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Gene expression profiling through microarray analysis in Arabidopsis thaliana colonized by Pseudomonas putida MTCC5279 a plant growth promoting rhizobacterium

机译:通过基因芯片分析在拟南芥假单胞菌MTCC5279(一种促进植物生长的根瘤菌)定植的拟南芥中的基因表达谱

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摘要

Plant growth promotion is a multigenic process under the influence of many factors; therefore an understanding of these processes and the functions regulated may have profound implications. Present study reports microarray analysis of Arabidopsis thaliana plants inoculated with Pseudomonas putida MTCC5279 (MTCC5279) which resulted in significant increase in growth traits as compared with non-inoculated control. The gene expression changes, represented by oligonucleotide array (24652 genes) have been studied to gain insight into MTCC5279 assisted plant growth promotion in Arabidopsis thaliana. MTCC5279 induced upregulated Arabidopsis thaliana genes were found to be involved in maintenance of genome integrity (At5g20850), growth hormone (At3g23890 and At4g36110), amino acid synthesis (At5g63890), abcissic acid (ABA) signaling and ethylene suppression (At2g29090, At5g17850), Ca+2 dependent signaling (At3g57530) and induction of induced systemic resistance (At2g46370, At2g44840). The genes At3g32920 and At2g15890 which are suggested to act early in petal, stamen and embryonic development are among the downregulated genes. We report for the first time MTCC5279 assisted repression of At3g32920, a putative DNA repair protein involved in recombination and DNA strand transfer in a process of rapid meiotic and mitotic division.
机译:促进植物生长是受多种因素影响的多基因过程。因此,对这些过程和所调节功能的理解可能会产生深远的影响。本研究报告了用恶臭假单胞菌MTCC5279(MTCC5279)接种的拟南芥植物的微阵列分析,与未接种的对照相比,其生长性状显着增加。已经研究了由寡核苷酸阵列(24652个基因)代表的基因表达变化,以深入了解拟南芥中MTCC5279辅助的植物生长促进。发现MTCC5279诱导的拟南芥拟南芥基因上调与维持基因组完整性(At5g20850),生长激素(At3g23890和At4g36110),氨基酸合成(At5g63890),癸二酸(ABA)信号传导和乙烯抑制(At2g29090,At5g17850)有关, Ca +2 依赖性信号传导(At3g57530)和诱导的系统抗性(At2g46370,At2g44840)。被认为在花瓣,雄蕊和胚胎发育早期起作用的基因At3g32920和At2g15890是下调的基因之一。我们首次报告MTCC5279辅助抑制At3g32920,这是一种在快速减数分裂和有丝分裂分裂过程中参与重组和DNA链转移的推定DNA修复蛋白。

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