Jiang Xia, Chen Wei-li, Xu Chun-xiang, Zhu Hong-hui, Yao Qing
Ying Yong Sheng Tai Xue Bao. 2015 Apr;26(4):1186-92.
To explore the influences of arbuscular mycorrhizal fungi (AMF) and P level on plant root system architecture, tomato seedlings were inoculated with AMF strain Rhizophagus irregularis BGC JX04B under two P levels, and the influences of AMF and P level on lateral root (LR) formation of tomato seedlings were studied. Results indicated that the promoting effect of AMF on plant biomass was not evident, but significantly decreased the root to shoot ratio of plants. AMF significantly increased the primary root length but decreased the 1st order LR length and interacted with the mycorrhizal colonization period. AMF significantly lowered the 2nd-3rd order LR number and the ratio of 2nd order LR number to 1st order LR number, but did not significantly affect the 1st-2nd order LR density. High P level (50 mg x kg(-1) P) significantly promoted the plant growth and decreased the root to shoot ratio of plants. It had no significant effect on the primary root length and the 1st order root length, but significantly enhanced the 1st-3rd order LR number and the ratio of 2nd order LR number to P order LR number, increased the 1st-2nd order LR density. It suggested that AMF and P level did not share a common mechanism to influence the LR formation of tomato plants. The influence of high P level may depend on its promoting effects on nutrient uptake and plant growth, while the influence of AMF is more complex. Furthermore, the interaction between AMF and mycorrhizal colonization period implies the possible involvement of carbohydrate distribution (sugar signaling) in the regulation of root system architecture by AMF.
为探究丛枝菌根真菌(AMF)和磷水平对植物根系结构的影响,在两个磷水平下,用AMF菌株不规则球囊霉BGC JX04B对番茄幼苗进行接种,并研究了AMF和磷水平对番茄幼苗侧根形成的影响。结果表明,AMF对植物生物量的促进作用不明显,但显著降低了植物的根冠比。AMF显著增加了主根长度,但降低了一级侧根长度,且与菌根定殖时期存在交互作用。AMF显著降低了二级至三级侧根数量以及二级侧根数量与一级侧根数量的比值,但对一级至二级侧根密度没有显著影响。高磷水平(50 mg x kg(-1) P)显著促进了植物生长并降低了植物的根冠比。它对主根长度和一级根长度没有显著影响,但显著增加了一级至三级侧根数量以及二级侧根数量与一级侧根数量的比值,提高了一级至二级侧根密度。这表明AMF和磷水平影响番茄植株侧根形成的机制不同。高磷水平的影响可能取决于其对养分吸收和植物生长的促进作用,而AMF的影响则更为复杂。此外,AMF与菌根定殖时期之间的交互作用表明,碳水化合物分配(糖信号)可能参与了AMF对根系结构的调控。