Facultad de Ciencias Agrícolas, Corporación Universitaria Santa Rosa de Cabal, Santa Rosa de Cabal, Risaralda, Colombia.
Facultad de Ciencias Agrarias, Universidad de Caldas, Manizales, Caldas, Colombia.
PLoS One. 2021 Jan 15;16(1):e0244694. doi: 10.1371/journal.pone.0244694. eCollection 2021.
Seasonal temperature and precipitation patterns on a global scale are main factors to which insects and plants adapt through natural selection, although periodic outbreaks in insect populations may occur in areas where they had not been previously reported, a phenomenon considered as a consequence of global warming. In this study, we estimate the distribution of sugarcane borers, Diatraea spp., under different climate scenarios (rcp26, rcp45, rcp60 and rcp85.) Insects were collected weekly in four sugarcane fields from four different towns in the department of Caldas (Colombia) during 2017, and also in several sugarcane fields in the Cauca River Valley (CRV) between 2010 and 2017. The influence of climatic variables on different agro-ecological zones of the CRV sugarcane fields was defined by climatic data between 2010 and 2017 (maximum and minimum daily temperatures, and accumulated precipitation). The estimate of an optimal niche for Diatraea spp. includes temperatures between 20°C and 23°C, accumulated annual rainfall between 1200 and 1500 mm, dry months with precipitations below 50 mm, slopes of less than 0.05 degrees, crop heterogeneity with an index of 0.2 and primary production values of 1.0. Data suggests Diatraea population is considerably influenced by adverse climate change effects, under the premise of an increase in local and global temperatures, reducing its population niches as well as the number of individuals.
在全球范围内,季节性温度和降水模式是昆虫和植物通过自然选择适应的主要因素,尽管昆虫种群可能会在以前没有报道过的地区周期性爆发,但这种现象被认为是全球变暖的后果。在这项研究中,我们根据不同的气候情景(rcp26、rcp45、rcp60 和 rcp85)估计了甘蔗螟虫(Diatraea spp.)的分布。2017 年,我们每周在考卡河谷(CRV)的四个不同城镇的四个甘蔗田中收集昆虫,也在 2010 年至 2017 年期间在考卡河谷的几个甘蔗田中收集昆虫。2010 年至 2017 年(日最高和最低温度、累计降水量)的气候数据定义了气候变量对 CRV 甘蔗田不同农业生态区的影响。Diatraea spp. 最优生态位的估计包括 20°C 至 23°C 的温度、1200 至 1500 毫米的年累计降雨量、干旱月份降雨量低于 50 毫米、坡度小于 0.05 度、作物异质性指数为 0.2 和初级生产力值为 1.0。数据表明,在当地和全球温度升高的前提下,Diatraea 种群受到不利气候变化影响的程度相当大,这减少了其种群生态位以及个体数量。