Irstea Lyon, Freshwater Ecosystem, Ecology and Pollution Research Unit, 5 rue de la Doua, 69616 Villeurbanne Cedex, France.
Irstea Lyon, Freshwater Ecosystem, Ecology and Pollution Research Unit, 5 rue de la Doua, 69616 Villeurbanne Cedex, France.
Ecotoxicol Environ Saf. 2017 Oct;144:193-199. doi: 10.1016/j.ecoenv.2017.06.017. Epub 2017 Jun 14.
During morphogenesis numerous morphogenetic factors ensure the production of a target phenotype. By disrupting these processes, a toxic exposure during this period could cause an increase of phenotypic defects. In the present study, embryos of the freshwater amphipod Gammarus fossarum were exposed throughout the embryogenesis to increasing concentrations of fenoxycarb (0, 0.5µgL, 5µgL and 50µgL), a growth regulator insecticide analog of the insect juvenile hormone. In addition, to identify morphogenesis' sensitive period, embryos were exposed during either early or late embryonic development to 5µgL of fenoxycarb. In newborn individuals from exposed embryos, three phenotypes were investigated: i) eye pigmentation, ii) length of the antenna and gnathopod of both left and right sides and iii) midgut tissue state. Developmental homeostasis was assessed by measuring fluctuating asymmetry and inter-individual variance of both the antenna and gnathopod. Exposure to 5µgL and 50µgL fenoxycarb throughout the embryonic development induced a delayed hatching and altered appendages size. Moreover, exposure to 5µgL throughout the embryogenesis and during the gastrulation phase impaired eye pigmentation, while exposure to 50µgL resulted in increased tissue damages of the midgut. No significant increase of fluctuating asymmetry was observed in exposed individuals, neither for the antenna nor for the gnathopod. These results demonstrate that fenoxycarb can alter embryonic development of G. fossarum without disrupting developmental homeostasis.
在形态发生过程中,许多形态发生因子确保了靶表型的产生。通过破坏这些过程,在此期间的有毒暴露可能会导致表型缺陷的增加。在本研究中,淡水端足目动物罗氏沼虾的胚胎在整个胚胎发生过程中暴露于不断增加的 Fenoxycarb 浓度(0、0.5µgL、5µgL 和 50µgL)中,Fenoxycarb 是昆虫保幼激素的生长调节剂杀虫剂类似物。此外,为了确定形态发生的敏感时期,胚胎在早期或晚期胚胎发育期间暴露于 5µgL 的 Fenoxycarb 中。在暴露于胚胎的新生个体中,研究了三种表型:i)眼睛色素沉着,ii)左右触角和颚足的长度,以及 iii)中肠组织状态。通过测量触角和颚足的波动不对称性和个体间方差来评估发育动态平衡。暴露于 5µgL 和 50µgL Fenoxycarb 会导致孵化延迟和附肢大小改变。此外,在整个胚胎发生期间和原肠胚形成阶段暴露于 5µgL 会损害眼睛色素沉着,而暴露于 50µgL 会导致中肠组织损伤增加。在暴露个体中,无论是触角还是颚足,都没有观察到波动不对称性的显著增加。这些结果表明 Fenoxycarb 可以改变罗氏沼虾的胚胎发育,而不会破坏发育动态平衡。