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Intraspecific variation in growth of marsh macrophytes in response to salinity and soil type: Implications for wetland restoration

机译:盐分和土壤类型对沼泽大型植物生长的种内变化:对湿地恢复的影响

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摘要

Genetic diversity within plant populations can influence plant community structure along environmental gradients. In wetland habitats, salinity and soil type are factors that can vary along gradients and therefore affect plant growth. To test for intraspecific growth variation in response to these factors, a greenhouse study was conducted using common plants that occur in northern Gulf of Mexico brackish and salt marshes. Individual plants of Distichlis spicata, Phragmites australis, Schoenoplectus californicus, and Schoenoplectus robustus were collected from several locations along the coast in Louisiana, USA. Plant identity, based on collection location, was used as a measure of intraspecific variability. Prepared soil mixtures were organic, silt, or clay, and salinity treatments were 0 or 18 psu. Significant intraspecific variation in stem number, total stem height, or biomass was found in all species. Within species, response to soil type varied, but increased salinity significantly decreased growth in all individuals. Findings indicate that inclusion of multiple genets within species is an important consideration for marsh restoration projects that include vegetation plantings. This strategy will facilitate establishment of plant communities that have the flexibility to adapt to changing environmental conditions and, therefore, are capable of persisting over time.
机译:植物种群内的遗传多样性可以沿着环境梯度影响植物群落结构。在湿地生境中,盐度和土壤类型是可以随梯度变化并因此影响植物生长的因素。为了测试响应这些因素的种内生长变化,使用在墨西哥湾北部微咸和盐沼中常见的植物进行了温室研究。 Distichlis spicata,芦苇,Schoenoplectus californicus和Schoenoplectusrobustus的单株植物是从美国路易斯安那州沿海的多个地点收集的。基于收集位置的植物身份被用作种内变异性的量度。制备的土壤混合物为有机,粉砂或粘土,盐度处理为0或18 psu。在所有物种中,茎数,总茎高或生物量均存在明显的种内差异。在物种内部,对土壤类型的反应各不相同,但盐分的增加显着降低了所有个体的生长。研究结果表明,在种内包括多个种系是包括植物种植在内的沼泽恢复项目的重要考虑因素。该策略将有助于建立具有适应不断变化的环境条件的灵活性的植物群落,因此能够随着时间的推移而持续存在。

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