Zhang Yang, Lin Jianxin, Chen Shanhu, Lu Heding, Liao Changjian
Technical Research Center of Dry Crop Variety Breeding in Fujian Province, Institute of Crops Research, Fujian Academy of Agricultural Sciences, Fuzhou 350013, China.
Microorganisms. 2023 Sep 28;11(10):2443. doi: 10.3390/microorganisms11102443.
Maize has the largest cultivation area of any crop in the world and plays an important role in ensuring food security. High-density planting is essential for maintaining high maize yields in modern intensive agriculture. Nonetheless, how high-density planting and the tolerance of individual genotypes to such planting shape the root-associated microbiome of maize is still unknown. In this study, we analyzed the root and rhizosphere bacterial communities of two maize accessions with contrasting shoot architectures grown under high- and low-density planting conditions. Our results suggested that maize hosted specific, distinct bacterial communities in the root endocompartment and that the maize genotype had a significant effect on the selection of specific microbes from the rhizosphere. High-density planting also had significant effects on root-associated bacterial communities. Specifically, genotype and high-density planting coordinated to shape the structure, composition, and function of root and rhizosphere bacterial communities. Taken together, our results provide insights into how aboveground plant architecture and density may alter the belowground bacterial community in root-associated compartments of maize.
玉米是世界上种植面积最大的作物,在保障粮食安全方面发挥着重要作用。在现代集约农业中,高密度种植对于维持玉米高产至关重要。尽管如此,高密度种植以及各个基因型对这种种植方式的耐受性如何塑造玉米的根际微生物群落仍不清楚。在本研究中,我们分析了在高密度和低密度种植条件下生长的两种具有不同地上部结构的玉米种质的根和根际细菌群落。我们的结果表明,玉米在根内部区域拥有特定、独特的细菌群落,并且玉米基因型对从根际中选择特定微生物有显著影响。高密度种植对根际相关细菌群落也有显著影响。具体而言,基因型和高密度种植共同作用,塑造了根和根际细菌群落的结构、组成和功能。综上所述,我们的结果为地上部植物结构和密度如何改变玉米根际相关区域的地下细菌群落提供了见解。