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首页> 外文期刊>Diseases of Aquatic Organisms >Encystment and excystment of kinetoplastid Azumiobodo hoyamushi, causal agent of soft tunic syndrome in ascidian aquaculture
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Encystment and excystment of kinetoplastid Azumiobodo hoyamushi, causal agent of soft tunic syndrome in ascidian aquaculture

机译:动子体Azumiobodo hoyamushi的囊化和囊泡化,海鞘养殖中的软性中风综合征的病因

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摘要

Soft tunic syndrome in the edible ascidian Halocynthia roretzi is caused by the kineto plastid flagellate Azumiobodo hoyamushi, which was found to assume a fusiform cell form with 2 flagella in axenic, pure culture. When the flagellate form was incubated in sterilized artificial seawater (pH 8.4), some of the cells became cyst-like and adhered to the bottom of the culture plate. The cyst-like forms were spherical or cuboidal, and each had 2 flagella encapsulated in its cytoplasm. Encystment was also induced in culture medium alkalified to the pH of seawater (8.4) but not in unmodified (pH 7.2) or acidified media (pH 6.4). More than 95% of the cyst-like cells converted to the flagellate form within 1 d following transfer to seawater containing ascidian tunic extracts from host ascidians. The cyst-like cells were able to survive in seawater with no added nutrients for up to 2 wk at 20 degrees C and for a few months at 5 to 15 degrees C. The survival period in seawater depended on temperature: some cyst-like cells survived 3 mo at 10 degrees C, and ca. 95% of these converted to flagellate forms in seawater containing tunic extracts. Thus, A. hoyamushi is able to persist under adverse conditions in a cyst-like form able to adhere to organic and inorganic substrata for protracted periods of time.
机译:可食用的海生梭子鱼Halocynthia roretzi中的软性中山综合征是由人动质体鞭毛的Azumiobodo hoyamushi引起的,在纯正的纯培养物中,该菌子呈梭形细胞形式,带有2个鞭毛。当鞭毛形式在无菌人工海水(pH 8.4)中孵育时,一些细胞会变成囊肿状并粘附在培养板的底部。囊样形式为球形或长方体,每个囊泡中均包裹有2个鞭毛。在碱化至海水的pH(8.4)的培养基中也诱导了包囊作用,但在未改性(pH 7.2)或酸化的培养基(pH 6.4)中没有诱导成囊。超过95%的囊状细胞在转移至含有来自宿主海鞘的海鞘外衣提取物的海水后1天内转化为鞭毛状。囊状细胞能够在不添加营养的情况下在海水中存活,在20°C的环境下长达2 wk,在5至15℃的环境下能够存活数月。海水的存活期取决于温度:某些囊状细胞在10摄氏度下存活3个月,其中95%在含有中山药提取物的海水中转化为鞭毛状。因此,hoyamushi菌能够在不利条件下以囊状形式持续存在,并能在较长的时间内粘附于有机和无机基质。

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