Ali Basharat, Qian Ping, Sun Rui, Farooq Muhammad A, Gill Rafaqat A, Wang Jian, Azam Muhammad, Zhou Weijun
Institute of Crop Science and Zhejiang Key Laboratory of Crop Germplasm, Zhejiang University, Hangzhou, 310058, China.
Environ Sci Pollut Res Int. 2015 Feb;22(4):3068-81. doi: 10.1007/s11356-014-3551-y. Epub 2014 Sep 19.
In the present study, ameliorating role of hydrogen sulfide (H2S) in oilseed rape (Brassica napus L.) was studied with or without application of H2S donor sodium hydrosulfide (NaHS) (0.3 mM) in hydroponic conditions under three levels (0, 0.1 and 0.3 mM) of aluminum (Al). Results showed that addition of H2S significantly improved the plant growth, photosynthetic gas exchange, and nutrients concentration in the leaves and roots of B. napus plants under Al stress. Exogenously applied H2S significantly lowered the Al concentration in different plant parts, and reduced the production of malondialdehyde and reactive oxygen species by improving antioxidant enzyme activities in the leaves and roots under Al stress. Moreover, the present study indicated that exogenously applied H2S improved the cell structure and displayed clean mesophyll and root tip cells. The chloroplast with well-developed thylakoid membranes could be observed in the micrographs. Under the combined application of H2S and Al, a number of modifications could be observed in root tip cell, such as mitochondria, endoplasmic reticulum, and golgi bodies. Thus, it can be concluded that exogenous application of H2S under Al stress improved the plant growth, photosynthetic parameters, elements concentration, and biochemical and ultrastructural changes in leaves and roots of B. napus.
在本研究中,在水培条件下,于三种铝(Al)水平(0、0.1和0.3 mM)下,研究了硫化氢(H₂S)在有或无H₂S供体硫氢化钠(NaHS)(0.3 mM)情况下对油菜(Brassica napus L.)的改善作用。结果表明,在铝胁迫下,添加H₂S显著改善了油菜植株的生长、光合气体交换以及叶片和根系中的养分浓度。外源施加H₂S显著降低了不同植物部位的铝浓度,并通过提高铝胁迫下叶片和根系中的抗氧化酶活性,减少了丙二醛和活性氧的产生。此外,本研究表明,外源施加H₂S改善了细胞结构,叶肉细胞和根尖细胞呈现洁净状态。在显微照片中可以观察到类囊体膜发育良好的叶绿体。在H₂S和Al联合作用下,根尖细胞中可观察到许多变化,如线粒体、内质网和高尔基体。因此,可以得出结论,铝胁迫下外源施加H₂S改善了油菜叶片和根系的植物生长、光合参数、元素浓度以及生化和超微结构变化。