首页> 外文期刊>Plant and Soil >Tobacco growth enhancement and blue mold disease protection by rhizobacteria: Relationship between plant growth promotion and systemic disease protection by PGPR strain 90-166
【24h】

Tobacco growth enhancement and blue mold disease protection by rhizobacteria: Relationship between plant growth promotion and systemic disease protection by PGPR strain 90-166

机译:根际细菌促进烟草生长和预防蓝霉病:PGPR菌株90-166促进植物生长和预防系统疾病之间的关系

获取原文
获取原文并翻译 | 示例
           

摘要

The effect of plant growth-promoting rhizobacteria (PGPR) on plant growth and systemic protection against blue mold disease of tobacco (Nicotiana tabacum L.), caused by Peronospora tabacina, was investigated in the greenhouse. Five PGPR strains with known plant growth promotion and induced resistance activities in other crops were used in these studies. PGPR strains were applied as seed treatments alone at planting and in combination with root drenches after planting. When PGPR were applied as seed treatments, PGPR strains 90-166, SE34 and C-9 at 10(9) CFU mL(-1) increased all or most parameters of plant growth 7 weeks after planting (WAP), while 89B-61 and T4 did not enhance any or few parameters. Seed treatments with PGPR strains 90-166 and C-9 at 10(9) CFU mL(-1) at 13 WAP resulted in significant disease reduction in blue mold severity compared to the nontreated control. When PGPR were applied as seed treatments and root drenches, all PGPR strains at 10(9) CFU mL(-1) enhanced tobacco growth compared to the nontreated control at 7 WAR The time interval between the last PGPR treatment and challenge with P. tabacina affected systemic disease protection elicited by some PGPR strains. When the time interval was 8 weeks, 3 PGPR strains 90-166, SE34 and T4 at 10(9) CFU mL(-1) reduced disease severity, while treatments with all tested PGPR strains resulted in significantly lower disease compared to the nontreated control when it was reduced to 6 weeks. Regression analysis demonstrated a significant relationship between plant growth promotion and systemic protection against blue mold elicited by PGPR strain 90-166. Tobacco growth promotion (X) was calculated by percentage of increase in total fresh plant weight relative to the nontreated control. Systemic protection (Y) against blue mold disease was represented by percentage of decrease in disease severity over the nontreated control. This relationship was best described by the model Y = -4.48 + 0.37 X (r(2) = 0.86, P = 0.0001) when strain 90-166 was applied as seed treatments. In the experiment in which strain 90-166 was applied as seed treatments and root drenches, Y = 6.60 + 0.14 X (r(2) = 0.88, P < 0.0001) defined this relationship when the time interval was 8 weeks. When the time interval was reduced to 6 weeks, Y = 12.30 + 0.28 X (r(2) = 0.80, P = 0.0005) defined the relationship. [References: 42]
机译:在温室中研究了促进植物生长的根际细菌(PGPR)对植物生长的影响以及对烟草(Percotospora tabacina)引起的烟草(Nicotiana tabacum L.)蓝霉病的系统保护的作用。在这些研究中使用了五种PGPR菌株,它们具有已知的促进植物生长和在其他农作物中诱导的抗性活性。 PGPR菌株在播种时单独用作种子处理,在播种后与根部灌溉结合使用。当将PGPR用作种子处理剂时,PGPR菌株90-166,SE34和C-9在10(9)CFU mL(-1)处可增加播种后7周(WAP)的全部或大部分植物生长参数,而89B-61 T4并没有增强任何参数。与未经处理的对照相比,在13 WAP时用PGPR菌株90-166和C-9在10(9)CFU mL(-1)处进行种子处理可显着降低蓝霉病的病害。当将PGPR用作种子处理剂和根浸剂时,在7 WAR时,与未处理的对照相比,所有10(9)CFU mL(-1)的PGPR菌株均增强了烟草的生长。最后一次PGPR处理与烟粉虱的攻击之间的时间间隔某些PGPR菌株引起的全身性疾病保护。当时间间隔为8周时,在10(9)CFU mL(-1)下的3株PGPR菌株90-166,SE34和T4降低了疾病严重程度,而与未治疗的对照组相比,所有测试的PGPR菌株的治疗均导致疾病显着降低当它减少到6周。回归分析表明,PGPR菌株90-166引起的植物生长促进与针对蓝霉的系统保护之间存在显着关系。烟草生长促进率(X)是通过新鲜植物总重量相对于未处理对照的增加百分比来计算的。相对于未治疗的对照组,针对蓝霉病的全身保护(Y)以疾病严重程度降低的百分比表示。当菌株90-166作为种子处理剂时,模型Y = -4.48 + 0.37 X(r(2)= 0.86,P = 0.0001)可以最好地描述这种关系。在将90-166菌株用作种子处理和根浸的实验中,当时间间隔为8周时,Y = 6.60 + 0.14 X(r(2)= 0.88,P <0.0001)定义了这种关系。当时间间隔减少到6周时,Y = 12.30 + 0.28 X(r(2)= 0.80,P = 0.0005)定义了这种关系。 [参考:42]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号