期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Chromosome-level genome of diamondback terrapin provides insight into the genetic basis of salinity adaptation
1
作者 Hui JIANG Zhongkai WANG +18 位作者 Xiaofei ZHAI Guangwei MA Tongliang WANG Fei KONG Wenkai LUO Ziwei YU Haorong LI Yandong REN Rui GUO Li JIAN Longhui ZHAO Ziye ZUO Shoupeng PAN Zan QI Yuxin ZHANG Zhuoya LIU Dingqi RAO Yongxin LI Jichao WANG 《Integrative Zoology》 2025年第6期1227-1245,共19页
Diamondback terrapins(Malaclemys terrapin centrata)exhibit strong environmental adaptability and live in both freshwater and saltwater.However,the genetic basis of this adaptability has not been the focus of research.... Diamondback terrapins(Malaclemys terrapin centrata)exhibit strong environmental adaptability and live in both freshwater and saltwater.However,the genetic basis of this adaptability has not been the focus of research.In this study,we successfully constructed a~2.21-Gb chromosome-level genome assembly for M.t.centrata using highcoverage and high-depth genomic sequencing data generated on multiple platforms.The M.t.centrata genome contains 25 chromosomes and the scaffold N50 of~143.75 Mb,demonstrating high continuity and accuracy.In total,53.82% of the genome assembly was composed of repetitive sequences,and 22435 protein-coding genes were predicted.Our phylogenetic analysis indicated that M.t.centrata was closely related to the red-eared slider turtle(Trachemys scripta elegans),with divergence approximately~23.6 million years ago(Mya)during the early Neogene period of the Cenozoic era.The population size of M.t.centrata decreased significantly over the past~14 Mya during the Cenozoic era.Comparative genomic analysis indicated that 36 gene families related to ion transport were expanded and several genes(AQP3,solute carrier subfamily,and potassium channel genes)underwent specific amino acid site mutations in the M.t.centrata genome.Changes to these ion transport-related genes may have contributed to the remarkable salinity adaptability of diamondback terrapin.The results of this study not only provide a high-quality reference genome for M.t.centrata but also elucidate the possible genetic basis for salinity adaptation in this species. 展开更多
关键词 chromosome-level genome assembly comparative genomics ion transport Malaclemys terrapin centrata PHYLOGENY salinity adaptation
原文传递
Artificial nesting habitats as a conservation strategy for turtle populations experiencing global change
2
作者 John P.WNEK Walter F.BIEN Harold W.AVERY 《Integrative Zoology》 SCIE CSCD 2013年第2期209-221,共13页
Diamondback terrapins(Malaclemys terrapin)inhabit estuaries in eastern USA and may tolerate salinity of seawater for short durations.Many North American estuaries are adversely affected by anthropogenic impacts,such a... Diamondback terrapins(Malaclemys terrapin)inhabit estuaries in eastern USA and may tolerate salinity of seawater for short durations.Many North American estuaries are adversely affected by anthropogenic impacts,such as pollution,dredging and invasion by non-native plants.Many nesting areas have been altered or destroyed,causing terrapins to nest on roadsides and artificial islands made of dredged substrate from bottom sediments.Shading by non-native plants may suppress development and reduce survival of embryos.In Barnegat Bay,New Jersey,USA,there is a mosaic of natural and degraded terrapin nesting habitats.We investigated the effects of dredge soil and shade on the hatching success of diamondback terrapins to determine whether nesting habitat could be increased by using dredged bottom sediments.In year 1,unshaded nests in natural loamy-sand had the highest hatching success(55.2%),while nests in dredge soil produced no hatchlings.In year 2,nests in unshaded loamy-sand had a hatching success of 85.3%,whereas those in dredge soil,aged 1 year,had a hatching success of 59.4%.Dredge soil improved as an incubation substrate after aging 1 year by the washout of salt.Nest temperatures were generally cool and produced mostly male hatchlings.Uncontaminated dredge soil may provide suitable nesting substrates for diamondback terrapins if used after one year,and may be particularly beneficial if used for constructing islands that provide new nesting sites with reduced access of mammalian predators. 展开更多
关键词 DREDGE estuarine turtles hatching success Malaclemys terrapin nesting ecology nest temperature nest substrate SHADE
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部