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首页> 外文期刊>Molecular biology reports >Synechocystis PCC6803 and PCC6906 dnaK2 expression confers salt and oxidative stress tolerance in Arabidopsis via reduction of hydrogen peroxide accumulation
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Synechocystis PCC6803 and PCC6906 dnaK2 expression confers salt and oxidative stress tolerance in Arabidopsis via reduction of hydrogen peroxide accumulation

机译:集胞藻PCC6803和PCC6906 dnaK2表达通过减少过氧化氢的积累赋予拟南芥中的盐和氧化应激耐受性

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Abiotic stress slows plant growth and development. Because salt stress, particularly from NaCl, acts as an important limiting factor in agricultural productivity, the identification and manipulation of genes related to salt tolerance could improve crop productivity. Prokaryotic, heat shock protein (Hsp), DnaK from the ubiquitous Hsp70 family is upregulated in cells that are under abiotic stress. Synechocystis spp. cyanobacteria encode at least three potential DnaK proteins in their genome. Here, expressions of dnaK1s and dnaK2s from two Synechocystis spp. PCC6803 (Sy6803) and PCC6906 (Sy6906), enhanced salt tolerance in a dnaK-defective Escherichia coli strain. In contrast, dnaK3s in both strains were ineffective, indicating that dnaK3 is functionally different from dnaK1 and dnaK2 in Synechocystis spp. under salt stress. Ectopic expression of dnaK2s from Sy6803 and Sy6906 conferred salt tolerance in transgenic Arabidopsis plants, which exhibited greater root length, chlorophyll content, fresh weight, and survival rate than wild type plants, all in the presence of NaCl. In transgenic plants, hydrogen peroxide (H2O2) accumulation was reduced under NaCl stress and loss of chlorophyll content was reduced under H2O2 stress. Overall results suggest that dnaK2s from Sy6803 and Sy6906 confer salt and oxidative tolerance in transgenic plants by reduction of H2O2 accumulation.
机译:非生物胁迫会减缓植物的生长和发育。由于盐胁迫(特别是来自NaCl的盐胁迫)是农业生产力的重要限制因素,因此鉴定和操纵与耐盐性相关的基因可以提高作物的生产力。来自无处不在的Hsp70家族的原核热休克蛋白(Hsp)DnaK在非生物胁迫下的细胞中被上调。集胞藻蓝细菌在其基因组中编码至少三个潜在的DnaK蛋白。在这里,来自两个集胞藻属spp的dnaK1和dnaK2s的表达。 PCC6803(Sy6803)和PCC6906(Sy6906)在dnaK缺陷型大肠杆菌菌株中提高了耐盐性。相比之下,两种菌株中的dnaK3均无效,表明dnaK3在Synychocystis spp中的功能与dnaK1和dnaK2不同。在盐胁迫下。来自Sy6803和Sy6906的dnaK2的异位表达在转基因拟南芥植物中赋予了耐盐性,与野生型植物相比,它们都具有更大的根长,叶绿素含量,鲜重和存活率,所有这些都存在NaCl。在转基因植物中,在NaCl胁迫下过氧化氢(H2O2)积累减少,而在H2O2胁迫下减少叶绿素含量的损失。总体结果表明,来自Sy6803和Sy6906的dnaK2通过减少H2O2的积累赋予转基因植物以盐分和氧化耐受性。

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