Effects of Mesorhizobium ciceri and Biochar on the Growth, Nodulation and Antifungal Activity Against Root Pathogenic Fungi in Chickpea (Cicer arietinum L.)

M. Jahan, U. Shahzad, S. A. Naqvi, I. Tahir, T. Abbas, M. Iqbal, Phoebe Nemenzo
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引用次数: 2

Abstract

This study was conducted to investigate the effects of the inoculation of Mesorhizobium ciceri on the nodulation, growth and antagonistic expression against soil-borne fungal pathogens (Phytophthora medicaginis, Fusarium oxysporum and Fusarium solani) on Cicer arietinum L. or commonly known as chickpea grown in vermiculite medium amended with 5% green waste (GW) biochar. The combination of M. ciceri and biochar showed significant effect to chickpea compared with other treatments and control plants in terms of nodulation. The chickpea inoculated with M. ciceri and amended with biochar produced the highest nodule number with an average value of 110 nodules per plant and with an average nodule fresh weight of 57.90 mg per plant at 60 days harvest. The other treatments (M. ciceri only and biochar only) and the positive control (2 mM nitrate-treated plants) produced an average of 55, 65 and 15 nodules per plant with the corresponding average nodule weight of 39.5, 46.5 and 35.6 mg per plant, respectively, 60 days after seed sowing. The combined M. ciceri and biochar also enhanced the shoot length, and fresh and dry weights of chickpea. However, it was observed that the primary root length was shorter than the control but clusters of feeder roots were observed. The combination of M. ciceri and biochar also completely inhibited the colony development of all root pathogenic fungi of chickpea after three days of inoculation. Therefore, the inoculation of M. ciceri in vermiculite medium amended with green waste biochar enhanced the nodulation and growth conditions in chickpea as well as inhibited the growth of root pathogenic fungi P. medicaginis, F. oxysporum and F. solani.
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环孢中根瘤菌和生物炭对鹰嘴豆生长、结瘤及抗根病原菌活性的影响
本试验研究了在蛭石培养基中接种环孢中根瘤菌对鹰嘴豆(Cicer arietinum L.,俗称鹰嘴豆)结瘤、生长和对土源真菌病原菌(疫霉、尖孢镰刀菌和枯萎菌)拮抗表达的影响。与其他处理和对照植物相比,绿僵菌与生物炭组合处理对鹰嘴豆结瘤效果显著。在收获60 d时,接种西芹霉菌并加生物炭改性的鹰嘴豆的单株平均结瘤数最高,达到110个,单株平均结瘤鲜重为57.90 mg。播种后60 d,其他处理(单处理和单处理生物炭)和阳性对照(2 mM硝酸盐处理)平均每株产生55、65和15个根瘤,相应的平均根瘤重分别为39.5、46.5和35.6 mg /株。与生物炭复合处理也能提高鹰嘴豆的茎长、鲜重和干重。然而,观察到主根长度比对照短,但观察到成群的取食根。接种3天后,绿僵菌与生物炭的组合也完全抑制了鹰嘴豆所有根致病真菌的菌落发育。由此可见,在添加了绿色废生物炭的蛭石培养基中接种青霉菌,改善了鹰嘴豆的结瘤和生长条件,抑制了鹰嘴豆根部病原菌P. medicaginis、F. oxysporum和F. solani的生长。
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