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无偏磷酸化蛋白质组学分析揭示了百慕大草匍匐茎中的新型磷酸化蛋白和磷酸化模体。

Unbiased phosphoproteome profiling uncovers novel phosphoproteins and phosphorylation motifs in bermudagrass stolons.

机构信息

College of Animal Science and Technology, Yangzhou University, Yangzhou, 225009, China.

Institute of Botany, Jiangsu Province and Chinese Academy of Sciences, Nanjing, 210014, China.

出版信息

Plant Physiol Biochem. 2019 Nov;144:92-99. doi: 10.1016/j.plaphy.2019.09.036. Epub 2019 Sep 22.

Abstract

As a widely used turfgrass species, bermudagrass (Cynodon dactylon L.) can be easily propagated through colonial growth of stolons. Previous studies collectively revealed that exotic environmental factors and intrinsic hormones and genes are all involved in the differentiation, development, and diageotropical growth of stolons. However, the detailed molecular mechanism how environmental and hormone signals regulate the gene expression and biochemical activities in bermudagrass stolons remains unclear. In this study, we observed that reversible phosphorylation modification plays important roles in normal growth and physiological functions of bermudagrass stolons. LC-MS/MS analyses of the total protein extracts of bermudagrass stolons without preliminary phosphopeptide-enrichment successfully identified 646 nonredundant phosphorylation sites and 485 phosphoproteins. The phosphoproteins were significantly enriched in protein phosphorylation regulation and starch metabolism processes. Motif-X analyses further revealed that phosphoproteins containing novel phosphorylation motifs might be involved in transcription regulation of bermudagrass stolons. These results greatly expanded our understanding of the growth and development of bermudagrass stolons at the post-translational level.

摘要

作为一种广泛应用的草坪草种,百慕大草(Cynodon dactylon L.)可以通过匍匐茎的丛生繁殖方式轻松繁殖。先前的研究表明,外来环境因素以及内在激素和基因都参与了匍匐茎的分化、发育和向地性生长。然而,环境和激素信号如何调节百慕大草匍匐茎的基因表达和生化活性的详细分子机制仍不清楚。在这项研究中,我们观察到可逆磷酸化修饰在百慕大草匍匐茎的正常生长和生理功能中发挥着重要作用。在未进行磷酸肽富集的百慕大草匍匐茎总蛋白提取物的 LC-MS/MS 分析中,成功鉴定出 646 个非冗余磷酸化位点和 485 个磷酸化蛋白。磷酸化蛋白在蛋白磷酸化调节和淀粉代谢过程中显著富集。基序-X 分析进一步表明,含有新型磷酸化基序的磷酸化蛋白可能参与百慕大草匍匐茎的转录调控。这些结果大大扩展了我们对百慕大草匍匐茎在翻译后水平上生长和发育的理解。

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