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百脉根 Noot-Bop-Coach-Like1 基因对于根瘤、蜜腺、叶片和花的发育是必需的。

Lotus japonicus NOOT-BOP-COCH-LIKE1 is essential for nodule, nectary, leaf and flower development.

机构信息

Institute of Plant Sciences Paris-Saclay IPS2, CNRS, INRA, Université Paris-Sud, Université Evry, Université Paris-Saclay, Bâtiment 630, 91405, Orsay, France.

Institute of Plant Sciences Paris-Saclay IPS2, Paris Diderot, Sorbonne Paris-Cité, Bâtiment 630, 91405, Orsay, France.

出版信息

Plant J. 2018 Jun;94(5):880-894. doi: 10.1111/tpj.13905. Epub 2018 May 4.

Abstract

The NOOT-BOP-COCH-LIKE (NBCL) genes are orthologs of Arabidopsis thaliana BLADE-ON-PETIOLE1/2. The NBCLs are developmental regulators essential for plant shaping, mainly through the regulation of organ boundaries, the promotion of lateral organ differentiation and the acquisition of organ identity. In addition to their roles in leaf, stipule and flower development, NBCLs are required for maintaining the identity of indeterminate nitrogen-fixing nodules with persistent meristems in legumes. In legumes forming determinate nodules, without persistent meristem, the roles of NBCL genes are not known. We thus investigated the role of Lotus japonicus NOOT-BOP-COCH-LIKE1 (LjNBCL1) in determinate nodule identity and studied its functions in aerial organ development using LORE1 insertional mutants and RNA interference-mediated silencing approaches. In Lotus, LjNBCL1 is involved in leaf patterning and participates in the regulation of axillary outgrowth. Wild-type Lotus leaves are composed of five leaflets and possess a pair of nectaries at the leaf axil. Legumes such as pea and Medicago have a pair of stipules, rather than nectaries, at the base of their leaves. In Ljnbcl1, nectary development is abolished, demonstrating that nectaries and stipules share a common evolutionary origin. In addition, ectopic roots arising from nodule vascular meristems and reorganization of the nodule vascular bundle vessels were observed on Ljnbcl1 nodules. This demonstrates that NBCL functions are conserved in both indeterminate and determinate nodules through the maintenance of nodule vascular bundle identity. In contrast to its role in floral patterning described in other plants, LjNBCL1 appears essential for the development of both secondary inflorescence meristem and floral meristem.

摘要

NOOT-BOP-COCH-LIKE(NBCL)基因是拟南芥 BLADE-ON-PETIOLE1/2 的同源基因。NBCL 是植物形态发生所必需的发育调节剂,主要通过调节器官边界、促进侧生器官分化和获得器官身份来发挥作用。除了在叶片、托叶和花发育中的作用外,NBCL 还需要维持豆科植物不定型固氮结瘤中具有持续分生组织的不定型结瘤的身份。在形成有定形结瘤、没有持续分生组织的豆科植物中,NBCL 基因的作用尚不清楚。因此,我们研究了豌豆 NBCL 基因(LjNBCL1)在定形结瘤身份中的作用,并使用 LORE1 插入突变体和 RNA 干扰介导的沉默方法研究了其在地上器官发育中的功能。在豌豆中,LjNBCL1 参与叶片模式形成,并参与侧芽生长的调节。野生型豌豆叶片由五个小叶组成,在叶片腋部有一对蜜腺。豌豆和紫花苜蓿等豆科植物在叶片基部有一对托叶,而不是蜜腺。在 Ljnbcl1 中,蜜腺发育被废除,表明蜜腺和托叶具有共同的进化起源。此外,在 Ljnbcl1 结瘤中观察到来自结瘤血管分生组织的异位根和结瘤血管束血管的重组。这表明 NBCL 功能通过维持结瘤血管束身份在不定型和定形结瘤中都得到保守。与在其他植物中描述的其在花模式形成中的作用相反,LjNBCL1 似乎对次生花序分生组织和花分生组织的发育都是必不可少的。

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