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根际促生细菌混合接种对甜樱桃/东北山樱根际微生物区系及根系呼吸的影响
引用本文:吕德国,杨丹丹,秦嗣军,刘灵芝.根际促生细菌混合接种对甜樱桃/东北山樱根际微生物区系及根系呼吸的影响[J].吉林农业大学学报,2012,34(5):531-535.
作者姓名:吕德国  杨丹丹  秦嗣军  刘灵芝
作者单位:1. 沈阳农业大学园艺学院,沈阳110866;沈阳市北方果树栽培与生理生态重点实验室,沈阳110866
2. 沈阳农业大学园艺学院,沈阳,110866
基金项目:国家自然科学基金项目(30900967,30871688);沈阳市北方果树栽培与生理生态重点实验室项目
摘    要:为探讨有益微生物对甜樱桃根系的接种效应,试验采用灌根的方法,研究了从野生东北山樱根际分离筛选出的4株促生细菌,混合接种对甜樱桃/东北山樱根际微生物区系及根系呼吸代谢途径的影响.结果表明:接种促生菌液改变了甜樱桃根际细菌、放线菌及真菌的数量比例,使根际细菌数量显著增加.接种2次,根际细菌增加幅度最大,为对照的3.4倍;接种促生菌液提高了根系活力,接种2次效果最显著,为对照的2.4倍,达到200.4μg/(g·h);接种促生菌液对根系呼吸的基础生化途径与末端氧化电子传递途径运行比例无明显影响,但整体上提高了根系呼吸速率.

关 键 词:根际促生细菌  根际微生物  根系呼吸  甜樱桃  东北山樱

Effects of Inoculation with Mix PGPR on Rhizosphere Microbiota and Root Respiration of Cerasus avium Moench./C. sachalinensis Kom.
Lü De-guo,YANG Dan-dan,QIN Si-jun,LIU Ling-zhi.Effects of Inoculation with Mix PGPR on Rhizosphere Microbiota and Root Respiration of Cerasus avium Moench./C. sachalinensis Kom.[J].Journal of Jilin Agricultural University,2012,34(5):531-535.
Authors:Lü De-guo  YANG Dan-dan  QIN Si-jun  LIU Ling-zhi
Institution:1,21.College of Horticulture,Shenyang Agricultural University,Shenyang 110866,China;2.Key Laboratory for Northern Fruit Trees Cultivation and Physiology Ecology of Shenyang City,Shenyang 110866,China
Abstract:In order to explore the effects of inoculating beneficial microorganisms on C.avium/C.sachalinensis,plants were inoculated with a mixture of four bacterial strains of plant growth-promoting rhizobacteria(PGPR) screened from rhizosphere soil of C.sachalinensis in wild by means of root irrigation.The aspects were investigated of rhizosphere microbiota and root respiratory metabolism of the inoculated plants.It was found that the microbial community structure underwent variation in the rhizosphere of C.avium/C.sachalinensis,and the amount of rhizosphere bacteria increased after inoculation with PGPR,3.4 times more than the control after inoculation with PGPR twice.The root activity was enhanced after inoculation with PGPR and its enhancement was 2.4 times more than the control after inoculation twice,reaching 200.4 μg/(g·h).The entire respiratory rate was evidently increased after inoculation with PGPR,while the contribution ratios of basis biochemical and the end of the oxidation electron transport pathways of root respiratory were not evidently affected.
Keywords:PGPR  rhizosphere microorganism  root respiration  Cerasus avium Moench    Cerasus sachalinensis Kom  
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