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en Colour morphotypes of Elysia timida (Sacoglossa, Gastropoda) are determined by light acclimation in food algae -
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del recurso Distribución PDF a2026-06-25
(anteriormente2026-06-23
) en Colour morphotypes of Elysia timida (Sacoglossa, Gastropoda) are determined by light acclimation in food algae
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| 90 | "notes": "Elysia timida (Risso, 1818) colonizing the shallow waters | 100 | "notes": "Elysia timida (Risso, 1818) colonizing the shallow waters | ||
| 91 | of the Mar Menor Lagoon (Spain) exhibit a brown and a green morph. It | 101 | of the Mar Menor Lagoon (Spain) exhibit a brown and a green morph. It | ||
| 92 | was hypothesised that these morphs were the result of feeding | 102 | was hypothesised that these morphs were the result of feeding | ||
| 93 | preferentially on brown and green algae, respectively. E. timida and | 103 | preferentially on brown and green algae, respectively. E. timida and | ||
| 94 | its potential food sources, Acetabularia acetabulum (Chlorophyta) and | 104 | its potential food sources, Acetabularia acetabulum (Chlorophyta) and | ||
| 95 | Halopteris filicina (Heterokontophyta) were collected by snorkelling | 105 | Halopteris filicina (Heterokontophyta) were collected by snorkelling | ||
| 96 | during April 2010. Photosynthetic pigments were analysed by HPLC, | 106 | during April 2010. Photosynthetic pigments were analysed by HPLC, | ||
| 97 | photo-physiological parameters were estimated by PAM fluorometry and | 107 | photo-physiological parameters were estimated by PAM fluorometry and | ||
| 98 | body colour was characterized by spectral reflectance. Digital | 108 | body colour was characterized by spectral reflectance. Digital | ||
| 99 | photography was used to count the number and area of red spots (small | 109 | photography was used to count the number and area of red spots (small | ||
| 100 | red dots on the slug's surface) on the parapodia of the 2 morphs. In | 110 | red dots on the slug's surface) on the parapodia of the 2 morphs. In | ||
| 101 | the laboratory, green E. timida was fed with A. acetabulum cultured | 111 | the laboratory, green E. timida was fed with A. acetabulum cultured | ||
| 102 | under 2 light treatments (high light, 600 mu mol E m(-2) s(-1) and low | 112 | under 2 light treatments (high light, 600 mu mol E m(-2) s(-1) and low | ||
| 103 | light, 40 mu mol E m(-)2 s(-1)), and digital photography was used to | 113 | light, 40 mu mol E m(-)2 s(-1)), and digital photography was used to | ||
| 104 | monitor colour alterations in E. timida. Spectral reflectance | 114 | monitor colour alterations in E. timida. Spectral reflectance | ||
| 105 | confirmed the colour differences, but both morphs showed a pigment | 115 | confirmed the colour differences, but both morphs showed a pigment | ||
| 106 | composition similar to the green alga A. acetabulum and showed none of | 116 | composition similar to the green alga A. acetabulum and showed none of | ||
| 107 | the pigments present in the brown alga H. filicina, neither | 117 | the pigments present in the brown alga H. filicina, neither | ||
| 108 | immediately after collection of the slugs in situ, nor after the | 118 | immediately after collection of the slugs in situ, nor after the | ||
| 109 | feeding experiment. A. acetabulum grown under high light intensity | 119 | feeding experiment. A. acetabulum grown under high light intensity | ||
| 110 | changed from green to brown colour and E. timida changed to brown | 120 | changed from green to brown colour and E. timida changed to brown | ||
| 111 | colour when fed with high-light acclimated A. acetabulum. Thus, E. | 121 | colour when fed with high-light acclimated A. acetabulum. Thus, E. | ||
| 112 | timida colour differences could not be attributed to feeding on | 122 | timida colour differences could not be attributed to feeding on | ||
| 113 | different algae groups but was likely the result of feeding on A. | 123 | different algae groups but was likely the result of feeding on A. | ||
| 114 | acetabulum growing under different light intensities.", | 124 | acetabulum growing under different light intensities.", | ||
| 115 | "notes_translated": { | 125 | "notes_translated": { | ||
| 116 | "es": "Elysia timida (Risso, 1818) colonizing the shallow waters | 126 | "es": "Elysia timida (Risso, 1818) colonizing the shallow waters | ||
| 117 | of the Mar Menor Lagoon (Spain) exhibit a brown and a green morph. It | 127 | of the Mar Menor Lagoon (Spain) exhibit a brown and a green morph. It | ||
| 118 | was hypothesised that these morphs were the result of feeding | 128 | was hypothesised that these morphs were the result of feeding | ||
| 119 | preferentially on brown and green algae, respectively. E. timida and | 129 | preferentially on brown and green algae, respectively. E. timida and | ||
| 120 | its potential food sources, Acetabularia acetabulum (Chlorophyta) and | 130 | its potential food sources, Acetabularia acetabulum (Chlorophyta) and | ||
| 121 | Halopteris filicina (Heterokontophyta) were collected by snorkelling | 131 | Halopteris filicina (Heterokontophyta) were collected by snorkelling | ||
| 122 | during April 2010. Photosynthetic pigments were analysed by HPLC, | 132 | during April 2010. Photosynthetic pigments were analysed by HPLC, | ||
| 123 | photo-physiological parameters were estimated by PAM fluorometry and | 133 | photo-physiological parameters were estimated by PAM fluorometry and | ||
| 124 | body colour was characterized by spectral reflectance. Digital | 134 | body colour was characterized by spectral reflectance. Digital | ||
| 125 | photography was used to count the number and area of red spots (small | 135 | photography was used to count the number and area of red spots (small | ||
| 126 | red dots on the slug's surface) on the parapodia of the 2 morphs. In | 136 | red dots on the slug's surface) on the parapodia of the 2 morphs. In | ||
| 127 | the laboratory, green E. timida was fed with A. acetabulum cultured | 137 | the laboratory, green E. timida was fed with A. acetabulum cultured | ||
| 128 | under 2 light treatments (high light, 600 mu mol E m(-2) s(-1) and low | 138 | under 2 light treatments (high light, 600 mu mol E m(-2) s(-1) and low | ||
| 129 | light, 40 mu mol E m(-)2 s(-1)), and digital photography was used to | 139 | light, 40 mu mol E m(-)2 s(-1)), and digital photography was used to | ||
| 130 | monitor colour alterations in E. timida. Spectral reflectance | 140 | monitor colour alterations in E. timida. Spectral reflectance | ||
| 131 | confirmed the colour differences, but both morphs showed a pigment | 141 | confirmed the colour differences, but both morphs showed a pigment | ||
| 132 | composition similar to the green alga A. acetabulum and showed none of | 142 | composition similar to the green alga A. acetabulum and showed none of | ||
| 133 | the pigments present in the brown alga H. filicina, neither | 143 | the pigments present in the brown alga H. filicina, neither | ||
| 134 | immediately after collection of the slugs in situ, nor after the | 144 | immediately after collection of the slugs in situ, nor after the | ||
| 135 | feeding experiment. A. acetabulum grown under high light intensity | 145 | feeding experiment. A. acetabulum grown under high light intensity | ||
| 136 | changed from green to brown colour and E. timida changed to brown | 146 | changed from green to brown colour and E. timida changed to brown | ||
| 137 | colour when fed with high-light acclimated A. acetabulum. Thus, E. | 147 | colour when fed with high-light acclimated A. acetabulum. Thus, E. | ||
| 138 | timida colour differences could not be attributed to feeding on | 148 | timida colour differences could not be attributed to feeding on | ||
| 139 | different algae groups but was likely the result of feeding on A. | 149 | different algae groups but was likely the result of feeding on A. | ||
| 140 | acetabulum growing under different light intensities." | 150 | acetabulum growing under different light intensities." | ||
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| 298 | "es": "Colour morphotypes of Elysia timida (Sacoglossa, | 308 | "es": "Colour morphotypes of Elysia timida (Sacoglossa, | ||
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