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首页> 外文期刊>Journal of Plant Research >Differential expression of poplar sucrose nonfermenting1-related protein kinase 2 genes in response to abiotic stress and abscisic acid
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Differential expression of poplar sucrose nonfermenting1-related protein kinase 2 genes in response to abiotic stress and abscisic acid

机译:杨树蔗糖无效蛋白激酶2基因响应非生物应激和脱落酸的差异表达

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摘要

Knowledge on the responses of woody plants to abiotic stress can inform strategies to breed improved tree varieties and to manage tree species for environmental conservation and the production of lignocellulosic biomass. In this study, we examined the expression patterns of poplar (Populus trichocarpa) genes encoding members of the sucrose nonfermenting1-related protein kinase 2 (SnRK2) family, which are core components of the abiotic stress response. The P. trichocarpa genome contains twelve SnRK2 genes (PtSnRK2.1- PtSnRK2.12) that can be divided into three subclasses (I-III) based on the structures of their encoded kinase domains. We found that PtSnRK2s are differentially expressed in various organs. In MS medium-grown plants, all of the PtSnRK2 genes were significantly upregulated in response to abscisic acid (ABA) treatment, whereas osmotic and salt stress treatments induced only some (four and seven, respectively) of the PtSnRK2 genes. By contrast, soil-grown plants showed increased expression of most PtSnRK2 genes under drought and salt treatments, but not under ABA treatment. In soil-grown plants, drought stress induced SnRK2 subclass II genes in all tested organs (leaves, stems, and roots), whereas subclass III genes tended to be upregulated in leaves only. These results suggest that the PtSnRK2 genes are involved in abiotic stress responses, are at least partially activated by ABA, and show organ-specific responses.
机译:关于木质植物对非生物压力的响应的了解,可以为策略培育改善的树木品种,并管理环境保护树种和木质纤维素生物量的生产。在这项研究中,我们研究了杨树(杨树科氏醛植物)基因的表达模式编码蔗糖无效化1相关蛋白激酶2(SNRK2)家族成员,其是非生物应激反应的核心组分。 P. Trichocarpa Genome含有12个SNRK2基因(PTSNRK2.1- PTSnRK2.12),其可以基于其编码激酶结构域的结构分成三个亚类(I-III)。我们发现PTSNRK2S在各种器官中差别表达。在MS中生成的植物中,响应于脱钙酸(ABA)处理,所有PTSNRK2基因显着上调,而渗透和盐胁迫处理仅诱导PTSNRK2基因的一些(分别为4七)。相比之下,土壤生长的植物在干旱和盐处理下表达了大多数PTSNRK2基因的表达,但在ABA治疗下没有。在土壤生长的植物中,干旱应激诱导所有测试器官(叶,茎和根)中的SNRK2亚类II基因,而亚类III基因倾向于仅在叶片上上调。这些结果表明,PTSNRK2基因涉及非生​​物应激反应,至少部分地由ABA活化,并显示特定器官的反应。

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