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Growth promoting activities of different Rhizobium spp. in wheat

机译:不同根瘤菌的生长促进活性。在小麦中

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In the present study, large number of rhizobial strains were isolated from chickpea, lentil and mung been nodules and twenty fast growing colonies of each host legume, were selected. A series of jar experiments were executed and three most efficient isolates of each rhizobium species were screened on the basis of their growth promoting activities under axenic conditions. Results revealed that, in general, most of the isolates showed growth promoting effect but deleterious effect by some of the isolates was also observed on different parameters. The nine screened isolates were further evaluated for their growth promoting behavior in pots. The results indicated positive and increasing impact on growth and yield attributes by all the inoculants. However, in some parameters the increases were statistically same as with un-inoculated control. The isolates improved plant height (up to 18.66%), tillers per plant (up to 68.76%), straw yield (up to 35.14%), grain yield (up to 30.29%), 1000-grain weight (up to 28.40%), root length (up to 51.72%), % N in grains and straw (up to 15.07 and 33.16%), % P in grains and straw (up to 23.39 and 66.66%) and % K in grains and straw (up to 51.72 and 21.80%) compared with un-inoculated control. Finally, it is suggested that the procedure adopted for the selection of fast growing isolates and test of their growth promoting potential with wheat seedlings under axenic conditions could be an effective approach for screening the efficient and effective isolates. Also, the selected rhizobial strains could be used as PGPR for non-legumes.
机译:在本研究中,从鹰嘴豆,小扁豆和绿豆根瘤中分离出大量的根瘤菌菌株,并选择了每个寄主豆科植物的二十个快速生长的菌落。进行了一系列的广口瓶实验,并根据它们在轴突条件下的生长促进活性,筛选了每种根瘤菌菌种的三种最有效分离株。结果显示,一般而言,大多数分离株显示出促进生长的作用,但也观察到一些分离株对不同参数的有害作用。进一步评估了这九种筛选的菌株在花盆中的促生长行为。结果表明所有接种物对生长和产量属性的积极影响和增加影响。但是,在某些参数上,增加量与未接种对照的增加量在统计学上相同。分离株提高了株高(高达18.66%),单株分till(高达68.76%),秸秆产量(高达35.14%),谷物产量(高达30.29%),1000粒重(高达28.40%) ,根长(高达51.72%),谷物和稻草中的N含量(分别高达15.07和33.16%),谷物和稻草中的P含量(分别达到23.39和66.66%)和谷物和稻草中的K含量(最高51.72)和21.80%)。最后,建议采取的程序可用于选择快速生长的分离株,并在低氧条件下用小麦幼苗测试其促进生长的潜力,这可能是筛选高效分离株的有效方法。而且,所选的根瘤菌菌株可以用作非豆类的PGPR。

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