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Diversity and distribution of the endophytic fungal community in eucalyptus leaves

机译:桉树叶片内生真菌群落的多样性和分布

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Eucalyptus species are among the most widely grown and most economically valuable trees worldwide. In Brazil, eucalyptus is of major environmental and economic importance because it generates thousands of jobs and offers an alternative to using wood from native forests. In forest ecosystems, plant shoots are considered a common habitat for various microorganisms, and plants of the family Myrtaceae are an important source of fungal biodiversity. However, very little is known about the diversity and microbial distribution in eucalyptus leaves. This study aimed at showing the diversity and distribution of endophytic fungi in the leaves of eucalyptus plants aged 18 and 72 months. The leaves were collected at the onset of the rainy period, during the rainy period, and during the dry period. Diversity was measured using DNA extraction, 18S rRNA subunit amplification, denaturing gradient gel electrophoresis (DGGE), and sequencing of eluted bands. The endophytic fungal community was affected by plant location. Differences observed in the distribution of the phylogenetic groups found in the upper, middle and lower thirds of the tree canopy indicate that the endophytic community distribution in eucalyptus is dependent on leaf position. The age of the plants affected the diversity of endophytic fungi in Eucalyptus "urograndis". Phylogenetic analysis showed that the phyla Basidiomycota and Ascomycota dominate in the environments studied. The description of endophytic fungal diversity in this important forest species is an important step for assessing this genetic resource in the search for metabolites and processes that can contribute to improving plant development.
机译:桉树属世界范围内生长最广泛,最具经济价值的树木。在巴西,桉树具有重要的环境和经济意义,因为它创造了成千上万的就业机会,并提供了替代使用原生林木材的选择。在森林生态系统中,植物新芽被认为是各种微生物的常见栖息地,桃金娘科的植物是真菌生物多样性的重要来源。但是,人们对桉树叶的多样性和微生物分布知之甚少。这项研究旨在显示18和72个月大的桉树植物叶片中内生真菌的多样性和分布。在雨季开始,雨季和干燥期间收集叶子。使用DNA提取,18S rRNA亚基扩增,变性梯度凝胶电泳(DGGE)和洗脱带测序来测量多样性。内生真菌群落受到植物位置的影响。在树冠的上部,中部和下部三分之二中发现的系统发育群分布上的差异表明,桉树的内生植物群落分布取决于叶的位置。植物的年龄影响了“桉树”内生真菌的多样性。系统发育分析表明,在所研究的环境中,担子菌门和子囊门占主导。在这个重要的森林物种中描述内生真菌的多样性是评估该遗传资源以寻找可有助于改善植物发育的代谢物和过程的重要步骤。

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