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温带木本植物休眠芽的裸芽形态及其分类和地理分布。

Naked resting bud morphologies and their taxonomic and geographic distributions in temperate, woody floras.

机构信息

Organismic and Evolutionary Biology, Harvard University, Cambridge, MA, 02138, USA.

The Arnold Arboretum of Harvard University, Boston, MA, 02131, USA.

出版信息

New Phytol. 2021 Oct;232(2):523-536. doi: 10.1111/nph.17506. Epub 2021 Jun 19.

Abstract

Resting bud cataphylls are often assumed to play an essential protective role in winter due to their widespread presence among temperate, woody plants. This view is challenged by our documentation of significant numbers of temperate woody angiosperm taxa with naked buds that overwinter without cataphyll protection. We inventoried temperate, woody angiosperm taxa reported to have resting buds without cataphyll protection in winter and for the first time characterised the morphological and functional diversity of naked buds. Using this new classification of bud types, the taxonomic and geographic distributions of taxa with naked buds were summarised and relationships between plant functional traits and bud type were investigated. Naked buds are not, as long presumed, markedly rare in temperate, woody floras. They occur in at least 87 genera in 42 families throughout the angiosperm phylogeny in various morphologically distinct manifestations. The geographic distribution of species with naked buds in temperate areas was found to be associated with summer precipitation, but not with winter climatic variables. Resting bud structure is not necessarily a trait optimised solely for winter survival. A taxon's bud composition may be influenced by factors such as biogeographic history and ontogenetic pattern of leaf formation over the growing season.

摘要

休眠芽的芽鳞通常被认为在冬季具有重要的保护作用,因为它们广泛存在于温带木本植物中。然而,我们记录到大量温带木本被子植物类群的有性芽没有芽鳞保护就能越冬,这对上述观点提出了挑战。我们对冬季没有芽鳞保护的休眠芽的温带木本被子植物类群进行了清查,首次对无芽鳞芽的形态和功能多样性进行了描述。利用这种新的芽类型分类,总结了有无芽鳞芽的类群的分类和地理分布,并研究了植物功能性状与芽类型之间的关系。无芽鳞芽并不像以前认为的那样在温带木本植物区系中明显罕见。它们至少存在于 42 个科的 87 个属中,在被子植物的整个系统发育中以各种不同的形态表现出来。在温带地区,有性芽无芽鳞的物种的地理分布与夏季降水有关,而与冬季气候变量无关。休眠芽结构不一定是专门为冬季生存而优化的特征。芽的组成可能受到生物地理历史和生长季节中叶形成的个体发育模式等因素的影响。

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