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雌雄异株的热带树木薄树的气孔和叶脉特征之间缺乏协调性为其提供了功能上的好处。

Lack of coordination between stomatal and vein traits provides functional benefits to the dioecious tropical tree Myrsine coriacea.

机构信息

Programa de Pós-graduação em Biologia Vegetal, Universidade Federal do Espírito Santo, Vitória, ES, Brazil.

Laboratório de Botânica, Departamento de Biologia, Universidade Federal do Espírito Santo, Alegre, ES, Brazil.

出版信息

Physiol Plant. 2022 May;174(3):e13719. doi: 10.1111/ppl.13719.

Abstract

Climate change will affect the distribution of many tropical plant species. However, the understanding of how dioecious tropical species cope with different environmental conditions is still limited. To address this issue, we investigated how secondary trait attributes in populations of the dioecious tropical tree Myrsine coriacea change along an altitudinal gradient. Eighty individual plants (40 male and 40 female) were selected among seven natural populations. Leaf variation in morphological and stomatal traits, and carbon and nitrogen isotopic compositions were analyzed. Female plants had greater isotopic leaf carbon composition (δ C) and nitrogen content than male plants, increasing their carboxylation capacity. Plants of both sexes had smaller stomata, greater water-use efficiency (greater δ C), and greater nitrogen isotopic composition (δ N) at higher altitudes. They also showed lower δ N and had greater carbon: nitrogen ratios at lower altitudes. There was a lack of coordination between stomatal and vein traits, which was compensated for by variation in specific leaf areas. This mechanism was essential for increasing plant performance under the limiting conditions found by the species at higher altitudes.

摘要

气候变化将影响许多热带植物物种的分布。然而,对于雌雄异株的热带物种如何应对不同的环境条件,我们的了解仍然有限。为了解决这个问题,我们调查了雌雄异株的热带树木杨梅的种群中,次生特征属性如何沿着海拔梯度发生变化。在七个自然种群中,我们选择了 80 株个体植物(40 株雄性和 40 株雌性)。分析了叶片在形态和气孔特征、碳和氮稳定同位素组成方面的变化。与雄性植物相比,雌性植物的叶片碳组成(δC)和氮含量更大,从而增加了它们的羧化能力。雌雄两性植物的气孔较小,在高海拔地区具有更高的水分利用效率(更大的δC)和更高的氮稳定同位素组成(δN)。它们在低海拔地区也表现出较低的δN 和更高的碳氮比。气孔和叶脉特征之间缺乏协调性,这通过比叶面积的变化得到了补偿。在高海拔地区,这种机制对于提高植物在限制条件下的表现至关重要。

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