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利用温度相关物候模型预测可食用长角蚱 Ruspolia differens (Serville) 的当前和未来分布。

Predicting the current and future distribution of the edible long-horned grasshopper Ruspolia differens (Serville) using temperature-dependent phenology models.

机构信息

International Centre of Insect Physiology and Ecology (icipe), P.O. Box 30772-00100, Nairobi, Kenya; Department of Agricultural Production, Makerere University, P.O. Box 7063, Kampala, Uganda; Tanzania Agricultural Research Institute (TARI)-Ukiriguru, P.O. Box 1433, Mwanza, Tanzania.

International Centre of Insect Physiology and Ecology (icipe), P.O. Box 30772-00100, Nairobi, Kenya.

出版信息

J Therm Biol. 2021 Jan;95:102786. doi: 10.1016/j.jtherbio.2020.102786. Epub 2020 Nov 17.

Abstract

The edible long-horned grasshopper Ruspolia differens (Serville) is widely distributed and consumed in sub-Saharan Africa. Efficient mass rearing of the edible grasshopper is critical to ensure their sustainable supply for food and nutritional security. Hence, we investigated the effect of temperature on development, survival and reproduction of R. differens under six constant (15, 20, 25, 30, 32 and 35 °C) and fluctuating temperatures. Using Insect Life Cycle Modeling software we fitted, linear and non-linear models to R. differens development, mortality, longevity, and fecundity. The best-fitted functions were compiled for each life stage to yield a phenology model, which was stochastically simulated to estimate the life table parameters. We used the process-based climatic phenology models, and applied establishment risk index (ERI) and generation index (GI) in a geographic information system to map the potential distribution of R. differens under current and future climates. At optimum temperatures of 30-32 °C, egg incubation period was 14-15 days and the developmental time was shortest at 52.5-58 days. Lowest nymphal mortality (3.4-13%) and the highest female fecundity was obtained at 25-30 °C. The optimum temperature for the reproduction ranged between 27 and 30 °C. Most simulated lifetable parameters were at their maximum at 28 °C. Predictive models showed that countries in the East, Central, West, Southern and the Horn of Africa were suitable for establishment of R. differens under current climate scenarios (2000). However, by 2050, climatically suitable areas for the establishment of R. differens were predicted to shrink in the West, Southern and the Horn of Africa than its current distribution. We predict up to three generations per year for R. differens in sub-Saharan Africa under current scenarios which can increase to 4 under future scenarios. The optimum rearing temperatures identified can guide optimization of mass rearing of R. differens.

摘要

食用长角蝗虫 Ruspolia differens (Serville) 广泛分布并消费于撒哈拉以南非洲。高效的大规模养殖食用蝗虫对于确保其可持续供应食物和营养安全至关重要。因此,我们研究了温度对 R. differens 发育、存活和繁殖的影响,在六个恒定(15、20、25、30、32 和 35°C)和波动温度下进行了实验。我们使用昆虫生命周期建模软件,对 R. differens 的发育、死亡率、寿命和繁殖力进行了线性和非线性模型拟合。将最佳拟合函数编译到每个生命阶段,以生成一个物候模型,然后对其进行随机模拟,以估计生命表参数。我们使用基于过程的气候物候模型,并在地理信息系统中应用建立风险指数(ERI)和世代指数(GI)来绘制 R. differens 在当前和未来气候下的潜在分布。在 30-32°C 的最佳温度下,卵孵化期为 14-15 天,发育时间最短为 52.5-58 天。在 25-30°C 时,获得最低的若虫死亡率(3.4-13%)和最高的雌虫繁殖力。繁殖的最佳温度范围在 27 和 30°C 之间。在 28°C 时,大多数模拟生命表参数达到最大值。预测模型显示,在当前气候情景(2000 年)下,东非、中非、西非、南非和非洲之角的国家适合 R. differens 的建立。然而,到 2050 年,与当前分布相比,预测西非、南非和非洲之角适合 R. differens 建立的气候适宜区将会缩小。我们预测,在当前情景下,撒哈拉以南非洲的 R. differens 每年可以产生三代,而在未来情景下,每年可以产生四代。确定的最佳养殖温度可以指导 R. differens 的大规模养殖优化。

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