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Breve recorrido sobre las relaciones de hecho en Puerto Rico

In this chapter I briefly discuss the main results from all the previous chapters. I present general conclusions and possible research lines for future studies.

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EFERENCES

Alatalo RV, Hoglund J, Lundberg A, Rintamaki PT, Silverin B (1996). Testosterone and male mating success on the black grouse leks. Proc R Soc Lond, B 263:1697-1702

Alonso-Alvarez C, Bertrand S, Faivre B, Chastel O, Sorci G (2007). Testosterone and oxidative stress: the oxidation handicap hypothesis. Proc R Soc Lond, B 274:819-825

Alonso-Alvarez C, Pérez-Rodríguez L, Mateo R, Chastel O, Viñuela J (2008). The oxidation handicap hypothesis and the carotenoid allocation trade-off. J Evol Biol 21:1789-1797

Alonso-Alvarez C, Pérez-Rodríguez L, Garcia JT, Viñuela J (2009). Testosterone-mediated trade-offs in the old age: a new approach to the immunocompetence handicap and carotenoid-based sexual signalling. Proc R Soc Lond, B 276:2093-2101

Amundsen T (2000). Why are female birds ornamented? Trends Ecol Evol 15:149-155

Andersson M (1994). Sexual selection. Princeton University Press, Princeton, NJ Badyaev AV, Hill GE (2000). Evolution of sexual dichromatism: contribution of carotenoid- versus melanin-based coloration. Bio J Linn Soc 69:153–172

Baeta R, Faivre B, Motreuil S, Gaillard M, Moreau J (2008). Carotenoid trade-off between parasitic resistance and sexual display: an experimental study in the blackbird (Turdus merula). Proc R Soc Lond, B 275:427-434

Ball GF, Castelino CB, Maney DL, Appeltants D, Balthazart J (2003). The activation of birdsong by testosterone. Ann NY Acad Sci 1007:211-231

Berglund A, Bisazza A, Pilastro A (1996). Armaments and ornaments: an evolutionary explanation of traits of dual utility. Bio J Linn Soc 58:385-399

Biard C, Hardy C, Motreuil S, Moreau J (2009). Dynamics of PHA-induced immune response and plasma carotenoids in birds: should we have a closer look? J Exp Biol 212:1336-1343

Biard C, Saulnier N, Gaillard M, Moreau J (2010). Carotenoid-based bill colour is an integrative signal of multiple parasite infection in blackbird. Naturwissenschaften 97:987-995

Blas J, Perez-Rodriguez L, Bortolotti GR, Vinuela J, Marchant TA (2006).

Testosterone increases bioavailability of carotenoids: insights into the honesty of sexual signaling. Proc Natl Acad Sci USA 103:18633-18637

Bókony V, Garamszegi L, Hirschenhauser K, Liker A (2008). Testosterone and melanin-based black plumage coloration: a comparative study. Behav Ecol Sociobiol 62:1229-1238

Bortolotti GR (2006). Natural selection and coloration: protection, concealment, advertisement, or deception? In: Hill GE, McGraw KJ (eds) Bird coloration: function and evolution, vol II. London, pp 3-35

Brawner WR, Hill GE, Sundermann CA (2000). Effects of coccidial and mycoplasmal infections on carotenoid-based plumage pigmentation in male house finches. Auk 117:952-963

Brush AH (1990). Metabolism of carotenoid pigments in birds. FASEB J 4:2969-2977

Buchanan KL, Evans MR, Goldsmith AR, Bryant DM, Rowe LV (2001).

Testosterone influences basal metabolic rate in male house sparrows: a new cost of dominance signalling? Proc R Soc Lond, B 268:1337-1344

Burton GW (1989). Antioxidant action of carotenoids. J Nutr 119:109-111

Casto JM, Nolan JV, Ketterson ED (2001). Steroid hormones and immune function:

experimental studies in wild and captive dark-eyed juncos (Junco hyemalis). Am Nat 157:408-420

Chew BP (1993). Role of carotenoids in the immune response. J Dairy Sci 76:2804-2811

Clutton-Brock T (2007). Sexual selection in males and females. Science 318:1882-1885

Cramp S, Perrins CM (eds) (1994). Handbook of the birds of Europe, the Midle East and North Africa - the birds of the Wester Paleartic vol VIII - Crows to Finches. Oxford University Press, Oxford

Cristol DA, Armstrong JL, Whitaker JM, Forsyth MH, Sodhi NS (2005). Feather-degrading bacteria do not affect feathers on captive birds. Auk 122:222-230

Cuthill IC (2006). Color perception. In: Hill GE, McGraw KJ (eds) Bird coloration:

mechanisms and measurements, vol I. London, pp 3-40

Cuthill IC, Partridge JC, Bennett ATD, Church SC, Hart NS, Hunt S (2000).

Ultraviolet vision in birds. In: Advances in the study of behavior, vol 29. Academic Press Inc, San Diego, pp 159-214

Darwin C (1871). The descent of man, and selection in relation to sex. John Murray, London

Delves PJ, Martin SJ, Burton DR, Roitt IM (2009). Roitt's essential immunology.

12th edn. Chichester, Wiley-Blackwell, 2011. 546 pp. (Essentials; 16)

Evans MR, Goldsmith AR, Norris SRA (2000). The effects of testosterone on antibody production and plumage coloration in male house sparrows (Passer domesticus) Behav Ecol Sociobiol 47:156-163

Fitzpatrick S (1998). Colour schemes for birds: structural coloration and signals of quality in feathers. Ann Zool Fennici 35:67-77

Folstad I, Karter AJ (1992). Parasites, bright males, and the immunocompetence handicap. Am Nat 139:603

Fuller RC, Houle D, Travis J (2005). Sensory bias as an explanation for the evolution of mate preferences. Am Nat 166:437-446

Garamszegi LZ, Møller AP, Török J, Michl G, Péczely P, Richard M (2004).

Immune challenge mediates vocal communication in a passerine bird: an experiment.

Behav Ecol 15:148-157

Gonzalez G, Sorci G, Smith L, Lope F (2001). Testosterone and sexual signalling in male house sparrows (Passer domesticus). Behav Ecol Sociobiol 50:557-562

Grafen A (1990). Biological signals as handicaps. J Theor Biol 144:517-546

Grande JM, Negro JJ, Torres MJ (2004). The evolution of bird plumage colouration:

a role for feather-degrading bacteria? Ardeola 51:375-383

Hart N (2001). Variations in cone photoreceptor abundance and the visual ecology of birds. J Comp Physiol A 187:685 – 697

Hartley RC, Kennedy MW (2004). Are carotenoids a red herring in sexual display?

Trends Ecol Evol 19:353-354

Hill GE (2006a). Environmental regulation of ornamental coloration. In: Hill GE, McGraw KJ (eds) Bird coloration: mechanisms and measurements, vol I. London, pp 507-560

Hill GE (2006b). Female mate choice for ornamental coloration. In: Hill GE, McGraw KJ (eds) Bird coloration: function and evolution, vol II. London, pp 137-200

Hill GE, Montgomerie R, Inouye C, Dale J (1994). Influence of dietary carotenoids on plasma and plumage color in the house finch: intra- and intersexual variation. Funct Ecol 8:343-350

Hill GE, Johnson, JD (2012). The vitamin A–redox hypothesis: a biochemical basis

Hoi-Leitner M, Hoi H, Romero-Pujante M, Valera F (1999). Female extra-pair behaviour and environmental quality in the serin (Serinus serinus): a test of the 'constrained female hypothesis'. Proc R Soc Lond, B 266: 1021-1026

Hõrak P, Saks L, Karu U, Ots I, Surai PF, McGraw KJ (2004). How coccidian parasites affect health and appearance of greenfinches. J Anim Ecol 73:935-947

Hõrak P, Zilmer M, Saks L, Ots I, Karu U, Zilmer K (2006). Antioxidant protection, carotenoids and the costs of immune challenge in greenfinches. J Exp Biol 209:4329-4338

Jennions MD, Møller AP, Petrie M (2001). Sexually selected traits and adult survival: a meta-analysis. Q Rev Biol 76:3-36

Johnstone RA (1995). Sexual selection, honest advertisement and the handicap principle: revietwing the evidence. Biol Rev 70:1-65

Johnstone RA, Reynolds JD, Deutsch JC (1996). Mutual mate choice and sex differences in choosiness. Evolution 50:1382-1391

Karadas F, Pappas AC, Surai PF, Speake BK (2005). Embryonic development within carotenoid-enriched eggs influences the post-hatch carotenoid status of the chicken. Comp Biochem Phys B 141:244-251

Ketterson ED, Nolan V (1992). Hormones and life histories - an integrative approach. Am Nat 140:S33-S62

Kimball RT (2006). Hormonal control of coloration. In: Hill GE, McGraw KJ (eds) Bird coloration: mechanisms and measurements, vol I. London, pp 431-468

Kokko H, Jennions M (2003). It takes two to tango. Trends Ecol Evol 18:103-104 Kraaijeveld K, Gregurke J, Hall C, Komdeur J, Mulder RA (2004). Mutual ornamentation, sexual selection, and social dominance in the black swan. Behav Ecol 15:380-389

Kraaijeveld K, Kraaijeveld-Smit FJL, Komdeur J (2007). The evolution of mutual ornamentation. Anim Behav 74:657-677

Lande R (1980). Sexual dimorphism, sexual selection, and adaptation in polygenic characters. Evolution 34:292-305

Lozano GA (1994). Carotenoids, parasites, and sexual selection. Oikos 70:309-311 Lyon BE, Montgomerie R (2012). Sexual selection is a form of social selection.

Philos T R Soc B 367:2266-2273

Martin LB, Han P, Lewittes J, Kuhlman JR, Klasing KC, Wikelski M (2006).

Phytohemagglutinin-induced skin swelling in birds: histological support for a classic immunoecological technique. Funct Ecol 20:290-299

Maynard Smith J, Harper DGC (1988). The evolution of aggression: can selection generate variability? Philos T R Soc B 319:557-570

McGraw KJ (2006) Mechanics of carotenoid-based coloration. In: Hill GE, McGraw KJ (eds) Bird coloration: mechanisms and measurements, vol I. London, pp 177-242

McGraw KJ, Correa S, Adkins-Regan E (2006). Testosterone upregulates lipoprotein status to control sexual attractiveness in a colorful songbird. Behav Ecol Sociobiol 60:117-122

McGraw KJ, Ardia DR (2003). Carotenoids, immunocompetence, and the information content of sexual colors: an experimental test. Am Nat 162:704–712

McGraw KJ, Gregory AJ (2004). Carotenoid pigments in male American goldfinches: what is the optimal biochemical strategy for becoming colourful? Biol J Linn Soc 83:273-280

McGraw KJ, Hill GE (2000). Differential effects of endoparasitism on the expression of carotenoid- and melanin-based ornamental coloration. Proc R Soc Lond, B 267:1525-1531

McGraw KJ, Hill GE (2001). Carotenoid access and intraspecific variation in plumage pigmentation in male American goldfinches (Carduelis tristis) and Northern Cardinals (Cardinalis cardinalis). Funct Ecol 15: 732-739

Mead LS, Arnold SJ (2004). Quantitative genetic models of sexual selection. Trends Ecol Evol 19:264-271

Møller AP (1994). Sexual selection and the barn swallow. Oxford University Press, Oxford

Montgomerie R (2006). Analyzing colors. In: Hill GE, McGraw KJ (eds) Bird coloration: mechanisms and measurements, vol I. London, pp 90-147

Mota PG (1999). The functions of song in the serin. Ethology 105:137-148

Mota PG, Depraz V (2004). A test of the effect of male song on female nesting behaviour in the Serin (Serinus serinus): a field playback experiment. Ethology 110:841-850

Mota PG, Hoi-Leitner M (2003). Intense extrapair behaviour in a semicolonial passerine does not result in extrapair fertilizations. Anim Behav 66:1019-1026

Mougeot F, Irvine JR, Seivwright L, Redpath SM, Piertney S (2004). Testosterone, immunocompetence, and honest sexual signaling in male red grouse. Behav Ecol 15:930-937

Mougeot F, Perez-Rodriguez L, Martinez-Padilla J, Leckie F, Redpath SM (2007).

Parasites, testosterone and honest carotenoid-based signalling of health. Funct Ecol 21:886-898

Mougeot F, Redpath SM, Leckie F, Hudson PJ (2003). The effect of aggressiveness on the population dynamics of a territorial bird. Nature 421: 737-739

Navara KJ, Hill GE (2003). Dietary carotenoid pigments and immune function in a songbird with extensive carotenoid-based plumage coloration. Behav Ecol 14:909-916

Negro JJ, Bortolotti GR, Tella JL, Fernie KJ, Bird DM (1998). Regulation of integumentary colour and plasma carotenoids in American Kestrels consistent with sexual selection theory. Funct Ecol 12:307-312

Peters A (2007). Testosterone and carotenoids: an integrated view of trade-offs between immunity and sexual signalling. Bioessays 29:427-430

Peters A, Astheimer LB, Boland CRJ, Cockburn A (2000). Testosterone is involved in acquisition and maintenance of sexually selected male plumage in superb fairy-wrens, Malurus cyaneus. Behav Ecol Sociobiol 47:438-445

Prum RO (2006). Anatomy, physics, and evolution of structural colors. In: Hill GE, McGraw KJ (eds) Bird Coloration: mechanisms and measurements, vol 1, . London, pp 295-353

Pryke S, Andersson S (2003). Carotenoid-based status signalling in red-shouldered widowbirds (Euplectes axillaris): epaulet size and redness affect captive and territorial competition. Behav Ecol Sociobiol 53:393 - 401

Pryke S, Lawes M, Andersson S (2001). Agonistic carotenoid signalling in male red-collared widowbirds: aggression related to the colour signal of both the territory owner and model intruder. Anim Behav 62:695 - 704

Roberts M, Peters A (2009). Is testosterone immunosuppressive in a condition-dependent manner? An experimental test in blue tits. J Exp Biol 212:1811-1818

Roberts ML, Ras E, Peters A (2009). Testosterone increases UV reflectance of sexually selected crown plumage in male blue tits. Behav Ecol 20:535-541

Ros A, Correia M, Wingfield J, Oliveira R (2008). Mounting an immune response correlates with decreased androgen levels in male peafowl, Pavo cristatus. J Ethol 27 (2): 209-214

Saks L, Karu U, Ots I, Hõrak P (2006). Do standard measures of immunocompetence reflect parasite resistance? The case of Greenfinch coccidiosis.

Funct Ecol 20:75-82

Saks L, Ots I, Hõrak P (2003). Carotenoid-based plumage coloration of male greenfinches reflects health and immunocompetence. Oecologia 134:301-307

Senar JC (2006). Color displays as intrasexual signals of aggression and dominance.

In: Hill GE, McGraw KJ (eds) Bird coloration, vol 2., London, pp 87-136

Shawkey M, Hill G, McGraw KJ, Hood W, Huggins K (2006). An experimental test of the contributions and condition dependence of microstructure and carotenoids in yellow plumage coloration. Proc R Soc Lond, B 273:2985 - 2991

Shawkey MD, Hill GE (2005). Carotenoids need structural colours to shine. Bio Lett 1:121-124

Shawkey MD, Pillai SR, Hill GE, Siefferman LM, Roberts SR (2007). Bacteria as an agent for change in structural plumage color: correlational and experimental evidence. Am Nat 169:S112-S121

Stradi R, Celentano G, Rossi E, Rovati G, Pastore M (1995). Carotenoids in bird plumage-I. The carotenoid pattern in a series of palearctic Carduelinae. Comp Biochem Phys B 110:131-143

Studd MV, Robertson RJ (1985). Evidence for reliable badges of status in territorial yellow warblers (Dendroica petechia). Anim Behav 33:1102-1113

Svobodová J, Gabrielová B, Synek P, Marsik P, Vaněk T, Albrecht T, Vinkler M (2013). The health signalling of ornamental traits in the Grey Partridge (Perdix perdix).

J Ornithol 154:717-725

Tella JL et al. (2004). Ecological, morphological and phylogenetic correlates of interspecific variation in plasma carotenoid concentration in birds. J Evol Biol 17:156-164

Thompson CW, Hillgarth N, Leu M, McClure HE (1997). High parasite load in house finches (Carpodacus mexicanus) is correlated with reduced expression of a sexually selected trait. Am Nat 149:270-294

Trivers RL (1972). Parental investment and sexual selection. In: B Campbell (ed) Sexual selection and the descent of man 1871 - 1971. Aldine Publishing Co., Chicago

Verhulst S, Dieleman SJ, Parmentier HK (1999). A tradeoff between immunocompetence and sexual ornamentation in domestic fowl. Proc Natl Acad Sci 96:4478-4481

Vorobyev M (2003). Coloured oil droplets enhance colour discrimination. Proc R Soc Lond, B 270:1255-1261

Vorobyev M, Osorio D, Bennett A, Marshall N, Cuthill I (1998). Tetrachromacy, oil droplets and bird plumage colours. J Comp Physiol A 183:621 – 633

Vorobyev M, Osorio D (1998). Receptor noise as a determinant of colour thresholds. Proc R Soc Lond B 265:351-358

West-Eberhard MJ (1983). Sexual selection, social competition, and speciation. Q Rev Biol 58:155-183

Wingfield JC, Lynn SE, Soma KK (2001). Avoiding the 'costs' of testosterone:

ecological bases of hormone-behavior interactions. Brain Behav Evol 57:239-251

Young AJ, Lowe GM (2001). Antioxidant and prooxidant properties of carotenoids.

Arch Biochem Biophys 385:20-27

Zahavi A (1975). Mate selection-a selection for a handicap. J Theoret Biol 53:205-214

Zuk M, Johnsen TS (2000). Social environment and immunity in male red jungle fowl. Behav Ecol 11:146-153

Zuk M, Johnsen TS, Maclarty T (1995). Endocrine-immune interactions, ornaments and mate choice in red jungle fowl. Proc R Soc Lond, B 260:205-210

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