Physiological climatic limits in Drosophila: patterns and implications

被引:287
作者
Hoffmann, A. A. [1 ]
机构
[1] Univ Melbourne, Inst Bio21, Parkville, Vic 3052, Australia
基金
澳大利亚研究理事会;
关键词
limits; climate change; evolution; Drosophila; DNA decay; RAIN-FOREST DROSOPHILA; LIFE-HISTORY TRAITS; DESICCATION RESISTANCE; GENETIC-VARIATION; STARVATION RESISTANCE; ENVIRONMENTAL-CHANGE; STRESS RESISTANCE; CHILL-COMA; METHODOLOGICAL CONTEXT; REPRODUCTIVE DIAPAUSE;
D O I
10.1242/jeb.037630
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Physiological limits determine susceptibility to environmental changes, and can be assessed at the individual, population or species/lineage levels. Here I discuss these levels in Drosophila, and consider implications for determining species susceptibility to climate change. Limits at the individual level in Drosophila depend on experimental technique and on the context in which traits are evaluated. At the population level, evidence from selection experiments particularly involving Drosophila melanogaster indicate high levels of heritable variation and evolvability for coping with thermal stresses and aridity. An exception is resistance to high temperatures, which reaches a plateau in selection experiments and has a low heritability/evolvability when temperatures are ramped up to a stressful level. In tropical Drosophila species, populations are limited in their ability to evolve increased desiccation and cold resistance. Population limits can arise from trait and gene interactions but results from different laboratory studies are inconsistent and likely to underestimate the strength of interactions under field conditions. Species and lineage comparisons suggest phylogenetic conservatism for resistance to thermal extremes and other stresses. Plastic responses set individual limits but appear to evolve slowly in Drosophila. There is more species-level variation in lower thermal limits and desiccation resistance compared with upper limits, which might reflect different selection pressures and/or low evolvability. When extremes are considered, tropical Drosophila species do not appear more threatened than temperate species by higher temperatures associated with global warming, contrary to recent conjectures. However, species from the humid tropics may be threatened if they cannot adapt genetically to drier conditions.
引用
收藏
页码:870 / 880
页数:11
相关论文
共 113 条
[1]   The role of larval fat cells in adult Drosophila melanogaster [J].
Aguila, Jerell R. ;
Suszko, Justin ;
Gibbs, Allen G. ;
Hoshizaki, Deborah K. .
JOURNAL OF EXPERIMENTAL BIOLOGY, 2007, 210 (06) :956-963
[2]   Response to selection for rapid chill-coma recovery in Drosophila melanogaster:: physiology and life-history traits [J].
Anderson, AR ;
Hoffmann, AA ;
McKechnie, SW .
GENETICS RESEARCH, 2005, 85 (01) :15-22
[3]  
Angilletta MJ, 2009, BIO HABIT, P1, DOI 10.1093/acprof:oso/9780198570875.001.1
[4]   Investigating latitudinal clines for life history and stress resistance traits in Drosophila simulans from eastern Australia [J].
Arthur, A. L. ;
Weeks, A. R. ;
Sgro, C. M. .
JOURNAL OF EVOLUTIONARY BIOLOGY, 2008, 21 (06) :1470-1479
[5]   Starvation resistance is positively correlated with body lipid proportion in five wild caught Drosophila simulans populations [J].
Ballard, J. William O. ;
Melvin, R. G. ;
Simpson, S. J. .
JOURNAL OF INSECT PHYSIOLOGY, 2008, 54 (09) :1371-1376
[6]   Interspecies physiological variation as a tool for cross-species assessments of global warming-induced endangerment: validation of an intrinsic determinant of macroecological and phylogeographic structure [J].
Bernardo, Joseph ;
Ossola, Ryan J. ;
Spotila, James ;
Crandall, Keith A. .
BIOLOGY LETTERS, 2007, 3 (06) :695-698
[7]   Physiological constraints on organismal response to global warming: mechanistic insights from clinally varying populations and implications for assessing endangerment [J].
Bernardo, Joseph ;
Spotila, James R. .
BIOLOGY LETTERS, 2006, 2 (01) :135-139
[8]   Semipermeable species boundaries between Anopheles gambiae and Anopheles arabiensis:: Evidence from multilocus DNA sequence variation [J].
Besansky, NJ ;
Krzywinski, J ;
Lehmann, T ;
Simard, F ;
Kern, M ;
Mukabayire, O ;
Fontenille, D ;
Touré, Y ;
Sagnon, NF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (19) :10818-10823
[9]   A tale of two matrices: multivariate approaches in evolutionary biology [J].
Blows, M. W. .
JOURNAL OF EVOLUTIONARY BIOLOGY, 2007, 20 (01) :1-8
[10]   A reassessment of genetic limits to evolutionary change [J].
Blows, MW ;
Hoffmann, AA .
ECOLOGY, 2005, 86 (06) :1371-1384