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蜂巢脾作为蜜蜂巢穴中的湿度缓冲器。

Brood comb as a humidity buffer in honeybee nests.

作者信息

Ellis Michael B, Nicolson Sue W, Crewe Robin M, Dietemann Vincent

机构信息

Department of Zoology and Entomology, University of Pretoria, Pretoria, 0002, South Africa.

出版信息

Naturwissenschaften. 2010 Apr;97(4):429-33. doi: 10.1007/s00114-010-0655-1. Epub 2010 Mar 4.

Abstract

Adverse environmental conditions can be evaded, tolerated or modified in order for an organism to survive. During their development, some insect larvae spin cocoons which, in addition to protecting their occupants against predators, modify microclimatic conditions, thus facilitating thermoregulation or reducing evaporative water loss. Silk cocoons are spun by honeybee (Apis mellifera) larvae and subsequently incorporated into the cell walls of the wax combs in which they develop. The accumulation of this hygroscopic silk in the thousands of cells used for brood rearing may significantly affect nest homeostasis by buffering humidity fluctuations. This study investigates the extent to which the comb may influence homeostasis by quantifying the hygroscopic capacity of the cocoons spun by honeybee larvae. When comb containing cocoons was placed at high humidity, it absorbed 11% of its own mass in water within 4 days. Newly drawn comb composed of hydrophobic wax and devoid of cocoons absorbed only 3% of its own mass. Therefore, the accumulation of cocoons in the comb may increase brood survivorship by maintaining a high and stable humidity in the cells.

摘要

为了生存,生物体可以躲避、耐受或改变不利的环境条件。在发育过程中,一些昆虫幼虫会结茧,茧除了能保护里面的幼虫免受捕食者侵害外,还能改变微气候条件,从而有助于体温调节或减少水分蒸发损失。蜜蜂(Apis mellifera)幼虫会结丝茧,随后这些茧会被融入它们发育所在的蜡质蜂巢的细胞壁中。这种吸湿丝茧在用于育雏的数千个巢室中的积累,可能会通过缓冲湿度波动而显著影响蜂巢的内环境稳定。本研究通过量化蜜蜂幼虫所结茧的吸湿能力,来探究蜂巢对维持内环境稳定的影响程度。当含有茧的蜂巢置于高湿度环境中时,它在4天内吸收了自身质量11%的水分。由疏水蜡制成且没有茧的新蜂巢仅吸收了自身质量3%的水分。因此,蜂巢中茧的积累可能通过维持巢室内高且稳定的湿度来提高育雏的存活率。

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