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蜜蜂对文冠果的辅助授粉效应 被引量:2
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作者 高秀丽 原树生 +4 位作者 王敏超 王力华 刘阳 阎品初 于景华 《江苏农业科学》 2018年第20期148-151,共4页
文冠果是我国北方重要的木本粮油树种和生态经济树种,但是其传粉生物学性质导致坐果率较低,已经成为产业发展的瓶颈。有关授粉机制问题,特别是风媒或虫媒的贡献也颇有争议。为此,拟在文冠果主要种植区之一——辽宁省朝阳市建平县开展人... 文冠果是我国北方重要的木本粮油树种和生态经济树种,但是其传粉生物学性质导致坐果率较低,已经成为产业发展的瓶颈。有关授粉机制问题,特别是风媒或虫媒的贡献也颇有争议。为此,拟在文冠果主要种植区之一——辽宁省朝阳市建平县开展人工放养喀尔巴阡蜂辅助文冠果授粉的研究。结果表明,蜜蜂辅助授粉能够明显提高文冠果的坐果率;风向会影响蜜蜂的活动能力,迎风向(蜂箱南方)的坐果率较顺风向(蜂箱北方)高32. 58%;蜜蜂授粉效率有严重的距离限制,有效传粉距离为300 m。研究结果还表明,文冠果为虫媒植物,风媒作用甚微;花期偏早、授粉昆虫的活动能力弱是文冠果坐果率低的主要原因之一。 展开更多
关键词 蜜蜂 文冠果 授粉效应 虫媒 风媒
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火龙果液体授粉组合的优化及其效应研究 被引量:8
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作者 匡石滋 田世尧 +1 位作者 段冬洋 凡超 《热带作物学报》 CSCD 北大核心 2016年第1期70-74,共5页
为提高火龙果授粉效果,以白肉火龙果花粉和红皮红肉火龙果花粉为试材,进行了火龙果花粉液组分的优化研究和火龙果液体授粉效应试验。结果表明:火龙果花粉液最优组分为葡萄糖100 g/L+硼酸70 mg/L+硝酸钙80 mg/L+脯氨酸0.8 g/L。使用该花... 为提高火龙果授粉效果,以白肉火龙果花粉和红皮红肉火龙果花粉为试材,进行了火龙果花粉液组分的优化研究和火龙果液体授粉效应试验。结果表明:火龙果花粉液最优组分为葡萄糖100 g/L+硼酸70 mg/L+硝酸钙80 mg/L+脯氨酸0.8 g/L。使用该花粉液组分,并加入2.5%花粉量进行授粉试验,坐果率和单果重分别比自然授粉处理提高14.4%和36.95%,种子数与1.5%液体授粉处理、人工毛笔点授处理和自然授粉处理相比分别提高39.75%、54.69%和92.01%,且差异均达显著水平;火龙果液体授粉不仅能显著提高火龙果坐果率,而且能促进果实发育,提高单果重和果实品质,是提高火龙果产量和经济效益的一项有效技术措施。 展开更多
关键词 火龙果 花粉液组分 优化 液体授粉效应
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Physiological effects of climate warming on flowering plants and insect pollinators and potential consequences for their interactions 被引量:5
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作者 Victoria L. SCAVEN Nicole E. RAFFERTY 《Current Zoology》 SCIE CAS CSCD 2013年第3期418-426,共9页
Growing concern about the influence of climate change on flowering plants, pollinators, and the mutualistic interac- tions between them has led to a recent surge in research. Much of this research has addressed the co... Growing concern about the influence of climate change on flowering plants, pollinators, and the mutualistic interac- tions between them has led to a recent surge in research. Much of this research has addressed the consequences of warming for phenological and distributional shifts. In contrast, relatively little is known about the physiological responses of plants and insect pollinators to climate warming and, in particular, how these responses might affect plant-pollinator interactions. Here, we summa- rize the direct physiological effects of temperature on flowering plants and pollinating insects to highlight ways in which plant and pollinator responses could affect floral resources for pollinators, and pollination success for plants, respectively. We also con- sider the overall effects of these responses on plant-pollinator interaction networks. Plant responses to wanning, which include altered flower, nectar, and pollen production, could modify floral resource availability and reproductive output of pollinating in- sects. Similarly, pollinator responses, such as altered foraging activity, body size, and life span, could affect patterns of pollen flow and pollination success of flowering plants. As a result, network structure could be altered as interactions are gained and lost, weakened and strengthened, even without the gain or loss of species or temporal overlap. Future research that addresses not only how plant and pollinator physiology are affected by warming but also how responses scale up to affect interactions and networks should allow us to better understand and predict the effects of climate change on this important ecosystem service . 展开更多
关键词 MUTUALISM Networks Plant-pollinator interactions POLLINATION Temperature THERMOREGULATION
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