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被子植物细胞分裂素特异性葡糖基转移酶的进化多样化和十字花科中 cis-玉米素 O-葡糖基转移酶基因缺失之谜。

Evolutionary diversification of cytokinin-specific glucosyltransferases in angiosperms and enigma of missing cis-zeatin O-glucosyltransferase gene in Brassicaceae.

机构信息

Laboratory of Pollen Biology, Institute of Experimental Botany of the Czech Academy of Sciences, Rozvojová 263, 165 02, Prague 6, Czech Republic.

Laboratory of Hormonal Regulations in Plants, Institute of Experimental Botany of the Czech Academy of Sciences, Rozvojová 263, 165 02, Prague 6, Czech Republic.

出版信息

Sci Rep. 2021 Apr 12;11(1):7885. doi: 10.1038/s41598-021-87047-8.

Abstract

In the complex process of homeostasis of phytohormones cytokinins (CKs), O-glucosylation catalyzed by specific O-glucosyltransferases represents one of important mechanisms of their reversible inactivation. The CK O-glucosyltransferases belong to a highly divergent and polyphyletic multigene superfamily of glycosyltransferases, of which subfamily 1 containing UDP-glycosyltransferases (UGTs) is the largest in the plant kingdom. It contains recently discovered O and P subfamilies present in higher plant species but not in Arabidopsis thaliana. The cis-zeatin O-glucosyltransferase (cisZOG) genes belong to the O subfamily encoding a stereo-specific O-glucosylation of cis-zeatin-type CKs. We studied different homologous genes, their domains and motifs, and performed a phylogenetic reconstruction to elucidate the plant evolution of the cisZOG gene. We found that the cisZOG homologs do not form a clear separate clade, indicating that diversification of the cisZOG gene took place after the diversification of the main angiosperm families, probably within genera or closely related groups. We confirmed that the gene(s) from group O is(are) not present in A. thaliana and is(are) also missing in the family Brassicaceae. However, cisZOG or its metabolites are found among Brassicaceae clade, indicating that remaining genes from other groups (UGT73-group D and UGT85-group G) are able, at least in part, to substitute the function of group O lost during evolution. This study is the first detailed evolutionary evaluation of relationships among different plant ZOGs within angiosperms.

摘要

在植物激素细胞分裂素(CKs)的动态平衡的复杂过程中,特定的 O-葡糖基转移酶催化的 O-葡糖苷化是其可逆失活的重要机制之一。CK O-葡糖基转移酶属于高度分化和多源的糖基转移酶超家族,其中含有 UDP-糖基转移酶(UGTs)的亚家族 1 是植物界中最大的亚家族。它包含最近在高等植物物种中发现的 O 和 P 亚家族,但在拟南芥中不存在。顺式玉米素 O-葡糖基转移酶(cisZOG)基因属于 O 亚家族,编码顺式玉米素型 CKs 的立体特异性 O-葡糖苷化。我们研究了不同的同源基因、它们的结构域和基序,并进行了系统发育重建,以阐明 cisZOG 基因在植物进化中的作用。我们发现 cisZOG 同源物没有形成一个明确的独立分支,这表明 cisZOG 基因的多样化发生在主要被子植物科的多样化之后,可能发生在属内或密切相关的群体中。我们证实 O 组的基因不存在于拟南芥中,也不存在于十字花科中。然而,cisZOG 或其代谢物在十字花科分支中被发现,这表明其他组(UGT73 组 D 和 UGT85 组 G)的剩余基因至少部分能够替代在进化过程中丢失的 O 组的功能。这项研究是对被子植物中不同植物 ZOG 之间关系的首次详细进化评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5756/8041765/ca7120870576/41598_2021_87047_Fig1_HTML.jpg

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