利用DNA条形码技术鉴定工业绿地日本大田鼠种群遗传多样性及其食用植物资源

Taichi Fujii, Hirokazu Kawamoto, Tomoyasu Shirako, K. Ueno, M. Minami
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引用次数: 1

摘要

在日本爱知县Idemitsu Kosan Co., Ltd.的爱知炼油厂填海建设的工业绿地上,对日本大型田鼠Apodemusspeciosus种群的遗传多样性进行了估计,并对其植物食物资源进行了鉴定。在50只小鼠中共鉴定出6种线粒体D-loop单倍型。捕获个体数最多的生境条件为阔叶树和林下植被丰富。最小跨越网络未形成环状网络,表明种群遗传结构较弱。研究区遗传多样性较低的原因是种群一旦通过30 m以上的水路和公路进入研究区,就与其他种群隔绝。为了确定工业绿地内捕获的小鼠利用了哪些植物性食物资源,从43份粪便样本中提取DNA,通过PCR扩增部分叶绿体rbcL序列。样本完备性曲线计算表明,本研究鉴定的25个分类群约占研究区食性植物资源的90%。在21个植物科中,蔷蔷科(28.0%)、壳壳科(17.2%)、樟科(14.2%)和油菜科(7.7%)占优势。在工业绿地中,优先保护作为其食物资源的植物物种是确保其种群持续生存的重要途径。
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Genetic Diversity of Large Japanese Field Mouse Apodemus speciosus Populations and Identification of their Food Plant Resources using DNA Barcoding in an Industrial Green Space
Estimates of the genetic diversity of Large Japanese field mouse Apodemusspeciosus populations and identification of their plant food resources were conducted in an industrial green space, where were constructed on reclaimed land and belonged to the Aichi Refinery of Idemitsu Kosan Co., Ltd., in Aichi Prefecture, Japan. A total of six mitochondrial D-loop haplotypes were identified in 50 mice. Habitat condition with the highest number of captured individuals had abundant broad-leaved trees and understory vegetation. A minimum spanning network, which did not form a ring-shaped network, revealed that the hereditary population structure was weak. The low genetic diversity observed in the study area was thus attributed to isolation from other populations once the population in the study area by sea and road, which is more than 30 m wide. In order to identify which plant food resources were utilized by mice captured inside the industrial green space, partial chloroplast rbcL sequences were amplified by PCR from DNA extracted from 43 feces samples. Calculations of sample completeness curve revealed that 25 of the taxa identified in this study comprised approximately 90% of the food plant resources in the study area. Of the 21 plant families identified from the obtained rbcL sequences, members of the Rosaceae (28.0%), Fagaceae (17.2%), Lauraceae (14.2%) and Oleaceae (7.7%) were dominant. To ensure the continued survival of A. speciosuspopulation in this industrial green space would be to preferentially conserve plant species that are used as food resources by this species.
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