Soybean Aphid (Hemiptera: Aphididae) Affects Soybean Spectral Reflectance

被引:30
作者
Alves, Tavvs M. [1 ]
Macrae, Ian V. [2 ]
Koch, Robert L. [1 ]
机构
[1] Univ Minnesota, Dept Entomol, St Paul, MN 55108 USA
[2] Univ Minnesota, Dept Entomol, Northwest Res & Outreach Ctr, Crookston, MN 56716 USA
关键词
Glycine max; Aphis glycines; remote sensing; cumulative aphid-days; reflectance; TETRANYCHIDAE INFESTED COTTON; LEAF PIGMENT CONTENT; SPIDER MITE-ACARI; RUSSIAN WHEAT; CANOPY REFLECTANCE; VEGETATION INDEXES; SUSCEPTIBLE WHEAT; NITROGEN STATUS; HOMOPTERA; MANAGEMENT;
D O I
10.1093/jee/tov250
中图分类号
Q96 [昆虫学];
学科分类号
摘要
Soybean aphid, Aphis glycines Matsumura (Hemiptera: Aphididae), is the most economically important insect pest of soybean in the north central United States. Scouting-based integrated pest management (IPM) programs could become more efficient and more widely adopted by using plant spectral reflectance to estimate soybean aphid injury. Our objective was to determine whether plant spectral reflectance is affected by soybean aphid feeding. Field trials were conducted in 2013 and 2014 using caged plots. Early-, late-, and noninfested treatments were established to create a gradient of soybean aphid pressure. Whole-plant soybean aphid densities were recorded weekly. Measurements of plant spectral reflectance occurred on two sample dates per year. Simple linear regression models were used to test the effect of cumulative aphid-days (CAD) on plant spectral reflectance at 680 nm (RED) and 800 nm (NIR), normalized difference vegetation index (NDVI), and relative chlorophyll content. Data indicated that CAD had no effect on canopy-level RED reflectance, but CAD decreased canopy-level NIR reflectance and NDVI. Canopy- and leaf-level measurements typically indicated similar plant spectral response to increasing CAD. CAD generally had no effect on relative chlorophyll content. The present study provides the first documentation that remote sensing holds potential for detecting changes in plant spectral reflectance induced by soybean aphid. The use of plant spectral reflectance in soybean aphid management may assist future IPM programs to reduce sampling costs and prevent prophylactic insecticide sprays.
引用
收藏
页码:2655 / 2664
页数:10
相关论文
共 98 条
[21]  
2
[22]   Assessing leaf pigment content and activity with a reflectometer [J].
Gamon, JA ;
Surfus, JS .
NEW PHYTOLOGIST, 1999, 143 (01) :105-117
[23]   RELATIONSHIPS BETWEEN NDVI, CANOPY STRUCTURE, AND PHOTOSYNTHESIS IN 3 CALIFORNIAN VEGETATION TYPES [J].
GAMON, JA ;
FIELD, CB ;
GOULDEN, ML ;
GRIFFIN, KL ;
HARTLEY, AE ;
JOEL, G ;
PENUELAS, J ;
VALENTINI, R .
ECOLOGICAL APPLICATIONS, 1995, 5 (01) :28-41
[24]   Impact of intraguild predation by adult Harmonia axyridis (Coleoptera: Coccinellidae) on Aphis glycines (Hemiptera: Aphididae) biological control in cage studies [J].
Gardiner, M. M. ;
Landis, D. A. .
BIOLOGICAL CONTROL, 2007, 40 (03) :386-395
[25]   Responses of Canopy Reflectance, Light Interception, and Soybean Seed Yield to Replanting Suboptimal Stands [J].
Gaspar, Adam P. ;
Conley, Shawn P. .
CROP SCIENCE, 2015, 55 (01) :377-385
[26]  
Guendouz A., 2012, Int. J. Agric. Environ. Biotechnol, V5, P151
[27]   SPREAD AND CONTROL OF POTATO LEAFROLL VIRUS IN MINNESOTA [J].
HANAFI, A ;
RADCLIFFE, EB ;
RAGSDALE, DW .
JOURNAL OF ECONOMIC ENTOMOLOGY, 1989, 82 (04) :1201-1206
[28]   Crops that feed the World 2. Soybean-worldwide production, use, and constraints caused by pathogens and pests [J].
Hartman, Glen L. ;
West, Ellen D. ;
Herman, Theresa K. .
FOOD SECURITY, 2011, 3 (01) :5-17
[29]   Application of spectral remote sensing for agronomic decisions [J].
Hatfield, J. L. ;
Gitelson, A. A. ;
Schepers, J. S. ;
Walthall, C. L. .
AGRONOMY JOURNAL, 2008, 100 (03) :S117-S131
[30]   Resistance to the soybean aphid in soybean germplasm [J].
Hill, CB ;
Li, Y ;
Hartman, GL .
CROP SCIENCE, 2004, 44 (01) :98-106