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单子叶植物中交替氧化酶2(AOX2)的计算机鉴定:一种新的进化情形。

In silico identification of alternative oxidase 2 (AOX2) in monocots: A new evolutionary scenario.

作者信息

Costa José Hélio, Santos Clesivan Pereira Dos, de Sousa E Lima Beatriz, Moreira Netto Anthônio Nunes, Saraiva Kátia Daniella da Cruz, Arnholdt-Schmitt Birgit

机构信息

Functional Genomics and Bioinformatics, Department of Biochemistry and Molecular Biology, Federal University of Ceara, 60451-970, Fortaleza, Ceara, Brazil.

Functional Genomics and Bioinformatics, Department of Biochemistry and Molecular Biology, Federal University of Ceara, 60451-970, Fortaleza, Ceara, Brazil.

出版信息

J Plant Physiol. 2017 Mar;210:58-63. doi: 10.1016/j.jplph.2016.12.009. Epub 2016 Dec 27.

Abstract

We identified AOX2 genes in monocot species from Lemnoideae (Spirodela polyrhiza, Lemna gibba and Landoltia punctata), Pothoideae (Anthurium andraeanum and Anthurium amnicola) and Monsteroideae (Epipremnum aureum) subfamilies within the Araceae, an early-diverging monocot family. These findings highlight the presence of AOX2 in the most ancient monocot ancestor and also that at least partial loss of this gene occurred during speciation events within several monocot orders. The presence of AOX2 in monocot species challenges (1) new understanding of the evolutionary history of the AOX gene family in angiosperms and (2) drives experimental and bioinformatics efforts to explore functional relevance of the two AOX gene family members for plant growth and development. Knowledge gain in this field will impact running strategies on AOX-derived functional marker candidate development for plant breeding.

摘要

我们在泽泻科一个早期分化的单子叶植物科内的浮萍亚科(多根紫萍、青萍和稀脉浮萍)、花烛亚科(安祖花和喜林芋)和龟背竹亚科(绿萝)的单子叶植物物种中鉴定出了AOX2基因。这些发现突出了AOX2在最古老的单子叶植物祖先中的存在,也表明在几个单子叶植物目内的物种形成事件中该基因至少发生了部分丢失。单子叶植物物种中AOX2的存在对(1)被子植物中AOX基因家族进化历史的新理解提出了挑战,并且(2)推动了实验和生物信息学方面的努力,以探索两个AOX基因家族成员对植物生长发育的功能相关性。该领域的知识获取将影响植物育种中基于AOX的功能标记候选物开发的运行策略。

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