外源放线菌对谷子生长和成熟期根际可培养微生物的影响
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S515

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黄土高原特色作物优质高效生产省部共建协同创新中心自主研发项目(SBGJXTZX-36)、山西省高等学校科技创新项目(2020L0159)和山西农业大学青年科技创新项目(2019002)资助。


Effects of Exogenous Actinobacteria on Growth of Foxtail Millet (Setaria italica) and Culturable Microorganisms in Rhizosphere Soil at Mature Stage
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    摘要:

    为研究外源放线菌对谷子生长及成熟期根际可培养微生物的影响,采用盆栽和田间试验分析施加放线菌微白黄链霉菌(Streptomyces albidoflavus,T4)和密旋链霉菌(Streptomyces pactum,Act12)后成熟期谷子生物量、产量形成指标及根际可培养微生物结构组成的差异,并对谷子生长与根际微生物之间相互关系进行分析。结果表明:①T4促进了盆栽和田间试验中谷子生物量的增加,T4和Act12使田间试验中单株谷子籽粒干物质量和产量增加了13.7%~22.6%。②对于根际微生物,T4处理使培养箱盆栽试验中谷子根际可培养细菌(B)、真菌(F)、放线菌(A)及微生物总数量增加了29.5%~56.9%;T4和Act12使室外盆栽试验中根际真菌数量分别提高了73.3%和222.0%,A/F和B/F降低了34.7%~72.4%。③相关分析表明,成熟期谷子茎叶干物质量、单株谷子籽粒干物质量与根际细菌、真菌、放线菌和总微生物数量显著正相关(r=0.748~0.971,P<0.01),而与A/F和B/F显著负相关(r=–0.764~–0.906,P<0.01)。综上,供试放线菌通过调整根际可培养微生物群落结构促进了谷子生长,增加了谷子产量。因此,通过外源施加放线菌优化根际可培养微生物群落结构是谷子促生增产的可行途径之一。

    Abstract:

    In order to understand the effects of the application of extra actinobacteria on the growth of foxtail millet and culturable microorganisms in rhizosphere soil at the mature stage, pot and field experiments were conducted to study the differences in the biomass and yield formation of foxtail millet and the culturable microorganism structure in rhizosphere soil at the mature stage after Streptomyces albidoflavus (T4) and Streptomyces pactum (Act12) application, and the relationship between the growth of foxtail millet and soil microorganisms were also investigated. Results show that the biomass of foxtail millet is increased under T4 both in the pot and field trials, while the grain weight of single plant and the yield of foxtail millet are increased by 13.7%-22.6% under T4 and Act12 in the field trial than that of the control. The population of bacteria (B), fungi (F), actinobacteria (A), and total of microorganisms are increased by 29.5%-56.9% under T4 in the light incubator pot trial. The population of fungi is increased by 73.3% and 222.0% respectively under T4 and Act12 in outdoor pot trial compared with the control, while the population rates A/F and B/F are reduced by 34.7%-72.4%. The stem and leaf dry weights and the grain weight of single foxtail millet plant at the mature stage are positively correlated with the population of B, F, A and the total population of the culturable microorganisms in the rhizosphere soils (r=0.748-0.971, P<0.01), whereas negatively correlated with A/F and B/F (r=-0.764- -0.906, P<0.01). In conclusion, the tested actinobacteria can promote the growth and yield of foxtail millet through adjusting soil culturable microbial environment, thus, the application of extra actinobacteria to optimize the culturable microorganism structure in rhizosphere soil is a useful measure to promote foxtail millet growth.

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陈杰,乔美霞,郭一晓,杨珍平,高志强,刘玉涛,林文.外源放线菌对谷子生长和成熟期根际可培养微生物的影响[J].土壤,2022,54(5):978-985. CHEN Jie, QIAO Meixia, GUO Yixiao, YANG Zhenping, GAO Zhiqiang, LIU Yutao, LIN Wen. Effects of Exogenous Actinobacteria on Growth of Foxtail Millet (Setaria italica) and Culturable Microorganisms in Rhizosphere Soil at Mature Stage[J]. Soils,2022,54(5):978-985

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  • 收稿日期:2021-11-26
  • 最后修改日期:2022-03-31
  • 录用日期:2022-04-06
  • 在线发布日期: 2022-10-31
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