Spatial Analysis of the Ecogeographic Diversity of Wild Creeping Cucumber (Melothria pendula L.) for In Situ and Ex Situ Conservation in Mexico

Plants Pub Date : 2024-09-13 DOI:10.3390/plants13182572
Rosalinda González-Santos, Luis Hernández-Sandoval, Mauricio Parra-Quijano
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Abstract

Melothria pendula L., a wild relative of cucurbit crops, is also used for food and as a medicinal plant in Mexico. The objective of this study was to ecogeographically characterize the known populations of M. pendula in Mexico, determining its adaptive range and possible sites for in situ and ex situ conservation. To achieve this goal, we compiled a dataset of 1270 occurrences of M. pendula from herbarium and botanical databases and individual observations. Adaptive scenarios were generated through the development of an ecogeographic land characterization (ELC) map, preceded by the identification of abiotic variables influencing the species’ distribution. Eleven bioclimatic, edaphic, and geophysical variables were found to be important for the species’ distribution. The ELC map obtained contained 21 ecogeographic categories, with 14 exhibiting the presence of M. pendula. By analyzing ecogeographic representativeness, 111 sites of high interest were selected for the efficient collection of M. pendula in Mexico. Eight high-priority hotspots for future in situ conservation of M. pendula were also identified based on their high ecogeographic diversity, with only three of these hotspots located within protected natural areas. In this study, ecogeographic approaches show their potential utility in conservation prioritization when genetic data are scarce, a very common condition in crop wild relatives.
墨西哥野生爬行黄瓜(Melothria pendula L.)生态地理多样性的空间分析,以促进原地和异地保护
Melothria pendula L.是葫芦科作物的一种野生近缘植物,在墨西哥也被用作食物和药用植物。本研究的目的是从生态地理学角度描述墨西哥垂盆草的已知种群特征,确定其适应范围以及原地和异地保护的可能地点。为了实现这一目标,我们从标本馆、植物学数据库和个人观察中整理出了一个包含 1270 个垂丝草出现点的数据集。在确定影响该物种分布的非生物变量之前,通过绘制生态地理土地特征图(ELC)生成了适应方案。研究发现,有 11 个生物气候、土壤和地球物理变量对物种的分布非常重要。绘制的 ELC 图包含 21 个生态地理类别,其中 14 个类别存在垂叶榕。通过分析生态地理代表性,选出了 111 个具有较高关注度的地点,以便在墨西哥有效采集垂丝草。根据生态地理的高度多样性,还确定了未来就地保护垂丝草的八个高度优先热点地区,其中只有三个热点地区位于自然保护区内。在这项研究中,生态地理学方法显示了其在遗传数据稀缺的情况下确定保护优先次序的潜在作用,而这在作物野生近缘植物中是非常常见的情况。
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