三类红树植物的气孔特征:主要红树植物、次要红树植物和辅助红树植物

Febrina Artauli Siahaan, Dewi Lestari
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摘要

在红树林生态系统中,有三种类型的红树林栖息在不同的环境梯度和区域。这三种类型的红树林表现出不同的适应策略。气孔作为植物系统的重要器官,在植物的适应性方面发挥着重要作用。了解气孔对于理解植物的生理状况和对环境条件的反应至关重要。本研究旨在研究三种不同类型红树林的气孔特征,深入了解其潜在的适应策略。这项研究于 2022 年 11 月在泗水古农安亚尔红树林植物园进行。我们从主要类型、副类型和次要类型中选择了两个具有代表性的红树林物种。使用奥林巴斯显微镜在 100 xs 和 400 x 放大倍率下观察每个红树林物种的气孔,以确定气孔类型、密度和大小。结果表明,所研究的红树林类型在气孔类型、密度、气孔长度和宽度方面存在差异。与次红树林和伴生红树林相比,主要红树林物种的气孔密度最低,气孔尺寸最大。主要红树林、伴生红树林和次要红树林类型气孔特征的多样性凸显了它们的适应性和生态策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stomatal Characteristics in Three Groups of Mangrove Plants: Major, Minor, and Associate
Three types of mangroves inhabit different environmental gradients and zones within the mangrove ecosystem. These three mangrove types exhibit distinct adaptation strategies. Stomata, as a crucial organ of the plant system, play a significant role in the adaptability of plants. Understanding stomata is essential for comprehending the physiological conditions and responses of plants to environmental conditions. This research aimed to study the stomatal characteristics of three different mangrove types and gain a deeper understanding of their potential adaptive strategies. This research was conducted at the Mangrove Botanical Garden Gunung Anyar, Surabaya, in November 2022. We selected two representative mangrove species from the major, associate, and minor types. Stomata of each mangrove species were observed to identify the stomatal type, density, and size using an Olympus microscope at 100 xs and 400 x magnifications. The results showed there were variations in stomatal type, density, and stomatal length and width among studied mangrove types. Major mangrove species exhibited the lowest stomatal density and the largest size of stomata compared to minor and associated mangroves. The diversity of stomatal traits among major, associate, and minor mangrove types underscores their adaptations and ecological strategies.
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