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种子形态和光照水平对雌雄同体植物 Amphicarpaea edgeworthii(豆科)生长和繁殖的影响。

Effect of seed morph and light level on growth and reproduction of the amphicarpic plant Amphicarpaea edgeworthii (Fabaceae).

机构信息

State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.

University of Chinese Academy of Sciences, Beijing 100039, China.

出版信息

Sci Rep. 2017 Jan 10;7:39886. doi: 10.1038/srep39886.

Abstract

Amphicarpic plants produce aerial and subterranean fruits on an individual plant, and these heteromorphic diaspores give rise to plants that differ in growth and ecology. Amphicarpaea edgeworthii is a summer annual amphicarpic species that grows over a range of light levels. We aimed to compare the response to shading intensity of plants of A. edgeworthii grown throughout their life cycle from aerial seeds (ASP) and from subterranean seeds (SSP). We hypothesized that vegetative and reproductive growth of plants from ASP and SSP respond differently to light. Plants were grown from ASP and SSP under 0, 46, 71 and 90% shading intensities. With plant height as a covariate, vegetative biomass of ASP and SSP did not differ. Leaf area and seed production of SSP were greater and internode length less than they were for ASP in all shading intensities. Aerial and subterranean seed yield, seed mass and number for both ASP and SSP were highest in full light. Aerial seed yield was affected more than subterranean seed yield by shading intensity. The growth and reproductive responses of ASP and SSP of A. edgeworthii may be adaptive to the range of low to high light environments in which this species grows.

摘要

兼性雌雄同株植物在同一植株上产生气生和地下果实,这些异型孢子产生在生长和生态上有差异的植物。弯果蔊菜是一种夏生兼性雌雄同株物种,生长在一系列光照水平下。我们旨在比较在整个生命周期中从气生种子(ASP)和地下种子(SSP)生长的弯果蔊菜植物对遮荫强度的反应。我们假设,ASP 和 SSP 的营养和生殖生长对光照的反应不同。在 0、46、71 和 90%的遮荫强度下,从 ASP 和 SSP 中生长的植物。用株高作为协变量,ASP 和 SSP 的营养生物量没有差异。在所有遮荫强度下,SSP 的叶面积和种子产量较大,节间长度较小。ASP 和 SSP 的气生和地下种子产量、种子质量和数量在全光照下最高。气生种子产量比地下种子产量受遮荫强度的影响更大。弯果蔊菜 ASP 和 SSP 的生长和生殖反应可能适应于该物种生长的低光照到高光照环境范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28e4/5223113/30f15c979c39/srep39886-f1.jpg

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