Patterns of chemical defences in plants: an analysis of the vascular flora of Chile

Chemoecology ◽  
2006 ◽  
Vol 16 (3) ◽  
pp. 145-151 ◽  
Author(s):  
Ramiro O. Bustamante ◽  
Paulina Chacón ◽  
Hermann M. Niemeyer
2016 ◽  
Vol 43 (3) ◽  
pp. 199-207
Author(s):  
RAFAEL URBINA-CASANOVA ◽  
FEDERICO LUEBERT ◽  
PATRICIO PLISCOFF ◽  
ROSA A. SCHERSON

SUMMARYConservation planning relies heavily on representativeness patterns. In Chile, this has not been assessed at the species level. This study evaluates floristic representativeness in the National System of Protected Areas (SNASPE). Species rarefaction and non-parametric estimators were used to extrapolate total representativeness. Given that conservation planning in Chile is mainly based on protecting vegetation types, the effectiveness of using vegetation types as a surrogate of plant species was evaluated based on richness and complementarity. The study found available information for 42% of the 96 protected areas of continental Chile. According to this information the SNASPE protects at least 48% of the native vascular flora. The southern area protects the largest number of species, most of which are non-endemic natives. The largest number of endemic protected species was found in the central-northern area. The SNASPE in its full range is projected to protect 64% of the vascular flora of Chile. Richness and complementarity surrogacy analyses showed weak effectiveness of vegetation types as a surrogate of plant species, although complementarity performed slightly better than richness. Surrogacy effectiveness was lower for endemic species, probably due to their narrow distributions that are more easily missed when vegetation types are considered instead.


2017 ◽  
Vol 112 ◽  
pp. 88-95 ◽  
Author(s):  
Rosa A. Scherson ◽  
Andrew H. Thornhill ◽  
Rafael Urbina-Casanova ◽  
William A. Freyman ◽  
Patricio A. Pliscoff ◽  
...  

2018 ◽  
pp. 131-144 ◽  
Author(s):  
Rosa A. Scherson ◽  
Taryn Fuentes-Castillo ◽  
Rafael Urbina-Casanova ◽  
Patricio Pliscoff

2012 ◽  
Vol 37 ◽  
pp. 179-184
Author(s):  
José Luis Fernández Alonso

Epilobium ciliatum Rafin. (Onagraceae), a new adventive species potentially invasive in the Iberian Peninsula Palabras clave. Epilobium ciliatum, especies adventicias, Flora vascular, Onagraceae, Península Ibérica. Key words. Epilobium ciliatum, Iberian Peninsula, adventive species, Onagraceae, vascular flora


2021 ◽  
Author(s):  
Xoaquín Moreira ◽  
Ignacio M. Pérez-Ramos ◽  
Luis Matías ◽  
Marta Francisco ◽  
Alberto García-González ◽  
...  

Marine Drugs ◽  
2021 ◽  
Vol 19 (2) ◽  
pp. 47
Author(s):  
Justin M. McNab ◽  
Jorge Rodríguez ◽  
Peter Karuso ◽  
Jane E. Williamson

Marine invertebrates are promising sources of novel bioactive secondary metabolites, and organisms like sponges, ascidians and nudibranchs are characterised by possessing potent defensive chemicals. Animals that possess chemical defences often advertise this fact with aposematic colouration that potential predators learn to avoid. One seemingly defenceless group that can present bright colouration patterns are flatworms of the order Polycladida. Although members of this group have typically been overlooked due to their solitary and benthic nature, recent studies have isolated the neurotoxin tetrodotoxin from these mesopredators. This review considers the potential of polyclads as potential sources of natural products and reviews what is known of the activity of the molecules found in these animals. Considering the ecology and diversity of polyclads, only a small number of species from both suborders of Polycladida, Acotylea and Cotylea have been investigated for natural products. As such, confirming assumptions as to which species are in any sense toxic or if the compounds they use are biosynthesised, accumulated from food or the product of symbiotic bacteria is difficult. However, further research into the group is suggested as these animals often display aposematic colouration and are known to prey on invertebrates rich in bioactive secondary metabolites.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Michal Motyka ◽  
Dominik Kusy ◽  
Michal Masek ◽  
Matej Bocek ◽  
Yun Li ◽  
...  

AbstractBiologists have reported on the chemical defences and the phenetic similarity of net-winged beetles (Coleoptera: Lycidae) and their co-mimics. Nevertheless, our knowledge has remained fragmental, and the evolution of mimetic patterns has not been studied in the phylogenetic context. We illustrate the general appearance of ~ 600 lycid species and ~ 200 co-mimics and their distribution. Further, we assemble the phylogeny using the transcriptomic backbone and ~ 570 species. Using phylogenetic information, we closely scrutinise the relationships among aposematically coloured species, the worldwide diversity, and the distribution of aposematic patterns. The emitted visual signals differ in conspicuousness. The uniform coloured dorsum is ancestral and was followed by the evolution of bicoloured forms. The mottled patterns, i.e. fasciate, striate, punctate, and reticulate, originated later in the course of evolution. The highest number of sympatrically occurring patterns was recovered in New Guinea and the Andean mountain ecosystems (the areas of the highest abundance), and in continental South East Asia (an area of moderate abundance but high in phylogenetic diversity). Consequently, a large number of co-existing aposematic patterns in a single region and/or locality is the rule, in contrast with the theoretical prediction, and predators do not face a simple model-like choice but cope with complex mimetic communities. Lycids display an ancestral aposematic signal even though they sympatrically occur with differently coloured unprofitable relatives. We show that the highly conspicuous patterns evolve within communities predominantly formed by less conspicuous Müllerian mimics and, and often only a single species displays a novel pattern. Our work is a forerunner to the detailed research into the aposematic signalling of net-winged beetles.


Madroño ◽  
2006 ◽  
Vol 53 (3) ◽  
pp. 211-222 ◽  
Author(s):  
Scott A. Mincemoyer ◽  
Jennifer L. Birdsall
Keyword(s):  

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