Wang Xiangmei, Wang Chaoyan, Chen Ru, Wang Wenxing, Wang Diandong, Tian Xueliang
College of Biology and Food Engineering, China Three Gorges University, Yichang 443005, China.
School of Advanced Agriculture and Bioengineering, Yangtze Normal University, Chongqing 408102, China.
Plants (Basel). 2023 Apr 1;12(7):1528. doi: 10.3390/plants12071528.
Soil nematodes are considered indicators of soil quality due to their immediate responses to changes in the soil environment and plants. However, little is known about the effects of plant genotypes on the soil nematode community. To elucidate this, high-throughput sequencing and gas chromatography/mass spectrometry analysis was conducted to analyze the soil nematode community and the structure of root exudates in the rhizosphere of tomatoes with different resistance to . The dominant soil nematode group in the soil of resistant tomatoes was , while the soil nematode group in the rhizosphere of the susceptible and tolerant tomatoes was . Hierarchical clustering analysis and non-metric multidimensional scaling showed that the three soil nematode communities were clustered into three groups according to the resistance level of the tomato cultivars. The soil nematode community of the resistant tomatoes had a higher maturity index and a low plant-parasite index, Wasilewska index and disease index compared to the values of the susceptible and tolerant tomatoes. Redundancy analysis revealed that the disease index and root exudates were strongly related to the soil nematode community of three tomato cultivars. Taken together, the resistance of the tomato cultivars and root exudates jointly shapes the soil nematode community. This study provided a valuable contribution to understanding the mechanism of plant genotypes shaping the soil nematode community.
由于土壤线虫对土壤环境和植物变化的即时反应,它们被视为土壤质量的指标。然而,关于植物基因型对土壤线虫群落的影响知之甚少。为了阐明这一点,进行了高通量测序和气相色谱/质谱分析,以分析对[某种病害]具有不同抗性的番茄根际土壤线虫群落和根系分泌物的结构。抗性番茄土壤中的优势土壤线虫类群是[具体线虫类群名称1],而感病和耐病番茄根际的土壤线虫类群是[具体线虫类群名称2]。层次聚类分析和非度量多维标度分析表明,根据番茄品种的抗性水平,三个土壤线虫群落聚为三组。与感病和耐病番茄的值相比,抗性番茄的土壤线虫群落具有更高的成熟度指数和更低的植物寄生指数、瓦西列夫斯卡指数和病害指数。冗余分析表明,病害指数和根系分泌物与三个番茄品种的土壤线虫群落密切相关。综上所述,番茄品种的抗性和根系分泌物共同塑造了土壤线虫群落。本研究为理解植物基因型塑造土壤线虫群落的机制提供了有价值的贡献。