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首页> 外文期刊>Biomolecules >Identification of SWI2/SNF2-Related 1 Chromatin Remodeling Complex (SWR1-C) Subunits in Pineapple and the Role of Pineapple SWR1 COMPLEX 6 ( Ac SWC6) in Biotic and Abiotic Stress Response
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Identification of SWI2/SNF2-Related 1 Chromatin Remodeling Complex (SWR1-C) Subunits in Pineapple and the Role of Pineapple SWR1 COMPLEX 6 ( Ac SWC6) in Biotic and Abiotic Stress Response

机译:鉴别菠萝中的SWI2 / SNF2相关的1染色质重组复合物(SWR1-C)亚基及菠萝SWR1复合物6(AC SWC6)在生物和非生物应激反应中的作用

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Chromatin remodeling complex orchestrates numerous aspects of growth and development in eukaryotes. SWI2/SNF2-Related 1 chromatin remodeling complex (SWR1-C) is a member of the SWI/SNF ATPase-containing chromatin remodeling complex responsible for the exchange of H2A for H2A.Z. In plants, SWR1-C plays a crucial role by transcriptionally regulating numerous biological and developmental processes. However, SWR1-C activity remains obscure in pineapple. Here, we aim to identify the SWR1-C subunits in pineapple. By genome-wide identification, we found a total of 11 SWR1-C subunits in the pineapple. The identified SWR1-C subunits were named and classified based on the sequence similarity and phylogenetic analysis. RNA-Seq analysis showed that pineapple SWR1-C subunits are expressed differentially in different organs and at different stages. Additionally, the qRT-PCR of pineapple SWR1-C subunits during abiotic stress exposure showed significant changes in their expression. We further investigated the functions of pineapple SWR1 COMPLEX 6 ( Ac SWC6) by ectopically expressing it in Arabidopsis . Interestingly, transgenic plants ectopically expressing AcSWC6 showed susceptibility to fungal infection and enhanced resistance to salt and osmotic stress, revealing its involvement in biotic and abiotic stress. Moreover, the complementation of mutant Arabidopsis swc6 by pineapple SWC6 suggested the conserved function of SWC6 in plants.
机译:染色质重塑复合体在真核生物中衡量了许多方面的生长和发育。 SWI2 / SNF2相关的1染色质改造复合物(SWR1-C)是含SWI / SNF ATP酶的染色质复制复合物的成员,负责H2A.Z的H2A交换。在植物中,SWR1-C通过转录众多生物和发育过程来发挥至关重要的作用。然而,SWR1-C活动仍然在菠萝中掩盖。在这里,我们的目标是识别菠萝中的SWR1-C子单元。通过基因组识别,我们发现菠萝中共11个SWR1-C亚基。基于序列相似性和系统发育分析,所识别的SWR1-C亚基命名和分类。 RNA-SEQ分析表明,菠萝SWR1-C亚基在不同的器官和不同阶段的差异表达。另外,非生物压力暴露期间的菠萝SWR1-C亚基的QRT-PCR显示出其表达的显着变化。我们进一步研究了菠萝SWR1复合体6(AC SWC6)的功能,通过在拟南芥中表达它来进行。有趣的是,异常表达ACSWC6的转基因植物表现出对真菌感染的敏感性,并增强对盐和渗透胁迫的抗性,揭示了生物和非生物胁迫的参与。此外,菠萝SWC6的突变体拟南芥SWC6的互补提出了SWC6在植物中的保守功能。

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