Gusain Poonam, Paliwal Rashmi, Singh Vir
a Department of Microbiology , G. B. Pant University of Agriculture and Technology , Pantnagar , India.
b Patanjali Herbal Research Department , Patanjali Yogpeeth, Maharshi Dayanand Gram , Haridwar , India.
Int J Phytoremediation. 2017 Mar 4;19(3):290-299. doi: 10.1080/15226514.2016.1225281.
In search of multitrait plant growth-promoting (PGP) inoculants, we introduced two cadmium-resistant bacterial strains, C4 (PG), C5 (WB), and their consortium C6 (PG × WB) isolated from metal-contaminated industrial waste-fed canal near West Bengal. The test isolates were biochemically characterized and screened in vitro for siderophore production. The infrared spectra revealed the hydroxamate nature of the siderophore produced. Further in green house, siderophore-based seed inoculation with selected PGP isolates exhibited stimulatory effects on seed germination (up to 85.4%), chlorophyll index (22.9 spad unit), shoot and root length (70% and 62.7%), tiller numbers (38.82%), spikelet numbers (52.2%), straw yield (62.2%), grain yield (76.1%), total dry matter of root and shoot (55.56% and 64.4%, respectively), and grain yields (76.1%) of tested wheat cultivars. The 16S rRNA sequencing identified strain PG and WB as Dietzia maris and Lysinibacillus sp. strains. Furthermore, inoculation of C6 (consortium) in both cultivar UP-2565 and KS-227 showed maximum Cd sorption capacity in roots (38.3% and 67.1%) and shoots (68.4% and 67.5%), respectively. Both the strains and their consortium showed a great potential to increase the growth and yield of wheat cultivars, which can also be utilized for rhizoremediation process.
为了寻找具有多种植物促生长(PGP)特性的接种剂,我们引入了从西孟加拉邦附近受金属污染的工业废水灌溉渠道中分离出的两种耐镉细菌菌株,C4(PG)、C5(WB)及其联合体C6(PG×WB)。对测试分离株进行了生化特性鉴定,并在体外筛选了铁载体的产生情况。红外光谱显示所产生的铁载体具有异羟肟酸性质。进一步在温室中,用选定的PGP分离株进行基于铁载体的种子接种,对种子萌发(高达85.4%)、叶绿素指数(22.9 spad单位)、地上部和根部长度(分别为70%和62.7%)、分蘖数(38.82%)、小穗数(52.2%)、秸秆产量(62.2%)、籽粒产量(76.1%)、地上部和根部总干物质(分别为55.56%和64.4%)以及测试小麦品种的籽粒产量(76.1%)均表现出刺激作用。16S rRNA测序鉴定PG菌株和WB菌株分别为海氏迪茨氏菌和芽孢杆菌属菌株。此外,在UP - 2565和KS - 227两个品种中接种C6(联合体)后,根部(分别为38.3%和67.1%)和地上部(分别为68.4%和67.5%)的最大镉吸附能力。这两种菌株及其联合体在提高小麦品种的生长和产量方面都具有很大潜力,也可用于根际修复过程。