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Abiotic influences on embryo growth: statoliths as experimental tools in the squid early life history

机译:非生物对胚胎生长的影响:鱿鱼早期生活史中的石笋作为实验工具

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摘要

Statolith size and growth was used to determine the influence of abiotic factors on the growth of Loligo vulgaris and Sepioteuthis australis embryos. Recently spawned egg masses collected from the field were incubated in the laboratory under different levels of light intensity, photoperiod, or short periods of low salinity (30‰). Double tetracycline staining was used to follow statolith growth. In L. vulgaris constant light conditions produced significantly slower growth in the embryonic statoliths and embryos held at summer photoperiod had slower statolith growth than those held at winter photoperiods. However once they hatched out there was no evidence that photoperiod affected statolith growth. After hatching, in all photoperiods statolith growth rates decreased in comparison with late embryonic rates. In S. australis embryos, differences between the high and medium light intensities for summer and intermediate photoperiods were found, suggesting that under summer incubation temperature, longer daylengths at medium light intensity favoured higher statolith growth for this species. In comparison to controls, slower statolith growth in S. australis embryos due to low salinity only occurred when exposed for 72 h. Comparison with previous studies indicates that temperature seems to be the main abiotic factor influencing statolith growth during early stages, however, interactions among all abiotic factors needs to be determined as well as the unknown influence of other isolated factors, e.g., oxygen concentration within the egg mass.
机译:利用石笋的大小和生长来确定非生物因素对寻常低聚果寡糖和南方雪茄胚胎的生长的影响。最近从田间采集的产卵卵在实验室中以不同水平的光强度,光周期或短期的低盐度(30‰)进行孵化。双四环素染色用于追踪石笋生长。在寻常乳杆菌中,恒定的光照条件使胚胎层状石的生长显着减慢,并且在夏季光周期下保持的胚胎的层状石生长比冬季光周期保持的慢。但是,一旦孵化出来,就没有证据表明光周期会影响石笋的生长。孵化后,在所有光周期中,石笋的生长速率均与后期胚胎期相比降低。在南方葡萄球菌的胚胎中,发现夏季和中期光周期的高光强度和中等光强度之间存在差异,这表明在夏季孵育温度下,中等光强度下更长的日长有利于该物种的石笋生长。与对照相比,由于盐度低,仅在暴露72 h时,南极链霉菌胚胎的石笋生长较慢。与先前研究的比较表明,温度似乎是影响早期石笋生长的主要非生物因素,但是,需要确定所有非生物因素之间的相互作用以及其他孤立因素的未知影响,例如鸡蛋中的氧气浓度质量

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