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植物激素包括乙烯在内,被招募到茄科植物花萼的膨胀中。

Plant hormones including ethylene are recruited in calyx inflation in Solanaceous plants.

机构信息

Department of Molecular Plant Genetics, Max-Planck-Institute for Plant Breeding Research, Carl-von-Linné-Weg 10, 50829 Cologne, Germany.

出版信息

J Plant Physiol. 2012 Jul 1;169(10):940-8. doi: 10.1016/j.jplph.2012.02.015. Epub 2012 Apr 30.

DOI:10.1016/j.jplph.2012.02.015
PMID:22551956
Abstract

Plant hormones direct many processes of floral and post-floral morphogenesis in Angiosperms. However, their role in shaping floral morphological novelties, such as inflated calyx syndrome (ICS) exhibited by a few genera of the Solanaceae, remains unknown. In Withania and Physalis, sepals resume growth after pollination and encapsulate the mature fruit to form a balloon-like structure, i.e. ICS. The epidermal cells of calyx show enlargement and lobation post-fertilization. Application of hormones to depistillated flower buds of Withania revealed that cytokinins and gibberellins mimic fertilization signals. The ICS development is a synchronous step with fruit development; both processes are under the control of more or less the same set of hormones, including cytokinins and gibberellic acids. Interestingly, inhibition of ethylene in the system is sufficient to yield inflated calyx in Withania. In contrast, Tubocapsicum, a closely related species and an evolutionary natural loss mutant of ICS - showed no response to applied hormones, and ethylene led to inflation of the receptacle indirectly. In addition to hormones, the expression of an MPF2-like MADS-box transcription factor in sepals is essential for ICS formation. Nevertheless, the interactions between MPF2-like genes and hormones are barely detectable at the transcript level. Our data provide insight into the role of hormones in generating floral morphological diversity during evolution.

摘要

植物激素指导着被子植物花部和花后形态发生的许多过程。然而,它们在塑造花部形态新特征方面的作用,如茄科少数几个属表现出的膨萼综合征(ICS),仍然未知。在茄属和酸浆属中,萼片在授粉后恢复生长,并包裹成熟的果实,形成气球状结构,即 ICS。萼片的表皮细胞在受精后会增大并出现裂片。将激素应用于去雄花蕾的研究表明,细胞分裂素和赤霉素模拟受精信号。ICS 的发育与果实发育同步;这两个过程都或多或少受到同一组激素的控制,包括细胞分裂素和赤霉素。有趣的是,在该系统中抑制乙烯足以导致茄属膨萼。相比之下,与其密切相关的 Tubocapsicum 是一个进化上自然缺失 ICS 的突变体,对施加的激素没有反应,而乙烯通过间接作用导致花托膨胀。除了激素,MPF2 类 MADS 框转录因子在萼片中的表达对于 ICS 的形成也是必需的。然而,在转录水平上几乎检测不到 MPF2 类基因和激素之间的相互作用。我们的数据为激素在进化过程中产生花部形态多样性方面的作用提供了新的认识。

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