Keny V, Vanlalnghaka C, Hakim S S, Barnabas R J, Joshi D S
Zoology Department, Ahmednagar College, Ahmednagar, M.S., India.
Chronobiol Int. 2007;24(5):835-44. doi: 10.1080/07420520701649448.
In previous research, it was determined that the altitude of origin altered the parameters of photic entrainment and free-running rhythmicity of adult locomotor activity of the high-altitude Himalayan (haH) strain (Hemkund-Sahib, 4121 m above sea level) of Drosophila helvetica compared to the low-altitude Himalayan (laH) strain (Birahi, 1132 m above sea level) of the same species. The present study investigated whether the altitude of origin also affects the parameters of the light pulse phase response curve (PRC) of the adult locomotor activity rhythm of the haH strain. Light pulse PRCs were determined for both strains against the background of constant darkness. Although both were "weak" or type 1 PRCs, the PRC for the haH strain differed from that of the laH strain in three basic parameters. The PRC for the haH strain was of low amplitude, had a protracted dead zone, and showed a ratio of the advance to delay region (A/D>1), while the PRC of the laH strain was characterized by high amplitude, absence of dead zone, and a A/D ratio<1. The asymmetric PRCs of these strains might explain the process of photic entrainment to 24 h light-dark cycles, as the long period of the free-running rhythm (tau) of the haH strain is complemented with a larger advance portion of its PRC (A/D>1), whereas the short tau of the laH strain is matched with a larger delay portion of its PRC (A/D<1). Prolonged dead zone and low amplitude in the PRC of the haH strain imply that the photic sensitivity of this strain has been drastically diminished as an adaptation to environmental conditions at the altitude of its origin. While adults of this strain begin activity in very bright light in the forenoon due to non-permissible low temperature in the morning, the converse is true for the laH strain.
在先前的研究中,已确定与低海拔喜马拉雅果蝇(laH)品系(比拉希,海拔1132米)相比,高海拔喜马拉雅果蝇(haH)品系(赫姆昆德 - 萨希卜,海拔4121米)的起源海拔改变了成年果蝇运动活动的光诱导参数和自由运行节律。本研究调查了起源海拔是否也会影响haH品系成年果蝇运动活动节律的光脉冲相位响应曲线(PRC)参数。在持续黑暗的背景下测定了两个品系的光脉冲PRC。虽然两者均为“弱”或1型PRC,但haH品系的PRC在三个基本参数上与laH品系不同。haH品系的PRC幅度较低,有一个延长的死区,并且显示出提前区与延迟区的比率(A/D>1),而laH品系的PRC特征是幅度高,无死区,且A/D比率<1。这些品系不对称的PRC可能解释了对24小时明暗周期的光诱导过程,因为haH品系自由运行节律(tau)的较长周期与其PRC中较大的提前部分(A/D>1)相补充,而laH品系较短的tau与其PRC中较大的延迟部分(A/D<1)相匹配。haH品系PRC中延长的死区和低幅度意味着该品系的光敏感性作为对其起源海拔环境条件的适应已大幅降低。虽然该品系的成虫由于早晨温度过低而在上午非常明亮的光线下开始活动,但laH品系则相反。