用杂交重组分析分离小实蝇两种紧密相连的种定义表型。

IF 2.9 Q2 Biochemistry, Genetics and Molecular Biology
Heng Lin Yeap, Siu Fai Lee, Freya Robinson, Roslyn G Mourant, John A Sved, Marianne Frommer, Alexie Papanicolaou, Owain R Edwards, John G Oakeshott
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引用次数: 6

摘要

背景:特氏小实蝇和新肱骨小实蝇不同步交配;前者只在黄昏时分交配,而后者则在白天交配。这两个物种在前额后叶(愈伤组织)的颜色上也不同,主要是黄色的B. tryyoni和棕色的B. neohumeralis。我们研究了这两个性状在杂交、回交和多代杂交后代中的遗传关系。结果:对亲本种的交配时间进行分析,结果表明,新肱骨小蠊雌虫与新肱骨小蠊雄虫在白天交配,与新肱骨小蠊雄虫在黄昏交配。结果表明,两性回交的愈伤组织颜色和交尾时间存在较大差异,但愈伤组织颜色随交尾时间的变化存在明显的共分离趋势。为了在遗传上分离这两种表型,我们让种间F1杂种在没有交配时间或愈伤组织颜色选择的情况下繁殖25代(F25),发现先进的杂交群体在这两种性状上都趋向于B. tryoni表型。在F25重复株系中选择白天交配,导致两种性状向F26的新肱骨芽孢杆菌表型发生显著的表型转变。然而,我们无法完全恢复新肱骨草的交配时间分布,到F35时,白天交配选择的放松导致愈伤组织向黄昏交配转变,但没有黄色愈伤组织颜色。结论:这两种主要的物种定义性状的遗传是可分离的,但又紧密相连,并且在每种情况下涉及多个基因。实验条件似乎也决定了雌雄同体的交配时间。我们讨论了我们的发现与物种形成理论和驯化的可能影响在产生大量释放菌株不育昆虫控制计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Separating two tightly linked species-defining phenotypes in Bactrocera with hybrid recombinant analysis.

Separating two tightly linked species-defining phenotypes in Bactrocera with hybrid recombinant analysis.

Separating two tightly linked species-defining phenotypes in Bactrocera with hybrid recombinant analysis.

Separating two tightly linked species-defining phenotypes in Bactrocera with hybrid recombinant analysis.

Background: Bactrocera tryoni and Bactrocera neohumeralis mate asynchronously; the former mates exclusively around dusk while the latter mates during the day. The two species also differ in the colour of the post-pronotal lobe (callus), which is predominantly yellow in B. tryoni and brown in B. neohumeralis. We have examined the genetic relationship between the two characters in hybrids, backcrosses and multigeneration hybrid progeny.

Results: Our analysis of the mating time of the parental species revealed that while B. tryoni mate exclusively at dusk, B. neohumeralis females pair with B. neohumeralis males during the day and with B. tryoni males at dusk. We found considerable variance in mating time and callus colour among hybrid backcross individuals of both sexes but there was a strong although not invariant trend for callus colour to co-segregate with mating time in both sexes. To genetically separate these two phenotypes we allowed the interspecific F1 hybrids to propagate for 25 generations (F25) without selection for mating time or callus colour, finding that the advanced hybrid population had moved towards B. tryoni phenotypes for both traits. Selection for day mating in replicate lines at F25 resulted in significant phenotypic shifts in both traits towards B. neohumeralis phenotypes in F26. However, we were unable to completely recover the mating time profile of B. neohumeralis and relaxation of selection for day mating led to a shift back towards dusk mating, but not yellow callus colour, by F35.

Conclusion: We conclude that the inheritance of the two major species-defining traits is separable but tightly linked and involves more than one gene in each case. It also appears that laboratory conditions select for the B. tryoni phenotypes for mating time. We discuss our findings in relation to speciation theory and the likely effects of domestication during the generation of mass release strains for sterile insect control programmes.

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来源期刊
BMC Genetics
BMC Genetics 生物-遗传学
CiteScore
4.30
自引率
0.00%
发文量
77
审稿时长
4-8 weeks
期刊介绍: BMC Genetics is an open access, peer-reviewed journal that considers articles on all aspects of inheritance and variation in individuals and among populations.
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