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低盐和高盐胁迫条件对牡蛎(双壳纲:牡蛎科)生理、代谢和免疫反应的影响。

Effect of hypo- and hypersaline stress conditions on physiological, metabolic, and immune responses in the oyster Crassostrea corteziensis (Bivalvia: Ostreidae).

机构信息

Facultad de Ciencias del Mar, Universidad Autónoma de Sinaloa, Paseo Claussen s/n, 82000, Mazatlán, Sinaloa, Mexico.

Facultad de Ciencias del Mar, Universidad Autónoma de Sinaloa, Paseo Claussen s/n, 82000, Mazatlán, Sinaloa, Mexico.

出版信息

Fish Shellfish Immunol. 2022 Jan;120:252-260. doi: 10.1016/j.fsi.2021.11.033. Epub 2021 Nov 27.

Abstract

Salinity in the oceans is changing due to climate change and global warming. Intense rainfalls and freshwater runoff decrease salinity along the coastal areas. In contrast, intense drought seasons and river damming have certainly increased salinity in lagoons and estuaries. Few studies have focused on aspects of the biology and culture of oyster Crassostrea corteziensis, but until now, physiological and immunological responses in this species have not been assessed under acute hypo- and hypersaline stress conditions. Oysters obtained from a local farm were acclimated for three weeks in laboratory conditions. To avoid closure of oyster valves during salinity induced-stress conditions, a notch was done on each organism shell not only to facilitate oyster tissue exposure to rearing water but also for sampling hemolymph. Oysters (N = 180) were abruptly exposed to three salinity treatments: (HO) hypo-, (C) control, and (HP) hypersaline stress conditions (10, 35, and 50 PSU, respectively). Four oysters per treatment were sampled at 1, 2, 3, 6, 12, 24, and 48 h after exposure. Hemolymph osmolality, water content and total protein concentration in tissues, metabolic and immune responses were assessed for each organism. Oyster survival was not different among treatments and was maintained above 96% at the end of the experimental trial. Hemolymph osmolality reached the value of rearing water at 6 and 48 h of exposure to HP and HO stress conditions, where oysters exposed to salinity increase showed less resilience than those to decrease. Higher glucose levels in plasma and lower ones of hemocyanin were assessed in the oysters exposed to HP compared to HO conditions, suggesting more stressful conditions or susceptibility of oysters during salinity increase. Total hemocyte (THC), hyalinocyte (HC), and granulocyte (GC) counts decreased in oysters exposed to HP condition, while total and differential hemocyte counts were similar among oysters exposed to HO and control conditions. Despite hemocyte phagocytosis was not different among treatments, viability decreased in those exposed to HP condition. Contrastingly, superoxide anion (SOA) production (oxidative capacity) increased in oysters exposed to both induced salinity-stress conditions, which suggest susceptibility increase in oysters, particularly during salinity increase. The results show that HP condition is particularly stressful for C. corteziensis. In turn, this condition could increase both their vulnerability to other environmental stressors, such as temperature and/or acidification or susceptibility to opportunistic pathogenic microorganisms that cause the most common oyster diseases.

摘要

由于气候变化和全球变暖,海洋中的盐度正在发生变化。强烈的降雨和淡水径流会降低沿海水域的盐度。相比之下,强烈的干旱季节和河流筑坝肯定会增加泻湖和河口的盐度。很少有研究关注牡蛎 Crassostrea corteziensis 的生物学和文化方面,但到目前为止,还没有评估过这种物种在急性低盐和高盐胁迫条件下的生理和免疫反应。从当地养殖场获得的牡蛎在实验室条件下适应了三周。为了避免在盐度诱导的胁迫条件下关闭牡蛎的贝壳,在每个生物体的贝壳上做了一个缺口,不仅便于牡蛎组织暴露在养殖水中,也便于取样血淋巴。将 180 只牡蛎突然暴露于三种盐度处理中:(HO)低盐度、(C)对照和(HP)高盐度胁迫条件(分别为 10、35 和 50 PSU)。暴露后 1、2、3、6、12、24 和 48 小时,每处理取 4 只牡蛎进行采样。评估了每个生物体的血淋巴渗透压、组织水分含量和总蛋白浓度、代谢和免疫反应。在实验结束时,牡蛎的存活率在处理之间没有差异,保持在 96%以上。暴露于 HP 和 HO 胁迫条件 6 和 48 小时后,牡蛎的血淋巴渗透压达到养殖水的水平,其中暴露于盐度增加的牡蛎的弹性小于暴露于盐度降低的牡蛎。与 HO 条件相比,暴露于 HP 条件的牡蛎的血浆葡萄糖水平较高,血蓝蛋白水平较低,这表明在盐度增加时,牡蛎的应激条件或易感性更高。暴露于 HP 条件的牡蛎的总血球计数(THC)、透明细胞计数(HC)和粒细胞计数(GC)下降,而暴露于 HO 和对照条件的牡蛎的总血球计数和差异血球计数相似。尽管处理之间的血球吞噬作用没有差异,但暴露于 HP 条件的血球的活力下降。相反,暴露于两种诱导盐胁迫条件下的超氧阴离子(SOA)产生(氧化能力)增加,这表明牡蛎的易感性增加,特别是在盐度增加时。结果表明,HP 条件对 C. corteziensis 特别有压力。反过来,这种情况可能会增加它们对其他环境胁迫因素的脆弱性,例如温度和/或酸化,或者对导致最常见牡蛎疾病的机会致病菌的易感性。

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