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AGL24在拟南芥中作为开花促进因子起作用,并受春化作用正向调控。

AGL24 acts as a promoter of flowering in Arabidopsis and is positively regulated by vernalization.

作者信息

Michaels Scott D, Ditta Gary, Gustafson-Brown Cindy, Pelaz Soraya, Yanofsky Martin, Amasino Richard M

机构信息

Department of Biochemistry, University of Wisconsin-Madison, Madison, WI 53706, USA.

出版信息

Plant J. 2003 Mar;33(5):867-74. doi: 10.1046/j.1365-313x.2003.01671.x.

Abstract

MADS-domain-containing transcription factors comprise a large family of regulators that have diverse roles in plant development, including the regulation of flowering time. AGAMOUS-LIKE 20/SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 (SOC1) and FRUITFUL act to promote flowering, whereas FLOWERING LOCUS C (FLC), FLOWERING LOCUS M/MADS AFFECTING FLOWERING1, and SHORT VEGETATIVE PHASE are inhibitors of flowering. Here we report that AGAMOUS-LIKE 24 (AGL24) also plays a role in the regulation of flowering time. agl24 mutants are late flowering and overexpression of AGL24 causes early flowering in wild-type and late-flowering-mutant backgrounds. The effect of AGL24 overexpression is most pronounced in autonomous-pathway-mutant and FRIGIDA-containing backgrounds. The behavior of AGL24 is most similar to that of SOC1. Like SOC1, AGL24 mRNA levels are upregulated by vernalization. Unlike SOC1, however, AGL24 mRNA levels are not affected by FLC, and therefore AGL24 may represent an FLC-independent target of the vernalization pathway. There is also evidence for cross-talk between AGL24 and SOC1. When overexpressed, SOC1 and AGL24 are able to upregulate each other's expression. Thus, AGL24 represents another component in a network of MADS-domain-containing transcription factors that regulate flowering time.

摘要

含MADS结构域的转录因子构成了一个庞大的调节因子家族,它们在植物发育中具有多种作用,包括对开花时间的调控。类AGAMOUS 20/ CONSTANS1过表达抑制因子(SOC1)和FUL起促进开花的作用,而开花位点C(FLC)、开花位点M/影响开花的MADS1以及短营养期是开花的抑制因子。在此我们报道,类AGAMOUS 24(AGL24)在开花时间调控中也发挥作用。agl24突变体开花延迟,而在野生型和晚花突变体背景中过表达AGL24会导致早花。AGL24过表达的效应在自主途径突变体和含有FRIGIDA的背景中最为明显。AGL24的行为与SOC1最为相似。与SOC1一样,AGL24的mRNA水平通过春化作用上调。然而,与SOC1不同的是,AGL24的mRNA水平不受FLC影响,因此AGL24可能代表春化途径中一个不依赖FLC的靶点。也有证据表明AGL24与SOC1之间存在相互作用。当SOC1和AGL24过表达时,它们能够上调彼此的表达。因此,AGL24代表了调控开花时间的含MADS结构域转录因子网络中的另一个组分。

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