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Biomanagement of Root Rot of Pine Seedlings

机译:松树幼苗根腐生物管理

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Studies were conducted on biomanagement of root rot of pine (Pinus wallichiana) seedlings during 2008-2009 at Shalimar campus, Srinagar, Kashmir. The pathogens associated with the disease were isolated, morphologically characterized and identified as Fusarium oxysporum f. sp. pini (Schlecht.) Synd. and Hans. and Rhizoctonia solani Kuhn, and F. oxysporum proved more pathogenic. In bioassays all the biocontrol agents tested inhibited the mycelial growth of F. oxysporum and R. solani in dual culture, however, Trichoderma harzianum and T. viride were more effective. Pseudomonas fluorescens showed strong antibiosis and developed zone of inhibition against both the pathogens in vitro. Laccaria laccata caused hyphal lysis of the pathogens in dual culture. In vitro evaluation of the culture filtrate of test antagonists revealed that culture filtrate of P. fluorescens had maximum inhibitory effect on mycelial growth and spore/sclerotial germination of test pathogens followed by T. harzianum, T. viride and L. laccata. Inoculation of T. harzianum, P. fluorescens and L. laccata individually or in combination significantly improved the growth and biomass of Kail pine seedlings in vivo. Combined inoculations of biocontrol agents showed synergistic growth promoting action. Seed germination was improved by the biocontrol agents with drastic reduction by pathogenic microorganisms. Biocontrol agents inoculated individually or in combination reduced the pathogenic effect (root rot) as compared to the control.
机译:在2008-2009年期间,在克什米尔斯利那加的Shalimar校园内进行了松树(Pinus wallichiana)幼苗根腐生物管理的研究。分离出与该疾病有关的病原体,进行形态学鉴定并鉴定为尖孢镰刀菌f。 sp。皮尼(Schlecht。)和汉斯solani Rhizoctonia solani Kuhn和F. oxysporum被证明更具致病性。在生物测定中,所有测试的生物控制剂在双重培养中均抑制了oxysporum和R. solani的菌丝生长,但是,哈茨木霉和T. viride更为有效。荧光假单胞菌在体外对两种病原体均表现出较强的抗菌作用和抑制作用。 laclaccia laccata在双重培养中引起病原菌的菌丝裂解。体外测试受试拮抗剂培养滤液的评估表明,荧光假单胞菌的培养滤液对测试病原体的菌丝体生长和孢子/硬化萌发具有最大的抑制作用,其次是哈茨木霉,拟南芥T. viride和L. laccata。单独或联合接种哈茨木霉,萤光假单胞菌和乳杆菌(L. laccata),可显着提高Kail松苗的体内生长和生物量。生物防治剂的联合接种显示出协同的生长促进作用。生物控制剂改善了种子发芽,病原微生物极大地减少了种子发芽。与对照相比,单独或组合接种的生物防治剂可降低致病作用(根腐病)。

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