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1.
九种根际促生菌最适培养条件初探   总被引:1,自引:3,他引:1  
测定了分离自燕麦和小麦根际九株促生菌对温度、pH值、光照及培养方式的需求,结果表明:虽然九株促生菌适应范围较广,即在5~45℃、pH4~9、3种光照条件(12h黑暗12h光照、24h光照和24h黑暗)和3种培养方式(全天振荡、间歇振荡和静止培养)下均能较好生长,但不同菌株的最适培养条件不尽相同。通过对各菌株的最适培养条件进行了测定和分析,为后续确定促生菌的最佳发酵条件和生态适应性评价提供了依据。  相似文献   
2.
通过田间试验,对一种植物生长促进菌(PGPR)在水稻上的应用效果作了初步探讨。试验结果表明,PGPR制剂与化肥配合施用对水稻生长发育产生了显著的影响。与单施氮、磷、钾化肥相比,PGPR与化肥处理显著提高了水稻的株高、穗数、穗粒数、千粒重,比单施化肥和不施肥对照分别增产26.0%和53.9%。同时,PGPR处理提高了水稻的根系活力,并对灌浆速率产生了积极的影响。  相似文献   
3.
黄瓜根际促生菌的促生效应与防病作用   总被引:3,自引:0,他引:3  
对黄瓜植物根际促生菌(PGPR)菌株的分离筛选、分类鉴定以及人们对其促生防病作用的应用和防病机制的研究现状进行了综述,以期为新型PGPR制剂的进一步研制、开发和应用提供参考.  相似文献   
4.
Biocontrol capacity of two plant growth-promoting rhizobacteria (PGPR) strains, against blast disease in rice paddy fields in Southern Spain was studied in three cropping seasons. Both strains (Pseudomonas fluorescens Aur 6 and Chryseobacterium balustinum Aur 9) had already shown biocontrol capacity against pathogens, ability to induce systemic resistance against leaf pathogens and against salt stress in different plant species. Bacterial treatments were carried out on seeds and/or on leaves. Strains were inoculated individually and in combination. Protection against natural disease incidence was evaluated, and rice production and quality measured in 2005 and 2006 trials. In 2004, natural disease incidence was low (between 0.1% and 0.35% of damaged leaf surface) due to environmental conditions; under these conditions, both strains significantly protected plants against rice blast. In 2005, disease incidence was higher than in 2004, reaching higher values of affected leaf surface in controls. In these conditions, each strain individually protected rice against rice blast, although the combination of both strains was the most effective treatment. All three treatments (Aur 6, Aur 9 and Aur 6 + Aur 9) reached 50% protection in panicles, with Aur 9 being the most effective. In 2006, the most effective treatment was the combination of both strains on leaves in three physiological stages, suggesting a biocontrol mediated protection. On the other hand, when bacteria were applied to seeds, disease incidence decreased up to 50%, suggesting induction of systemic resistance. Finally, a direct relation between protection mediated by the PGPR and the increase in rice productivity (mT/ha) and quality (weight of 1000 seeds and number of intact grains after milling) was found.  相似文献   
5.
This study was conducted to evaluate the simultaneous use of plant growth promoting rhizobacterium (QS1) and different combinations of urea-nitrogen and biogas slurry-nitrogen for improving growth, yield, and nutritional quality of field grown okra. The isolate QS1 was identified as Bacillus sp. QS1 based on its ribosomal ribonucleic acid (rRNA) sequence analysis. Results revealed that among the combinations, the application of 50% urea-nitrogen + 50% biogas slurry-nitrogen was optimal for improving crop performance. This combination significantly (p ≤ 0.05) promoted okra growth viz. plant height (69.63–80.03 cm), no of branches per plant (14–18), shoot fresh weight (86.66–136.25 g/plant), root fresh weight (22.5–26.58 g/plant), and fruit yield (8.5–13.5 kg/plot) compared to the plants receiving 100% urea-nitrogen. The interactive effective of this nitrogen combination and QS1 inoculation produced the highest growth and yield response. Similarly, the same treatment improved nitrogen, phosphorus, potassium, and protein contents in shoot and fruit of okra compared to other treatments.  相似文献   
6.
Nitrogen-fixing plant growth-promoting rhizobacteria (PGPR) from the genus Pseudomonas have received little attention so far. In the present study, a nitrogen-fixing phytohormone-producing bacterial isolate from kallar grass (strain K1) was identified as Pseudomonas sp. by rrs (16S ribosomal RNA gene) sequence analysis. rrs identity level was high with an uncharacterized marine bacterium (99%), Pseudomonas sp. PCP2 (98%), uncultured bacteria (98%), and Pseudomonas alcaligenes (97%). Partial nifH gene amplified from strain K1 showed 93% and 91% sequence similarities to those of Azotobacter chroococcum and Pseudomonas stutzeri, respectively. The effect of Pseudomonas strain K1 on rice varieties Super Basmati and Basmati 385 was compared with those of three non-Pseudomonas nitrogen-fixing PGPR (Azospirillum brasilense strain Wb3, Azospirillum lipoferum strain N4 and Zoogloea strain Ky1) used as single-strain inoculants. Pseudomonas sp. K1 was detected in the rhizosphere of inoculated plants by enrichment culture in nitrogen-free growth medium, which was followed by observation under the microscope as well as by PCR using a rrs-specific primer. For both rice varieties, an increase in shoot biomass and/or grain yield over that of noninoculated control plants was recorded in each inoculated treatment. The effect of Pseudomonas strain K1 on grain yield was comparable to those of A. brasilense Wb3 and Zoogloea sp. Ky1 for both rice varieties. These results show that nitrogen-fixing pseudomonads deserve attention as potential PGPR inoculants for rice.  相似文献   
7.
复合型PGPR和苜蓿对新垦地土壤培肥效果研究   总被引:2,自引:0,他引:2  
韩光  张磊  邱勤  石杰  胡正峰 《土壤学报》2011,48(2):405-411
研究了利用根际有益微生物和豆科植物相结合培肥新垦地土壤的效果。试验采用裂区设计法研究了重庆北碚新垦坡耕地中性土壤上种植紫花苜蓿并接种根瘤菌和其他根际有益微生物(PGPR)(如联合固氮菌、解磷菌和解钾菌等)对土壤养分的影响。结果显示:接种根瘤菌+其他PGPR的处理对土壤有机质、全氮、全磷、全钾、有效磷和速效钾的提高均达到显著水平,较只接种根瘤菌的处理分别提高33.5%、22.7%、3.8%、11.5%、11.4%和22.3%,较不接种根瘤菌和PGPR的处理分别高42.2%、58.8%、8%、12.6%、37.2%和40.2%,接种根瘤菌+其他PGPR的效果优于只接种根瘤菌和不接种的。同时,上述处理对豆科植物苜蓿植株瘤重、株高、根鲜重、地上部鲜重以及植株全氮含量的提高均达到显著水平,比只接种根瘤菌的处理分别高44.5%、33.2%、77.3%、76.7%和17.7%。将苜蓿和相应的PGPR两者联合使用有更好的土壤改良效果,加速了新垦地贫瘠土壤的培肥过程。  相似文献   
8.
为了明确根际细菌对杨树耐盐能力的影响,采用盆栽方法研究了不同浓度NaCl胁迫下,根际细菌Bacillus sp.和Arthrobacter sp.对杨树生长和生理的影响.结果表明,Bacillus sp.对杨树株高没有明显的影响;在无NaCl或NaCl浓度为85.5 mol/L时,显著降低杨树叶片细胞膜透性;在NaCl...  相似文献   
9.
[目的]为阐明混合接种蚯蚓及植物促生根际细菌技术在蔬菜生产中的作用。[方法]采用室内盆栽试验的方法,研究接种蚯蚓、植物促生根际细菌(固氮细菌和钾活化细菌)对甘蓝生长的影响以及甘蓝对氮和钾的吸收。[结果]7种接种方式均明显促进了甘蓝根上部分的生长,其中混合接种蚯蚓、固氮细菌和钾活化细菌处理下甘蓝根上部分生物量最大。5种接种方式(接种蚯蚓、双接蚯蚓和固氮细菌、双接蚯蚓和钾活化细菌、双接钾活化细菌和固氮细菌以及混合接种)下甘蓝地上部分氮的吸收量在0.05水平显著高于对照。[结论]混合接种方式是一种有潜力的生物技术,可以用来减少蔬菜生产中化肥的施用量。  相似文献   
10.
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.  相似文献   
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