Prolonged effects of in-hive monoterpenoids on the honey bee Apis mellifera

被引:0
作者
Julie Alayrangues
Lucie Hotier
Isabelle Massou
Yolaine Bertrand
Catherine Armengaud
机构
[1] Centre Universitaire Jean-François Champollion,Institut de Neurosciences (INT)
[2] Aix-Marseille Université –Faculté de Médecine,Centre de Recherches sur la Cognition Animale, Centre de Biologie Intégrative (CBI)
[3] Université de Toulouse,undefined
[4] CNRS,undefined
[5] UPS,undefined
来源
Ecotoxicology | 2016年 / 25卷
关键词
Honey bee; Miticide; Light responsiveness; Locomotion; Monoterpenoids;
D O I
暂无
中图分类号
学科分类号
摘要
Honey bees are exposed in their environment to contaminants but also to biological stressors such as Varroa destructor that can weaken the colony. Preparations containing monoterpenoids that are essential oil components, can be introduced into hives to control Varroa. The long-term sublethal effects of monoterpenoids used as miticides have been poorly investigated. Analysis of behavior of free-moving bees in the laboratory is useful to evaluate the impact of chemical stressors on their cognitive functions such as vision function. Here, the walking behavior was quantified under a 200-lux light intensity. Weeks and months after introduction of the miticide (74 % thymol) into the hives, decreases of phototaxis was observed with both summer and winter bees. Curiously, in spring, bees collected in treated hives were less attracted by light in the morning than control bees. The survival of bees collected in spring was increased by treatment. After a 1-year period of observation, the colony losses were identical in treated and non-treated groups. Colony loss started earlier in the non-treated group. In public opinion, natural substances as essential oils are safer and more environmentally friendly. We demonstrated that a monoterpenoid-based treatment affects bee responses to light. The latter results have notable implications regarding the evaluation of miticides in beekeeping.
引用
收藏
页码:856 / 862
页数:6
相关论文
共 122 条
  • [11] Pollock HS(2003)Thymol as an alternative to pesticides: persistence and effects of Apilife Var on the phototactic behavior of the honeybee Nature 424 205-278
  • [12] Robinson GE(2003)Acaricidal and insecticidal activity of essential oils on Pest Manag Sci 59 269-31
  • [13] Anderson DL(1995) (Acari: Varroidae) and Apidologie 26 27-145
  • [14] Trueman JW(2014) (Hymenoptera: Apidae) Trends Plant Sci 19 140-134
  • [15] Bergougnoux M(2001)Glutamate-receptor-mediated encoding and retrieval of paired-associate learning Arch Insect Biochem Physiol 48 129-255
  • [16] Treilhou M(2014)Learning performances of honeybees ( Int J Parasitol 4 244-8193
  • [17] Armengaud C(2011) L) are differentially affected by imidacloprid according to the season J Neurosci 31 8181-1062
  • [18] Berry JA(2011)Toxic effects of thymol, camphor, menthol and eucalyptol on J Comp Physiol A 197 1055-325
  • [19] Hood WM(1989) and J Biol Rhythms 4 305-378
  • [20] Pietravalle S(2010) L in a laboratory test Bioresour Technol 101 372-421