Effect of Liquid Fertilizer on Seedling Enhalus acoroides Seeds (Linnaeus f.) Royle 1839 (Fam: Hydrocharitaceae)

Ardian Nurrasyid Chamidy, W. Widianingsih, Munasik Munasik, I. Riniatsih, AB Susanto
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Abstract

The decrease in seagrass coverage and ecosystem harm to seagrass meadows is an annual occurrence resulting from both natural and human activities.  Seagrass seeding has been deemed an effective restoration method, but its application is restricted by suboptimal environmental conditions and constraints associated with directly planting seagrass seeds in their natural habitat. The influence of environmental parameters, particularly nutrients, significantly affect on seagrass seed survival. NPK liquid fertilizer is commonly used in aquatic plants and is readily accessible in the market. It serves as a crucial source of macronutrients for seagrass. This study investigates the impact of different concentrations of NPK liquid fertilizer on the survival rate, growth, and chlorophyll, a content of E. acoroides seedlings. The study took place between March and May 2023 at the marine biology laboratory of the marine science study program at Diponegoro University's Faculty of Fisheries and Marine Science. According to the Manova statistical test, the NPK liquid fertilizer had an impact on the growth rate, biomass, and chlorophyll-a. The seagrass seeding container of E. acoroides treated with a liquid fertilizer concentration of 4.5 ml/100l exhibited the highest average growth rate of 0.29 cm/day and a chlorophyll-a value of 12.395 mg/g, with a survival rate of 100%. Causal connections between statements ensure logical construction. In contrast, seedlings without liquid fertilizer treatment showed the lowest growth rate of 0.19 cm/day and chlorophyll-a values of 5.169 mg/g, with a survival rate of 85.19%. Technical term abbreviations such as 'cm/day' and 'mg/g' are explained when first used to ensure clarity. Based on these findings, using liquid fertilizer with a concentration of 4.5 ml/l exhibits potential for restoring seagrass ecosystems. 
液体肥料对幼苗 Enhalus acoroides Seeds (Linnaeus f.) Royle 1839 (Fam: Hydrocharitaceae) 的影响
由于自然和人类活动的影响,海草覆盖率下降,海草草甸生态系统受到破坏,这是每年都会发生的事情。 海草播种被认为是一种有效的恢复方法,但其应用受到环境条件不理想以及在海草自然栖息地直接播种的限制。环境参数,尤其是养分,对海草种子的存活有很大影响。氮磷钾液体肥料常用于水生植物,在市场上很容易买到。它是海草重要的宏量营养元素来源。本研究调查了不同浓度的 NPK 液体肥料对 E. acoroides 幼苗的存活率、生长和叶绿素 a 含量的影响。研究于 2023 年 3 月至 5 月在迪波内戈罗大学渔业与海洋科学学院海洋科学研究课程的海洋生物实验室进行。根据 Manova 统计检验,NPK 液体肥料对生长速度、生物量和叶绿素-a 有影响。用浓度为 4.5 毫升/100 升的液体肥料处理的 E. acoroides 海草播种容器的平均生长率最高,为 0.29 厘米/天,叶绿素-a 值为 12.395 毫克/克,存活率为 100%。语句之间的因果关系确保了逻辑结构的合理性。相比之下,未经液肥处理的幼苗生长速度最低,为 0.19 厘米/天,叶绿素-a 值为 5.169 毫克/克,成活率为 85.19%。在首次使用 "厘米/天 "和 "毫克/克 "等专业术语缩写时,会对其进行解释,以确保清晰明了。根据这些发现,使用浓度为 4.5 毫升/升的液体肥料具有恢复海草生态系统的潜力。
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