Schlichting CD (1986). "The Evolution of Phenotypic Plasticity in Plants". Annual Review of Ecology and Systematics. 17: 667–93. doi:10.1146/annurev.es.17.110186.003315.
Lambers H, Poorter H (1992). "Inherent Variation in Growth Rate Between Higher Plants: A Search for Physiological Causes and Ecological Consequences". Advances in Ecological Research Volume 23. Vol. 23. pp. 187–261. doi:10.1016/S0065-2504(08)60148-8. ISBN978-0-12-013923-1.
Alemán F, Nieves-Cordones M, Martínez V, Rubio F (2009). "Differential regulation of the HAK5 genes encoding the high-affinity K+ transporters of Thellungiella halophila and Arabidopsis thaliana". Environmental and Experimental Botany. 65 (2–3): 263–9. doi:10.1016/j.envexpbot.2008.09.011.
Tallman G, Zhu J, Mawson BT, Amodeo G, Nouhi Z, Levy K, Zeiger E (1997). "Induction of CAM in Mesembryanthemum crystallinum Abolishes the Stomatal Response to Blue Light and Light-Dependent Zeaxanthin Formation in Guard Cell Chloroplasts". Plant and Cell Physiology. 38 (3): 236–42. doi:10.1093/oxfordjournals.pcp.a029158.
Shreeve, T.G. (1987). "The mate location behaviour of the male speckled wood butterfly, Pararge aegeria, and the effect of phenotypic differences in hind-wing spotting". Animal Behaviour. 35 (3): 682–690. doi:10.1016/s0003-3472(87)80104-5. S2CID53174957.
Hazel JR (1995). "Thermal adaptation in biological membranes: is homeoviscous adaptation the explanation?". Annual Review of Physiology. 57: 19–42. doi:10.1146/annurev.ph.57.030195.000315. PMID7778864.
Cortés PA, Franco M, Sabat P, Quijano SA, Nespolo RF (October 2011). "Bioenergetics and intestinal phenotypic flexibility in the microbiotherid marsupial (Dromiciops gliroides) from the temperate forest in South America". Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology. 160 (2): 117–24. doi:10.1016/j.cbpa.2011.05.014. PMID21627996.
Liu QS, Wang DH (July 2007). "Effects of diet quality on phenotypic flexibility of organ size and digestive function in Mongolian gerbils (Meriones unguiculatus)". Journal of Comparative Physiology B: Biochemical, Systemic, and Environmental Physiology. 177 (5): 509–18. doi:10.1007/s00360-007-0149-4. PMID17333208. S2CID23106470.
Naya DE, Ebensperger LA, Sabat P, Bozinovic F (2008). "Digestive and metabolic flexibility allows female degus to cope with lactation costs". Physiological and Biochemical Zoology. 81 (2): 186–94. doi:10.1086/527453. hdl:10533/139094. PMID18190284. S2CID22715822.
Krockenberger AK, Hume ID (2007). "A flexible digestive strategy accommodates the nutritional demands of reproduction in a free-living folivore, the Koala (Phascolarctos cinereus)". Functional Ecology. 21 (4): 748–756. Bibcode:2007FuEco..21..748K. doi:10.1111/j.1365-2435.2007.01279.x.
Hammond KA, Wunder BA (1991). "The Role of Diet Quality and Energy Need in the Nutritional Ecology of a Small Herbivore, Microtus ochrogaster". Physiological Zoology. 64 (2): 541–67. doi:10.1086/physzool.64.2.30158190. JSTOR30158190. S2CID86028872.
Sabat P, Riveros JM, López-Pinto C (January 2005). "Phenotypic flexibility in the intestinal enzymes of the African clawed frog Xenopus laevis". Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology. 140 (1): 135–9. doi:10.1016/j.cbpb.2004.11.010. hdl:10533/176304. PMID15664322.
Drobney RD (1984). "Effect of Diet on Visceral Morphology of Breeding Wood Ducks". The Auk. 101 (1): 93–8. doi:10.1093/auk/101.1.93. JSTOR4086226.
Kehoe FP, Ankney CD, Alisauskas RT (1988). "Effects of dietary fiber and diet diversity on digestive organs of captive Mallards (Anas platyrhynchos)". Canadian Journal of Zoology. 66 (7): 1597–602. doi:10.1139/z88-233.
Ahmed AM, Baggott SL, Maingon R, Hurd H (2002). "The costs of mounting an immune response are reflected in the reproductive fitness of the mosquito Anopheles gambiae". Oikos. 97 (3): 371–377. Bibcode:2002Oikos..97..371A. doi:10.1034/j.1600-0706.2002.970307.x.
Schallig HD, Hordijk PL, Oosthoek PW, Jong-Brink M (1991). "Schistosomin, a peptide present in the haemolymph of Lymnaea stagnal is infected with Trichobilharzia ocellata, is produced only in the snail's central nervous system". Parasitology Research. 77 (2): 152–6. doi:10.1007/BF00935429. S2CID9161067.
Janzen DH (1967). "Why Mountain Passes are Higher in the Tropics". The American Naturalist. 101 (919): 233–49. doi:10.1086/282487. S2CID84408071.
Naya DE, Bozinovic F, Karasov WH (October 2008). "Latitudinal trends in digestive flexibility: testing the climatic variability hypothesis with data on the intestinal length of rodents". The American Naturalist. 172 (4): E122-34. doi:10.1086/590957. JSTOR590957. PMID18717635. S2CID205987981.
Overgaard J, Kristensen TN, Mitchell KA, Hoffmann AA (October 2011). "Thermal tolerance in widespread and tropical Drosophila species: does phenotypic plasticity increase with latitude?". The American Naturalist. 178 (Suppl 1): S80-96. doi:10.1086/661780. PMID21956094. S2CID22000482.
Maldonado K, Bozinovic F, Rojas JM, Sabat P (2011). "Within-species digestive tract flexibility in rufous-collared sparrows and the climatic variability hypothesis". Physiological and Biochemical Zoology. 84 (4): 377–84. doi:10.1086/660970. hdl:10533/133358. PMID21743251. S2CID1484282.
Winn AA (June 1996). "Adaptation to Fine-Grained Environmental Variation: An Analysis of Within-Individual Leaf Variation in an Annual Plant". Evolution; International Journal of Organic Evolution. 50 (3): 1111–1118. doi:10.2307/2410651. JSTOR2410651. PMID28565263.
Naya DE, Ebensperger LA, Sabat P, Bozinovic F (2008). "Digestive and metabolic flexibility allows female degus to cope with lactation costs". Physiological and Biochemical Zoology. 81 (2): 186–94. doi:10.1086/527453. hdl:10533/139094. PMID18190284. S2CID22715822.
Sabat P, Riveros JM, López-Pinto C (January 2005). "Phenotypic flexibility in the intestinal enzymes of the African clawed frog Xenopus laevis". Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology. 140 (1): 135–9. doi:10.1016/j.cbpb.2004.11.010. hdl:10533/176304. PMID15664322.
Krockenberger AK, Hume ID (2007). "A flexible digestive strategy accommodates the nutritional demands of reproduction in a free-living folivore, the Koala (Phascolarctos cinereus)". Functional Ecology. 21 (4): 748–756. Bibcode:2007FuEco..21..748K. doi:10.1111/j.1365-2435.2007.01279.x.
Ahmed AM, Baggott SL, Maingon R, Hurd H (2002). "The costs of mounting an immune response are reflected in the reproductive fitness of the mosquito Anopheles gambiae". Oikos. 97 (3): 371–377. Bibcode:2002Oikos..97..371A. doi:10.1034/j.1600-0706.2002.970307.x.
IPCC, 2014: Climate Change 2014: Synthesis Report. Contribution of Working Groups I, II and III to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, R.K. Pachauri and L.A. Meyer (eds.)]. IPCC, Geneva, Switzerland, 151 pp.
https://www.ipcc.ch/report/ar5/syr/
Hammond KA, Wunder BA (1991). "The Role of Diet Quality and Energy Need in the Nutritional Ecology of a Small Herbivore, Microtus ochrogaster". Physiological Zoology. 64 (2): 541–67. doi:10.1086/physzool.64.2.30158190. JSTOR30158190. S2CID86028872.
Drobney RD (1984). "Effect of Diet on Visceral Morphology of Breeding Wood Ducks". The Auk. 101 (1): 93–8. doi:10.1093/auk/101.1.93. JSTOR4086226.
Naya DE, Bozinovic F, Karasov WH (October 2008). "Latitudinal trends in digestive flexibility: testing the climatic variability hypothesis with data on the intestinal length of rodents". The American Naturalist. 172 (4): E122-34. doi:10.1086/590957. JSTOR590957. PMID18717635. S2CID205987981.
Winn AA (June 1996). "Adaptation to Fine-Grained Environmental Variation: An Analysis of Within-Individual Leaf Variation in an Annual Plant". Evolution; International Journal of Organic Evolution. 50 (3): 1111–1118. doi:10.2307/2410651. JSTOR2410651. PMID28565263.
Hazel JR (1995). "Thermal adaptation in biological membranes: is homeoviscous adaptation the explanation?". Annual Review of Physiology. 57: 19–42. doi:10.1146/annurev.ph.57.030195.000315. PMID7778864.
Cortés PA, Franco M, Sabat P, Quijano SA, Nespolo RF (October 2011). "Bioenergetics and intestinal phenotypic flexibility in the microbiotherid marsupial (Dromiciops gliroides) from the temperate forest in South America". Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology. 160 (2): 117–24. doi:10.1016/j.cbpa.2011.05.014. PMID21627996.
Liu QS, Wang DH (July 2007). "Effects of diet quality on phenotypic flexibility of organ size and digestive function in Mongolian gerbils (Meriones unguiculatus)". Journal of Comparative Physiology B: Biochemical, Systemic, and Environmental Physiology. 177 (5): 509–18. doi:10.1007/s00360-007-0149-4. PMID17333208. S2CID23106470.
Naya DE, Ebensperger LA, Sabat P, Bozinovic F (2008). "Digestive and metabolic flexibility allows female degus to cope with lactation costs". Physiological and Biochemical Zoology. 81 (2): 186–94. doi:10.1086/527453. hdl:10533/139094. PMID18190284. S2CID22715822.
Sabat P, Riveros JM, López-Pinto C (January 2005). "Phenotypic flexibility in the intestinal enzymes of the African clawed frog Xenopus laevis". Comparative Biochemistry and Physiology. Part A, Molecular & Integrative Physiology. 140 (1): 135–9. doi:10.1016/j.cbpb.2004.11.010. hdl:10533/176304. PMID15664322.
Naya DE, Bozinovic F, Karasov WH (October 2008). "Latitudinal trends in digestive flexibility: testing the climatic variability hypothesis with data on the intestinal length of rodents". The American Naturalist. 172 (4): E122-34. doi:10.1086/590957. JSTOR590957. PMID18717635. S2CID205987981.
Overgaard J, Kristensen TN, Mitchell KA, Hoffmann AA (October 2011). "Thermal tolerance in widespread and tropical Drosophila species: does phenotypic plasticity increase with latitude?". The American Naturalist. 178 (Suppl 1): S80-96. doi:10.1086/661780. PMID21956094. S2CID22000482.
Maldonado K, Bozinovic F, Rojas JM, Sabat P (2011). "Within-species digestive tract flexibility in rufous-collared sparrows and the climatic variability hypothesis". Physiological and Biochemical Zoology. 84 (4): 377–84. doi:10.1086/660970. hdl:10533/133358. PMID21743251. S2CID1484282.
Winn AA (June 1996). "Adaptation to Fine-Grained Environmental Variation: An Analysis of Within-Individual Leaf Variation in an Annual Plant". Evolution; International Journal of Organic Evolution. 50 (3): 1111–1118. doi:10.2307/2410651. JSTOR2410651. PMID28565263.
Shreeve, T.G. (1987). "The mate location behaviour of the male speckled wood butterfly, Pararge aegeria, and the effect of phenotypic differences in hind-wing spotting". Animal Behaviour. 35 (3): 682–690. doi:10.1016/s0003-3472(87)80104-5. S2CID53174957.
Liu QS, Wang DH (July 2007). "Effects of diet quality on phenotypic flexibility of organ size and digestive function in Mongolian gerbils (Meriones unguiculatus)". Journal of Comparative Physiology B: Biochemical, Systemic, and Environmental Physiology. 177 (5): 509–18. doi:10.1007/s00360-007-0149-4. PMID17333208. S2CID23106470.
Naya DE, Ebensperger LA, Sabat P, Bozinovic F (2008). "Digestive and metabolic flexibility allows female degus to cope with lactation costs". Physiological and Biochemical Zoology. 81 (2): 186–94. doi:10.1086/527453. hdl:10533/139094. PMID18190284. S2CID22715822.
Hammond KA, Wunder BA (1991). "The Role of Diet Quality and Energy Need in the Nutritional Ecology of a Small Herbivore, Microtus ochrogaster". Physiological Zoology. 64 (2): 541–67. doi:10.1086/physzool.64.2.30158190. JSTOR30158190. S2CID86028872.
Schallig HD, Hordijk PL, Oosthoek PW, Jong-Brink M (1991). "Schistosomin, a peptide present in the haemolymph of Lymnaea stagnal is infected with Trichobilharzia ocellata, is produced only in the snail's central nervous system". Parasitology Research. 77 (2): 152–6. doi:10.1007/BF00935429. S2CID9161067.
Janzen DH (1967). "Why Mountain Passes are Higher in the Tropics". The American Naturalist. 101 (919): 233–49. doi:10.1086/282487. S2CID84408071.
Naya DE, Bozinovic F, Karasov WH (October 2008). "Latitudinal trends in digestive flexibility: testing the climatic variability hypothesis with data on the intestinal length of rodents". The American Naturalist. 172 (4): E122-34. doi:10.1086/590957. JSTOR590957. PMID18717635. S2CID205987981.
Overgaard J, Kristensen TN, Mitchell KA, Hoffmann AA (October 2011). "Thermal tolerance in widespread and tropical Drosophila species: does phenotypic plasticity increase with latitude?". The American Naturalist. 178 (Suppl 1): S80-96. doi:10.1086/661780. PMID21956094. S2CID22000482.
Maldonado K, Bozinovic F, Rojas JM, Sabat P (2011). "Within-species digestive tract flexibility in rufous-collared sparrows and the climatic variability hypothesis". Physiological and Biochemical Zoology. 84 (4): 377–84. doi:10.1086/660970. hdl:10533/133358. PMID21743251. S2CID1484282.