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花后花被片的功能:臭堇(毛茛科)中宿存萼片对种子发育的贡献。

Post-floral perianth functionality: contribution of persistent sepals to seed development in Helleborus foetidus (Ranunculaceae).

机构信息

Estación Biológica de Doñana, Consejo Superior de Investigaciones Científicas, Avenida de María Luisa s/n, E-41013 Sevilla, Spain.

出版信息

Am J Bot. 2005 Sep;92(9):1486-91. doi: 10.3732/ajb.92.9.1486.

Abstract

The perianth persists after flowering in many plants, yet its post-floral functionality has been little investigated, and the few studies available provide ambiguous evidence. This paper tests the hypothesis that the green persistent sepals of the perennial herb, Helleborus foetidus, contribute to the plant's fitness by enhancing seed number and/or size. Post-floral contribution of the calyx to fruit and seed development was evaluated by manipulating sepal number and measuring the effect on follicle size, seed set, seeds per follicle, and mean seed mass. The allometric relationship between calyx size and follicle mass was examined for flower buds, open flowers, and immature fruits differing in follicle number. Calyx manipulation had no significant effect on follicle size, seed set, or number of seeds per follicle, but it did have a significant influence on the size of individual seeds. Calyx size and mean seed mass were positively, linearly related. The calyx mass/seed number ratio declined with increasing number of follicles per fruit. The persistent sepals of Helleborus do contribute resources to the development of seeds, although there is not evidence of post-floral allometric adjustment of the calyx mass/follicle number ratio that could compensate for variations in seed number per fruit.

摘要

在许多植物中,花被在开花后仍然存在,但它的花期后功能尚未得到充分研究,而且现有的少数研究提供了模棱两可的证据。本文检验了以下假设:多年生草本植物嚏根草的绿色持久花萼通过增加种子数量和/或大小来促进植物的适应性。通过操纵花萼的数量并测量对心皮大小、结实率、每个心皮的种子数和平均种子质量的影响,评估了花萼在果实和种子发育中的花期后贡献。检查了花萼大小和心皮质量之间的异速生长关系,涉及心皮数量不同的花蕾、开放花朵和未成熟果实。花萼处理对心皮大小、结实率或每个心皮的种子数没有显著影响,但对单个种子的大小有显著影响。花萼大小和平均种子质量呈正线性相关。随着每个果实中心皮数量的增加,花萼质量/种子数量的比例下降。嚏根草的持久花萼确实为种子的发育提供了资源,尽管没有证据表明花萼质量/心皮数量的比例在花期后会进行适应调整,以补偿每个果实中种子数量的变化。

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