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首页> 外文期刊>Molecules >Oligo-Carrageenans Enhance Growth and Contents of Cellulose, Essential Oils and Polyphenolic Compounds in Eucalyptus globulus Trees
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Oligo-Carrageenans Enhance Growth and Contents of Cellulose, Essential Oils and Polyphenolic Compounds in Eucalyptus globulus Trees

机译:寡聚角叉菜胶可促进桉树中纤维素,精油和多酚类化合物的生长和含量

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Eucalyptus globulus (Myrtaceae) originated in Australia and has been introduced in countries with temperate weather in order to obtain wood for cellulose extraction and building purposes. In this work, we analyzed the potential stimulation of growth in height and trunk diameter as well as the content of holo-cellulose, α-cellulose (long cellulose chains), essential oils and polyphenolic compounds (PPCs) in E. globulus trees treated with oligo-carrageenans (OCs) kappa, lambda and iota, at 1 mg mL−1, once a week, four times in total and then cultivated for three additional years without further treatment. Eucalyptus treated with OCs kappa, lambda and iota showed an increase in height, mainly with OCs kappa and iota by 58% and 47%, respectively, and in trunk diameter by 44% and 40%, respectively. In addition, OCs induced an increase in the contents of holo-cellulose and α-cellulose, mainly OCs kappa and iota which increased holo-cellulose by 8% and 5%, respectively, and α-cellulose by 16 and 13%, respectively. Moreover, OCs increased the content of essential oils, mainly OCs kappa and iota by 67% and 39%, respectively. Furthermore, OCs decreased the concentration of total phenolic compounds but differentially changed the concentration of several PPCs such as genistein, rutin, ellagic acid, morin, luteolin and quercetin with potential antimicrobial activities. Thus, marine algae OCs kappa, lambda and iota stimulate growth of E. globulus trees by enhancing height and trunk diameter as well as the content of α-cellulose, total essential oils, and some PPCs with potential antimicrobial activities.
机译:球形桉(Myrtaceae)起源于澳大利亚,并已引入到气候温和的国家,以便获得用于纤维素提取和建筑目的的木材。在这项工作中,我们分析了用E.globulus树处理的大叶黄杨(E. globulus)树中身高和躯干直径以及全纤维素,α-纤维素(长纤维素链),精油和多酚化合物(PPC)含量的潜在刺激。每周一次,每次1 mg mL -1 ,总共四次,然后再培养3年,无需进一步处理。用OCκ,λ和iota处理的桉树显示出高度增加,主要是OCκ和iota分别增加了58%和47%,树干直径分别增加了44%和40%。另外,OCs引起全纤维素和α-纤维素含量的增加,主要是OCs的kappa和iota分别使全纤维素的含量增加了8%和5%,而α-纤维素的含量分别增加了16%和13%。此外,OCs增加了精油的含量,主要是OCs的kappa和iota分别增加了67%和39%。此外,OCs降低了总酚类化合物的浓度,但差异地改变了一些具有潜在抗菌活性的PPCs的浓度,如金雀异黄素,芦丁,鞣花酸,香兰素,木犀草素和槲皮素。因此,海藻OCs的kappa,lambda和iota可以通过增加高度和树干直径以及α-纤维素,总精油和一些具有潜在抗菌活性的PPC的含量来刺激小球藻的生长。

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