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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Contribution of native phosphorous-solubilizing bacteria of acid soils on phosphorous acquisition in peanut (Arachis hypogaea L.)
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Contribution of native phosphorous-solubilizing bacteria of acid soils on phosphorous acquisition in peanut (Arachis hypogaea L.)

机译:天然磷脂溶解细菌对花生(Arachis Hypogaea L.)磷肉瘤磷血液的贡献

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摘要

The present investigation analyzes the in vitro P solubilization [Ca-P, Al-P, Fe(II)-P, and Fe(III)-P] efficiency of native PSB strains from acid soils of Odisha and exploitation of the same through biofertilization in peanut (Arachis hypogaea L.) growth and P acquisition. One hundred six numbers of soil samples with pH ae 5.50 were collected from five districts of Odisha viz., Balasore, Cuttack, Khordha, Keonjhar, and Mayurbhanj. One bacterial isolate from each district were selected and analyzed for their P solubilization efficiency in National Botanical Research Institute Phosphate broths with Ca, Al, and Fe-complexed phosphates. CTC12 and KHD08 transformed more amount of soluble P from Ca-P (CTC12 393.30 mg/L; KHD08 465.25 mg/L), Al-P (CTC12 40.00 mg/L; KHD08 34.50 mg/L), Fe(III)-P (CTC12 175.50 mg/L; KHD08 168.75 mg/L), and Fe(II)-P (CTC12 47.40 mg/L; KHD08 42.00 mg/L) after 8 days of incubation. The bioconversion of P by all the five strains in the broth medium followed the order Ca-P > Fe(III)-P > Fe(II)-P > Al-P. The identified five strains were Bacillus cereus BLS18 (KT582541), Bacillus amyloliquefaciens CTC12 (KT633845), Burkholderia cepacia KHD08 (KT717633), B. cepacia KJR03 (KT717634), and B. cepacia K1 (KM030037) and further studied for biofertilization effects on peanut. CTC12 and KHD08 enhanced the soil available P around 65 and 58% and reduced the amount of each Al3+ about 79 and 81%, respectively, over the uninoculated control pots in the peanut rhizosphere. Moreover, all tested PSB strains could be able to successfully mobilize P from inorganic P fractions (non-occluded Al-P and Fe-P). The strains CTC12 and KHD08 increased the pod yield (114 and 113%), shoot P (92 and 94%), and kernel P (100 and 101%), respectively, over the control. However, B. amyloliquefaciens CTC12 and B. cepacia KHD08 proved to be the potent P solubilizers in promoting peanut growth and yield.
机译:本研究分析了天然PSB菌株的体外P溶解[Ca-P,Al-P,Fe(II)-P和Fe(III)-P]效率与Otisha的酸性土壤和通过生物元素的开采相同的利用在花生(arachis hypogaea l)的增长和P课程。从Odisha Viz的五个地区收集了一百六个含PH AE 5.50的土壤样品。,Balasore,Cuttack,Khordha,Keonjhar和Mayurbhanj。选择来自每个地区的一种细菌分离物,并分析其在国家植物学研究院磷酸盐汤中的P溶解效率与Ca,Al和Fe络合物磷酸盐。 CTC12和KHD08从CA-P转化更多的可溶性p(CTC12 393.30 mg / L; KHD08 465.25 Mg / L),Al-P(CTC12 40.00 mg / L; KHD08 34.50 mg / L),Fe(III)-P (CTC12 175.50mg / L; KHD08 168.75 mg / L)和Fe(II)-P(CTC12 47.40mg / L; KHD08 42.00 mg / L)孵育8天后。通过肉汤介质中的所有五种菌株的P的生物转化,然后是Ca-P> Fe(III)-P> Fe(II)-P> Al-P。所确定的五种菌株是芽孢杆菌BLS18(KT582541),Bacillus淀粉氨酰氨基酮胶CTC12(KT633845),BurkowneriaCepacia KHD08(KT717633),B.Cepacia KJR03(KT717634)和B.Cepacia K1(KM030037),并进一步研究了花生的生物元化作用。 CTC12和KHD08增强了55%和58%的土壤可用P,并分别在花生根际的未诱导的对照盆中减少了每种Al3 +约79%和81%的量。此外,所有测试的PSB菌株都可以能够从无机P级分中成功地动员P(非闭塞Al-P和Fe-P)。菌株CTC12和KHD08分别在对照中分别增加了POD产率(114和113%),芽P(92和94%),芽P(92和94%)和核P(100和101%)。然而,B.淀粉氨酰胺CTC12和B.Cepacia KHD08被证明是促进花生生长和产率的有效的P溶剂。

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