The oriental fruit moth (OFM), Grapholita molesta (Busck), is one of the dominant fruit-boring pests worldwide. In order to conduct integrated control of OFM effectively, it is important to predict the optimum control period. OFM populations have been monitored either by the number of trapped male moths exposed to sex pheromones or by the number of trapped male and female moths using food traps in orchards. The mating status and development stage of the trapped moths have not been characterized. The present paper studies the anatomical morphology of the OFM reproductive system at different development periods. The results revealed that OFM ovarian development can be divided into six stages. The average daily fecundity of OFM had an excellent positive correlation (r = 0.86) with the percentages of OFM in the egg maturation & oviposition stage, which could be used as an indicator in field population prediction work. There were obvious differences in the morphology of the corpus bursa and the heavy muscular area of the ductus ejaculatorius simplex before and after mating, and these differences could be used to increase the accuracy in predicting the optimum OFM control period.
The application of articulatory database in speech production and automatic speech recognition has been practiced for many years. The goal of the research was to build an articulatory database specifying in Chinese Mandarin production and to investigate its efficacy in speech animation. Carstens EMA AG501 device were respectively used to capture acoustic data and articulatory data. Also, a Microsoft Kinect camera was applied to capture face-tracking data as a supplement. Finally, we tried several methods to extract acoustic parameters and built up a 3D talking head model to verify the efficacy of the database. Index Terms: articulatory database, Mandarin, EMA, Kinect camera 978-1-4799-4219-0/14/$31.00 c 2014 IEEE
The peach fruit moth (PFM), Carposina sasakii Matsumura (Lepidoptera: Carposinidae), a severe pest of Ziziphus jujuba Miller fruit trees (jujube, Rhamnaceae) mainly grown in China, has increasingly hindered the development of the jujube industry in recent years. In order to provide a theoretical basis for a physical obstruction method, we evaluated the effect of three commonly sold physical barriers on PFM host‐searching behavior. Two principal volatiles generated by the jujube tree, α‐farnesene and cis‐3‐hexenyl acetate (leaf acetate), were used as references to detect electroantennography (EAG) response values of 2‐, 4‐, and 6‐day‐old PFM adults. The results indicated different EAG responses toward α‐farnesene and leaf acetate between different ages of PFM, and males responded differently than females. The EAG responses were stronger in 4‐day‐old males to leaf acetate and in 2‐day‐old females to α‐farnesene. The two‐choice behavioral Y‐tube olfactometer assay confirmed that PFM was strongly attracted to α‐farnesene and leaf acetate. We determined the EAG and behavioral responses of PFM after spraying three kinds of physical barriers: Liquid Film Fruit Bag, High Lipid Film, and Jujube Protection No. 1. We obtained strong inhibitory effects on PFM attraction to both volatile lures using these barriers, including negative taxis by both females and males to Liquid Film Fruit Bag and Jujube Protection No. 1. We can infer that Liquid Film Fruit Bag is the most promising potential physical barrier for PFM control, with Jujube Protection No. 1 ranking as second‐best.
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