their putative functions. Expression analysis indicated that more than half of the?LBD?genes were expressed, with the two gene classes showing differential tissue expression characteristics; in addition, they were differentially induced by biotic and abiotic stresses. To further explore the functions of?LBD?genes in soybean,?GmLBD12?was selected for functional characterization. GmLBD12 was mainly localized to the nucleus and showed high expression in root and seed tissues. Overexpressing?GmLBD12?in?Arabidopsis thaliana?(L.) Heynh resulted in increases in lateral root (LR) number and plant height. Quantitative real-time polymerase chain reaction (qRT-PCR) analysis demonstrated that?GmLBD12?was induced by drought, salt, cold, indole acetic acid (IAA), abscisic acid (ABA), and salicylic acid SA treatments. This study provides the first comprehensive analysis of the soybean?LBD?gene family and a valuable foundation for future functional studies of?GmLBD?genes.
机译:植物特有的LBD(横向器官边界域)基因在各种植物生长和发育过程中起着关键作用。但是,大豆中的“ LBD”基因的数目和特性尚不清楚。在这里,我们确定了大豆基因组中90个LBD同源基因,它们在系统发育上分为两个类别(I和II)。大多数“ GmLBD”基因均匀地分布在所有20条大豆染色体上,其中77个(81.11%)在分段的重复区域中被检测到。此外,分析了每个“ GmLBD”的外显子-内含子组织和基序组成。在同一基因组中,大豆LBD基因与41种以前报道过的不同植物的基因之间存在着密切的系统发育关系,从而为它们的推测功能提供了见识。表达分析表明,表达了一半以上的“ LBD”基因,这两个基因类别显示出不同的组织表达特性。此外,它们是由生物和非生物胁迫差异诱导的。为了进一步探索大豆中“ LBD”基因的功能,选择了“ GmLBD12”进行功能表征。 GmLBD12主要位于细胞核,并在根和种子组织中高表达。在拟南芥(L.)Heynh中过表达“ GmLBD12”导致侧根(LR)数量和株高增加。实时定量聚合酶链反应(qRT-PCR)分析表明,GmLBD12是由干旱,盐,冷,吲哚乙酸(IAA),脱落酸(ABA)和水杨酸SA处理诱导的。这项研究提供了大豆LBD基因家族的首次全面分析,并为将来的GmLBD基因的功能研究奠定了宝贵的基础。

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