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Hydrogen Sulfide Signaling Protects Chlamydomonas reinhardtii Against Allelopathic Damage From Cyanobacterial Toxin Microcystin-LR

机译:硫化氢信号传导保护衣原体RENHARDTII免受蓝毒素毒素微囊藻毒素-LR的化感损伤

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摘要

Cyanobacterial blooms have become more frequent and serious in recent years. Not only do massive blooms cause environmental pollution and nutrient eutrophication, but they also produce microcystins (MCs), a group of toxic cycloheptapeptides, which threaten aquatic ecosystem and human health. As such, clarifying the allelopathic interactions between cyanobacteria and other algae is critical to better understand the driving factors of blooms. To date, however, such studies remain largely insufficient. Here, we treated model alga Chlamydomonas reinhardtii with microcystin-LR (MC-LR) to determine its allelopathic effects. Results showed that MC-LR markedly suppressed C. reinhardtii cell viability. Comparative proteomic and physiological analyses revealed that MC-LR significantly up-regulated protein abundance of antioxidants ascorbate peroxidase (APX) and catalase (CAT) at the beginning stage of exposure. This was accompanied by an over-accumulation of hydrogen peroxide (H2O2), suggesting that MC-LR suppresses cell viability via oxidative damage. Furthermore, we found that MCs induced desulfhydrase (DES) activity for hydrogen sulfide (H2S) generation at the beginning stage. Additional H2S donors reactivated antioxidant enzyme activity, which reduced H2O2 accumulation and ultimately enhanced C. reinhardtii tolerance to MC-LR damage. This effect could be reserved by inhibiting H2S biosynthesis. Simultaneously, we found that H2S also suppressed MC-LR-induced cell autophagy, and thus attenuated the toxic effects of MC-LR. Our findings suggest that oxidative bursts may be the main reason for the allelopathic effects of MC-LR on C. reinhardtii viability and that H2S signaling may enhance C. reinhardtii tolerance to MC-LR through the activation of antioxidant enzyme activity and suppression of cell autophagy.
机译:近年来,蓝藻绽放变得更加频繁和严重。不仅巨大的绽放导致环境污染和营养富营养化,而且还生产微囊藻(MCS),这是一种有毒的环庚肽,威胁到水生生态系统和人类健康。因此,阐明蓝藻和其他藻类之间的化感受相互作用对于更好地了解绽放的驾驶因素至关重要。然而,迄今为止,这种研究仍然很大程度上不足。在这里,我们用微囊藻(MC-LR)对藻类衣原体Reinhardtii进行了调整的藻类衣原体Reinhardtii,以确定其化感作用。结果表明,MC-LR显着抑制了Reinhardtii细胞的活力。比较蛋白质组学和生理学分析表明,MC-LR在暴露的开始阶段,显着上调抗坏血性过氧化物酶(APX)和过氧化氢酶(APX)和过氧化氢酶(猫)的抗坏血性蛋白质丰富。这伴随着过氧化氢(H 2 O 2)的过积累,表明MC-LR通过氧化损伤抑制细胞活力。此外,我们发现MCS诱导在开始阶段的硫化氢(H2S)产生的脱硫酶(DES)活性。额外的H 2 S供体重新激活抗氧化酶活性,其降低了H2O2积累,最终增强了C. Reinhardtii耐受性对MC-LR损伤的耐受性。可以通过抑制H2S生物合成来保留这种效果。同时,我们发现H2S还抑制了MC-LR诱导的细胞自噬,从而减弱了MC-LR的毒性作用。我们的研究结果表明,氧化突发可能是MC-LR对C. ReinhardTII活力的影响的主要原因,并且H2S信号传导可以通过激活抗氧化酶活性和细胞自噬的抑制来增强对MC-LR的C. Reinhardtii耐受性。

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