The Relationship between Larval Mortality, Driven by Parasitoids and Pathogens, and Population Fluctuations in the Mulberry Tiger Moth, <i>Lemyra imparilis</i>(Lepidoptera: Erebidae), in Japan.

Author:

Hondô Masaru1

Affiliation:

1. Ebie 1–11–2–601, Fukushima-ku, Osaka 553–0001, Japan

Publisher

Japanese Society of Applied Entomology & Zoology

Subject

Insect Science

Reference65 articles.

1. Alalouni, U., M. Schädler and R. Brandl(2013) Natural enemies and environmental factors affecting the population dynamics of the gypsy moth. J. Appl. Entomol. 137:721–738.

2. 芦原 亘(1975) 広島県安芸津におけるクワゴマダラヒトリ成虫の発生時期と幼虫の越冬までの発育経過.応動昆中国支会報17:11–14.[Ashihara, W.(1975) Larval development before hibernation and seasonal occurrence of adult moths of Spilarctia imparilis Butler(Lepidoptera: Arctiidae)in Hiroshima Pref. Odokon Chugokushi Kaiho 17:11–14.]

3. ベゴン,マイケル・ジョン ハーパー・コリン タウンゼント(2003) [堀 道雄 監訳,2003] 生態学:個体・個体群・群集の科学(原著第3版).京大出版会,京都.1304 pp.[Begon, M., J. L. Harper and C. R. Townsend(2003) Ecology: Individuals, Populations and Communities. 3rd ed. University of Kyoto Press, Kyoto. 1304 pp.]

4. Berryman, A. A.(1987) The theory and classification of outbreaks. In Insect Outbreaks(P. Barbosa and J. C. Schultz, eds.). Academic Press, San Diego, pp. 3–30.

5. Bjørnstad, O. N., C. Robinet and A. M. Liebhold(2010) Geographic variation in North American gypsy moth cycles: subharmonics, generalist predators, and spatial coupling. Ecology 91:106–118.

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