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灯笼果属中的中国灯笼是一种有利的形态新颖性,提高了植物的适应性。

Chinese lantern in Physalis is an advantageous morphological novelty and improves plant fitness.

机构信息

State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, Chinese Academy of Sciences, Nanxincun 20, Xiangshan, 100093, Beijing, China.

University of Chinese Academy of Sciences, Yuquan Road 19, 100049, Beijing, China.

出版信息

Sci Rep. 2019 Jan 24;9(1):596. doi: 10.1038/s41598-018-36436-7.

Abstract

The origin of morphological novelties is an important but neglected issue of evolutionary biology. The fruit of the genus Physalis, a berry, is encapsulated by a novel morphological feature of the post-floral, accrescent calyx that is referred to as a Chinese lantern. The evolutionary developmental genetics of the Chinese lantern have been investigated in the last decade; however, the selective values of the morphological novelty remain elusive. Here, we measured the photosynthetic parameters of the fruiting calyces, monitored microclimatic variation within the Chinese lanterns during fruit development, performed floral-calyx-removal experiments, and recorded the fitness-related traits in Physalis floridana. Ultimately, we show that the green-fruiting calyx of Physalis has photosynthetic capabilities, thus serving as an energy source for fruit development. Moreover, the developing Chinese lantern provides a microclimate that benefits the development and maturation of berry and seed, and it improves plant fitness in terms of fruit/seed weight and number, and fruit maturation under low-temperature environments. Furthermore, the lantern structure facilitates the dispersal of fruits and seeds by water and wind. Our results suggest that the Chinese lantern morphology of Physalis is an evolutionary adaptive trait and improves plant fitness, thus providing new insight into the origin of morphological novelties.

摘要

形态新颖的起源是进化生物学中一个重要但被忽视的问题。灯笼果属植物的果实被一个独特的形态特征所包裹,即花后增大的宿存花萼,被称为中国灯笼。在过去的十年中,中国灯笼的进化发育遗传学已经得到了研究;然而,形态新颖的选择价值仍然难以捉摸。在这里,我们测量了果实花萼的光合作用参数,监测了果实发育过程中中国灯笼内的微气候变化,进行了花萼去除实验,并记录了Physalis floridana 的与适应度相关的特征。最终,我们表明 Physalis 的绿色果实花萼具有光合作用能力,因此可以作为果实发育的能量来源。此外,发育中的中国灯笼提供了一个微气候,有利于浆果和种子的发育和成熟,并提高了植物在低温环境下的果实/种子重量和数量以及果实成熟度方面的适应度。此外,灯笼结构通过水和风促进果实和种子的传播。我们的结果表明,Physalis 的中国灯笼形态是一种进化适应的特征,提高了植物的适应度,从而为形态新颖的起源提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/604c/6345875/a66225d35c8f/41598_2018_36436_Fig1_HTML.jpg

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