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温度对斜纹夜蛾发育和存活的影响:通过生命周期建模和空间映射对印度温度升高下潜在种群增长的模拟与可视化

Temperature Impacts the Development and Survival of Common Cutworm (Spodoptera litura): Simulation and Visualization of Potential Population Growth in India under Warmer Temperatures through Life Cycle Modelling and Spatial Mapping.

作者信息

Fand Babasaheb B, Sul Nitin T, Bal Santanu K, Minhas P S

机构信息

ICAR-National Institute of Abiotic Stress Management (NIASM), Malegaon, Baramati, Pune, Maharashtra, India.

出版信息

PLoS One. 2015 Apr 30;10(4):e0124682. doi: 10.1371/journal.pone.0124682. eCollection 2015.

Abstract

The common cutworm, Spodoptera litura, has become a major pest of soybean (Glycine max) throughout its Indian range. With a changing climate, there is the potential for this insect to become an increasingly severe pest in certain regions due to increased habitat suitability. To examine this possibility, we developed temperature-based phenology model for S. litura, by constructing thermal reaction norms for cohorts of single life stages, at both constant and fluctuating temperatures within the ecologically relevant range (15-38°C) for its development. Life table parameters were estimated stochastically using cohort updating and rate summation approach. The model was implemented in the geographic information system to examine the potential future pest status of S. litura using temperature change projections from SRES A1B climate change scenario for the year 2050. The changes were visualized by means of three spatial indices demonstrating the risks for establishment, number of generations per year and pest abundance according to the temperature conditions. The results revealed that the development rate as a function of temperature increased linearly for all the immature stages of S. litura until approximately 34-36°C, after which it became non-linear. The extreme temperature of 38°C was found lethal to larval and pupal stages of S. litura wherein no development to the next stage occurred. Females could lay no eggs at the extreme low (15°C) and high (> 35°C) test temperatures, demonstrating the importance of optimum temperature in determining the suitability of climate for the mating and reproduction in S. litura. The risk mapping predicts that due to temperature increase under future climate change, much of the soybean areas in Indian states like Madhya Pradesh, Maharashtra and Rajasthan, will become suitable for S. litura establishment and increased pest activity, indicating the expansion of the suitable and favourable areas over time. This has serious implication in terms of soybean production since these areas produce approximately 95% of the total soybeans in India. As the present model results are based on temperature only, and the effects of other abiotic and biotic factors determining the pest population dynamics were excluded, it presents only the potential population growth parameters for S. litura. However, if combined with the field observations, the model results could certainly contribute to gaining insight into the field dynamics of S. litura.

摘要

斜纹夜蛾(Spodoptera litura)已成为印度全境大豆(Glycine max)的主要害虫。随着气候的变化,由于栖息地适宜性增加,这种昆虫在某些地区有可能成为日益严重的害虫。为了研究这种可能性,我们通过构建单个生命阶段群体在其生态相关温度范围(15 - 38°C)内的恒定温度和波动温度下的热反应规范,开发了基于温度的斜纹夜蛾物候模型。使用群体更新和速率求和方法随机估计生命表参数。该模型在地理信息系统中实施,以利用2050年SRES A1B气候变化情景的温度变化预测来研究斜纹夜蛾未来潜在的害虫状况。通过三个空间指数可视化这些变化,这些指数根据温度条件展示了定殖风险、每年世代数和害虫丰度。结果表明,斜纹夜蛾所有未成熟阶段的发育速率作为温度的函数,在大约34 - 36°C之前呈线性增加,之后变为非线性。发现38°C的极端温度对斜纹夜蛾的幼虫和蛹阶段具有致死性,在此温度下不会发育到下一阶段。在极端低温(15°C)和高温(> 35°C)测试温度下,雌虫无法产卵,这表明最佳温度对于确定斜纹夜蛾交配和繁殖的气候适宜性至关重要。风险地图预测,由于未来气候变化导致温度升高,印度中央邦、马哈拉施特拉邦和拉贾斯坦邦等邦的许多大豆种植区将变得适合斜纹夜蛾定殖并增加害虫活动,表明适宜和有利区域将随时间扩大。这对大豆生产具有严重影响,因为这些地区生产了印度约95%的大豆总产量。由于当前模型结果仅基于温度,并且排除了其他决定害虫种群动态的非生物和生物因素的影响,它仅呈现了斜纹夜蛾潜在的种群增长参数。然而,如果与实地观察相结合,模型结果肯定有助于深入了解斜纹夜蛾的田间动态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7598/4415793/80fd0fbaae81/pone.0124682.g001.jpg

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