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首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Application of plant growth-promoting bacteria associated with composts and macrofauna for growth promotion of Pearl millet (Pennisetum glaucum L.)
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Application of plant growth-promoting bacteria associated with composts and macrofauna for growth promotion of Pearl millet (Pennisetum glaucum L.)

机译:与堆肥和大型动物相关的植物生长细菌在珍珠小米(Pennisetum glaucum L.)生长中的应用

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摘要

Plant growth-promoting bacteria (PGPB) were reported to influence the growth, yield, and nutrient uptake by an array of mechanisms. We selected seven different plant growth-promoting traits and antagonistic ability to screen 207 bacteria isolated fromcomposts. Fifty-four percent of PGPB were from farm waste compost (FWC), 56% from rice straw compost (RSC), 64% from Gliricidia vermicompost (GVC), and 41% from macrofauna associated with FWC. Twelve isolates based on different plant growth-promoting traits and seed vigor index were evaluated at glasshouse for plant growth-promoting activity on pearl millet. Seven isolates significantly increased shoot length and ten isolates showed significant increase in leaf area, root length density, and plant weight. Maximum increase in plant weight was by Serratia marcescens EB 67 (56%), Pseudomonas sp. CDB 35 (52%), and Bacillus circulans EB 35 (42%). Plant growth-promoting activity of composts and bacteria (EB 35, EB 67, and CDB 35) was studied together. All the three composts showed significant increase in growth of pearl millet, which was 77% by RSC, 55% by GVC, and 30% by FWC. Application of composts with bacteria improved plant growth up to 88% by RSC with EB 67, 83% with GVC and EB 67. These results showthe synergistic effect of selected bacteria applied with composts on growth of pearl millet.
机译:据报道,植物生长促进细菌(PGPB)通过多种机制影响生长,产量和养分吸收。我们选择了七个不同的植物生长促进性状和拮抗能力来筛选从堆肥中分离出的207种细菌。 PGPB的54%来自农业废弃物堆肥(FWC),56%来自稻草堆肥(RSC),64%来自藜芦(GVC)和41%来自与FWC相关的大型动物。在温室中评估了十二种基于不同植物生长性状和种子活力指数的分离株对珍珠粟的植物生长促进活性。七个分离株显着增加了芽的长度,十个分离株显示了叶面积,根长度密度和植物重量的显着增加。最大的植物重量增加是粘质沙雷氏菌EB 67(56%),假单胞菌。 CDB 35(52%)和圆形芽孢杆菌EB 35(42%)。一起研究了堆肥和细菌(EB 35,EB 67和CDB 35)对植物生长的促进作用。这三种堆肥均显示珍珠小米的生长显着增加,分别为RSC 77%,GVC 55%和FWC 30%。用细菌施用堆肥可以使EB 67的RSC可使植物生长提高88%,使用GVC和EB 67可以使植物的生长提高83%。这些结果表明,选择的使用堆肥的细菌对珍珠粟的生长具有协同作用。

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