Smoke-Induced Seed Germination in California Chaparral

Keeley JE and Fotheringham CJ. 1998. Smoke-Induced Seed Germination in California Chaparral. Ecology. 79(7):2320-2336

The California chaparral community has a rich flora of species with different mechanisms for cuing germination of postfire conditions. Heat shock triggers germination of certain species but has no stimulatory effect on a great many other post fire species that are chemically stimulated by combustion products. Previous reports have shown that charred wood will induce germination, and here we report that smoke also induces germination in these same species. Smoke is highly effective, often inducing 100% germination in deeply dormant seed populations with 0% control germination. Smoke induces germination both directly and indirectly by aqueous or gaseous transfer from soil to seeds. Neither nitrate nor ammonium ions were effective in stimulating germination of smoke-stimulated species, nor were any of the qualitatively important gases generated by biomass smoke. Nitrogen dioxide was very effective at inducing germination in Caulanthus heterophyllus (Brassicaceae), Emmenanthe penduliflora (Hydrophyllaceae), Phacelia grandiflora (Hydrophyllaceae), and Silene multinervia (Caryophyllaceae). Three species, Dendromecon rigida (Papaveraceae), Dicentra chrysantha (Papaveraceae), and Trichostemma lanatum (Lamiaceae), failed to germinate unless smoke treatment was coupled with prior treatment of 1 year soil storage. Smoke-stimulated germination was found in 25 chaparral species, representing 11 families, none of which were families known for heat shock stimulated germination. Seeds of smoke stimulated species have many analogous characteristics that separate them from most heat shock stimulated species including: 1) outer seed coat that is highly textured, 2) a poorly developed outer cuticle, 3) absence of a dense pallisade tissue in the seed coat, and 4) a subdermal membrane that is semi-permeable, allowing water passage but blocking entry of a large (molecular mass >500) solutes. Tentative evidence suggests that permeability characteristics of this subdermal layer are altered by smoke. While the mechanism behind smoke induced germination is not known, it appears that make may be involved in overcoming different blocks to germination in different species. Smoke stimulated species differed substantially in the duration of make exposure required to induce germination, and this was inversely correlated with tolerance to smoke exposure. We suggest that such differences in response may effect post fire community structure.

Type
Journal Article
Authors
Keeley, Jon; Fotheringham, C.
Units
SIEN
Keywords
California chaparral, FIRE, Germination, gibberellin, hard-seeded plant taxa, imbibition, no2, Plant Communities (Vegetation), scarification, seed coat, simulation of germination, smake, smake-induced

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