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首页> 外文期刊>Microbes and Environments >Screening and Assessment of Potential Plant Growth-promoting Bacteria Associated with Allium cepa Linn.
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Screening and Assessment of Potential Plant Growth-promoting Bacteria Associated with Allium cepa Linn.

机译:筛选与评估促进与CEPA LINN相关的潜在植物生长促进细菌。

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Plant growth-promoting bacteria (PGPB) are beneficial microbes that increase plant growth and yield. However, limited information is currently available on PGPB in onion (A Ilium cepa Linn.). The aims of the present study were to isolate and identify PGPB in onion and examine the effects of isolated PGPB on germination and growth during the vegetative stage in onion, pak choy (Brassica chinensis), and sweet pepper (Capsicum annuum). Twenty-three strains of PGPB were isolated from the roots, bulbs, and rhizosphere soil of onion. All isolated bacterial strains showed one or more PGP traits, including indole acetic acid production, phosphate solubilization ability, and 1-aminocyclopropane-l-calboxy late deaminase and nitrogenase activities; most of these traits were derived from Bacillus sp., Microbacterium sp., and Pseudomonas sp. Eight bacteria that exhibited strong abilities to produce indole acetic acid were selected for a Petri dish trial, soil pot test, and vermiculate pot test. The Petri dish trial showed that strains ORE8 and ORTB2 simultaneously increased radicle and hypocotyl lengths in onion, but inhibited growth in sweet pepper after 7 d. The soil pot experiment on onion revealed that strains ORE5, ORE8, and ORTB2 strongly promoted growth during the vegetative stage with only a half dose of chemical fertilizer. The present results indicate that ORE8 (Bacillus megaterium) and ORTB2 (Pantoea sp.) are the most promising biofertilizers of onion and may simultaneously inhibit the seedling growth of other plants.
机译:植物生长促进细菌(PGPB)是有益的微生物,可提高植物生长和产量。然而,目前在洋葱中的PGPB(ILIUM CEPA LINN)上有限信息。本研究的目的是在洋葱中分离和鉴定PGPB,并检查分离的PGPB对洋葱,Pak Choy(Brassica Chinensis)和甜椒(Capsicum Annuum)的植物阶段萌发和生长的影响。从洋葱的根,鳞茎和根际土壤中分离出二十三种PGPB菌株。所有隔离的细菌菌株显示出一种或多种PGP性状,包括吲哚乙酸产生,磷酸盐溶解能力和1-氨基环丙烷-1-燃烧的晚期脱氨酶和氮酶活性;这些性状中的大部分是均来自芽孢杆菌SP。,微杆菌SP。和假单胞菌SP。为培养皿试验,土壤罐试验和蠕变罐试验选择了8种表现出强大的生产吲哚乙酸的细菌。培养皿试验表明,菌株ORE8和ORTB2同时增加了洋葱的胚根和幼杆长度,但在7天后抑制甜椒的生长。洋葱的土壤盆栽试揭示了菌株ORE5,ORE8和ORTB2在营养阶段的营养阶段中的生长较大,只有半剂量的化学肥料。目前的结果表明ORE8(芽孢杆菌Meakium)和Ortb2(Pantoea Sp。)是洋葱中最有前途的生物元化器,可以同时抑制其他植物的幼苗生长。

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