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Development of Novel High-Resolution Melting (HRM) Assays for Gender Identification of Caribbean Flamingo (Phoenicopterus ruber ruber) and other Birds

机译:新型高分辨率融化(HRM)分析方法的开发,用于鉴定加勒比火烈鸟(Phoenicopterus ruber ruber)和其他鸟类的性别

摘要

Unambiguous gender identification (ID) is needed to assess parameters in studies of population dynamics, behavior, and evolutionary biology of Caribbean Flamingo (Phoenicopterus ruber ruber) and other birds. Due to its importance for management and conservation, molecular (DNA-based) avian gender ID assays targeting intron-size differences of the Chromosome Helicase ATPase DNA Binding (CHD) gene of males (CHD-Z) and females (CHD-W) have been developed. Male (ZZ) and female (WZ) genotypes are usually scored as size polymorphisms through agarose or acrylamide gels. For certain species, W-specific restriction sites or multiplex polymerase chain-reaction (PCR) involving CHD-W specific primers are needed.These approaches involve a minimum of three steps following DNA isolation: PCR, gel electrophoresis, and photo-documentation, which limit high throughput scoring and automation potential. In here, a short amplicon (SA) High-resolution Melting Analysis (HRMA) assay for avian gender ID is developed. SA-HRMA of an 81-Base Pair (bp) segment differentiates heteroduplex female (WZ) from homoduplex male (ZZ) genotypes by targeting Single-nucleotide Polymorphisms (SNPs) instead of intron-size differences between CHD-Z and CHD-W genes.To demonstrate the utility of the approach, the gender of Caribbean Flamingo (P. ruber ruber) (17 captive from the Dallas Zoo and 359 wild from Ria Lagartos, Yucatan, Mexico) was determined. The assay was also tested on specimens of Lesser Flamingo (P. minor), Chilean Flamingo (P. chilensis), Saddle-billed Stork (Ephippiorhynchus senegalensis), Scarlet Ibis (Eudocimus ruber), White-bellied Stork (Ciconia abdimii), Roseate Spoonbill (Platalea ajaja), Marabou Stork (Leptoptilos crumeniferus), Greater Roadrunner (Geococcyx californianus), and Attwater's Prairie Chicken (Tympanuchus cupido attwateri). Although the orthologous 81 bp segments of Z and W are highly conserved, sequence alignments with 50 avian species across 15 families revealed mismatches affecting one or more nucleotides within the SA-HRMA forward or reverse primers. Most mismatches were located along the CHD-Z gene that may generate heteroduplex curves and thus gender ID errors. For such cases, taxon and species-specific primer sets were designed. The SA-HRMA gender ID assay can be used in studies of avian ecology and behavior, to assess sex-associated demographics and migratory patterns, and as a proxy to determine the health of the flock and the degree by which conservation and captive breeding programs are functioning.
机译:需要明确的性别识别(ID)来评估加勒比火烈鸟(Phoenicopterus ruber ruber)和其他鸟类的种群动态,行为和进化生物学研究中的参数。由于其对管理和保护的重要性,针对男性(CHD-Z)和女性(CHD-W)染色体解旋酶ATPase DNA结合(CHD)基因的内含子大小差异的分子(基于DNA)鸟类性别ID测定具有已开发。男性(ZZ)和女性(WZ)基因型通常通过琼脂糖或丙烯酰胺凝胶评分为大小多态性。对于某些物种,需要W特异的限制性位点或涉及CHD-W特异引物的多重聚合酶链反应(PCR),这些方法涉及DNA分离后的至少三个步骤:PCR,凝胶电泳和光文档化,限制了高吞吐量评分和自动化潜力。在这里,开发了用于禽类性别ID的短扩增子(SA)高分辨率熔解分析(HRMA)分析。 SA-HRMA的81个碱基对(bp)片段通过靶向单核苷酸多态性(SNP)而不是CHD-Z和CHD-W基因之间的内含子大小差异,将异源双链雌性(WZ)与同源双链雄性(ZZ)基因型区分开为了证明这种方法的实用性,确定了加勒比火烈鸟的性别(墨西哥达拉斯动物园的17名俘虏和墨西哥尤卡坦州的Ria Lagartos的359野性)。还对小火烈鸟(P. minor),智利火烈鸟(P. chilensis),马鞍鹳(Ephippiorhynchus senegalensis),猩红朱鹭(Eudocimus ruber),白腹鹳(Ciconia abdimii),玫瑰酸盐的标本进行了测试琵鹭(Platalea ajaja),鹳鹳(Leptoptilos crumeniferus),大走鹃(Geococcyx californianus)和阿特沃特的草原鸡(Tympanuchus cupido attwateri)。尽管Z和W的直系同源的81 bp片段是高度保守的,但与15个科的50个禽类的序列比对揭示了影响SA-HRMA正向或反向引物中一个或多个核苷酸的错配。大多数错配沿着CHD-Z基因定位,可能会生成异源双链曲线,从而产生性别ID错误。对于这种情况,设计了分类群和物种特异性引物组。 SA-HRMA性别ID分析可用于禽类生态和行为研究,以评估与性别相关的人口统计学和迁徙方式,并可作为确定羊群健康以及保护和圈养繁殖计划的程度的替代指标运作。

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    Chapman Alexandra;

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