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BELL1 类同源盒基因调控水稻花序结构和分生组织维持。

BELL1-like homeobox genes regulate inflorescence architecture and meristem maintenance in rice.

机构信息

Department of Biological Sciences, School of Science, The University of Tokyo, Bunkyo-ku, Tokyo, 113-8654, Japan.

National Institute of Genetics, Mishima, 411-8540, Japan.

出版信息

Plant J. 2019 May;98(3):465-478. doi: 10.1111/tpj.14230. Epub 2019 Mar 5.

Abstract

Inflorescence architecture is diverse in angiosperms, and is mainly determined by the arrangement of the branches and flowers, known as phyllotaxy. In rice (Oryza sativa), the main inflorescence axis, called the rachis, generates primary branches in a spiral phyllotaxy, and flowers (spikelets) are formed on these branches. Here, we have studied a classical mutant, named verticillate rachis (ri), which produces branches in a partially whorled phyllotaxy. Gene isolation revealed that RI encodes a BELL1-type homeodomain transcription factor, similar to Arabidopsis PENNYWISE/BELLRINGER/REPLUMLESS, and is expressed in the specific regions within the inflorescence and branch meristems where their descendant meristems would soon initiate. Genetic combination of an ri homozygote and a mutant allele of RI-LIKE1 (RIL1) (designated ri ril1/+ plant), a close paralog of RI, enhanced the ri inflorescence phenotype, including the abnormalities in branch phyllotaxy and rachis internode patterning. During early inflorescence development, the timing and arrangement of primary branch meristem (pBM) initiation were disturbed in both ri and ri ril1/+ plants. These findings suggest that RI and RIL1 were involved in regulating the phyllotactic pattern of the pBMs to form normal inflorescences. In addition, both RI and RIL1 seem to be involved in meristem maintenance, because the ri ril1 double-mutant failed to establish or maintain the shoot apical meristem during embryogenesis.

摘要

花序结构在被子植物中多种多样,主要由枝条和花朵的排列方式决定,这种排列方式被称为叶序。在水稻(Oryza sativa)中,主要的花序轴称为穗轴,它以螺旋状叶序产生初级枝条,而这些枝条上形成花朵(小穗)。在这里,我们研究了一个经典的突变体,称为轮生穗轴(ri),它以部分轮生叶序产生枝条。基因分离表明,RI 编码一个 BELL1 型同源结构域转录因子,类似于拟南芥 PENNYWISE/BELLRINGER/REPLUMLESS,并在花序和枝条分生组织的特定区域表达,其后代分生组织很快就会在这些区域起始。ri 纯合子和 RI-LIKE1(RIL1)(指定为 ri ril1/+植物)突变等位基因的遗传组合,RIL1 是 RI 的近同源基因,增强了 ri 花序表型,包括枝条叶序和穗轴节间模式的异常。在早期花序发育过程中,ri 和 ri ril1/+植物中初级枝条分生组织(pBM)起始的时间和排列都受到干扰。这些发现表明 RI 和 RIL1 参与调节 pBM 的叶序模式,以形成正常的花序。此外,RI 和 RIL1 似乎都参与分生组织的维持,因为 ri ril1 双突变体在胚胎发生过程中无法建立或维持茎尖分生组织。

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