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酪蛋白作为蛋白质和水解产物:是体外培养的烟草植株的生物刺激素还是氮源?

Casein as protein and hydrolysate: Biostimulant or nitrogen source for Nicotiana tabacum plants grown in vitro?

作者信息

Bělonožníková Kateřina, Černý Martin, Hýsková Veronika, Synková Helena, Valcke Roland, Hodek Ondřej, Křížek Tomáš, Kavan Daniel, Vaňková Radomíra, Dobrev Petre, Haisel Daniel, Ryšlavá Helena

机构信息

Department of Biochemistry, Faculty of Science, Charles University, Praha 2, Czech Republic.

Department of Molecular Biology and Radiobiology, Faculty of AgriSciences, Mendel University in Brno, Brno, Czech Republic.

出版信息

Physiol Plant. 2023 Jul-Aug;175(4):e13973. doi: 10.1111/ppl.13973.

Abstract

In contrast to inorganic nitrogen (N) assimilation, the role of organic N forms, such as proteins and peptides, as sources of N and their impact on plant metabolism remains unclear. Simultaneously, organic biostimulants are used as priming agents to improve plant defense response. Here, we analysed the metabolic response of tobacco plants grown in vitro with casein hydrolysate or protein. As the sole source of N, casein hydrolysate enabled tobacco growth, while protein casein was used only to a limited extent. Free amino acids were detected in the roots of tobacco plants grown with protein casein but not in the plants grown with no source of N. Combining hydrolysate with inorganic N had beneficial effects on growth, root N uptake and protein content. The metabolism of casein-supplemented plants shifted to aromatic (Trp), branched-chain (Ile, Leu, Val) and basic (Arg, His, Lys) amino acids, suggesting their preferential uptake and/or alterations in their metabolic pathways. Complementarily, proteomic analysis of tobacco roots identified peptidase C1A and peptidase S10 families as potential key players in casein degradation and response to N starvation. Moreover, amidases were significantly upregulated, most likely for their role in ammonia release and impact on auxin synthesis. In phytohormonal analysis, both forms of casein influenced phenylacetic acid and cytokinin contents, suggesting a root system response to scarce N availability. In turn, metabolomics highlighted the stimulation of some plant defense mechanisms under such growth conditions, that is, the high concentrations of secondary metabolites (e.g., ferulic acid) and heat shock proteins.

摘要

与无机氮(N)同化不同,蛋白质和肽等有机氮形式作为氮源的作用及其对植物代谢的影响仍不清楚。同时,有机生物刺激剂被用作引发剂以改善植物防御反应。在此,我们分析了在体外培养的烟草植株对酪蛋白水解物或蛋白质的代谢反应。作为唯一的氮源,酪蛋白水解物能使烟草生长,而酪蛋白仅在有限程度上被利用。在以酪蛋白培养的烟草植株根部检测到游离氨基酸,而在无氮源培养的植株中未检测到。将水解物与无机氮结合对生长、根系氮吸收和蛋白质含量有有益影响。补充酪蛋白的植株代谢转向芳香族(色氨酸)、支链(异亮氨酸、亮氨酸、缬氨酸)和碱性(精氨酸、组氨酸、赖氨酸)氨基酸,表明它们被优先吸收和/或其代谢途径发生改变。互补地,烟草根的蛋白质组学分析确定肽酶C1A和肽酶S10家族是酪蛋白降解和对氮饥饿反应的潜在关键参与者。此外,酰胺酶显著上调,很可能是因为它们在氨释放和对生长素合成的影响方面所起的作用。在植物激素分析中,两种形式的酪蛋白都影响苯乙酸和细胞分裂素含量,表明根系对氮供应不足的反应。反过来,代谢组学突出了在这种生长条件下对一些植物防御机制的刺激作用,即高浓度的次生代谢产物(如阿魏酸)和热休克蛋白。

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