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Nitrogen fixation, plant growth and yield enhancements by diazotrophic growth-promoting bacteria in two cultivars of chickpea ( Cicer arietinum L.)

机译:二位营养生长促进两种鹰嘴豆(Cicer Arietinum L.)的氮固定,植物生长和产量增强促进细菌

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摘要

A total of 11 rhizobia-like-bacteria, isolated from the nodules of chickpea, were characterized for nitrogen fixation potential and growth promoting ability. All the isolates nodulated chickpea, amplified nifH gene and fixed nitrogen but, four isolates (ICKM-9, ICKM-15, ICS-31 and ICS-32) were found to fix nitrogen more than 4.0 nmoles of ethylene g−1 fresh weight of nodules h−1. Under field conditions, seeds of chickpea varieties ICCV 2 and JG 11, when treated with the bacteria, enhanced the nodule number (up to 46% and 46%), nodule mass (up to 76% and 50%), shoot mass (up to 21% and 42%) and grain yield (up to 27% and 25%), respectively, over the un-inoculated control. At the harvest, organic carbon (up to 7% and 24%), total nitrogen (up to 11% and 19%) and available phosphorous (up to 14% and 29%) were found enhanced, respectively, in the rhizosphere of ICCV-2 and JG-11 treated with bacteria over the un-inoculated control. All the isolates produced plant growth-promoting traits including indole acetic acid, β-1,3-glucanase, hydro cyanic acid (except ICKM-17 and ICS-31) and siderophore (except ICS-31). The 16 S rDNA gene sequences of bacterial isolates of ICKM-1, ICKM-4, ICKM-7, ICKM-9, ICKM-12, ICKM-14, ICKM-15, ICKM-17, ICS-30, ICS-31 and ICS-32 showed maximum identity with Pantoea dispersa, Chryseobacterium indologenes, Pseudomonas geniculata, Stenotrophomonas pavanii, P. geniculata, P. geniculata, Stenotrophomonas maltophilia, Chryseobacterium sp., P. geniculata, Chryseobacterium indologenes and Stenotrophomonas acidaminiphila, respectively. This study indicates nodule-associated bacteria could be a valuable pool for improving nitrogen fixation and crop yields in chickpea.
机译:总共11种根瘤菌状菌,从鹰嘴豆的结节分离,表征为固氮潜力和生长促进能力。所有根瘤鹰嘴豆菌株,扩增nifH基因和固定氮但是,4株(ICKM-9,ICKM-15,ICS-31和ICS-32)被发现固氮的乙烯G-1鲜重的超过4.0纳摩尔结节H-1。在田间条件下,鹰嘴豆品种ICCV 2和JG 11的种子,当与细菌处理,提高了根瘤数(高达46%和46%),结节质量(高达76%和50%),枝条簇(最多到21%和42%)和产量(高达27%和25%),分别比未接种的对照组。在收获时,有机碳(高达7%和24%),总氮(高达11%和19%)和可用的磷(高达14%和29%)被发现增强的,分别在ICCV的根际-2和JG-11与细菌在未接种的对照处理。所有分离株产生的植物生长促进特性,包括吲哚乙酸,β-1,3-葡聚糖酶,水力氰酸(除ICKM-17和ICS-31)和铁载体(除了ICS-31)。 ICKM-1的细菌分离株的16个的rDNA基因序列,ICKM-4,ICKM-7,ICKM-9,ICKM-12,ICKM-14,ICKM-15,ICKM-17,ICS-30,ICS-31和ICS-32,P.膝,金黄杆菌indologenes和嗜acidaminiphila,分别表现出与分散泛菌,金黄indologenes,假单胞菌膝,嗜pavanii,P.膝,P.膝,嗜麦芽寡养单胞,金黄杆菌属最大同一性。这项研究表明结节相关的细菌可能是提高固氮作物产量在鹰嘴豆的宝贵池。

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