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裙带菜提取物通过调节参与耐盐性和养分获取的 miRNA 的表达减轻拟南芥的盐胁迫。

Ascophyllum nodosum extract mitigates salinity stress in Arabidopsis thaliana by modulating the expression of miRNA involved in stress tolerance and nutrient acquisition.

机构信息

Marine Bio-products Research Laboratory, Dalhousie University, Department of Plant, Food and Environmental Sciences, Truro, Nova Scotia, Canada.

Research and Development, Acadian Seaplants Limited, Dartmouth, Nova Scotia, Canada.

出版信息

PLoS One. 2018 Oct 29;13(10):e0206221. doi: 10.1371/journal.pone.0206221. eCollection 2018.

Abstract

Ascophyllum nodosum extract (ANE) contains bioactive compounds that improve the growth of Arabidopsis in experimentally-induced saline conditions; however, the molecular mechanisms through which ANE elicits tolerance to salinity remain largely unexplored. Micro RNAs (miRNAs) are key regulators of gene expression, playing crucial roles in plant growth, development, and stress tolerance. Next generation sequencing of miRNAs from leaves of control Arabidopsis and from plants subjected to three treatments (ANE, NaCl and ANE+NaCl) was used to identify ANE-responsive miRNA in the absence and presence of saline conditions. Differential gene expression analysis revealed that ANE had a strong effect on miRNAs expression in both conditions. In the presence of salinity, ANE tended to reduce the up-regulation or the down-regulation trend induced caused by NaCl in miRNAs such as ath-miR396a-5p, ath-miR399, ath-miR2111b and ath-miR827. To further uncover the effects of ANE, the expression of several target genes of a number of ANE-responsive miRNAs was analyzed by qPCR. NaCl, but not ANE, down-regulated miR396a-5p, which negatively regulated the expression of AtGRF7 leading to a higher expression of AtDREB2a and AtRD29 in the presence of ANE+NaCl, as compared to ANE alone. ANE+NaCl initially reduced and then enhanced the expression of ath-miR169g-5p, while the expression of the target genes AtNFYA1 and ATNFYA2, known to be involved in the salinity tolerance mechanism, was increased as compared to ANE or to NaCl treatments. ANE and ANE+NaCl modified the expression of ath-miR399, ath-miR827, ath-miR2111b, and their target genes AtUBC24, AtWAK2, AtSYG1 and At3g27150, suggesting a role of ANE in phosphate homeostasis. In vivo and in vitro experiments confirmed the improved growth of Arabidopsis in presence of ANE, in saline conditions and in phosphate-deprived medium, further substantiating the influence of ANE on a variety of essential physiological processes in Arabidopsis including salinity tolerance and phosphate uptake.

摘要

裙带菜提取物 (ANE) 含有生物活性化合物,可促进拟南芥在实验诱导的盐胁迫条件下的生长;然而,ANE 诱导盐胁迫耐受性的分子机制在很大程度上仍未得到探索。微 RNA(miRNA)是基因表达的关键调节剂,在植物生长、发育和胁迫耐受性中发挥着重要作用。使用下一代测序技术对对照拟南芥叶片和经三种处理(ANE、NaCl 和 ANE+NaCl)处理的植物叶片中的 miRNA 进行测序,以鉴定在无盐和盐胁迫条件下对 ANE 有反应的 miRNA。差异基因表达分析表明,ANE 在两种条件下对 miRNA 表达有强烈影响。在盐胁迫下,ANE 倾向于降低 ath-miR396a-5p、ath-miR399、ath-miR2111b 和 ath-miR827 等 miRNA 由 NaCl 诱导的上调或下调趋势。为了进一步揭示 ANE 的作用,通过 qPCR 分析了一些 ANE 响应 miRNA 的几个靶基因的表达。与单独的 ANE 相比,NaCl 而不是 ANE 下调了 miR396a-5p 的表达,miR396a-5p 负调控 AtGRF7 的表达,导致在 ANE+NaCl 存在下 AtDREB2a 和 AtRD29 的表达升高。ANE+NaCl 最初降低随后增强了 ath-miR169g-5p 的表达,而靶基因 AtNFYA1 和 ATNFYA2 的表达增加,已知其参与盐胁迫机制,与 ANE 或 NaCl 处理相比。ANE 和 ANE+NaCl 修饰了 ath-miR399、ath-miR827、ath-miR2111b 及其靶基因 AtUBC24、AtWAK2、AtSYG1 和 At3g27150 的表达,表明 ANE 在磷酸盐稳态中的作用。体内和体外实验证实,在 ANE 存在下,在盐胁迫和缺磷条件下,拟南芥的生长得到改善,进一步证实了 ANE 对拟南芥多种基本生理过程的影响,包括盐胁迫耐受性和磷酸盐吸收。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9327/6205635/b5bade61aef6/pone.0206221.g001.jpg

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