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(American Journal of Botany. 2000;87:861-871.)
© 2000 Botanical Society of America, Inc.

Factors affecting establishment of a gypsophyte: the case of Lepidium subulatum (Brassicaceae)1

Adrián Escudero5,2, José M. Iriondo2, José M. Olano3, Agustín Rubio4 and Roberto C. Somolinos2

2 Departamento de Biología Vegetal, Escuela Universitaria de Ingeniería Técnica Agrícola, Universidad Politécnica de Madrid, Madrid, E-28040, Spain; 3 Departamento de Biología Vegetal y Ecología, Universidad del País Vasco, Apdo. 644, Bilbao, E-48080, Spain; and 4 Departamento de Silvopascicultura, Laboratorio de Edafología, Escuela Técnica Superior de Ingenieros de Montes, Universidad Politécnica de Madrid, Madrid, E-28040, Spain

ABSTRACT

The restriction of vascular plants to gypsum-rich soils under arid or semiarid climates has been reported by many authors in different parts of the world. However, factors controlling the presence of gypsophytes on these soils are far from understood. We investigated the establishment of Lepidium subulatum, a gypsophyte, in a nondisturbed semiarid gypsum-soil landscape in central Spain, both from spatial and temporal perspectives. Over 1400 seedlings were tagged, and their growth and survival were monitored for a 2-yr period. Several biotic and abiotic variables were measured to determine the factors controlling the emergence and early survival. These variables included the cover of annual plants, bryophytes, lichens, litter, gypsum crystals, bare fraction and cover of each perennial plant, and several soil properties (gravel, fine gravel, and fine-earth fraction, conductivity, pH, gypsum content, organic matter and penetrometer soil resistance). Our results support the linkage of gypsophily with some physical properties of the surface crust. Seedlings tended to establish on the gypsum surface crust, and their survival was size dependent, probably as a consequence of the necessity of rooting below the surface crust before summer drought arrives. However, once seedlings emerged, a higher survival rate occurred on the alluvial soils of the piedmont-slope boundary where soil crusts are absent or thinner. We conclude that Lepidium subulatum may be considered a refuge model endemic with a distribution range that occupies a reduced fraction of a wider habitat from which it is probably excluded by competition.

Key Words: Brassicaceae • gypsophily • gypsum-rich soils • Lepidium • penetrometer soil resistance • seedling growth • seedling survival • structural equation modeling




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