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首页> 外文期刊>Environmental Science and Pollution Research >Allelopathic effect boosts Chrysosporum ovalisporum dominance in summer at the expense of Microcystis panniformis in a shallow coastal water body
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Allelopathic effect boosts Chrysosporum ovalisporum dominance in summer at the expense of Microcystis panniformis in a shallow coastal water body

机译:在夏季,在夏天的浅沿海水体中,夏季化植物孢子瘤优势促进夏季

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摘要

The increased occurrence of harmful cyanobacterial species and, with this, higher frequency of cyanobacteria blooms, closely associated with eutrophication and climate change, have attracted increasing attention worldwide. However, competition mechanisms between the different bloom-forming cyanobacteria species remain to be elucidated. In this paper, for the first time, the allelopathic effect of the cyanobacterium Chrysosporum ovalisporum on the cyanobacterium Microcystis panniformis is reported. The results of our study conducted in a Chinese shallow coastal water body demonstrated that the biomass of M. panniformis was relatively low during the C. ovalisporum blooming period. Co-cultivation of a C. ovalisporum strain with a M. panniformis strain showed strong inhibition of the growth of M. panniformis but stimulation of C. ovalisporum. Thus, filtrate of C. ovalisporum culture had a strong inhibitory effect on the performance of M. panniformis by decreasing the maximum optical quantum yield (F-v/F-m), the electron transport rate (ETR) of PS II and the onset of light saturation (I-k) and by increasing the alkaline phosphatase (ALP) activity and superoxide dismutase (SOD) activity of M. panniformis. Our results suggest that the inter-specific allelopathic effect plays an important role in the competition between different cyanobacteria species. We foresee the importance of C. ovalisporum to intensify in a future warmer world, not least in small-to medium-sized, warm and high conductivity coastal water bodies.
机译:有害的蓝细菌种类的发生增加,含有较高频率的蓝细菌盛开,与富营养化和气候变化密切相关,在全球上引起了越来越多的关注。然而,仍然阐明不同盛开的蓝细菌物种之间的竞争机制。本文首次介绍了克林孢子孢子粥对微囊杆菌豆类植物细胞孢子虫卵巢血管孢子粥样孢菌的化感作用。我们在中国浅沿海水体中进行的研究结果表明,在C.卵巢盛开期间,M.Panniformis的生物量相对较低。 C.卵巢菌株C.卵巢菌株的共培养表现出强烈抑制M.Panniformis的生长,但刺激C. Ovalisporum。因此,通过降低最大光学量子产率(FV / FM),PS II的电子传输速率(ETR)和光饱和度的发作,C. ophalisporum培养物对卵巢培养物的性能具有强烈的抑制作用。 IK)并通过增加M.Panniformis的碱性磷酸酶(ALP)活性和超氧化物歧化酶(SOD)活性。我们的研究结果表明,特异性互感效果在不同蓝杆菌物种之间的竞争中起重要作用。我们预见到C. Ovalisporum在未来的温暖世界中加剧的重要性,尤其是小于中等大小,温暖和高导电性沿海水体。

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