EpiNet · Understanding how biotic interactions influence the distribution of epiphytic orchids in tropical forests: An integrated network approach.
„Хоризонт 2020“ — Действия „Мария Склодовска-Кюри“
- Период
- 2019-09-02 → 2021-09-01
- Финансиране от ЕС
- 166 320 €
- Участници
- 1
- Схема
- MSCA-IF-EF-ST
Линиите свързват координатора с партньорите.
Накратко на български
Епифитните орхидеи в тропическите гори се изследват чрез връзките им с дърветата-гостоприемници и микоризните гъби при различен климат. Това помага да се разбере как сложните взаимодействия между видовете влияят върху разпределението им, което е важно за опазването на природата.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Understanding how biotic interactions influence the distribution of epiphytic orchids in tropical forests: An integrated network approach.
Understanding the factors that limit species distribution is a longstanding question in ecology. In land plants, species distribution is simultaneously limited by multiple factors, including climate, dispersal ability, competition, and species' physiological tolerance. The ecological requirements of obligate inter-specific interactions impose additional, often overlooked, limitations. How complex interactions influence plant species distribution has received little attention despite its relevance for species conservation in the face of global change. EpiNet addressed this gap by investigating how two obligate partners, interacting with climate, influence plant distribution in mega-diverse tropical assemblages. Tropical epiphytic orchids provide an exceptional study model because they depend on two partners to germinate and grow: a host tree and mycorrhizal fungi. I proposed to study tripartite interaction networks of tropical epiphytic orchids with their partners under different ecological conditions. I had three specific goals. First, I investigated whether the diversity of mycorrhizal fungi affect the distribution of orchid species across different types of tropical forests (cloud, temperate and dry forests). Since those forests differ in their climate (temperature, rainfall, and sunlight), I expected them to harbor different communities of orchids, host trees and mycorrhizal fungi. Furthermore, climate can also have an effect on species' traits that are important for survival. For example, roots of epiphytes need to take water from the atmosphere. Therefore, the roots of species growing in dry forests should be especially adapted to drought, and those growing in cloud forests are not expected to be adapted to water scarcity. To assess whether root traits differed significantly between forests, I investigated several root traits related to water conservation and water transport. Finally, we considered the possibility that orchids might be able to switch their mycorrhizal partners over their lifetimes. Such switches (or temporal turnover) might afford a considerable acclimation potential to the plant. This could enable fairly rapid responses to short‐term fluctuations in growth conditions as well as lasting responses to long‐term climatic trends. Moreover, mycorrhizal replacement is an understudied variable that may influence plant establishment success. I found that we were lacking not only empirical evidence of turnover, but also a unifying conceptual framework to tackle the issue. Therefore, I put forward a theoretical framework that will assist researchers in assessing whether orchids replace mycorrhizal partners or retain them for a lifetime.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
Understanding the factors that limit species distribution is a longstanding question in ecology. In land plants, species distribution is simultaneously limited by multiple factors, including climate, dispersal ability, competition, and species' physiological tolerance. The ecological requirements of obligate inter-specific interactions impose additional, often over-looked, limitations. How complex interactions influence plant species distribution has received little attention despite its relevance for species conservation in the face of global change. EpiNet will address this gap by investigating how two obligate partners, interacting with abiotic factors, influence plant distribution in mega-diverse tropical assemblages. Tropical epiphytic orchids provide an exceptional study model because they depend on two partners to germinate and grow: a host tree and mycorrhizal fungi. To this end, I propose to study tripartite interaction networks of tropical epiphytic orchids with their partners under different ecological conditions. I will examine the effect of host trees and mycorrhizal fungal diversity on orchid species distribution across geographical and local gradients, analyzing how abiotic factors such as temperature, humidity and light availability affect these interactions. I will establish germination experiments to assess whether orchids replace mycorrhizal partners over ontogeny or retain them for a lifetime. Mycorrhizal replacement is an understudied variable that may influence seedling establishment success. The methodology combines extensive data collection in natural communities (from dry to cloud tropical forests in the Colombian Andes), cutting-edge techniques in molecular biology (mycorrhizal DNA meta-barcoding), and advanced statistical analyses (tripartite networks). This innovative and integrated approach will provide an unprecedented, comprehensive understanding of the ecological factors influencing the distribution of tropical epiphytic orchids.
Оригинален текст от CORDIS (на английски).
Участници
- KATHOLIEKE UNIVERSITEIT LEUVEN · LeuvenКоординаторБелгия
Връзки
Данни: CORDIS, © Европейски съюз
