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猕猴桃花器官基因 APETALA2 可变剪接并在 miR172 缺失的不定态花中积累。

Kiwifruit floral gene APETALA2 is alternatively spliced and accumulates in aberrant indeterminate flowers in the absence of miR172.

机构信息

The New Zealand Institute for Plant & Food Research Mt Albert, Auckland Mail Centre, Private Bag 92169, Auckland 1142, New Zealand.

出版信息

Plant Mol Biol. 2012 Mar;78(4-5):417-29. doi: 10.1007/s11103-012-9877-2.

Abstract

In Arabidopsis, the identity of perianth and reproductive organs are specified by antagonistic action of two floral homeotic genes, APETALA2 (AP2) and AGAMOUS (AG). AP2 is also negatively regulated by an evolutionary conserved interaction with a microRNA, miR172, and has additional roles in general plant development. A kiwifruit gene with high levels of homology to AP2 and AP2-like genes from other plant species was identified. The transcript was abundant in the kiwifruit flower, particularly petal, suggesting a role in floral organ identity. Splice variants were identified, all containing both AP2 domains, including a variant that potentially produces a shorter transcript without the miRNA172 targeting site. Increased AP2 transcript accumulation was detected in the aberrant flowers of the mutant ‘Pukekohe dwarf’ with multiple perianth whorls and extended petaloid features. In contrast to normal kiwifruit flowers, the aberrant flowers failed to accumulate miR172 in the developing whorls, although accumulation was detected at the base of the flower. An additional role during dormancy in kiwifruit was proposed based on AP2 transcript accumulation in axillary buds before and after budbreak.

摘要

在拟南芥中,花被和生殖器官的身份由两个花同源基因,APETALA2(AP2)和 AGAMOUS(AG)的拮抗作用决定。AP2 还受到与 microRNA,miR172 的进化保守相互作用的负调控,并且在一般植物发育中有额外的作用。从其他植物物种鉴定到与 AP2 和 AP2 样基因具有高度同源性的猕猴桃基因。该转录物在猕猴桃花中大量表达,特别是花瓣中,表明其在花器官身份中具有作用。鉴定了剪接变体,都包含 AP2 结构域,包括一种可能产生没有 miRNA172 靶向位点的较短转录本的变体。在具有多个花被轮和延长的花瓣状特征的突变体“Pukekohe dwarf”的异常花中,检测到 AP2 转录物的积累增加。与正常猕猴桃花不同,异常花在发育的轮中未能积累 miR172,尽管在花的基部检测到积累。基于休眠期间腋芽中 AP2 转录物的积累,提出了猕猴桃的另一个作用。

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