Literature DB >> 28646310

Effects of a dark septate endophyte (DSE) on growth, cadmium content, and physiology in maize under cadmium stress.

Yongmei He1, Zhixin Yang1, Mingrui Li1, Ming Jiang1, Fangdong Zhan2, Yanqun Zu1, Tao Li3, Zhiwei Zhao3.   

Abstract

Dark septate endophytes (DSE) are widely distributed in plant roots grown in stressful habitats, especially in heavy metal-polluted soils. But little is known about the physiological interactions between DSE and plants under heavy metal stress. In the present study, the growth, Cd content, and physiological response of Zea mays L. to a root-colonized DSE, Exophiala pisciphila, were analyzed under Cd stress (0, 5, 10, 20, and 40 mg/kg) in a sand culture experiment. Under high Cd (10, 20, and 40 mg/kg) stress, the DSE colonization in roots increased the maize growth, kept more Cd in roots, and decreased Cd content in shoots. The DSE colonization improved the photosynthesis and induced notable changes on phytohormones but had no significant effect on the antioxidant capability in the maize leaves. Moreover, there were significant positive correlations between the gibberellic acid (GA) content and transpiration rate, zeatin riboside (ZR) content, and photosynthetic rate in maize leaves. These results indicated that the DSE's ability to promote plant growth was related to a decrease on Cd content and the regulation on phytohormone balance and photosynthetic activities in maize leaves.

Entities:  

Keywords:  Cadmium content; Dark septate endophytes; Photosynthesis; Phytohormone; Plant growth promotion

Mesh:

Substances:

Year:  2017        PMID: 28646310     DOI: 10.1007/s11356-017-9459-6

Source DB:  PubMed          Journal:  Environ Sci Pollut Res Int        ISSN: 0944-1344            Impact factor:   4.223


  34 in total

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5.  Diverse strategies conferring extreme cadmium (Cd) tolerance in the dark septate endophyte (DSE), Exophiala pisciphila: evidence from RNA-seq data.

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6.  Effects of the Dark Septate Endophyte (DSE) Exophiala pisciphila on the Growth of Root Cell Wall Polysaccharides and the Cadmium Content of Zea mays L. under Cadmium Stress.

Authors:  Yao Xiao; Meng-Xue Dai; Guang-Qun Zhang; Zhi-Xin Yang; Yong-Mei He; Fang-Dong Zhan
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  6 in total

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