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首页> 外文期刊>Functional Ecology >Thrips' responses to thermogenic associated signals in a cycad pollination system: the interplay of temperature, light, humidity and cone volatiles
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Thrips' responses to thermogenic associated signals in a cycad pollination system: the interplay of temperature, light, humidity and cone volatiles

机译:苏铁对苏铁传粉系统中与热相关信号的反应:温度,光,湿度和视锥挥发物的相互作用

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1. Most functions postulated for thermogenesis in plant reproductive organs are associated with pollination and pollinator activity. During thermogenesis other chemical changes occur, and these also may affect pollinator activity.2. We address how cone thermogenesis and the associated chemical emissions influence pollinator behaviour in the obligate mutualist Macrozamia lucida and M. macleayi cycad - Cycadothrips chadwicki thrips pollination system. Cones of these dioecious gymnosperms have a diel, mid-day metabolic burst that is associated with increased cone temperatures, volatile emissions (primarily beta-myrcene), and CO2 and water vapour emissions. Concurrently, thrips leave cones en masse and then return to cones later in the day. We investigated the effects of these cues, individually and in combinations, on their potential to induce thrips to leave cones in the dark and light with a suite of Y-tube behavioural experiments.3. The results suggest that ambient light, and high cone temperatures, humidity, and b-myrcene levels, but not CO2, each induce Cycadothrips to leave cones. At typical overnight temperatures (14 degrees C) thrips were relatively inactive and negatively phototactic. At typical daytime ambient temperatures, 22-26 degrees C (lower than typical thermogenic temperatures), thrips were active and positively phototactic. Thrips moved away from or avoided thermogenic temperatures and high concentrations of b-myrcene, and they preferred dry (<8% RH) to humidified (similar to 88% RH) air.4. Whereas several variables individually induce thrips to leave a cone's darker interior towards the daytime light, these signals are presented simultaneously during thermogenesis. There thus seems to be enhanced or redundant signalling that enforces thrips departure from pollen cones thus increasing the chances of vectoring pollen to ovulate cones. While high temperature appears necessary to mediate thrips movement, its concurrence with other plant signals that produce similar responses, suggests a dynamic multimodal signalling system that operates as a functional unit
机译:1.假定植物生殖器官生热的大多数功能与授粉和授粉媒介活性有关。在生热过程中发生其他化学变化,这些化学变化也可能影响授粉媒介的活性。2。我们致力于解决锥生热和相关的化学物质排放如何影响专心的共生主义者Macrozamia lucida和M. macleayi cycad-Cycadothrips chadwicki蓟马授粉系统中的授粉媒介行为。这些雌雄异体的裸子植物的锥体会在中午进行迪尔的新陈代谢,与锥体温度升高,挥发物排放(主要是β-月桂烯)以及二氧化碳和水蒸气的排放有关。同时,蓟马会大量离开视锥细胞,然后在当天晚些时候返回视锥细胞。通过一系列的Y型管行为实验,研究了这些线索(单独或组合)对它们诱使蓟马在黑暗和黑暗中离开视锥细胞的潜力的影响。3。结果表明,环境光,较高的锥果温度,湿度和b-月桂烯含量(而不是CO2)均会引起Cycadothrips离开锥果。在典型的过夜温度(14摄氏度)下,蓟马相对不活跃,并且趋光性不利。在典型的白天环境温度(22-26摄氏度)(低于典型的生热温度)下,蓟马活跃且呈趋光性。蓟马远离或避免生热温度和高浓度的b-月桂烯,它们更喜欢干燥(<8%RH)的空气而不是潮湿(类似于88%RH)的空气。4。尽管有几个变量单独诱使蓟马离开锥体,使它们的内部朝白天发出光线,但这些信号在生热过程中同时出现。因此,似乎存在增强的信号或冗余信号,其迫使蓟马离开花粉球,从而增加了将花粉引导到排卵球的机会。高温似乎是介导蓟马运动所必需的,但它与产生相似反应的其他植物信号同时存在,表明存在一个动态多峰信号系统,该信号系统可作为功能单元运行

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