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Application of DNA barcoding to the identification of Hymenoptera parasitoids from the soybean aphid (Aphis glycines) in China. | LitMetric

Application of DNA barcoding to the identification of Hymenoptera parasitoids from the soybean aphid (Aphis glycines) in China.

Insect Sci

Key Laboratory of Zoological Systematics and Evolution, Institute of Zoology, Chinese Academy of Sciences, Beijing; School of Life Science, Anhui University, Hefei.

Published: June 2014

AI Article Synopsis

  • Aphis glycines, a major pest of soybeans, is controlled by parasitoids from the Hymenoptera order, highlighting the need for accurate identification of these natural enemies for effective biological control.
  • This study employed DNA barcoding alongside morphological identification to facilitate the identification process of soybean aphid parasitoids in China.
  • A total of 15 parasitoid species were identified with minimal genetic variation within species but significant differences among species, indicating a diverse parasitoid community attacking the soybean aphid.

Article Abstract

Aphis glycines Matsumura is an important pest of soybean in Asia and North America. Hymenoptera parasitoids play a key role in the control of the soybean aphid. The correct identification of parasitoids is a critical step that precedes the assessment of their potential biological control agents. Accurate identification of the majority of the species attacking the soybean aphid often requires elaborate specimen preparation and expert taxonomic knowledge. In this study, we facilitated the identification of soybean aphid parasitoids by applying a DNA barcoding approach following a preliminary morphological identification. We generated DNA sequence data from the mitochondrial COI gene and the D2 region of 28S rDNA to assess the genetic variation within and between parasitoid species emerging from the soybean aphid in China. Fifteen Hymenoptera parasitoid species belonging to 10 genera of five families were identified with little intra-specific variation (0.09% ± 0.06% for 28S and 0.36% ± 0.18% for COI) and large inter-specific divergence (30.46% ± 3.42% for 28S and 20.4% ± 1.20% for COI).

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Source
http://dx.doi.org/10.1111/1744-7917.12095DOI Listing

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