BEEGroup, Biozentrum Universität Würzburg, Am Hubland, D-97074 Würzburg, Germany.
J Insect Physiol. 2012 Feb;58(2):278-85. doi: 10.1016/j.jinsphys.2011.12.001. Epub 2011 Dec 7.
In modern managed agro-ecosystems, the supply of adequate food from blooming crops is limited to brief periods. During periods of pollen deficiencies, bees are forced to forage on alternative crops, such as maize. However, pollen of maize is believed to be a minor food source for bees as it is thought to be lacking in proteins and essential amino acids. This study was conducted to verify this assumption. In maize, a strikingly low concentration of histidine was found, but the amount of all other essential amino acids was greater than that of mixed pollen. The performance and the immunocompetence of bees consuming a pure maize pollen diet (A) was compared to bees feeding on a polyfloral pollen diet (B) and to bees feeding on an artificial substitute of pollen (C). Consumption of diets A and C were linked to a reduction in brood rearing and lifespan. However, no immunological effects were observed based on two parameters of the humoral immunity.
在现代管理型农业生态系统中,盛开作物提供充足食物的时间非常有限。在花粉不足的时期,蜜蜂被迫寻找其他作物作为食物,如玉米。然而,花粉被认为是蜜蜂的次要食物来源,因为它被认为缺乏蛋白质和必需氨基酸。这项研究旨在验证这一假设。在玉米中,组氨酸的浓度极低,但所有其他必需氨基酸的含量都高于混合花粉。研究比较了纯玉米花粉饮食(A)、多种花粉饮食(B)和人工花粉替代品(C)对蜜蜂的性能和免疫能力的影响。与 B 组和 C 组相比,食用 A 组饮食的蜜蜂在繁殖和寿命方面都有所下降。然而,基于体液免疫的两个参数,并未观察到免疫方面的影响。