首页> 外文期刊>Current Microbiology: An International Journal >Physiological Responses of Pinus sylvestris var. Mongolica Seedlings to the Interaction Between Suillus luteus and Trichoderma virens
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Physiological Responses of Pinus sylvestris var. Mongolica Seedlings to the Interaction Between Suillus luteus and Trichoderma virens

机译:樟子松的生理响应。蒙古苗对黄体和木霉菌相互作用的影响

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摘要

The effects of the interaction between Suillus luteus (L.) Roussel and Trichoderma virens (J.H. Mill., Giddens & A.A. Foster) Arx on Pinus sylvestris var. mongolica Litv. were studied using plant physiology, mycorrhizal science, forest pathology, and biochemistry. Seedling growth and physiological parameters were determined, including the colonization rate of mycorrhizal fungi, biomass, root activity, photosynthetic pigment content, soluble protein content, antioxidant enzyme activities, rhizosphere soil enzyme activities, and protective enzyme activities. In addition, an optimal resistance system involving T. virens, mycorrhizal fungus (S. luteus), and P. sylvestris var. mongolica seedlings was constructed. Synergies between S. luteus and T. virens were observed, and most of the parameters of P. sylvestris var. mongolica seedlings inoculated with S. luteus 30 days + T. virens were higher than other treatments. After three months, when compared the control, the S. luteus 30 days + T. virens treatment gave increases in height (42.3 %); collar diameter (66.7 %); fresh weight (54 %); dry weight (50 %); soluble protein content (69.86 %); root activity (150 %); chlorophyll a (77.6 %); chlorophyll b (70.5 %); carotenoids (144 %); CAT activity (876.9 %); POD activity (268.3 %); SOD activity (66.18 %); beta-1,3-glucanase activity (125.8 %); chitinase activity (40 %); rhizosphere soil catalase activity (97.8 %); and phosphatase activity (266.7 %). These results indicate that there may be a stimulating factor between S. luteus and T. virens when they are inoculated together (S. luteus 30 days + T. virens).
机译:罗氏沼虾(Ro。luuteus(L.)Roussel)和维氏木霉(Trichoderma virens(J.H. Mill。,Giddens&A.A. Foster))Arx之间的相互作用对樟子松的影响。蒙古自治州使用植物生理学,菌根科学,森林病理学和生物化学进行了研究。确定了幼苗的生长和生理参数,包括菌根真菌的定殖率,生物量,根系活性,光合色素含量,可溶性蛋白含量,抗氧化酶活性,根际土壤酶活性和保护性酶活性。另外,最佳的抗性系统包括毒梭菌,菌根真菌(S. luteus)和樟子松(P. sylvestris var)。建造了蒙古种。观察到了黄褐葡萄球菌和毒理木毒杆菌之间的协同作用,并且观察到了樟子松的大部分参数。接种黄花链球菌+天牛链霉菌30天的蒙古苗高于其他处理。三个月后,与对照组相比,黄体链球菌30天+维尔纽斯氏菌治疗使身高增加(42.3%);领口直径(66.7%);鲜重(54%);干重(50%);可溶性蛋白质含量(69.86%);根部活动(150%);叶绿素a(77.6%);叶绿素b(70.5%);类胡萝卜素(144%); CAT活性(876.9%); POD活性(268.3%);超氧化物歧化酶活性(66.18%); β-1,3-葡聚糖酶活性(125.8%);几丁质酶活性(40%);根际土壤过氧化氢酶活性(97.8%);和磷酸酶活性(266.7%)。这些结果表明,当将它们联合接种时(S. luteus 30天+ T. virens),在S. luteus和T. virens之间可能存在刺激因子。

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