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2.
Proc Natl Acad Sci U S A ; 109(4): 1154-8, 2012 Jan 24.
Artigo em Inglês | MEDLINE | ID: mdl-22232687

RESUMO

The recently described genus Philcoxia comprises three species restricted to well lit and low-nutrient soils in the Brazilian Cerrado. The morphological and habitat similarities of Philcoxia to those of some carnivorous plants, along with recent observations of nematodes over its subterranean leaves, prompted the suggestion that the genus is carnivorous. Here we report compelling evidence of carnivory in Philcoxia of the Plantaginaceae, a family in which no carnivorous members are otherwise known. We also document both a unique capturing strategy for carnivorous plants and a case of a plant that traps and digests nematodes with underground adhesive leaves. Our findings illustrate how much can still be discovered about the origin, distribution, and frequency of the carnivorous syndrome in angiosperms and, more generally, about the diversity of nutrient-acquisition mechanisms that have evolved in plants growing in severely nutrient-impoverished environments such as the Brazilian Cerrado, one of the world's 34 biodiversity hotspots.


Assuntos
Nematoides , Folhas de Planta/fisiologia , Plantago/anatomia & histologia , Plantago/fisiologia , Adesividade , Animais , Brasil , Microscopia de Fluorescência , Isótopos de Nitrogênio/metabolismo , Folhas de Planta/ultraestrutura , Plantago/metabolismo
3.
Plant Cell Environ ; 30(5): 580-9, 2007 May.
Artigo em Inglês | MEDLINE | ID: mdl-17407536

RESUMO

The objective of this work was to study the existence of a trade-off between aerenchyma formation and root mechanical strength. To this end, relationships among root anatomical traits and mechanical properties were analysed in plant species with contrasting root structural types: Paspalidium geminatum (graminaceous type), Cyperus eragrostis (cyperaceous type), Rumex crispus (Rumex type) and Plantago lanceolata (Apium type). Variations in anatomical traits and mechanical strength were assessed as a function of root diameter by exposing plants to 0, 7, 15 and 30 d of control and flooded conditions. For each species, the proportion of root cortex was positively associated with the increment of root diameter, contributing to the increase in root porosity under both control and flooded conditions. Moreover, cell lysis produced an additional increase in root porosity in most species under flooded conditions (except R. crispus). Both structural types that presented a uniseriate layer (epidermis) to cope with compression (Rumex and Apium types) were progressively weakened as root porosity increased. This effect was significant even when the increment of root porosity was solely because of increased root diameter (R. crispus), as when both processes (root diameter and cell lysis) added porosity to the roots (P. lanceolata). Conversely, structural types that presented a multiseriate ring of cells in the outer cortex (graminaceous and cyperaceous types) maintained mechanical strength over the whole range of porosity, in spite of lysogenic processes registered in the inner cortex. In conclusion, our study demonstrates a strong trade-off between aerenchyma formation and mechanical strength in root structural types that lacked a multiseriate ring of tissue for mechanical protection in the outer cortex. The results suggest that this ring of tissue plays a significant role in maintaining the mechanical strength of roots when flooding induces the generation of additional aerenchyma tissue in the root cortex.


Assuntos
Magnoliopsida/anatomia & histologia , Raízes de Plantas/anatomia & histologia , Água/fisiologia , Fenômenos Biomecânicos , Cyperus/anatomia & histologia , Cyperus/fisiologia , Magnoliopsida/fisiologia , Raízes de Plantas/fisiologia , Plantago/anatomia & histologia , Plantago/fisiologia , Poaceae/anatomia & histologia , Poaceae/fisiologia , Porosidade , Rumex/anatomia & histologia , Rumex/fisiologia
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