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Dev Cell. 2013 Feb 11;24(3):271-82. doi: 10.1016/j.devcel.2012.12.017. Epub 2013 Jan 31.
2
Racemose inflorescences of monocots: structural and morphogenetic interaction at the flower/inflorescence level.单子叶植物的总状花序:花/花序水平的结构和形态发生相互作用。
Ann Bot. 2013 Nov;112(8):1553-66. doi: 10.1093/aob/mcs246. Epub 2012 Nov 20.
3
Phylogenetic relationships in Cyperaceae subfamily Mapanioideae inferred from pollen and plastid DNA sequence data.基于花粉和质体 DNA 序列数据推断莎草科藨草亚科的系统发育关系。
Am J Bot. 2003 Jul;90(7):1071-86. doi: 10.3732/ajb.90.7.1071.
4
Sympodial structure of spikelets in the tribe Schoeneae (Cyperaceae).小穗的合轴结构在莎草科薹草族中。
Am J Bot. 2004 Jan;91(1):24-36. doi: 10.3732/ajb.91.1.24.
5
Flower or spikelet? Understanding the morphology and development of reproductive structures in Exocarya (Cyperaceae, Mapanioideae, Chrysitricheae).花还是小穗?了解 Exocarya(莎草科,Mapanioideae,Chrysitricheae)生殖结构的形态和发育。
Am J Bot. 2006 Sep;93(9):1241-50. doi: 10.3732/ajb.93.9.1241.
6
The role of auxin transport during inflorescence development in maize (Zea mays, Poaceae).生长素在玉米花序发育过程中的作用。
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MADS-box gene expression and implications for developmental origins of the grass spikelet.MADS-box 基因的表达及其对禾本科小穗发育起源的意义。
Am J Bot. 2009 Aug;96(8):1419-29. doi: 10.3732/ajb.0900062. Epub 2009 Jul 10.
8
Morphology and development of the gynoecium in Centrolepidaceae: The most remarkable range of variation in Poales.中央胎座目雌蕊形态和发育:禾本科中最显著的变异范围。
Am J Bot. 2009 Nov;96(11):1925-40. doi: 10.3732/ajb.0900074. Epub 2009 Oct 9.
9
Robustness and evolvability in the B-system of flower development.花发育 B 系统的稳健性和可进化性。
Ann Bot. 2011 Jun;107(9):1545-56. doi: 10.1093/aob/mcr061. Epub 2011 Mar 25.
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Comparative ontogeny of the cyathium in Euphorbia (Euphorbiaceae) and its allies: exploring the organ-flower-inflorescence boundary.比较大戟属(大戟科)及其近缘植物的杯状聚伞花序的个体发育:探究器官-花-花序的边界。
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花器官发生和基因蛋白定位排除了 Lepironia(莎草科、Mapanioideae、Chrysitricheae)生殖单位的真花学说解释。

Floral ontogeny and gene protein localization rules out euanthial interpretation of reproductive units in Lepironia (Cyperaceae, Mapanioideae, Chrysitricheae).

机构信息

Botany, School of Environmental and Rural Science, University of New England, Armidale, NSW 2351, Australia.

出版信息

Ann Bot. 2013 Jul;112(1):161-77. doi: 10.1093/aob/mct111. Epub 2013 May 30.

DOI:10.1093/aob/mct111
PMID:23723258
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3690996/
Abstract

BACKGROUND AND AIMS

In the sedge subfamily Mapanioideae there are considerable discrepancies between the standard trimerous monocot floral architecture expected and the complex floral and inflorescence morphologies seen. Decades of debate about whether the basic reproductive units are single flowers or pseudanthia have not resolved the question. This paper evaluates current knowledge about Mapaniid reproductive structures and presents an ontogenetic study of the Mapaniid genus Lepironia with the first floral protein expression maps for the family, localizing the products of the APETALA1/FRUITFULL-like (AP1/FUL) MADS-box genes with the aim of shedding light on this conundrum.

METHODS

A range of reproductive developmental stages, from spikelet primordia through to infructescence material, were processed for anatomical and immunohistochemical analyses.

KEY RESULTS

The basic reproductive unit is subtended by a bract and possesses two prophyll-like structures, the first organs to be initiated on the primordium, which grow rapidly, enclosing two whorls of initiating leaf-like structures with intervening stamens and a central gynoecium, formed from an annular primordium. The subtending bract and prophyll-like structures possess very different morphologies from that of the internal leaf-like structures and do not show AP1/FUL-like protein localization, which is otherwise strongly localized in the internal leaf-like structures, stamens and gynoecia.

CONCLUSIONS

Results support the synanthial hypothesis as the evolutionary origin of the reproductive unit. Thus, the basic reproductive unit in Lepironia is an extremely condensed pseudanthium, of staminate flowers surrounding a central terminal pistillate female flower. Early in development the reproductive unit becomes enclosed by a split-prophyll, with the whole structure subtended by a bract.

摘要

背景与目的

在莎草亚科 Mapanioideae 中,标准的三基数单子叶植物花结构与复杂的花和花序形态之间存在相当大的差异。几十年来,关于基本生殖单位是单个花朵还是假花序的争论一直没有解决这个问题。本文评估了关于 Mapaniid 生殖结构的现有知识,并对 Lepironia 属的 Mapaniid 进行了个体发生研究,这是该科的首次花蛋白表达图谱,旨在阐明这一难题。

方法

对一系列生殖发育阶段的小穗原基进行解剖和免疫组织化学分析,直至果序材料。

主要结果

基本生殖单位由苞片和两个类前叶结构所支撑,第一个器官在原基上开始生长,迅速生长,包围着两圈起始的叶状结构,中间有雄蕊和中央雌蕊,由一个环状原基形成。苞片和类前叶结构的形态与内部叶状结构的形态非常不同,并且不显示 AP1/FUL 样蛋白定位,而 AP1/FUL 样蛋白定位在内部叶状结构、雄蕊和雌蕊中则强烈定位。

结论

结果支持了生殖单位的 synanthial 假说作为进化起源。因此,Lepironia 的基本生殖单位是一个非常浓缩的假花序,由雄蕊花围绕中央顶生的雌性花组成。在发育早期,生殖单位被分裂的前叶所包围,整个结构由苞片所支撑。