盐度胁迫对雪氏Branchipus schaefferi Fisher(甲壳纲:Anostraca)生活史变量的影响。

S S S Sarma, Lynda Beladjal, S Nandini, Gerardo Cerón-Martínez, Karina Tavera-Briseño
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引用次数: 12

摘要

背景:淡水无头纲动物生活在短暂的水体中,在这些水体中,由于蒸发导致水位下降,盐浓度增加。因此,对于大多数肛门纲动物来说,盐度成为主要的应激因素。结果:测定了5种NaCl浓度(0 ~ 8 g/l)对小球藻(Chlorella)的生命表人口统计学的影响。雄性和雌性的年龄特异性生存曲线显示出几乎相似的模式,即盐浓度增加导致存活率降低。雌性的年龄特异性生殖(m(x))在盐浓度为0和1 g/l时出现了几个囊肿生成高峰,而在盐浓度为4或8 g/l时,出现的高峰较少。平均寿命、出生时预期寿命、总繁殖率和净繁殖率、世代时间和种群增长率均受培养基中盐浓度的显著影响。盐浓度为0 g/l时净繁殖率最高,为970个/只,盐浓度为8 g/l时最低,为13个/只。根据培养基中盐浓度的不同,种群增长率(r)在每天0.52 ~ 0.32之间变化。结论:在高盐度条件下,沙费贝的存活率和后代产量较低,表明该物种不太可能在内陆含盐水体中定居。因此,在发现临时池塘的地方,必须采取适当的保护措施来保护这个物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of salinity stress on the life history variables of Branchipus schaefferi Fisher, 1834 (Crustacea: Anostraca).

Effect of salinity stress on the life history variables of Branchipus schaefferi Fisher, 1834 (Crustacea: Anostraca).

Effect of salinity stress on the life history variables of Branchipus schaefferi Fisher, 1834 (Crustacea: Anostraca).

Effect of salinity stress on the life history variables of Branchipus schaefferi Fisher, 1834 (Crustacea: Anostraca).

Background: Freshwater anostracans inhabit ephemeral water bodies in which as the water level decreases due to evaporation the salt concentration increases. Thus, for most anostracans salinity becomes the major stress factor.

Results: We tested five concentrations of NaCl (0 to 8 g/l) on the life table demography of Branchipus schaefferi fed Chlorella (alga). Age-specific survivorship curves of male and female B. schaefferi showed nearly a similar pattern in that increased salt concentration resulted in decreased survivorship. The age-specific reproduction (m(x)) of females showed several peaks of cyst production at 0 and 1 g/l salinity while in treatments containing salt at 4 or 8 g/l, there were fewer peaks. Average lifespan, life expectancy at birth, gross and net reproductive rates, generation time and the rate of population increase were all significantly influenced by the salt concentration in the medium. The highest value of net reproductive rate (970 cysts/female) was in treatments containing 0 g/l of salt, while the lowest was 13 cysts/female at 8 g/l. The rate of population increase (r) varied from 0.52 to 0.32 per day depending on the salt concentration in the medium.

Conclusion: The low survival and offspring production of B. schaefferi at higher salinity levels suggests that this species is unlikely to colonize inland saline water bodies. Therefore, the temporary ponds in which it is found, proper conservative measures must be taken to protect this species.

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