Evidence for Compensatory Photosynthetic and Yield Response of Soybeans to Aphid Herbivory

生物 大豆蚜虫 蚜虫 光合作用 农学 有害生物分析 物候学 人口 食草动物 生长季节 植物 蚜虫科 同翅目 社会学 人口学
作者
Christopher J. Kucharik,Amelia C. Mork,Timothy D. Meehan,Shawn Serbin,Aditya Singh,Philip A. Townsend,Kaitlin Stack Whitney,Claudio Gratton
出处
期刊:Journal of Economic Entomology [Oxford University Press]
卷期号:109 (3): 1177-1187 被引量:18
标识
DOI:10.1093/jee/tow066
摘要

The soybean aphid, Aphis glycines Matsumura, an exotic species in North America that has been detected in 21 U.S. states and Canada, is a major pest for soybean that can reduce maximum photosynthetic capacity and yields. Our existing knowledge is based on relatively few studies that do not span a wide variety of environmental conditions, and often focus on relatively high and damaging population pressure. We examined the effects of varied populations and duration of soybean aphids on soybean photosynthetic rates and yield in two experiments. In a 2011 field study, we found that plants with low cumulative aphid days (CAD, less than 2,300) had higher yields than plants not experiencing significant aphid pressure, suggesting a compensatory growth response to low aphid pressure. This response did not hold at higher CAD, and yields declined. In a 2013 controlled-environment greenhouse study, soybean plants were well-watered and fertilized with nitrogen (N), and aphid populations were manipulated to reach moderate to high levels (8,000–50,000 CAD). Plants tolerated these population levels when aphids were introduced during the vegetative or reproductive phenological stages of the plant, showing no significant reduction in yield. Leaf N concentration and CAD were positively and significantly correlated with increasing ambient photosynthetic rates. Our findings suggest that, given the right environmental conditions, modern soybean plants can withstand higher aphid pressure than previously assumed. Moreover, soybean plants also responded positively through a compensatory photosynthetic effect to moderate population pressure, contributing to stable or increased yield.
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