Critical Level of Manganese in Soil and Leaves: It’s Relationship to Fruit Quality of Mangosteen (Garcinia mangostana L.)

Martias, B. Hariyanto, T. Purnama, Nofiarli, D. Emilda, Hendri, A. F. Siregar, A. Kasno, S. Yuliati, D. Hernita, I. Arsana, M. J. Mejaya
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Abstract

Manganese (Mn) is one of the essential micronutrients that plays a crucial role in plants' growth and development and is also considered a limiting factor for crop production. This study aimed to determine the critical level of Mn in soil and leaves for improving the quality of mangosteen fruit. The research was conducted in 2015 in several mangosteen production centers, including West Sumatra (Simalanggang and Banja Laweh), West Java (Karacak and Barengkok), Bali (Belimbing and Selamadeg). A well-maintained of fifteen to twenty years old mangosteen plants were used with uniform soil fertility. Purposive random sampling is conducted in each location to select ten plants from each site. Soil samples are taken from under the plant canopy around 0-30 cm in depth at the four cardinal directions. The terminal leaves that collected from the middle part of the plant canopy are used as the leaf samples. Physiological ripe fruits are taken after ripening with index 3-4. The parameters observed consist of (1) soil pH of H2O, Ca, Mg, Mn-available, (2) levels of Mn, Ca, Mg, and K in the leaves, (3) fruit quality (fruit weight, fruit diameter, fruit skin thickness, aryl weight, seed weight). The results showed the Mn content in the soil ranged from 18.89 to 33.63 ppm. Available Mn is negatively affected by pH, Ca, and Mg exchangeability. Soil Mn is linearly related to leaf Mn with R2 0.76. The critical values of Mn in leaf and soil for mangosteen plants in Indonesia were 425 ppm and 22 to 24 ppm, respectively.
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土壤和叶片中锰的临界水平与山竹果实品质的关系
锰(Mn)是植物生长发育过程中必需的微量元素之一,也被认为是作物生产的限制因素。本研究旨在确定土壤和叶片中锰的临界水平,以提高山竹果实品质。该研究于2015年在几个山竹生产中心进行,包括西苏门答腊(Simalanggang和Banja Laweh)、西爪哇(Karacak和Barengkok)、巴厘岛(Belimbing和Selamadeg)。在土壤肥力均匀的情况下,使用维护良好的15至20年树龄山竹植株。在每个地点进行有目的的随机抽样,从每个地点选择10株植物。土壤样品在4个基本方向上从植物冠层下0 ~ 30 cm深度处采集。从植物冠层中部采集的顶叶作为叶片样本。生理成熟果实成熟后取,指数3-4。观测参数包括:(1)土壤中H2O、Ca、Mg、Mn有效pH值;(2)叶片中Mn、Ca、Mg、K含量;(3)果实品质(果实质量、果实直径、果皮厚度、芳基质量、种子质量)。结果表明,土壤中Mn含量在18.89 ~ 33.63 ppm之间。有效锰受到pH、Ca和Mg交换性的负面影响。土壤锰与叶片锰呈线性相关,R2为0.76。印度尼西亚山竹植物叶片和土壤中锰的临界值分别为425 ppm和22 ~ 24 ppm。
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