Cao Zhihao, Jiang Shuo, Qu Hongchun
College of Information Science and Engineering, Zaozhuang University, Zaozhuang, China.
College of Automation, Chongqing University of Posts and Telecommunications, Chongqing, China.
Front Plant Sci. 2024 Dec 5;15:1514372. doi: 10.3389/fpls.2024.1514372. eCollection 2024.
Strawberries are a widely cultivated greenhouse crop in China, primarily pollinated by honeybees, in accordance with traditional planting practices and local conditions. Extensive research has demonstrated that cross-pollination benefits numerous strawberry cultivars, leading to enhanced yield through the interplanting of different cultivars. However, the high costs associated with cultivation have hindered systematic research on the design of interplanting strategies. In this study, we utilized a simulation model to investigate how to leverage honeybee natural foraging behavior to improve pollination efficiency and explore fruit weight under various interplanting strategies within a greenhouse. Our findings indicate that adopting an alternating planting approach for different cultivars within the same bed effectively facilitates cross-pollination, leading to increased strawberry fruit yield. Additionally, dividing the strawberry plants into two batches and staggering their planting time helps mitigating the pressure of competition for bee pollination during peak blooming period, consequently contributing to enhanced yield. These proposed planting strategies offer valuable cultivation suggestions for farmers in some remote areas in China who still rely on honeybees as primary pollinators.
草莓是中国广泛种植的温室作物,按照传统种植方式和当地条件,主要由蜜蜂授粉。大量研究表明,异花授粉对许多草莓品种有益,通过不同品种间作可提高产量。然而,种植成本高昂阻碍了对间作策略设计的系统研究。在本研究中,我们利用模拟模型研究如何利用蜜蜂自然觅食行为提高授粉效率,并探索温室中各种间作策略下的果实重量。我们的研究结果表明,在同一苗床内对不同品种采用交替种植方式可有效促进异花授粉,从而提高草莓果实产量。此外,将草莓植株分成两批并错开种植时间有助于减轻盛花期蜜蜂授粉竞争压力,进而提高产量。这些建议的种植策略为中国一些仍依赖蜜蜂作为主要传粉者的偏远地区的农民提供了有价值的种植建议。