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PMID: 29752540 Published · ppublish English Journal Article

Detecting mismatches in the phenology of cotton bollworm larvae and cotton flowering in response to climate change.

International journal of biometeorology ·Vol. 62 ·No. 8 ·2018-08-00 ·页码 1507-1520

Huang J, Hao H

Abstract

Current evidence suggests that climate change has directly affected the phenology of many invertebrate species associated with agriculture. Such changes in phenology have the potential to cause temporal mismatches between predators and prey and may lead to a disruption in natural pest control ecosystem. Understanding the synchrony between pest insects and host plant responses to climate change is a key step to improve integrated pest management strategies. Cotton bollworm larvae damage cotton, and thus, data from Magaiti County, China, collected during the period of 1990-2015 were analyzed to assess the effects of climate change on cotton bollworm larvae and cotton flowering. The results showed that a warming climate advanced the phenology of cotton bollworm larvae and cotton flowering. However, the phenological rate of change was faster in cotton bollworm larvae than that in cotton flowering, and the larval period was prolonged, resulting in a great increase of the larval population. The abrupt phenological changes in cotton bollworm larvae occurred earlier than that in cotton, and the abrupt phenological changes in cotton flowering occurred earlier than that in larval abundance. However, the timing of abrupt changes in larval abundance all occurred later than that in temperature. Thus, the abrupt changes that occurred in larvae, cotton flowering and climate were asynchronous. The interval days between the cotton flowering date (CFD) and the half-amount larvae date (HLD) expanded by 3.41 and 4.41 days with a 1 °C increase of Tmean in May and June, respectively. The asynchrony between cotton bollworm larvae and cotton flowering will likely broaden as the climate changes. The effective temperature in March and April and the end date of larvae (ED) were the primary factors affecting asynchrony.

Keywords
Abrupt climate change Climate change Cotton flowering Helicoverpa armigera Synchrony
MeSH 主题词
Animals China Climate Change Flowers/physiology Gossypium/physiology Larva/physiology Moths/physiology Seasons
作者与单位
共 2 位作者,点击展开单位 / ORCID
Huang Jian ORCID
China Meteorological Administration, Institute of Desert and Meteorology, Urumqi, 830002, China. [email protected]. | Central Asian Research Center for Atmospheric Sciences, Urumqi, 830002, China. [email protected].
Hao HongFei
Bachu Meteorological Administration, Bachu, 843800, China.
Article Info
Journal
International journal of biometeorology
Abbr.
Int J Biometeorol
ISSN
1432-1254
Corresponding email
Published
2018-08-00
电子出版
2018-00-11
页码
1507-1520
Language
English
Country/Region
United States
NLM ID
0374716
基金资助
National Natural Science Foundation of China · 41775109,41275119
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