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4 results for “Apteryx owenii”
Recent extinctions among Little Spotted Kiwi (Apteryx owenii) and the origin of extant populations
<p>Little Spotted Kiwi (LSK; <i>Apteryx owenii</i>) have the lowest genetic diversity of five currently recognised kiwi species apparently due to a bottleneck when at most five individuals were translocated to Kapiti Island in 1912. Ancient DNA analyses show that LSK also had the lowest genetic diversity of kiwi species historically, possibly due to population bottlenecks during Pleistocene glaciation. We compare genetic diversity between LSK from Kapiti Island (extant), D'Urville Island (extinct) and the South Island of mainland New Zealand (extinct) at 495 bp of the mitochondrial control region (mtDNA) and 15 nuclear microsatellite loci (nDNA). Despite higher sample sizes in extant (<i>n</i> = 31 mtDNA, 97 nDNA) than recently extinct (<i>n</i> = 10 mtDNA, 9 nDNA) populations, extant LSK have at least 78% fewer mtDNA haplotypes and 52% fewer microsatellite alleles than recently extinct LSK. Extant LSK were strongly divergent from historical LSK for both mtDNA and nDNA (<i>F<sub>ST</sub></i> = 0.237 to 0.480), but showed greatest similarity with historical samples from Fiordland near the putative source population of Kapiti founders. Microsatellite data suggest that Kapiti LSK could have arisen from as few as three birds and our mtDNA data show that at least two of the founders were female. Our results indicate that substantial genetic diversity has been lost with the recent extinctions of remnant populations. Locating and protecting any last surviving individuals in presumed extinct populations will require intensive conservation efforts, but could also provide an invaluable source of genetic diversity for the species.</p>
Recent extinctions among Little Spotted Kiwi (Apteryx owenii) and the origin of extant populations
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Data from: Genetic consequences of a century of protection: serial founder events and survival of the little spotted kiwi (Apteryx owenii)
We present the outcome of a century of post-bottleneck isolation of a long-lived species, the little spotted kiwi (Apteryx owenii, LSK) and demonstrate that profound genetic consequences can result from protecting few individuals in isolation. LSK were saved from extinction by translocation of five birds from South Island, New Zealand to Kapiti Island 100 years ago. The Kapiti population now numbers some 1200 birds and provides founders for new populations. We used 15 microsatellite loci to compare genetic variation among Kapiti LSK and the populations of Red Mercury, Tiritiri Matangi and Long Islands that were founded with birds from Kapiti. Two LSK native to D'Urville Island were also placed on Long Island. We found extremely low genetic variation and signatures of acute and recent genetic bottleneck effects in all four populations, indicating that LSK have survived multiple genetic bottlenecks. The Long Island population appears to have arisen from a single mating pair from Kapiti, suggesting there is no genetic contribution from D'Urville birds among extant LSK. The Ne/NC ratio of Kapiti Island LSK (0.03) is exceptionally low for terrestrial vertebrates and suggests that genetic diversity might still be eroding in this population, despite its large census size.
Data from: Genetic consequences of a century of protection: serial founder events and survival of the little spotted kiwi (Apteryx owenii)
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