Pollination and pollen plant diversity by Apis cerana cerana during olive flowering based on DNA metabarcoding

Author:

Liu Wenping12,Huang Sicheng123,Hao Youjin12,Long Jingui12,Wang Yamei12,Jin Zhiwei12,Lu Huanhuan12,Zhou Zeyang12,Dang Xiaoqun12,Pan Zhaohui4,Huang Dunyuan12

Affiliation:

1. Key Laboratory of Conservation and Utilization of Pollinator Insect of the Upper Reaches of the Yangtze River Ministry of Agriculture and Rural Affairs Chongqing China

2. Chongqing Key Laboratory of Vector Control and Utilization, College of Life Sciences Chongqing Normal University Chongqing China

3. College of Resources and Environment Tibet Agricultural and Animal Husbandry University Linzhi China

4. Institute of Plateau Ecology Tibet Agricultural and Animal Husbandry University Linzhi China

Abstract

AbstractTo understand the role of Apis cerana cerana in olive tree (Olea europaea L.) pollination, pollinators and pollen carried by bees were collected from 11 experimental plots during the flowering period. The abundance and diversity of pollen plant species were investigated using DNA metabarcoding. A total of 583 pollinators were collected and A. cerana cerana accounts for 46.83%. Further analysis revealed a total of 56 families, 136 genera and 195 plant species in bee pollens. O. europaea is the dominant species accounting for 42.02 ± 34.89% and then followed by Sedum japonicum (8.70 ± 16.42%). Diversity index showed that the abundance and diversity of pollen plant species were the highest in Wanzhou (WZ) and lowest in Hechuan (HC). This suggests that Wanzhou sample plot has a greater abundance of plant species to supplement the bee diet. Excessive presence of miscellaneous flowering plants in olive plantations can distract bees from collecting olive tree pollens. Therefore, their abundances can be reduced appropriately while ensuring food diversity for the bees. Based on the abundance of plants in pollens, we recommend that appropriately planting of S. japonicum, Youngia japonica and Vicia villosa in olive plantations with fewer flowering plants could be an effective supplement of bee food. Our results not only contribute to future studies on olive tree pollination but also provide new ideas for enriching flowering plants in or around olive plantations.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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