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采用数学建模方法理解用作肥料的富镁合成石膏对酸性土壤中巴西橡胶树生长的影响。

Mathematical modelling approach to understanding the effect of Mg-rich synthetic gypsum used as fertilizer on growth of Hevea brasiliensis in acid soils.

作者信息

Ayanda Fatai Arolu, Anuar Mohd Firdaus Mohd, Kashim Susilawati, Yusuff Oladosu, Arolu Ibrahim Wasiu, Adekola Olabisi Fatimo, Crew Adrian

机构信息

School of Applied Sciences, University of West of England, Bristol, United Kingdom.

Department of Land Management, Faculty of Agriculture, Universiti Putra Malaysia (UPM), Serdang, Selangor, Malaysia.

出版信息

PLoS One. 2025 Jan 3;20(1):e0307476. doi: 10.1371/journal.pone.0307476. eCollection 2025.

Abstract

Knowledge of plant growth dynamics is essential where constraints such as COVID-19 lockdown restrictions have limited its field establishment. Thus, modeling can be used to predict plant performance where field planting/monitoring cannot be achieved. This study was conducted on the growth dynamics of rubber planted on two acid soils treated with either dolomitic limestone (GML), kieserite or Mg-rich synthetic gypsum (MRSG) to supply the Mg required by rubber seedlings. To understand the effect of applied treatments on the changes in rubber growth, data on plant height, stem diameter and biomass were regressed against months after transplanting (MAT) using the equation y = A/ (1+be-ct), and its derivative [Formula: see text] was utilized for estimating the growth rate of the parameters. The dynamics in plant height, stem girth and plant biomass were modelled using an exponential function of y = Aebt and their rate of change was derived using dx/dy = Abebt. The experiment indicated that the logistic growth curve model expressed as y = A/ (1+be-ct), closely described the growth in terms of each parameter against months after transplanting. A high probability level (a = 0.0001) was recorded in the model for all the treatments in the study. The growth of rubber seedlings in the glasshouse was improved by MRSG treatment in the two studied soils (Ultisol and Oxisol), giving comparable results to other Mg fertilizer treatments. The plant performed better on the Ultisol compared to the Oxisol. The results indicate the potential of using MRSG to replace conventional Mg-fertilizers to sustain rubber seedling growth.

摘要

在诸如新冠疫情封锁限制等因素限制了植物田间定植的情况下,了解植物生长动态至关重要。因此,在无法进行田间种植/监测时,建模可用于预测植物表现。本研究针对种植在两种酸性土壤上的橡胶树的生长动态展开,这两种土壤分别用白云石粉(GML)、硫镁矾或富镁合成石膏(MRSG)处理,以提供橡胶幼苗所需的镁。为了解所施用处理对橡胶生长变化的影响,利用方程y = A / (1 + be⁻ct),将株高、茎直径和生物量数据与移栽后月份(MAT)进行回归分析,并利用其导数[公式:见原文]估算参数的生长速率。利用y = Aebt的指数函数对株高、茎围和植物生物量的动态进行建模,并通过dx/dy = Abebt推导其变化率。实验表明,以y = A / (1 + be⁻ct)表示的逻辑斯蒂生长曲线模型能很好地描述各参数相对于移栽后月份的生长情况。该模型在本研究的所有处理中均记录到高概率水平(α = 0.0001)。在两种研究土壤(老成土和氧化土)中,MRSG处理改善了温室中橡胶幼苗的生长,与其他镁肥处理效果相当。与氧化土相比,橡胶树在老成土上生长得更好。结果表明,利用MRSG替代传统镁肥以维持橡胶幼苗生长具有潜力。

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