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首页> 外文期刊>BMC Plant Biology >The GRAS gene family and its roles in seed development in litchi (Litchi chinensis Sonn)
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The GRAS gene family and its roles in seed development in litchi (Litchi chinensis Sonn)

机译:GRAS基因家族及其在荔枝种子发育中的作用(荔枝中华民币)

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The GRAS gene family plays crucial roles in multiple biological processes of plant growth, including seed development, which is related to seedless traits of litchi (Litchi chinensis Sonn.). However, it hasn’t been fully identified and analyzed in litchi, an economic fruit tree cultivated in subtropical regions. In this study, 48 LcGRAS proteins were identified and termed according to their chromosomal location. LcGRAS proteins can be categorized into 14 subfamilies through phylogenetic analysis. Gene structure and conserved domain analysis revealed that different subfamilies harbored various motif patterns, suggesting their functional diversity. Synteny analysis revealed that the expansion of the GRAS family in litchi may be driven by their tandem and segmental duplication. After comprehensively analysing degradome data, we found that four LcGRAS genes belong to HAM subfamily were regulated via miR171-mediated degradation. The various expression patterns of LcGRAS genes in different tissues uncovered they were involved in different biological processes. Moreover, the different temporal expression profiles of LcGRAS genes between abortive and bold seed indicated some of them were involved in maintaining the normal development of the seed. Our study provides comprehensive analyses on GRAS family members in litchi, insight into a better understanding of the roles of GRAS in litchi development, and lays the foundation for further investigations on litchi seed development.
机译:GRAS基因家族在植物生长的多种生物学过程中起着至关重要的作用,包括种子发育,与荔枝无籽特征有关(荔枝Chinensis Sonn。)。然而,在亚热带地区栽培的经济果树中,缺点尚未完全识别和分析。在本研究中,根据其染色体位置鉴定并达到48个LCGRAS蛋白。通过系统发育分析可以将Lcgras蛋白分类为14个亚壳。基因结构和保守域分析显示,不同的亚属毛利有各种图案,暗示其功能多样性。同情分析显示,荔枝中GRAS系列的扩展可能是由他们的串联和节段性重复驱动的。在全面分析降低组数据之后,我们发现通过MiR171介导的降解调节四种Lcgras基因属于火腿亚家族。在不同组织中的LCGRAS基因的各种表达模式揭示它们参与不同的生物过程。此外,流入和粗体种子之间的LcGras基因的不同时间表达谱表明它们中的一些涉及保持种子的正常发育。我们的研究提供了荔枝的GRAS家族成员的全面分析,探讨了更好地了解GRAS在荔枝发展中的角色,并为荔枝种子发展提供进一步调查的基础。

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