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向日葵(Helianthus annuus L.)的一个类GRAS基因改变了转基因拟南芥植株中的赤霉素含量和腋生分生组织的生长。

A GRAS-like gene of sunflower (Helianthus annuus L.) alters the gibberellin content and axillary meristem outgrowth in transgenic Arabidopsis plants.

作者信息

Fambrini M, Mariotti L, Parlanti S, Salvini M, Pugliesi C

机构信息

Dipartimento di Scienze Agrarie, Alimentari ed Agro-ambientali, Università degli Studi di Pisa, Pisa, Italy.

Dipartimento di Biologia, Università degli Studi di Pisa, Pisa, Italy.

出版信息

Plant Biol (Stuttg). 2015 Nov;17(6):1123-34. doi: 10.1111/plb.12358. Epub 2015 Jul 1.

Abstract

The GRAS proteins belong to a plant transcriptional regulator family that function in the regulation of plant growth and development. Despite their important roles, in sunflower only one GRAS gene (HaDella1) with the DELLA domain has been reported. Here, we provide a functional characterisation of a GRAS-like gene from Helianthus annuus (Ha-GRASL) lacking the DELLA motif. The Ha-GRASL gene contains an intronless open reading frame of 1,743 bp encoding 580 amino acids. Conserved motifs in the GRAS domain are detected, including VHIID, PFYRE, SAW and two LHR motifs. Within the VHII motif, the P-H-N-D-Q-L residues are entirely maintained. Phylogenetic analysis reveals that Ha-GRASL belongs to the SCARECROW LIKE4/7 (SCL4/7) subfamily of the GRAS consensus tree. Accumulation of Ha-GRASL mRNA at the adaxial boundaries from P6/P7 leaf primordia suggests a role of Ha-GRASL in the initiation of median and basal axillary meristems (AMs) of sunflower. When Ha-GRASL is over-expressed in Arabidopsis wild-type plants, the number of lateral bolts increases differently from untransformed plants. However, Ha-GRASL slightly affects the lateral suppressor (las-4-) mutation. Therefore, we hypothesise that Ha-GRASL and LAS are not functionally equivalent. The over-expression of Ha-GRASL reduces metabolic flow of gibberellins (GAs) in Arabidopsis and this modification could be relevant in AM development. Phylogenetic analysis includes LAS and SCL4/7 in the same major clade, suggesting a more recent separation of these genes with respect to other GRAS members. We propose that some features of their ancestor, as well as AM initiation and outgrowth, are partially retained in both LAS and SCL4/7.

摘要

GRAS蛋白属于植物转录调节因子家族,在植物生长发育调控中发挥作用。尽管它们具有重要作用,但在向日葵中,仅报道了一个具有DELLA结构域的GRAS基因(HaDella1)。在此,我们对向日葵中一个缺乏DELLA基序的类GRAS基因(Ha-GRASL)进行了功能表征。Ha-GRASL基因包含一个1743 bp的无内含子开放阅读框,编码580个氨基酸。在GRAS结构域中检测到保守基序,包括VHIID、PFYRE、SAW和两个LHR基序。在VHII基序内,P-H-N-D-Q-L残基完全保留。系统发育分析表明,Ha-GRASL属于GRAS系统发育树中的 scarecrow-like4/7(SCL4/7)亚家族。Ha-GRASL mRNA在P6/P7叶原基的近轴边界处积累,表明Ha-GRASL在向日葵中脉和基部腋芽分生组织(AM)的起始中发挥作用。当Ha-GRASL在拟南芥野生型植株中过表达时,侧枝数量的增加与未转化植株不同。然而,Ha-GRASL对侧抑制因子(las-4-)突变的影响较小。因此,我们推测Ha-GRASL和LAS在功能上不等同。Ha-GRASL的过表达降低了拟南芥中赤霉素(GAs)的代谢流,这种改变可能与AM发育有关。系统发育分析将LAS和SCL4/7包含在同一主要分支中,表明这些基因相对于其他GRAS成员的分化时间更近。我们提出,它们祖先的一些特征以及AM的起始和生长在LAS和SCL4/7中都部分保留了下来。

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