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氦氖激光诱导迷迭香耐盐性和迷迭香酸与鼠尾草酸产生的 RBOH 依赖性信号转导。

RBOH-dependent signaling is involved in He-Ne laser-induced salt tolerance and production of rosmarinic acid and carnosol in Salvia officinalis.

机构信息

Plant Science Department, Science Faculty, Shahrekord University, Shahrekord, Iran.

Biotechnology Research Institute, Shahrekord University, Shahrekord, Iran.

出版信息

BMC Plant Biol. 2024 Aug 24;24(1):798. doi: 10.1186/s12870-024-05502-w.

Abstract

BACKGROUND

In the past two decades, the impacts of Helium-Neon (He-Ne) laser on stress resistance and secondary metabolism in plants have been studied, but the signaling pathway which by laser regulates this process remains unclear. Therefore, the current study sought to explore the role of RBOH-dependent signaling in He-Ne laser-induced salt tolerance and elicitation of secondary metabolism in Salvia officinalis. Seeds were primed with He-Ne laser (6 J cm) and peroxide hydrogen (HO, 5 mM) and 15-old-day plants were exposed to two salinity levels (0, 75 mM NaCl).

RESULTS

Salt stress reduced growth parameters, chlorophyll content and relative water content (RWC) and increased malodialdehyde (MDA) and HO contents in leaves of 45-old-day plants. After 48 h of salt exposure, higher transcription levels of RBOH (encoding NADPH oxidase), PAL (phenylalanine ammonia-lyase), and RAS (rosmarinic acid synthase) were recorded in leaves of plants grown from seeds primed with He-Ne laser and/or HO. Despite laser up-regulated RBOH gene in the early hours of exposing to salinity, HO and MDA contents were lower in leaves of these plants after 30 days. Seed pretreatment with He-Ne laser and/or HO augmented the accumulation of anthocyanins, total phenol, carnasol, and rosmarinic acid and increased total antioxidant capacity under non-saline and more extensively at saline conditions. Indeed, these treatments improved RWC, and K/Na ratio, enhanced the activities of superoxide dismutase and ascorbate peroxidase and proline accumulation, and significantly decreased membrane injury and HO content in leaves of 45-old-day plants under salt stress. However, applying diphenylene iodonium (DPI as an inhibitor of NADPH oxidase) and N, N-dimethyl thiourea (DMTU as a HO scavenger) after laser priming reversed the aforementioned effects which in turn resulted in the loss of laser-induced salt tolerance and secondary metabolism.

CONCLUSIONS

These findings for the first time deciphered that laser can induce a transient RBOH-dependent HO burst, which might act as a downstream signal to promote secondary metabolism and salt stress alleviation in S. officinalis plants.

摘要

背景

在过去的二十年中,已经研究了氦氖(He-Ne)激光对植物抗逆性和次生代谢的影响,但是激光调节该过程的信号通路尚不清楚。因此,本研究旨在探讨 RBOH 依赖性信号在 He-Ne 激光诱导的迷迭香耐盐性和次生代谢中的作用。用 He-Ne 激光(6 J cm)和过氧化氢(HO,5 mM)对种子进行预处理,并用 15 天大的植物暴露于两种盐度水平(0、75 mM NaCl)下。

结果

盐胁迫降低了 45 天大的植物叶片的生长参数、叶绿素含量和相对水含量(RWC),并增加了丙二醛(MDA)和 HO 含量。暴露于盐 48 小时后,从用 He-Ne 激光和/或 HO 预处理的种子中生长的植物叶片中记录到 RBOH(编码 NADPH 氧化酶)、PAL(苯丙氨酸解氨酶)和 RAS(迷迭香酸合酶)的转录水平更高。尽管激光在暴露于盐的早期上调了 RBOH 基因,但在 30 天后这些植物叶片中的 HO 和 MDA 含量较低。He-Ne 激光和/或 HO 的种子预处理增加了非盐胁迫下和更广泛的盐胁迫下花色苷、总酚、卡那醇和迷迭香酸的积累,并提高了总抗氧化能力。事实上,这些处理提高了 RWC 和 K/Na 比,增强了超氧化物歧化酶和抗坏血酸过氧化物酶的活性以及脯氨酸的积累,并且在盐胁迫下显著减少了 45 天大的植物叶片的膜损伤和 HO 含量。然而,在用激光预处理后施用二苯基碘(DPI 作为 NADPH 氧化酶抑制剂)和 N,N-二甲基硫脲(DMTU 作为 HO 清除剂)逆转了上述效应,从而导致激光诱导的耐盐性和次生代谢丧失。

结论

这些发现首次揭示,激光可以诱导瞬时的 RBOH 依赖性 HO 爆发,该爆发可能作为下游信号来促进迷迭香植物的次生代谢和盐胁迫缓解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dabf/11344448/3913df1b99f7/12870_2024_5502_Fig1_HTML.jpg

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