Diversity of maize (Zea mays L.) rhizobacteria with potential to promote plant growth

被引:15
作者
Ercole, Tairine G. [1 ]
Savi, Daiani C. [2 ]
Adamoski, Douglas [1 ,3 ]
Kava, Vanessa M. [1 ]
Hungria, Mariangela [4 ]
Galli-Terasawa, Lygia, V [1 ]
机构
[1] Univ Fed Parana, Dept Genet, Av Coronel Francisco Heraclito Dos Santos 210, BR-81531970 Curitiba, Parana, Brazil
[2] Ctr Univ Catolica Santa Catarina, Dept Biomed, R Visconde de Taunay 427, BR-89203005 Joinville, SC, Brazil
[3] Brazilian Ctr Res Energy & Mat CNPEM, Brazilian Biosci Natl Lab LNBio, BR-13083970 Sao Paulo, SP, Brazil
[4] Embrapa Soja, BR-86001970 Londrina, Parana, Brazil
关键词
Plant growth-promoting bacteria; Rhizobacteria bacteria; Inoculants; Zea mays L; BOX-PCR; PSEUDOMONAS-SYRINGAE; ENDOPHYTIC BACTERIA; R-PACKAGE; RHIZOSPHERE; GENE; IDENTIFICATION; AMPLIFICATION; PHYLOGENY; SEQUENCE; SYSTEMS;
D O I
10.1007/s42770-021-00596-y
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Plant growth-limiting factors, such as low nutrient availability and weak pathogen resistance, may hinder the production of several crops. Plant growth-promoting bacteria (PGPB) used in agriculture, which stimulate plant growth and development, can serve as a potential tool to mitigate or even circumvent these limitations. The present study evaluated the feasibility of using bacteria isolated from the maize rhizosphere as PGPB for the cultivation of this crop. A total of 282 isolates were collected and clustered into 57 groups based on their genetic similarity using BOX-PCR. A representative isolate from each group was selected and identified at the genus level with 16S rRNA sequencing. The identified genera included Bacillus (61.5% of the isolates), Lysinibacillus (30.52%), Pseudomonas (3.15%), Stenotrophomonas (2.91%), Paenibacillus (1.22%), Enterobacter (0.25%), Rhizobium (0.25%), and Atlantibacter (0.25%). Eleven isolates with the highest performance were selected for analyzing the possible pathways underlying plant growth promotion using biochemical and molecular techniques. Of the selected isolates, 90.9% were positive for indolepyruvate/phenylpyruvate decarboxylase, 54.4% for pyrroloquinoline quinine synthase, 36.4% for nitrogenase reductase, and 27.3% for nitrite reductase. Based on biochemical characterization, 9.1% isolates could fix nitrogen, 36.6% could solubilize phosphate, 54.5% could produce siderophores, and 90.9% could produce indole acetic acid. Enzymatic profiling revealed that the isolates could degrade starch (90.1%), cellulose (72.7%), pectin (81.8%), protein (90.9%), chitin (18.2%), urea (54.5%), and esters (45.4%). Based on the data obtained, we identified three Bacillus spp. (LGMB12, LGMB273, and LGMB426), one Stenotrophomonas sp. (LGMB417), and one Pseudomonas sp. (LGMB456) with the potential to serve as PGPB for maize. Further research is warranted to evaluate the biotechnological potential of these isolates as biofertilizers under field conditions.
引用
收藏
页码:1807 / 1823
页数:17
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