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首页> 外文期刊>Industrial Crops and Products >Sequence analysis of Ricinus communis small heat-shock protein (sHSP) subfamily and its role in abiotic stress responses
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Sequence analysis of Ricinus communis small heat-shock protein (sHSP) subfamily and its role in abiotic stress responses

机译:Ricinus Communis小型热休克蛋白(SHSP)亚家族的序列分析及其在非生物应激反应中的作用

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摘要

Small heat shock proteins (sHSPs) possess major roles in plant defense mechanisms towards abiotic stresses. sHSPs act as molecular chaperones providing the necessary tools to sustain cellular homeostasis under adverse conditions. sHSP genes display specific expression signatures, which depend on tissue-specificity, developmental stage and the nature of the abiotic stress. Despite the fact that Ricinus communis is an important oilseed crop with large socioeconomic impact on small family farmers in semi-arid regions worldwide, the characterization of RcsHSP genes and their possible contribution to plant survival under harsh environmental conditions has not been addressed. Hence, this study aimed at characterizing the R. communis sHSP subfamily, through phylogeny, gene structure, duplication, and expression profile analysis, as well as by characterizing Arabidopsis thaliana seeds overexpressing RcsHSP genes. We identified 41 RcsHSP genes with the a-crystallin domain and compatible molecular weight (< 43 kDa). The RcsHSP subfamily showed different homology levels with sHSP genes from other plant species, suggesting the occurrence of specific gene expansion and loss. The RcsHSP subfamily was classified according to the cellular locations of the genes, which included cytosolic, chloroplastic, mitochondrial, and endoplasmic reticulum groups. Ten putative motifs were found among RcsHSP genes, but only motifs 4, 6 and 8 were sHSP protein domains. The RcsHSP subfamily showed 19 genes produced by tandem duplication events, which might have been crucial for RcsHSP diversification and acquisition of tolerance in R. communis. Gene expression analysis showed that the RcsHSP subfamily possesses different regulatory mechanisms in response to various abiotic stresses. Additionally, overexpression of RcsHSP genes in A. thaliana was followed by enhanced SOD activity and higher content of osmoprotectants, which ultimately led to enhanced seed germination under a variety of abiotic stresses. Our results may contribute to breeding programs aiming at developing high tolerant R. communis plants, providing economic and social support for farmers in semiarid areas worldwide.
机译:小型热休克蛋白(SHSP)具有植物防御机制朝向非生物胁迫的主要作用。 SHSP充当分子伴侣,提供必要的工具,以在不利条件下维持细胞稳态。 Shsp基因显示特异性表达签名,这取决于组织特异性,发育阶段和非生物应激的性质。尽管Ricinus Communis是一个重要的石油作物,但在全世界半干旱地区对小家庭农民进行了大量的社会经济影响,尚未解决rCSHSP基因的表征及其对植物生存下的植物存活贡献。因此,本研究旨在通过系统发育,基因结构,复制和表达谱分析,以及表征过表达RCSHSP基因的拟南芥种子。我们鉴定了具有α结晶结构域和相容的分子量(<43kDa)的41个RCSHSP基因。 RCSHSP亚家族与其他植物物种的SHSP基因显示出不同的同源水平,表明特定基因扩张和损失的发生。根据基因的细胞位置分类RCSHSP亚家族,其包括细胞源,氯塑,线粒体和内质网组。在RCSHSP基因中发现十个推定的主题,但仅在SHSP蛋白域中仅发现图案4,6和8。 RCSHSP亚家族展示了由串联重复事件产生的19个基因,这可能对RCSHSP多样化和R. Communis的耐受性至关重要。基因表达分析表明,RCSHSP亚家族响应各种非生物应力具有不同的调节机制。另外,A.拟南芥中RCSHSP基因的过度表达随后是增强的SOD活性和更高的OsMoplotectant含量,这最终导致了各种非生物胁迫下的种子萌发。我们的成果可能有助于旨在旨在开发高宽容的R. Communis植物,为全球半干旱地区的农民提供经济和社会支持。

著录项

  • 来源
    《Industrial Crops and Products》 |2020年第1期|共13页
  • 作者单位

    Univ Fed Bahia Inst Quim Dept Quim Organ Metabol Res Grp Rua Barao De Jeremoabo S-N BR-40170115 Salvador BA Brazil;

    Univ Fed Bahia Inst Quim Dept Quim Organ Metabol Res Grp Rua Barao De Jeremoabo S-N BR-40170115 Salvador BA Brazil;

    Univ Fed Sao Carlos Dept Quim Lab Ressonancia Magnet Nucl Sao Carlos SP Brazil;

    Univ Fed Sao Carlos Dept Quim Lab Ressonancia Magnet Nucl Sao Carlos SP Brazil;

    Univ Fed Bahia Dept Bioquim &

    Biofis Lab Bioquim Biotecnol &

    Bioprod Reitor Miguel Calmon S-N BR-40160100 Salvador BA Brazil;

    Univ Fed Bahia Dept Bioquim &

    Biofis Lab Bioquim Biotecnol &

    Bioprod Reitor Miguel Calmon S-N BR-40160100 Salvador BA Brazil;

    Wageningen Univ WU Wageningen Seed Lab Lab Plant Physiol Droevendaalsesteeg 1 NL-6708 PB Wageningen Netherlands;

    Wageningen Univ WU Wageningen Seed Lab Lab Plant Physiol Droevendaalsesteeg 1 NL-6708 PB Wageningen Netherlands;

    Univ Fed Bahia Inst Quim Dept Quim Organ Metabol Res Grp Rua Barao De Jeremoabo S-N BR-40170115 Salvador BA Brazil;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农作物;
  • 关键词

    Abiotic stress; Oilseed crop; Regulatory mechanisms; Tolerance;

    机译:非生物压力;油籽作物;监管机制;耐受性;

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