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藻酸盐衍生寡糖可提高黄瓜(Cucumis sativus L.)的水分胁迫耐受性。

Alginate-derived oligosaccharides promote water stress tolerance in cucumber (Cucumis sativus L.).

机构信息

College of Horticulture, Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, China Agricultural University, Beijing, 100193, China.

Beijing LEILI Marine Bioindustry Inc, Beijing, 100091, China.

出版信息

Plant Physiol Biochem. 2018 Sep;130:80-88. doi: 10.1016/j.plaphy.2018.06.040. Epub 2018 Jun 30.

Abstract

Marine alginate-derived oligosaccharides (ADOs) are prepared from degraded alginate. Our experiments were carried out to determine the mechanism of ADOs to improve resistance to water stress in cucumber (Cucumis sativus L.). We evaluated the effects of ADOs on physiological indices, photosynthesis, reactive oxygen species (ROS) levels, antioxidant enzyme activities, and relative expression levels of drought resistance genes. The growth of drought stressed cucumber decreased markedly. However, treatment with ADOs significantly improved the diameter, fresh weight, photosynthetic rate, transpiration rate, stomatal conductance, maximum quantum yield of photosystem II (Fv/Fm) and chlorophyll degradation; thus, reversing the effects of drought stress. Moreover, the antioxidant levels and ROS scavenging enzyme activities also increased in response to the ADOs. Additionally, the genes involved in abscisic aid (ABA) signaling and the drought stress response, such as superoxide dismutase [Cu-Zn] (CsSOD(Cu-Zn)), the peroxidase superfamily protein (CsPOD3), ABA deficient 2 (CsABA2), responsive to ABA 18 (CsRAB18), abscisic acid insensitive 5 (CsABI5), responsive to dehydration 22 (CsRD22), and responsive to dehydration 29A (CsRD29A) were upregulated by ADOs. The ABA content was also improved by ADOs. Our results suggest that ADOs induced the expression of some antioxidant enzyme synthetic genes involved in the ABA signaling pathway by stimulating ABA synthesis to improve the drought resistance capacity in cucumber.

摘要

海洋褐藻胶衍生低聚糖(ADOs)是由降解的褐藻酸盐制备的。我们的实验旨在确定 ADOs 提高黄瓜(Cucumis sativus L.)对水分胁迫抗性的机制。我们评估了 ADOs 对生理指标、光合作用、活性氧(ROS)水平、抗氧化酶活性以及抗旱相关基因相对表达水平的影响。干旱胁迫下黄瓜的生长明显下降。然而,用 ADOs 处理可显著提高黄瓜的直径、鲜重、光合速率、蒸腾速率、气孔导度、最大光化学量子产量(Fv/Fm)和叶绿素降解;从而逆转干旱胁迫的影响。此外,抗氧化水平和 ROS 清除酶活性也随着 ADOs 的增加而增加。此外,ABA 信号和干旱胁迫响应相关基因,如超氧化物歧化酶[Cu-Zn](CsSOD(Cu-Zn))、过氧化物酶超家族蛋白(CsPOD3)、ABA 缺陷 2(CsABA2)、ABA 响应 18(CsRAB18)、ABA 不敏感 5(CsABI5)、脱水响应 22(CsRD22)和脱水响应 29A(CsRD29A),也被 ADOs 上调。ABA 含量也通过 ADOs 得到提高。我们的结果表明,ADO 通过刺激 ABA 合成,诱导参与 ABA 信号通路的一些抗氧化酶合成基因的表达,从而提高黄瓜的抗旱能力。

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