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Integrative molecular profiling indicates a central role of transitory starch breakdown in establishing a stable C/N homeostasis during cold acclimation in two natural accessions of Arabidopsis thaliana

机译:整合的分子谱分析表明瞬时淀粉分解在拟南芥的两个天然种的冷驯化过程中建立稳定的C / N动态平衡中的重要作用

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摘要

Background: The variation of growth and cold tolerance of two natural Arabidopsis accessions, Cvi (cold sensitive) and Rschew (cold tolerant), was analysed on a proteomic, phosphoproteomic and metabolomic level to derive characteristic information about genotypically distinct strategies of metabolic reprogramming and growth maintenance during cold acclimation. Results: Growth regulation before and after a cold acclimation period was monitored by recording fresh weight of leaf rosettes. Significant differences in the shoot fresh weight of Cvi and Rschew were detected both before and after acclimation to low temperature. During cold acclimation, starch levels were found to accumulate to a significantly higher level in Cvi compared to Rschew. Concomitantly, statistical analysis revealed a cold-induced decrease of beta-amylase 3 (BAM3; AT4G17090) in Cvi but not in Rschew. Further, only in Rschew we observed an increase of the protein level of the debranching enzyme isoamylase 3 (ISA3; AT4G09020). Additionally, the cold response of both accessions was observed to severely affect ribosomal complexes, but only Rschew showed a pronounced accumulation of carbon and nitrogen compounds. The abundance of the Cold Regulated (COR) protein COR78 (AT5G52310) as well as its phosphorylation was observed to be positively correlated with the acclimation state of both accessions. In addition, transcription factors being involved in growth and developmental regulation were found to characteristically separate the cold sensitive from the cold tolerant accession. Predicted protein-protein interaction networks (PPIN) of significantly changed proteins during cold acclimation allowed for a differentiation between both accessions. The PPIN revealed the central role of carbon/nitrogen allocation and ribosomal complex formation to establish a new cold-induced metabolic homeostasis as also observed on the level of the metabolome and proteome. Conclusion: Our results provide evidence for a comprehensive multi-functional molecular interaction network orchestrating growth regulation and cold acclimation in two natural accessions of Arabidopsis thaliana. The differential abundance of beta-amylase 3 and isoamylase 3 indicates a central role of transitory starch degradation in the coordination of growth regulation and the development of stress tolerance. Finally, our study indicates naturally occurring differential patterns of C/N balance and protein synthesis during cold acclimation.
机译:背景:在蛋白质组学,磷酸化蛋白质组学和代谢组学水平上分析了两种天然拟南芥Cvi(冷敏感)和Rschew(耐冷)种的生长和耐寒性变化,以得出有关基因重编程和新的代谢重编程和生长策略的特征信息冷驯化过程中的维护。结果:通过记录叶片花环的新鲜重量,监测了冷适应期前后的生长调节。在适应低温之前和之后,Cvi和Rschew的枝条鲜重存在显着差异。与Rschew相比,在冷驯化过程中,发现Cvi中的淀粉含量积累到明显更高的水平。相应地,统计分析显示,Cvi中冷诱导的β-淀粉酶3(BAM3; AT4G17090)减少,而Rschew中没有。此外,仅在Rschew中,我们观察到了脱支酶异淀粉酶3(ISA3; AT4G09020)的蛋白质水平增加。此外,观察到两种种的冷反应都严重影响了核糖体复合物,但只有Rschew表现出明显的碳和氮化合物积聚。观察到冷调节(COR)蛋白COR78(AT5G52310)的丰度及其磷酸化与两种材料的驯化状态均呈正相关。另外,发现参与生长和发育调节的转录因子特征性地将冷敏感与冷耐受登录分离。预测的蛋白质-蛋白质相互作用网络(PPIN)在冷驯化过程中发生了显着变化,因此可以区分这两个种质。 PPIN揭示了碳/氮分配和核糖体复合物形成对建立新的冷诱导的代谢稳态的核心作用,正如在代谢组和蛋白质组水平上所观察到的。结论:我们的结果提供了一个综合的多功能分子相互作用网络,用于协调拟南芥两个天然种的生长调节和冷驯化。 β-淀粉酶3和异淀粉酶3的丰度差异表明,瞬时淀粉降解在协调生长调节和抗逆性发展中起着核心作用。最后,我们的研究表明冷驯化过程中天然存在的C / N平衡和蛋白质合成的差异模式。

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