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海洋微藻在冷储沉积物中的 DNA 和 RNA 稳定性及其对代谢组学分析的影响。

DNA and RNA Stability of Marine Microalgae in Cold-Stored Sediments and Its Implications in Metabarcoding Analyses.

机构信息

CAS Key Laboratory of Marine Ecology and Environmental Sciences, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266071, China.

Laoshan Laboratory, Qingdao 266237, China.

出版信息

Int J Mol Sci. 2024 Jan 31;25(3):1724. doi: 10.3390/ijms25031724.

Abstract

The ever-increasing applications of metabarcoding analyses for environmental samples demand a well-designed assessment of the stability of DNA and RNA contained in cells that are deposited or buried in marine sediments. We thus conducted a qPCR quantification of the DNA and RNA in the vegetative cells of three microalgae entrapped in facsimile marine sediments and found that >90% of DNA and up to 99% of RNA for all microalgal species were degraded within 60 days at 4 °C. A further examination of the potential interference of the relic DNA of the vegetative cells with resting cyst detection in sediments was performed via a metabarcoding analysis in artificial marine sediments spiked with the vegetative cells of two Kareniaceae dinoflagellates and the resting cysts of another three dinoflagellates. The results demonstrated a dramatic decrease in the relative abundances of the two Kareniaceae dinoflagellates in 120 days, while those of the three resting cysts increased dramatically. Together, our results suggest that a positive detection of microalgae via metabarcoding analysis in DNA or RNA extracted from marine sediments strongly indicates the presence of intact or viable cysts or spores due to the rapid decay of relic DNA/RNA. This study provides a solid basis for the data interpretation of metabarcoding surveys, particularly in resting cyst detection.

摘要

随着代谢组学分析在环境样本中的应用日益增多,人们迫切需要对海洋沉积物中沉积或埋藏的细胞内 DNA 和 RNA 的稳定性进行精心设计的评估。因此,我们对三种被困在模拟海洋沉积物中的微藻的营养细胞中的 DNA 和 RNA 进行了 qPCR 定量分析,结果发现,在 4°C 下,所有微藻物种的 >90%的 DNA 和高达 99%的 RNA 在 60 天内被降解。通过对用两种甲藻 dinoflagellates 的营养细胞和另外三种 dinoflagellates 的休眠孢进行人工海洋沉积物进行代谢组学分析,进一步研究了营养细胞的 relic DNA 对沉积物中休眠孢检测的潜在干扰。结果表明,在 120 天内,两种甲藻 dinoflagellates 的相对丰度急剧下降,而另外三种休眠孢的相对丰度则急剧增加。总之,我们的结果表明,从海洋沉积物中提取的 DNA 或 RNA 中通过代谢组学分析对微藻进行的阳性检测强烈表明存在完整或有活力的休眠孢或孢子,因为 relic DNA/RNA 迅速降解。本研究为代谢组学调查的数据解释提供了坚实的基础,特别是在休眠孢检测方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66f4/10855355/4cbcce914b56/ijms-25-01724-g001.jpg

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