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A mathematical model on the effect of M. denticulata weed on different winter crops

机译:马齿M杂草对不同冬季作物影响的数学模型

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Many weeds interfere with the productivity of wheat and other winter annual crops; however, one common weed Medicago denticulata, appears to have a beneficial effect. An experiment was conducted at Agricultural Experimental Farm of the Indian Statistical Institute, Giridih, Jharkhand to observe the effect of M. denticulata (a legume) on different crops yield of barley (Hordeum vulgare Sensu lato), linseed (Linum usitatissimum L.), Indian mustard [Brassica juncea (L.) Czernj. & Cosson] and wheat (Triticum aestivum L.). The commensalisms interaction was studied, in which one species benefits, while the other is unaffected, between the crops, M. denticulata and other weeds, to observe the role of medicago as biological control agent of other weeds for enhancement of crop productivity. Further, a statistical test was performed to establish the effect of M. denticulata and weed infestations based on one-step Markov structure of the covariance matrix of the biomass. This permitted development of a mathematical model of a crop–M. denticulata–other weeds system and their interactions through direct and indirect competition for resources. Crops yield decreased considerably due to the presence of other weeds, while it increased due to introduction of medicago and hence medicago acted as a controlling agent in a crop–M. denticulata–other weeds system. Our mathematical analysis supported the experimental findings. The model parameters are estimated through a nonlinear least square and stochastic differential equations. Moreover, some thresholds for the growth of medicago population came out from our analysis that may be used as a biological control threshold for the enhancement of crop productivity.
机译:许多杂草会干扰小麦和其他冬季一年生作物的生产力;但是,一种常见的杂草苜蓿似乎具有有益的作用。在贾坎德邦Giridih的印度统计研究所的农业实验农场进行了一项实验,观察了M. denticulata(一种豆科植物)对亚麻籽(Linum usitatissimum L.)大麦(Hordeum vulgare Sensu lato)不同作物产量的影响,印度芥菜[芥菜(L.)Czernj。 &Cosson]和小麦(Triticum aestivum L.)。研究了共生关系,其中一种物种有益于作物,M。denticulata和其他杂草之间的受益,而另一种则不受影响,从而观察到麦草作为其他杂草的生物防治剂对提高作物生产力的作用。此外,基于生物量的协方差矩阵的一步式马尔可夫结构,进行了统计测试以建立牙垢分枝杆菌和杂草侵染的效果。这样就可以建立农作物M的数学模型。通过直接和间接争夺资源的方式,种植其他的杂草系统及其相互作用。由于存在其他杂草,农作物产量显着下降,而由于引入麦草而使其增产,因此,麦草在作物-M中充当了控制剂。齿–-其他杂草系统。我们的数学分析支持了实验结果。通过非线性最小二乘和随机微分方程估算模型参数。此外,从我们的分析中得出了一些药用种群增长的阈值,这些阈值可以用作提高作物生产力的生物控制阈值。

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