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菊花钙调神经磷酸酶 B 样相互作用蛋白激酶 CmCIPK23 在拟南芥根系硝酸盐信号转导中的作用新见解。

New insights into the role of chrysanthemum calcineurin B-like interacting protein kinase CmCIPK23 in nitrate signaling in Arabidopsis roots.

机构信息

Department of Ornamental Horticulture, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai'an, 271018, Shandong, China.

Chrysanthemum Research Center of China, Japan and Korea in Shandong Province, Tai'an, 271018, Shandong, China.

出版信息

Sci Rep. 2022 Jan 19;12(1):1018. doi: 10.1038/s41598-021-04758-8.

Abstract

Nitrate is an important source of nitrogen and also acts as a signaling molecule to trigger numerous physiological, growth, and developmental processes throughout the life of the plant. Many nitrate transporters, transcription factors, and protein kinases participate in the regulation of nitrate signaling. Here, we identified a gene encoding the chrysanthemum calcineurin B-like interacting protein kinase CmCIPK23, which participates in nitrate signaling pathways. In Arabidopsis, overexpression of CmCIPK23 significantly decreased lateral root number and length and primary root length compared to the WT when grown on modified Murashige and Skoog medium with KNO as the sole nitrogen source (modified MS). The expression of nitrate-responsive genes differed significantly between CmCIPK23-overexpressing Arabidopsis (CmCIPK23-OE) and the WT after nitrate treatment. Nitrate content was significantly lower in CmCIPK23-OE roots, which may have resulted from reduced nitrate uptake at high external nitrate concentrations (≥ 1 mM). Nitrate reductase activity and the expression of nitrate reductase and glutamine synthase genes were lower in CmCIPK23-OE roots. We also found that CmCIPK23 interacted with the transcription factor CmTGA1, whose Arabidopsis homolog regulates the nitrate response. We inferred that CmCIPK23 overexpression influences root development on modified MS medium, as well as root nitrate uptake and assimilation at high external nitrate supply. These findings offer new perspectives on the mechanisms by which the chrysanthemum CBL interacting protein kinase CmCIPK23 influences nitrate signaling.

摘要

硝酸盐是氮的重要来源,同时作为信号分子触发植物整个生命周期中的许多生理、生长和发育过程。许多硝酸盐转运蛋白、转录因子和蛋白激酶参与硝酸盐信号的调节。在这里,我们鉴定了一个编码菊花钙调神经磷酸酶 B 样相互作用蛋白激酶 CmCIPK23 的基因,该基因参与硝酸盐信号通路。在拟南芥中,与野生型相比,当在含有 KNO3 作为唯一氮源的改良 Murashige 和 Skoog 培养基上生长时,CmCIPK23 的过表达显著降低了侧根数量和长度以及主根长度。硝酸盐处理后,CmCIPK23 过表达的拟南芥(CmCIPK23-OE)和野生型之间的硝酸盐响应基因表达差异显著。CmCIPK23-OE 根中的硝酸盐含量显著降低,这可能是由于在高外部硝酸盐浓度(≥1mM)下吸收硝酸盐减少所致。硝酸盐还原酶活性和硝酸盐还原酶和谷氨酰胺合酶基因的表达在 CmCIPK23-OE 根中降低。我们还发现 CmCIPK23 与转录因子 CmTGA1 相互作用,其拟南芥同源物调节硝酸盐响应。我们推断 CmCIPK23 的过表达影响改良 MS 培养基上的根发育,以及高外部硝酸盐供应下的根硝酸盐吸收和同化。这些发现为菊花 CBL 相互作用蛋白激酶 CmCIPK23 影响硝酸盐信号的机制提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a02/8770472/e7c4b0fdd093/41598_2021_4758_Fig1_HTML.jpg

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