Wang Min, Sun Yuming, Sun Guomei, Liu Xiaokang, Zhai Luchong, Shen Qirong, Guo Shiwei
1] Agricultural Ministry Key Lab of Plant Nutrition and Fertilization in Low-Middle Reaches of the Yangtze River [2] Jiangsu Key Lab and Engineering Center for Solid Organic Waste Utilization [3] Nanjing Agricultural University, 210095, China.
Nanjing Agricultural University, 210095, China.
Sci Rep. 2015 Jan 12;5:7722. doi: 10.1038/srep07722.
Fusarium wilt is caused by the infection and growth of the fungus Fusarium oxysporum in the xylem of host plants. The physiological responses of cucumbers that are infected with Fusarium oxysporum f. sp. cucumerinum (FOC) was studied in pot and hydroponic experiments in a greenhouse. The results showed that although water absorption and stem hydraulic conductance decreased markedly in infected plants, large amounts of red ink accumulated in the leaves of infected cucumber plants. The transpiration rate (E) and stomatal conductance (gs) of the infected plants were significantly reduced, but the E/gs was higher than healthy plants. We further found that there was a positive correlation between leaf membrane injury and E/gs, indicating that the leaf cell membrane injury increased the non-stomatal water loss from infected plants. The fusaric acid (FA), which was detected in the infected plant, resulted in damage to the leaf cell membranes and an increase in E/gs, suggesting that FA plays an important role in non-stomatal water loss. In conclusion, leaf cell membrane injury in the soil-borne Fusarium wilt of cucumber plants induced uncontrolled water loss from damaged cells. FA plays a critical role in accelerating the development of Fusarium wilt in cucumber plants.
枯萎病是由尖孢镰刀菌在寄主植物木质部感染并生长引起的。在温室盆栽和水培试验中,研究了黄瓜感染黄瓜尖孢镰刀菌(FOC)后的生理反应。结果表明,虽然感染植株的吸水量和茎干导水率显著降低,但感染黄瓜植株的叶片中积累了大量红墨水。感染植株的蒸腾速率(E)和气孔导度(gs)显著降低,但E/gs高于健康植株。我们进一步发现,叶片膜损伤与E/gs之间存在正相关,表明叶片细胞膜损伤增加了感染植株的非气孔水分损失。在感染植株中检测到的镰刀菌酸(FA)导致叶片细胞膜损伤并使E/gs增加,这表明FA在非气孔水分损失中起重要作用。总之,黄瓜土传枯萎病中叶片细胞膜损伤导致受损细胞水分失控流失。FA在加速黄瓜枯萎病发展中起关键作用。