Xing Yijing, Shi Wenhui, Zhu Ying, Wang Fucheng, Wu Hangyan, Ying Yeqing
State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou, 311300, China.
Environ Microbiol. 2021 Oct;23(10):6074-6088. doi: 10.1111/1462-2920.15633. Epub 2021 Jun 16.
Phosphorus-solubilizing microorganisms (PSMicros) play vital roles in helping plants to resist phosphorus (P) deficiency in soils, while their activities may vary with site conditions. The present study investigated the microbial diversity and subsequently screened PSMicro strains from rhizosphere soils at five bamboo forests in subtropical China, among which four were developed in a same stand. The activities of the screened PSMicros were also assessed. The results showed great variation in microbial diversity among different forests. Concomitantly, a total of 52 PSMicro strains were isolated and identified to 10 bacterial genera and 4 fungal genera, with different forest rhizosphere soils containing different PSMicros and/or showing different abundances for a certain PSMicro genus, despite some PSMicros would not grow readily on plates. Different, and even the same microbial genera isolated across the five forests, varied significantly in the amount of P that they solubilized from the medium, which ranged from 18.5 to 581.33 mg L . Among the isolated PSMicros, species of Bacillus, Kluyvera, Buttiauxella, Meyerozyma and Penicillium were preponderant to liberate P from organic and inorganic P pools. This will have implications for biotechnological exploitation of microbes to alleviate P limitation in agricultural and natural systems with a sustainable green ecological approach.
解磷微生物在帮助植物抵抗土壤缺磷方面发挥着至关重要的作用,但其活性可能会因场地条件而异。本研究调查了中国亚热带地区五片竹林根际土壤中的微生物多样性,并随后从中筛选了解磷微生物菌株,其中有四片竹林位于同一林分。还评估了筛选出的解磷微生物的活性。结果表明,不同森林之间的微生物多样性存在很大差异。同时,共分离出52株解磷微生物菌株,鉴定为10个细菌属和4个真菌属,不同森林的根际土壤含有不同的解磷微生物和/或某种解磷微生物属的丰度不同,尽管有些解磷微生物在平板上不易生长。从五个森林中分离出的不同甚至相同的微生物属,从培养基中溶解的磷量差异显著,范围为18.5至581.33mg/L。在分离出的解磷微生物中,芽孢杆菌属、克吕沃尔菌属、布蒂亚菌属、迈耶酵母属和青霉属的物种在从有机和无机磷库中释放磷方面占优势。这将对利用微生物以可持续的绿色生态方法缓解农业和自然系统中的磷限制具有生物技术开发意义。