Distant hybrids of Heliocidaris crassispina (♀) and Strongylocentrotus intermedius (♂): identification and mtDNA heteroplasmy analysis.

IF 3.4 Q1 Agricultural and Biological Sciences BMC Evolutionary Biology Pub Date : 2020-08-11 DOI:10.1186/s12862-020-01667-8
Yaoyao Zhan, Jingxian Sun, Yingying Li, Dongyao Cui, Weijie Zhang, Limeng Yang, Yaqing Chang
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引用次数: 1

Abstract

Background: Distant hybridization between the sea urchin Heliocidaris crassispina (♀) and the sea urchin Strongylocentrotus intermedius (♂) was successfully performed under laboratory conditions. A new variety of hybrid sea urchin (HS hybrid) was obtained. However, the early-development success rates for the HS hybrids were significantly lower than those of purebred H. crassispina or S. intermedius offspring. In addition, it was difficult to distinguish the HS-hybrid adults from the pure H. crassispina adults, which might lead to confusion in subsequent breeding attempts. In this study, we attempted to develop a method to quickly and effectively identify HS hybrids, and to preliminarily investigate the molecular mechanisms underlying the poor early-development success rates in the HS hybrids.

Results: The hybrid sea urchins (HS hybrids) were identified both morphologically and molecularly. There were no significant differences in the test height to test diameter ratios between the HS hybrids and the parents. The number and arrangement of ambulacral pore pairs in the HS hybrids differed from those of the parental lines, which might serve as a useful morphological character for the identification of the HS hybrids. A primer pair that identified the HS hybrids was screened by comparing the mitochondrial genomes of the parental lines. Moreover, paternal leakage induced mitochondrial DNA heteroplasmy in the HS hybrids, which might explain the low rates of early development success in these hybrids.

Conclusions: The distant-hybrid sea urchins were accurately identified using comparative morphological and molecular genetic methods. The first evidence of mtDNA heteroplasmy after the distant hybridization of an echinoderm was also provided.

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禾草圆虫(♀)与中间圆虫(♂)的远缘杂交种鉴定及mtDNA异质性分析。
背景:在实验室条件下成功地对Heliocidaris crassispina(♀)和Strongylocentrotus intermedius(♂)进行了远缘杂交。获得了一个杂交海胆新品种(HS杂交)。然而,高纯度杂交种的早期发育成功率显著低于纯种禾草和中间禾草后代。此外,很难将hs -杂种成虫与纯粗草成虫区分开来,这可能会导致后续育种尝试的混乱。在本研究中,我们试图建立一种快速有效鉴定HS杂交种的方法,并初步探讨HS杂交种早期发育成功率低的分子机制。结果:对杂交海胆(HS杂交种)进行了形态和分子鉴定。高穗杂交种与亲本的试高/试径比无显著差异。杂种的足部孔对数量和排列方式与亲本不同,可作为鉴定杂种的形态学特征。通过比较亲本系的线粒体基因组,筛选鉴定HS杂交种的引物对。此外,父本泄漏导致HS杂交种的线粒体DNA异质性,这可能解释了这些杂交种早期发育成功率低的原因。结论:采用比较形态学和分子遗传学方法对远缘杂交海胆进行了准确鉴定。在棘皮动物的远距离杂交后,mtDNA异质性的第一个证据也被提供。
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来源期刊
BMC Evolutionary Biology
BMC Evolutionary Biology 生物-进化生物学
CiteScore
5.80
自引率
0.00%
发文量
0
审稿时长
6 months
期刊介绍: BMC Evolutionary Biology is an open access, peer-reviewed journal that considers articles on all aspects of molecular and non-molecular evolution of all organisms, as well as phylogenetics and palaeontology.
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