Mashiane Ramadimetja A, Ezeokoli Obinna T, Adeleke Rasheed A, Bezuidenhout Cornelius C
Microbiology and Environmental Biotechnology Research Group, Agricultural Research Council-Institute for Soil, Climate and Water, Pretoria, 0001, South Africa.
Unit for Environmental Sciences and Management, North-West University, Potchefstroom, 2520, South Africa.
World J Microbiol Biotechnol. 2017 Apr;33(4):80. doi: 10.1007/s11274-017-2249-y. Epub 2017 Mar 25.
Genetic modification of maize with Bacillus thuringiensis (Bt) cry proteins may predispose shifts in the bacterial endophytes' community associated with maize shoots. In this study, the diversity of bacterial endophytes associated with a Bt maize genotype (Mon810) and its isogenic non-transgenic parental line were investigated at pre-flowering (50 days) and post-flowering (90 days) developmental stages. PCR-DGGE and high throughput sequencing on the Illumina MiSeq sequencer were used to characterize bacterial 16S rRNA gene diversity in leaves, stems, seeds and tassels. PCR-DGGE profile revealed similarity as well as differences between bacterial communities of shoots in both cultivars and at both developmental stages. A total of 1771 operational taxonomic units (OTUs) were obtained from the MiSeq and assigned into 14 phyla, 27 classes, 58 orders, 116 families and 247 genera. Differences in alpha and beta diversity measures of OTUs between the phyllospheres of both genotypes were not significant (P > .05) at all developmental stages. In all cultivars, OTU diversity reduced with plant development. OTUs belonging to the phyla Proteobacteria were dominant in all maize phyllospheres. The class Gammaproteobacteria was dominant in Bt maize while, Alphaproteobacteria and Actinobacteria were dominant in non-Bt maize phyllospheres. Differences in the abundance of some genera, including Acidovorax, Burkerholderia, Brachybacterium, Enterobacter and Rhodococcus, whose species are known beneficial endophytes were observed between cultivars. Hierarchical cluster analysis further suggests that the bacterial endophyte communities of both maize genotypes associate differently (are dissimilar). Overall, the results suggest that bacterial endophytes community differed more across developmental stages than between maize genotypes.
用苏云金芽孢杆菌(Bt)的cry蛋白对玉米进行基因改造,可能会使与玉米嫩枝相关的细菌内生菌群发生变化。在本研究中,对一种Bt玉米基因型(Mon810)及其同基因非转基因亲本系在开花前(50天)和开花后(90天)发育阶段的细菌内生菌多样性进行了研究。使用PCR-DGGE和Illumina MiSeq测序仪上的高通量测序来表征叶片、茎、种子和雄穗中的细菌16S rRNA基因多样性。PCR-DGGE图谱揭示了两个品种在两个发育阶段嫩枝细菌群落之间的相似性和差异。从MiSeq获得了总共1771个操作分类单元(OTU),并将其归入14个门、27个纲、58个目、116个科和247个属。在所有发育阶段,两种基因型叶际的OTU的α和β多样性测量差异均不显著(P>0.05)。在所有品种中,OTU多样性随着植株发育而降低。变形菌门的OTU在所有玉米叶际中占主导地位。γ-变形菌纲在Bt玉米中占主导地位,而α-变形菌纲和放线菌纲在非Bt玉米叶际中占主导地位。在不同品种之间观察到一些属的丰度存在差异,包括嗜酸菌属、伯克霍尔德菌属、短杆菌属、肠杆菌属和红球菌属,这些属的物种是已知的有益内生菌。层次聚类分析进一步表明,两种玉米基因型的细菌内生菌群落关联方式不同(不相似)。总体而言,结果表明细菌内生菌群落随发育阶段的差异大于玉米基因型之间的差异。