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首页> 外文期刊>Phycological Research >Comparative studies of photosynthetic capacity in three pigmented red algal parasites: Chlorophyll a concentrations and PAM fluorometry measurements
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Comparative studies of photosynthetic capacity in three pigmented red algal parasites: Chlorophyll a concentrations and PAM fluorometry measurements

机译:三种着色红藻寄生虫中光合作用的比较研究:叶绿素浓度和PAM荧光测量测量

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摘要

Over 100 species of red algae have been described as parasites on other red algae, but the majority show some degree of pigmentation. This raises the question of their parasitic status, especially their abilities to photosynthesize and their dependence on their host for fixed carbon. Are they considered parasites only based on morphological characters, for example, reduced size and secondary pit connection to the host? Translocation of nutrients from host to parasite have been shown for very few red algal parasites, and these were mostly unpigmented. This study investigated three pigmented red algal parasites (Rhodophyllis parasitica, Vertebrata aterrimophila and Pterocladiophila hemisphaerica) from New Zealand. We quantified their chlorophyll a content and also measured their PSII capacity using PAM fluorometry. All three parasites contained chlorophyll a. The parasites Rhodophyllis parasitica and Vertebrata aterrimophila were not able to photosynthesize and must therefore be fully nutritional dependent on their host. The parasite Pterocladiophila hemisphaerica was able to photosynthesize independently, but based on molecular characteristics we suggest that it relies on the host plastid to do photosynthesis. Our results support the parasitic status of all three species and highlights the necessity of more studies investigating the differences in host dependency in red algal parasites.
机译:超过100种红藻已被描述为其他红藻类的寄生虫,但大多数都显示出一定程度的色素沉着。这提出了他们的寄生状态问题,特别是他们对光合的能力及其对固定碳宿主的依赖。它们仅基于形态特征算像寄生虫,例如,对主机的尺寸减小和次要坑连接?对于极少的红藻寄生虫,已经显示了从宿主到寄生虫的营养素的易位,并且这些主要是未珍视的。本研究研究了来自新西兰的三种着色的红藻寄生虫(Rhodophyllis parasitica,椎骨鼠脊髓灰质炎,椎疗法)。我们量化了它们的叶绿素的含量,并使用PAM荧光测定来测量它们的PSII能力。所有三个寄生虫都含有叶绿素a。寄生虫肾小球寄生虫和椎体Aterrimophila无法光学化,因此必须完全营养依赖于其宿主。寄生虫Pterocladiophila Hemisphaerica能够独立光拍,但基于分子特性,我们表明它依赖于宿主塑料进行光合作用。我们的结果支持所有三种物种的寄生状态,并突出了更多研究的必要性来研究红藻寄生虫中的宿主依赖性的差异。

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