PREMISE: Seed dispersal is extremely important for the recovery and restoration of forest communities. Relict tree genus Zelkova possesses a unique dispersal mechanism: mature fruits fall with the entire twig, and the dried leaves that are still attached function as a drag-enhancing appendage, carrying the fruits away from the parent tree. This singular adaptation has never been investigated in Z. abelicea. METHODS: Drop tests with dispersal units and individual fruits of Z. abelicea were performed in controlled conditions to measure their dispersal velocity and to define their flight mode. RESULTS: Zelkova abelicea uses both slowly falling dispersal units with chaotic motion, as well as fast falling individual fruits using a straight path. The falling velocity of Z. abelicea dispersal units is 1.53 m s-1, which is virtually identical to that of the East Asiatic Z. serrata (1.51 m s-1). In contrast, the falling velocity of individual fruits was (Formula presented.) m s-1 (Z. serrata: 5.36 m s-1). CONCLUSIONS: Members of the genus Zelkova, growing today in distant regions, show remarkable evolutionary conservation of the velocity and flight mechanics of their dispersal units. This is surprising because the Mediterranean and East Asiatic Zelkova species have been separated at least 15–20 mya. Zelkova abelicea, although growing in the Mediterranean with completely different forest structure and composition, still uses the same dispersal mechanism. The dispersal capacity of the genus Zelkova is less efficient than that of other wind dispersed trees, and it presumably evolved for short-distance ecological spread and not for long-distance biogeographical dispersal.

Certini, D., Fazan, L., Nakayama, N., Viola, I.M., Kozlowski, G. (2020). Velocity of the falling dispersal units in Zelkova abelicea: remarkable evolutionary conservation within the relict tree genus. AMERICAN JOURNAL OF BOTANY, 107(12), 1831-1838 [10.1002/ajb2.1581].

Velocity of the falling dispersal units in Zelkova abelicea: remarkable evolutionary conservation within the relict tree genus

Viola I. M.;
2020

Abstract

PREMISE: Seed dispersal is extremely important for the recovery and restoration of forest communities. Relict tree genus Zelkova possesses a unique dispersal mechanism: mature fruits fall with the entire twig, and the dried leaves that are still attached function as a drag-enhancing appendage, carrying the fruits away from the parent tree. This singular adaptation has never been investigated in Z. abelicea. METHODS: Drop tests with dispersal units and individual fruits of Z. abelicea were performed in controlled conditions to measure their dispersal velocity and to define their flight mode. RESULTS: Zelkova abelicea uses both slowly falling dispersal units with chaotic motion, as well as fast falling individual fruits using a straight path. The falling velocity of Z. abelicea dispersal units is 1.53 m s-1, which is virtually identical to that of the East Asiatic Z. serrata (1.51 m s-1). In contrast, the falling velocity of individual fruits was (Formula presented.) m s-1 (Z. serrata: 5.36 m s-1). CONCLUSIONS: Members of the genus Zelkova, growing today in distant regions, show remarkable evolutionary conservation of the velocity and flight mechanics of their dispersal units. This is surprising because the Mediterranean and East Asiatic Zelkova species have been separated at least 15–20 mya. Zelkova abelicea, although growing in the Mediterranean with completely different forest structure and composition, still uses the same dispersal mechanism. The dispersal capacity of the genus Zelkova is less efficient than that of other wind dispersed trees, and it presumably evolved for short-distance ecological spread and not for long-distance biogeographical dispersal.
2020
Certini, D., Fazan, L., Nakayama, N., Viola, I.M., Kozlowski, G. (2020). Velocity of the falling dispersal units in Zelkova abelicea: remarkable evolutionary conservation within the relict tree genus. AMERICAN JOURNAL OF BOTANY, 107(12), 1831-1838 [10.1002/ajb2.1581].
Certini, D.; Fazan, L.; Nakayama, N.; Viola, I. M.; Kozlowski, G.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/1039563
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