Resistance to 16 diverse species of herbivorous insects within a population of goldenrod, Solidago altissima: genetic variation and heritability
- 1 April 1987
- journal article
- research article
- Published by Springer Nature in Oecologia
- Vol. 72 (1) , 8-14
- https://doi.org/10.1007/bf00385037
Abstract
Genetic variation in resistance to 16 species of herbivorous insects was studied in 18 clones of Solidago altissima growing in an old field near Ithaca, New York, USA. Resistance to each insect, defined as the abundance of a species attacking a particular host genotype relative to other genotypes, was measured in both the natural stand and in two experimental gardens. The heritability of resistance was estimated by parent-offspring regression and sibcorrelation. The primary result was that clones differed in resistance to 15 of 16 insect species. The resistance of genotypes to these insect species remained relatively constant over the four years of the study. However, for only 10 of these resistances were the heritability estimates significantly different from zero. Thus the common assumption of plant-insect studies — that phenotypic variation in insect abundance is closely correlated with underlying genetic variation — is only conditionally true. There is heritable variation in resistance to many insects, but not all. The insects for which we observed heritable variation in plant resistance represent five different orders and several functional groups, including leaf chewers, phloem and xylem feeders, and gall formers. There was no apparent pattern between the degree of heritability of plant resistance and the destructiveness, feeding method, breadth of host range, or taxonomic group of the insects. The lack of marked heritable variation in resistance to some insects may be the result of (a) reduced variation caused by strong selection during prolonged or repeated insect outbreaks, and (b) genotype-environment interactions that obscure differences among genotypes.Keywords
This publication has 28 references indexed in Scilit:
- Niche Partitioning in Spittlebugs (Homoptera: Cercopidae) Sharing Shelters on Host PlantsEcology, 1986
- Bracken, ants and extrafloral nectaries. III. How insect herbivores avoid ant predationEcological Entomology, 1985
- A Case of Insect Grazing Affecting Plant SuccessionEcology, 1983
- On the Origin of the Field Plants of the Northeastern United StatesThe American Naturalist, 1983
- The Influence of Neighboring Hosts on Colonization of Prairie Milkweeds by a Seed-Feeding BugEcology, 1983
- Plant Protection as a Consequence of an Ant‐Membracid Mutualism: Interactions on Goldenrod (Solidago Sp.)Ecology, 1981
- THE EFFECT OF VARIATION IN HOST PLANT ON THE GROWTH OF AN OLIGOPHAGOUS INSECT, MALACOSOMA AMERICANUM AND ITS POLYPHAGOUS RELATIVE, MALACOSOMA DISSTRIAEntomologia Experimentalis et Applicata, 1981
- Intraspecific variability in herbivore performance and host quality: a field study of Uroleucon caligatum (Homoptera: Aphididae) and its Solidago hosts (Asteraceae)Ecological Entomology, 1981
- Herbivory, Plant Density, and Plant Reproductive Success: The Effect of Battus Philenor on Aristolochia ReticulataEcology, 1980
- Energetics of the Solidago Canadensis‐stem Gall Insect‐parasitoid Guild InteractionEcology, 1979