Zhou Xiu Ren, Dai Lei, Xu Gui Fang, Wang Hong Sheng
School of Life Science and Technology, Henan Institute of Science and Technology, Xinxiang, 453002, China.
Sci Rep. 2021 Apr 7;11(1):7637. doi: 10.1038/s41598-021-87105-1.
Global warming has led to frequent droughts, posing challenges for afforestation in arid and semiarid regions. In search of labor-saving and money-saving methods to improve the survival and growth rates of trees in these regions, we isolated and identified fungal endophytes that can potentially enhance the drought-resistance abilities of seedlings. We isolated 93 endophytic strains from the roots of Pinus tabulaeformis trees grown on an arid cliff. Three isolates increased the drought resistance of the tree seedlings. Using morphological, molecular, and physiological-biochemical methods, we identified three isolates as different clones of a strain of Phoma spp. and studied the strain's effect on stress resistance-related substances in the seedlings. The results showed that the strain improved drought tolerance and increased the seedlings' proline levels and antioxidant enzyme activities. The strain also secreted abundant extracellular abscisic acid, which likely triggered the seedlings' protective mechanisms. This endophytic strain may provide a cheaper labor-saving, sustainable alternative to traditional methods of enhancing drought resistance.
全球变暖导致干旱频发,给干旱和半干旱地区的造林工作带来了挑战。为了寻找节省劳力和资金的方法来提高这些地区树木的成活率和生长率,我们分离并鉴定了能够潜在增强幼苗抗旱能力的真菌内生菌。我们从生长在干旱悬崖上的油松根部分离出93株内生菌株。其中三株分离物提高了树苗的抗旱性。通过形态学、分子生物学和生理生化方法,我们将三株分离物鉴定为茎点霉属一种菌株的不同克隆,并研究了该菌株对幼苗中抗逆相关物质的影响。结果表明,该菌株提高了耐旱性,增加了幼苗的脯氨酸水平和抗氧化酶活性。该菌株还分泌了大量的细胞外脱落酸,这可能触发了幼苗的保护机制。这种内生菌株可能为增强抗旱性的传统方法提供一种更廉价、节省劳力且可持续的替代方法。