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Effect of Trichoderma spp on Plant Height of Local Rice Varieties in the Early Phase of Growth

机译:Trichoderma SPP在生长早期局部水稻品种植物高度的影响

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Shoots are important organs in plant growth, because the process of photosynthesis occurs in shoots, especially in plant leaves. Application Trichoderma as a bio fertilizer can increase the growth of shoots of various plants including superior varieties of rice plants. On the other hand, local rice varieties characterized by relatively slow growth Local varieties have not received sufficient attention of researchers to increase their growth. This has an unfavorable impact on preserving that variety in the field. This study aims to evaluate the response of local rice varieties to the application of Trichoderma spp in the seedbed and after transplanting. Two-factor factorial experiment was designed with a completely randomized design. Factor A consisted of 5 local rice varieties and Factor B consisted of 8 isolates and one control. Local variety was obtained from the West Sumtera region and the Trichoderma isolate came from the rhizosphere of lowland rice plants in Solok Regency and upland rice in West Pasaman. Application of Trichoderma spp is done by soaking the seeds with Trichoderma spp isolate. Response of plant height growth to isolates was observed when in the nursery at 2 weeks old and 2 weeks after transplanting. Data were processed by analysis of variance and Duncan's follow-up test at a significance of 5%. The results showed that plant height is influenced by variety when in the seedbed, but was not affected by the application of Trichoderma spp. Although there was no interaction, plant height after transplanting was influenced by varieties and isolates. The best isolate to increase plant height is KRT with an average height of 86.1 cm compared to a control of only 81.5 cm.
机译:芽是植物生长的重要器官,因为光合作用过程发生在芽中,特别是在植物叶中。应用Trichoderma作为生物肥料可以增加各种植物芽的生长,包括稻米植物的优越品种。另一方面,局部水稻品种以局部品种相对缓慢的增长而具有相对缓慢的局部品种,没有得到足够重视的研究人员以增加其增长。这对保护该领域的品种具有不利影响。本研究旨在评估当地水稻品种对籽床和移植后幼虫SPP施用的反应。双因素因子实验设计,具有完全随机设计。因子A由5种当地水稻品种和因子B组成,由8个分离物组成和一个控制。局部品种是从西苏尔达地区获得的,并且Trichoderma孤立来自索劳·丽晶和北帕萨马省旱稻的低地米植物的根际。 Trichoderma SPP的应用是通过用Trichoderma SPP分离物浸泡的种子来完成的。植物高度生长对分离株的反应在移植后2周龄和2周内在苗圃中观察到​​分离物。通过分析方差和Duncan的后续试验的分析来处理数据,其意义为5%。结果表明,植物高度在苗床时受各种影响,但不受Trichoderma SPP的应用的影响。虽然没有相互作用,移植后的植物高度受到品种和分离物的影响。增加植物高度的最佳分离物是KRT,平均高度为86.1厘米,而控制仅为81.5厘米。

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