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Biological Control of Chickpea Collar Rot by Co-inoculation of Antagonistic Bacteria and Compatible Rhizobia

机译:拮抗细菌和相容性根瘤菌共同接种对鹰嘴豆衣领腐烂的生物防治

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摘要

Two hundred and seven bacteria were isolated from composts and macrofauna and screened for plant growth promoting and antagonistic traits. Seven of the 207 isolates showed antagonistic activity against Sclerotium rolfsii in plate culture. Inhibition of S. rolfsii by the bacterial isolates ranged between 61 and 84%. Two of the seven isolates were Bacillus sp. and rest belonged to Pseudomonas sp. Two isolates, Pseudomonas sp. CDB 35 and Pseudomonas sp. BWB 21 was compatible with chickpea Rhizobium sp. IC 59 and IC 76 in plate culture conditions. Increase in plant biomass (dry weight) ranged between 18 and 30% on application of these bacteria by seed coating and seed priming methods. However, by seed-priming there was an increase in plant biomass by 5–7% compared to seed coating. Number of nodules and the nodule weight was similar by both seed coating and seed priming methods. Disease incidence was reduced up to 47% in treatments where captan (fungicide) or antagonistic Pseudomonas sp. CDB 35 was applied. Increase in shoot weight was 36% by seed coating with Rhizobium sp. IC 59 and Pseudomonas sp. CDB 35 when compared to captan application. Whereas by seed priming with IC 59 and CDB 35 increased shoot weight by 3 and 39% increase in nodulation was observed.
机译:从堆肥和大型动物中分离出了207种细菌,并筛选了促进植物生长和拮抗特性的细菌。 207个分离物中的七个在平板培养中显示了对罗氏菌的拮抗活性。细菌分离株对S. rolfsii的抑制作用介于61%和84%之间。七个分离物中的两个是芽孢杆菌。其余的属于假单胞菌属。两个分离株,假单胞菌属。 CDB 35和假单胞菌BWB 21与鹰嘴豆根瘤菌sp。兼容。平板培养条件下的IC 59和IC 76。通过种子包衣和种子引发方法施用这些细菌后,植物生物量(干重)的增加在18%至30%之间。但是,通过种子灌注,与种子包衣相比,植物生物量增加了5–7%。种子包衣和种子底涂方法的结节数量和结节重量相似。在使用卡普坦(杀菌剂)或拮抗假单胞菌sp。的治疗中,疾病发生率降低了47%。应用了CDB 35。通过用根瘤菌种进行种子包被,芽重增加了36%。 IC 59和假单胞菌sp。与硫丹应用相比,CDB 35。而通过用IC 59和CDB 35进行底漆接种,可观察到芽重增加了3%,​​结瘤增加了39%。

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