Belzile Claude, Gosselin Michel
Institut des sciences de la mer de Rimouski (ISMER), Université du Québec à Rimouski, Rimouski, Québec G5L 3A1, Canada.
Institut des sciences de la mer de Rimouski (ISMER), Université du Québec à Rimouski, Rimouski, Québec G5L 3A1, Canada.
J Invertebr Pathol. 2015 Nov;132:201-207. doi: 10.1016/j.jip.2015.10.006. Epub 2015 Oct 24.
Coccomyxa parasitica and similar, unidentified Coccomyxa species infect the soft tissues of many bivalve species, giving them a conspicuous green coloration and leading to mantle and shell deformities. Very little information exists regarding the ecophysiology of parasitic Coccomyxa sp. and this limits our ability to understand how it can achieve its unusual life history. In the present study, the growth of Coccomyxa sp. Metis-sur-mer (KJ372210) in liquid culture was investigated. Coccomyxa sp. maximum growth rate was 0.75day (equivalent to a doubling time of 22h), growth saturated at ∼100μmol quanta ms and was still ∼20% of maximum at 13μmol quanta ms, the lowest photosynthetically available radiation (PAR) intensity tested. Coccomyxa sp. showed a very wide tolerance to salinity, with growth rate practically invariable over the salinity range 15-35. Even in natural spring water enriched with f/2 media, the growth rate was nearly half of maximum. Unlike the closely related acid-tolerant Coccomyxa sp. CPCC 508, Coccomyxa sp. Metis-sur-mer could not grow in acidic waters. Considering the ability of Coccomyxa sp. to achieve a high growth rate at low irradiance and its relative insensitivity to the prevailing salinity, it is somewhat surprising it has not yet infected bivalves at a larger scale worldwide.
寄生球囊藻及类似的未鉴定球囊藻物种会感染许多双壳贝类的软组织,使其呈现出明显的绿色,并导致外套膜和贝壳畸形。关于寄生球囊藻的生态生理学信息非常少,这限制了我们理解它如何实现其独特生活史的能力。在本研究中,对滨海梅蒂斯球囊藻(KJ372210)在液体培养中的生长情况进行了研究。球囊藻的最大生长速率为0.75天(相当于倍增时间为22小时),在约100μmol光量子·m⁻²·s⁻¹时生长达到饱和,在13μmol光量子·m⁻²·s⁻¹(测试的最低光合有效辐射强度)时仍约为最大值的20%。球囊藻对盐度具有非常广泛的耐受性,在15 - 35的盐度范围内生长速率几乎不变。即使在添加了f/2培养基的天然泉水中,生长速率也接近最大值的一半。与密切相关的耐酸球囊藻CPCC 508不同,滨海梅蒂斯球囊藻不能在酸性水域中生长。考虑到球囊藻在低光照下实现高生长速率的能力及其对当前盐度的相对不敏感性,它尚未在全球范围内更大规模地感染双壳贝类有点令人惊讶。