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Enhancement of growth and yield of tomato by Rhodopseudomonas sp. under greenhouse conditions

机译:红假单胞菌提高了番茄的生长和产量。在温室条件下

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A greenhouse test was carried out to examine the effects on tomato growth of application of purple non-sulfur bacterium Rhodopseudomonas sp. which had enhanced germination and growth of tomato seed under axenic conditions. The shoot length of tomato plant inoculated by Rhodopseudomonas sp. KL9 increased by 34.6% compared to that of control in 8 weeks of cultivation. During the same period, this strain increased 120.6 and 78.6% of dry weight of shoot and root of tomato plants, respectively. The formation ratio of tomato fruit from flower was also raised by inoculation of KL9. In addition, Rhodopseudomonas sp. KL9 treatment enhanced the fresh weight and lycopene content in the harvested tomato fruits by 98.3 and 48.3%, respectively compared to those of the uninoculated control. When the effect on the indigenous bacterial community and fate of the inoculated Rhodopseudomonas sp. KL9 were monitored by denaturing gradient gel electrophoresis analysis, its application did not affect the native bacterial community in tomato rhizosphere soil, but should be repeated to maintain its population size. This bacterial capability may be applied as an environment-friendly biofertilizer to cultivation of high quality tomato and other crops including lycopene-containing vegetables and fruits.
机译:进行了温室试验,以研究紫色非硫细菌Rhodopseudomonas sp。对番茄生长的影响。在缺氧条件下增强了番茄种子的发芽和生长。 Rhodopseudomonas sp。接种番茄植株的茎长。培养8周后,KL9与对照相比增加了34.6%。在同一时期,该菌株分别增加了番茄植株茎和根干重的120.6和78.6%。通过接种KL9也提高了花中番茄果实的形成比例。此外,红假单胞菌。与未接种的对照相比,KL9处理使收获的番茄果实的鲜重和番茄红素含量分别提高了98.3%和48.3%。当影响了原生细菌群落和接种了红假单胞菌后的命运。通过变性梯度凝胶电泳分析监测KL9,其应用不会影响番茄根际土壤中的天然细菌群落,但应重复进行以维持其种群规模。这种细菌的能力可以作为一种环境友好型生物肥料应用于高品质的番茄和其他作物,包括含番茄红素的蔬菜和水果。

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