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落叶松种子中甲硫氨酸亚砜还原酶 MsrB1 和 MsrB2 的定位和动态

Localization and Dynamics of the Methionine Sulfoxide Reductases MsrB1 and MsrB2 in Beech Seeds.

机构信息

Institute of Dendrology, Polish Academy of Sciences, Parkowa 5, 62-035 Kórnik, Poland.

Department of General Botany, Institute of Experimental Biology, Faculty of Biology, Adam Mickiewicz University, Uniwersytetu Poznańskiego 6, 61-614 Poznań, Poland.

出版信息

Int J Mol Sci. 2021 Jan 2;22(1):402. doi: 10.3390/ijms22010402.

Abstract

Beech seeds are produced irregularly, and there is a need for long-term storage of these seeds for forest management practices. Accumulated reactive oxygen species broadly oxidize molecules, including amino acids, such as methionine, thereby contributing to decreased seed viability. Methionine oxidation can be reversed by the activity of methionine sulfoxide reductases (Msrs), which are enzymes involved in the regulation of many developmental processes and stress responses. Two types of Msrs, MsrB1 and MsrB2, were investigated in beech seeds to determine their abundance and localization. MsrB1 and MsrB2 were detected in the cortical cells and the outer area of the vascular cylinder of the embryonic axes as well as in the epidermis and parenchyma cells of cotyledons. The abundances of MsrB1 and MsrB2 decreased during long-term storage. Ultrastructural analyses have demonstrated the accumulation of these proteins in protein storage vacuoles and in the cytoplasm, especially in close proximity to the cell membrane. In silico predictions of possible Msr interactions supported our findings. In this study, we investigate the contribution of MsrB1 and MsrB2 locations in the regulation of seed viability and suggest that MsrB2 is linked with the longevity of beech seeds via association with proper utilization of storage material.

摘要

山毛榉种子的产量不稳定,需要对这些种子进行长期储存,以便于森林管理实践。活性氧会广泛氧化包括蛋氨酸在内的各种分子,从而导致种子活力下降。蛋氨酸的氧化可以通过蛋氨酸亚砜还原酶(Msr)的活性来逆转,Msr 是参与许多发育过程和应激反应调节的酶。本研究调查了山毛榉种子中两种 Msr(MsrB1 和 MsrB2)的丰度和定位,结果表明 MsrB1 和 MsrB2 存在于胚胎轴的皮层细胞和维管束的外区以及子叶的表皮和薄壁细胞中。随着长期储存的进行,MsrB1 和 MsrB2 的丰度逐渐降低。超微结构分析表明这些蛋白质在蛋白储存液泡和细胞质中积累,尤其是在靠近细胞膜的地方。对 Msr 相互作用的计算机预测支持了我们的发现。本研究探讨了 MsrB1 和 MsrB2 位置在调节种子活力方面的作用,并提出 MsrB2 通过与储存物质的合理利用相关联,与山毛榉种子的长寿有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa5b/7795007/f32df5a42069/ijms-22-00402-g001.jpg

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