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142 results for “mating behaviour”

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Figure 3 in Observations on the mating behaviour and related copulatory anatomy of Alaena margaritacea Eltringham, 1929 (Papilionoidea: Lycaenidae: Poritiinae)

Figure 3 – Mating pair, female on top and male below: A – red arrow indicates tip of female abdomen; B – images showing the titled angle of copulation: C – close-up of Fig. 3B.

opencc-by-4.0Jul 2021View details →
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Figure 1 in Observations on the mating behaviour and related copulatory anatomy of Alaena margaritacea Eltringham, 1929 (Papilionoidea: Lycaenidae: Poritiinae)

Figure 1 – Google Earth polygon (shaded area) of TL breeding area of Alaena margaritacea; an area of about 650 m2.

opencc-by-4.0Jul 2021View details →
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Figure 5 in Observations on the mating behaviour and related copulatory anatomy of Alaena margaritacea Eltringham, 1929 (Papilionoidea: Lycaenidae: Poritiinae)

Figure 5 – The red arrow points to the shiny black button ventrally at a distance away from the posterior tip of a living female abdomen.

opencc-by-4.0Jul 2021View details →
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Figure 6 in Observations on the mating behaviour and related copulatory anatomy of Alaena margaritacea Eltringham, 1929 (Papilionoidea: Lycaenidae: Poritiinae)

Figure 6 – SEM micrograph of ostium bursa of A. margaritacea female. It is situated ventrally towards the posterior end of the abdomen. Note the hardened cup and the substance covering the orifice (image: W. Landman).

opencc-by-4.0Jul 2021View details →
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Figure 2 in Observations on the mating behaviour and related copulatory anatomy of Alaena margaritacea Eltringham, 1929 (Papilionoidea: Lycaenidae: Poritiinae)

Figure 2 – Mating pair, female on top and male below: A – female wafting her wings; B – pair moved to a position where they are screened by an unidentified fern.

opencc-by-4.0Jul 2021View details →
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Figure 4 in Observations on the mating behaviour and related copulatory anatomy of Alaena margaritacea Eltringham, 1929 (Papilionoidea: Lycaenidae: Poritiinae)

Figure 4 – Abdomen of a female specimen. The red arrow points to the shiny black button-like structure situated at a relative distance away from the posterior tip (marked "p"). This button or sclerotized cup is part of the complex ostium bursa, which partially covers the vaginal orifice.

opencc-by-4.0Jul 2021View details →
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figure 10 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 10 Canonical variate analysis (cva) of differences in promere shape between males with different mating status (bars: grey – mated males; white –non-mated males).

opencc-by-4.0Jun 2022View details →
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figure 9 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 9 Canonical variate analysis (cva) of differences in walking leg shape between males and females with different mating status (rectangles: black – mated males, white – non-mated males; circles: black – mated females, white – non-mated females).

opencc-by-4.0Jun 2022View details →
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figure 7 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 7 Canonical variate analysis (cva) of differences in antennal shape between males and females with different mating status (rectangles: black – mated males, white – non-mated males; circles: black – mated females, white – non-mated females).

opencc-by-4.0Jun 2022View details →
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figure 8 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 8 Canonical variate analysis (cva) of differences in head shape between males and females with different mating status (rectangles: black – mated males, white – non-mated males; circles: black – mated females, white – non-mated females). Downloaded from Brill.com 06/24/2024 12:52:58AM via Open Access. This is an open access article distributed under the terms of the CC-BY 4.0 license. https://creativecommons.org/licenses/by/4.0/

opencc-by-4.0Jun 2022View details →
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figure 3 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 3 Individuals of both sexes and sequences of sexual behaviour in M. unilineatum. A – male; B – female; C, D, E – contact; F, G, H, I, J, K – extrusion of gonopods (arrows); L, M, N – copulation. photo by B. Ilić

opencc-by-4.0Jun 2022View details →
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figure 2 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 2 Digitalized landmarks on antenna (A) and leg (C) of the species M. unilineatum are shown, as well as digitalized landmarks and semi-landmarks on its head (B), promere (D), and opisthomere (E). See supplementary text S1 for descriptions of landmarks and Downloaded semi-landmarksfrom.Brill.com 06/24/2024 12:52:58AM via Open Access. This is an open access article distributed under the terms of the CC-BY 4.0 license. https://creativecommons.org/licenses/by/4.0/

opencc-by-4.0Jun 2022View details →
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figure 6 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 6 Morphological variation in centroid size (CS) of antennae (A), head (B), walking legs (C), promeres (D), and opisthomeres (E) between individuals with different mating status. The median with the first and the third quartiles is shown (in boxes), together with the range of variation and outliers.

opencc-by-4.0Jun 2022View details →
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figure 5 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 5 Morphological variation of body mass (A), body length (B), antennal length (C), walking leg length (D), trunk width (E), and trunk height (F) between males and females with different mating status. Morphological variation of flagellum length (FL) between mated and non-mated males (G) is also depicted. The median with the first and the third quartiles is shown (in boxes), together with the range of variation and outliers.

opencc-by-4.0Jun 2022View details →
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figure 4 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions

figure 4 Percentage of copulations in female and male choice tests (grey bars – mating with previous partner; white bars – mating with new partner).

opencc-by-4.0Jun 2022View details →
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FIGURE 5 in Dancing with the devil: courtship behaviour, mating evidences and population structure of the Mobula tarapacana (Myliobatiformes: Mobulidae) in a remote archipelago in the Equatorial Mid-Atlantic Ocean

FIGURE 5 | Distinct courtship behaviors of sicklefin devil rays Mobula tarapacana observed in the Saint Peter and Saint Paul Archipelago. A. Female being chased by two males. B. Male overlapping female. C. Male trying to overlap on female. D. Male overlaps the female with two more males chasing. E–F. Sequence of male following female.

opencc-by-4.0Oct 2020View details →
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FIGURE 3 in Dancing with the devil: courtship behaviour, mating evidences and population structure of the Mobula tarapacana (Myliobatiformes: Mobulidae) in a remote archipelago in the Equatorial Mid-Atlantic Ocean

FIGURE 3 | Female (grey) and male (black) Mobula tarapacana size distribution (disk width- DW, in meters) per month, in the Saint Peter and Saint Paul Archipelago (SPSPA), from December 2008 to June 2016. Red dashed line= size at maturity for males (White et al., 2006); blue dashed line= size at maturity for females (Notarbartolo di Sciara, 1988).

opencc-by-4.0Oct 2020View details →
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Figure 8 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)

Figure 8. Canonical variate analysis (CVA) of gonopod shape in relation with mating status (circle: black – nonmated males; grey – mated males).

opencc-by-4.0Jul 2017View details →
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Figure 7 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)

Figure 7. Principal component analysis (PCA) of gonopod shape in relation with mating status (circle: black – nonmated males; grey – mated males).

opencc-by-4.0Jul 2017View details →
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Figure 4 in Mating behaviour and its relationship with morphological features in the millipede Pachyiulus hungaricus (Karsch, 1881) (Myriapoda, Diplopoda, Julida)

Figure 4. Percentage of copulations achieved with the previous partner (white bars) and with a new partner (black bars) in female and male choice tests.

opencc-by-4.0Jul 2017View details →

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International Brain Laboratory public data

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