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vol.91 issue3Genetic variation in Mexican populations of Swietenia macrophylla King, a tropical species in recent geographic expansionStructure and woody species diversity of the Dasylirion cedrosanum (Nolinaceae) rosette scrub of central and southern Coahuila State, Mexico author indexsubject indexsearch form
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Botanical Sciences

On-line version ISSN 2007-4476Print version ISSN 2007-4298

Abstract

ROMO-CAMPOS, Rosa; FLORES-FLORES, José Luis; FLORES, Joel  and  ALVAREZ-FUENTES, Gregorio. Abiotic factors involved in the facilitation between woody and succulents. Bot. sci [online]. 2013, vol.91, n.3, pp.319-333. ISSN 2007-4476.

We studied physiological and morphological characteristics of woody seedlings (nurses) and succulents (protected) which are distributed in an environmental gradient in the Mexican Plateau. Species from the mesic extreme of the gradient (Acacia schaffneri, A. farnesiana, Opuntia jaliscana) and from the xeric extreme (A. schaffneri, Prosopis laevigata, O. streptacantha) were chosen. 24-week-old seedlings were subjected for 90 days to varying levels of radiation (high = 2133 mol m-2 d-1, low = 166 mol m-2 d-1), available moisture (high = 60%, low = 30%) and fertility (high = canopy soil, low = open area). We assessed relative growth rate and its components: morphological (leaf area ratio) and physiological (net assimilation rate), as well as the quantum efficiency of photosystem II (ΦPSII), and the electron transport rate. Succulent seedlings had higher relative growth rate and leaf area ratio than woody ones. Most of the evaluated species grew more under high radiation and high humidity conditions. The canopy soil favored the growth of succulent species, but woody seedlings had the highest net assimilation rate. The results suggest that succulent seedlings showed ecophysiological functioning of protected species, best adapted to establish under the canopy of nurse plants. Woody species showed ecophysiological characteristics of nurses better adapted to open areas.

Keywords : Electron transport rate; facilitation; net assimilation rate; photosynthetic area ratio; quantum efficiency; relative growth rate.

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