TY - JOUR
T1 - Seed chemistry of Sophora chrysophylla (mamane) in relation to diet of specialist avian seed predator Loxioides bailleui (palila) in Hawaii
AU - Banko, P. C.
AU - Cipollini, M. L.
AU - Breton, G. W.
AU - Paulk, E.
AU - Wink, M.
AU - Izhaki, I.
N1 - Funding Information:
Acknowledgments—We acknowledge the Palila Restoration Project staff and interns for field assistance to P.C.B., A. Tei and A. Backhaus for laboratory assistance to Michael Wink, Ann Wolf for conducting mineral analyses, Zvi Harduf for conducting amino acid analyses, Dennis LaPointe and Donald Gardner for reviewing the manuscript, and Kathy Patrick and Ian and Megan Cipollini for continued support and encouragement to M.L.C. Access to the study area was permitted by Hawaii Division of Forestry and Wildlife. Field work and a portion of the laboratory work was supported by US Army Garrison, Hawaii.
Copyright:
Copyright 2008 Elsevier B.V., All rights reserved.
PY - 2002
Y1 - 2002
N2 - This study describes the chemical ecology of a tritrophic interaction among species endemic to the island of Hawaii, USA: a tree (Sophora chrysophylla: mamane), an endangered bird (Loxioides bailleui; palila), and moth larvae (Cydia spp.). Palila and Cydia both specialize on the seed embryos of mamane but avoid eating the seed coats. Palila actively seek out and feed mamane embryos and Cydia larvae to their nestlings. Because mamane embryos contain potentially toxic levels of alkaloids, including broadly toxic quinolizidine alkaloids, and because insects often sequester alkaloids from their food plants, we focus on the questions of why palila forage upon mamane embryos and why they supplement their diet with Cydia larvae. Our data show that mamane embryos contain high amounts of potentially toxic alkaloids, but are well balanced nutritionally and contain lipids, carbohydrates, proteins, amino acids, and minerals at levels that are likely to be sufficient for maintenance and breeding. Mamane seed coats contain lower levels of alkaloids and nutrients, somewhat higher levels of phenolics, and much higher levels of nondigestible fiber. Taken together, these results suggest that palila have evolved tolerance to high levels of alkaloids and that they forage upon embryos primarily because of their availability in the habitat and high nutritional reward. Our data also suggest that Cydia are used by palila because they are readily accessible, nontoxic, and nutritious; the larvae apparently do not sequester alkaloids while feeding upon mamane seeds. Our results are interpreted with respect to the likelihood of current and historical coadaptive responses in this ecologically isolated and simplified island setting.
AB - This study describes the chemical ecology of a tritrophic interaction among species endemic to the island of Hawaii, USA: a tree (Sophora chrysophylla: mamane), an endangered bird (Loxioides bailleui; palila), and moth larvae (Cydia spp.). Palila and Cydia both specialize on the seed embryos of mamane but avoid eating the seed coats. Palila actively seek out and feed mamane embryos and Cydia larvae to their nestlings. Because mamane embryos contain potentially toxic levels of alkaloids, including broadly toxic quinolizidine alkaloids, and because insects often sequester alkaloids from their food plants, we focus on the questions of why palila forage upon mamane embryos and why they supplement their diet with Cydia larvae. Our data show that mamane embryos contain high amounts of potentially toxic alkaloids, but are well balanced nutritionally and contain lipids, carbohydrates, proteins, amino acids, and minerals at levels that are likely to be sufficient for maintenance and breeding. Mamane seed coats contain lower levels of alkaloids and nutrients, somewhat higher levels of phenolics, and much higher levels of nondigestible fiber. Taken together, these results suggest that palila have evolved tolerance to high levels of alkaloids and that they forage upon embryos primarily because of their availability in the habitat and high nutritional reward. Our data also suggest that Cydia are used by palila because they are readily accessible, nontoxic, and nutritious; the larvae apparently do not sequester alkaloids while feeding upon mamane seeds. Our results are interpreted with respect to the likelihood of current and historical coadaptive responses in this ecologically isolated and simplified island setting.
KW - Coadaptation
KW - Cydia
KW - Hawaii
KW - Loxioides bailleui
KW - Mamane
KW - Nutrition
KW - Palila
KW - Quinolizidine alkaloids
KW - Secondary metabolites
KW - Seed predation
KW - Sophora chrysophylla
KW - Toxins
UR - https://www.scopus.com/pages/publications/0035990054
UR - https://www.scopus.com/pages/publications/0035990054#tab=citedBy
U2 - 10.1023/A:1016248502927
DO - 10.1023/A:1016248502927
M3 - Article
C2 - 12199503
AN - SCOPUS:0035990054
SN - 0098-0331
VL - 28
SP - 1393
EP - 1410
JO - Journal of Chemical Ecology
JF - Journal of Chemical Ecology
IS - 7
ER -