Spore reproduction, glomalin content, and maize growth on mycorrhizal pot culture using acid mineral soil-based media

IF 0.5 Q4 AGRONOMY Sains Tanah Pub Date : 2022-06-18 DOI:10.20961/stjssa.v19i1.59444
V. Cahyani, Dianing Wahyu Kinasih, P. Purwanto, J. Syamsiyah
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引用次数: 1

Abstract

Arbuscular mycorrhiza (AM) is known as multifunctional fungi for plant helpers under adverse conditions. However, studies that focused on the production strategy of AM biofertilizers with specific targets related to the soil limitations are limited. This study aimed to examine AM inocula from several sources using various compositions of acid mineral soil-based media and maize hosts in pot cultures to obtain effective AM inocula to handle the phosphor (P) limitations in acid mineral soils. Zeolite and Inceptisols were used as comparing media. The study utilized a completely randomized factorial design with two factors, namely C = media composition (C0: zeolite; C1: representative media of Alfisols; C2: typical media of a mixture of Alfisols, Oxisols, and Ultisols; C3: typical media with the addition of Bio-RP nutrition; C4: Inceptisols) and I = AM inoculum source (I0: without inoculum; I1: inoculum from Alfisols; I2: mixed inoculum from Alfisols, Ultisols, and Oxisols; I3: mixed inoculum from eight soil types), and six replications per treatment combination. The AM cultures on acid mineral soil-based media, which yielded the highest mycorrhizal infection, spore reproduction, and glomalin content, were C1I2 and C3I2, while the highest maize growth and P concentration were obtained with C1I1, CII2, C2I1, and C3I2. Compared to all the treatments, C1I1 and C1I2 are the superior AM cultures. Further study is necessary to confirm the effectiveness of AM cultures.
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芽孢繁殖,球囊素含量,和玉米生长的菌根盆栽使用酸性矿物土为基础的培养基
丛枝菌根(AM)是一种在逆境条件下为植物提供帮助的多功能真菌。然而,针对与土壤限制相关的特定靶点的AM生物肥料生产策略的研究有限。本研究旨在利用不同组成的酸性矿质土基质和盆栽玉米寄主对不同来源的AM接种物进行研究,以获得有效的AM接种物,以应对酸性矿质土中磷(P)的限制。沸石和启肽为比较介质。本研究采用完全随机因子设计,有两个因素,即C =培养基组成(C0:沸石;C1: Alfisols代表媒体;C2: Alfisols, Oxisols, Ultisols混合物的典型介质;C3:添加Bio-RP营养的典型培养基;C4:吸附剂)和I = AM接种源(I0:无接种;I1:从Alfisols接种;I2:由Alfisols, Ultisols和Oxisols混合接种;I3:来自8种土壤类型的混合接种),每个处理组合6个重复。在酸性矿质土培养基上培养的AM菌根侵染率、孢子繁殖率和球囊素含量最高的是C1I2和C3I2,而玉米生长和磷浓度最高的是C1I1、CII2、C2I1和C3I2。与所有处理相比,C1I1和C1I2的AM培养效果较好。需要进一步的研究来证实AM培养的有效性。
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来源期刊
Sains Tanah
Sains Tanah Environmental Science-Pollution
CiteScore
1.90
自引率
0.00%
发文量
16
审稿时长
8 weeks
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