Population divergence of aggregation pheromone responses inIps subelongatusin northeastern China
Autor: | Lilin Zhao, Zhen Zhang, Hong-Bin Wang, Da-Feng Chen, Xiangbo Kong, Sufang Zhang, Qing-He Zhang, Ye-Jing Li |
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Rok vydání: | 2015 |
Předmět: |
0106 biological sciences
0301 basic medicine Genetic diversity education.field_of_study Population Zoology Biology 01 natural sciences General Biochemistry Genetics and Molecular Biology Intraspecific competition Genetic divergence 010602 entomology 03 medical and health sciences 030104 developmental biology Insect Science Sex pheromone Genetic variation Botany Pheromone PEST analysis education Agronomy and Crop Science Ecology Evolution Behavior and Systematics |
Zdroj: | Insect Science. 23:728-738 |
ISSN: | 1672-9609 |
DOI: | 10.1111/1744-7917.12221 |
Popis: | The Asian larch bark beetle, Ips subelongatus, is considered to be the major pest of larch within its natural range. We investigated the electrophysiological and behavioral characteristics as well as mitochondrial DNA cytochrome oxidase subunit I sequences of I. subelongatus from 13 geographic populations throughout northeastern China in order to explore population divergence of aggregation pheromone responses and the extent of potential genetic divergence. Electrophysiological analyses showed that antennae of I. subelongatus from all the six tested populations responded strongly to (S)-(-)-ipsenol (100% detection; 0.35-0.73 mV) in gas chromatography (GC)-electroantennographic detection (EAD) analyses, while its antipode, (R)-(+)-ipsenol was antennally inactive. I. subelongatus populations varied in their responses to (R)-(-)- and (S)-(+)-ipsdienol in GC-EAD analyses. Behavioral bioassays demonstrated that (S)-(-)-ipsenol alone was significantly attractive at all the tested sites, supporting its status as a key pheromone component of I. subelongatus, whereas (S)-(+)-ipsdienol was inactive alone. Adding (S)-(+)-ipsdienol to (S)-(-)-ipsenol did not have any effect on the trap catches from some populations in Inner Mongolia. However, (S)-(+)-ipsdienol showed a strong synergistic effect on (S)-(-)-ipsenol from several populations in Jilin and Liaoning Provinces, and a weak synergistic effect from some transition populations in Heilongjiang Province. Furthermore, 27 mitochondrial haplotypes were found among the 13 populations (intraspecific nucleotide divergence, 0.1%-1.1%). Analyses of molecular variance and haplotype networks indicated that different geographic populations have developed some genetic variation but did not form completely independent groups. From an applied point of view, a universal synthetic binary blend of racemic ipsenol and (S)-(+)-ipsdienol might have a potential for monitoring or even mass-trapping of I. subelongatus across northeastern China, even though some populations only use (S)-(-)-ipsenol alone as their active pheromone component. |
Databáze: | OpenAIRE |
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