Shah Adnan Noor, Tanveer Mohsin, Shahzad Babar, Yang Guozheng, Fahad Shah, Ali Saif, Bukhari Muhammad Adnan, Tung Shahbaz Atta, Hafeez Abdul, Souliyanonh Biangkham
MOA Key Laboratory of Crop Ecophysiology and Farming System in the Middle Reaches of the Yangtze River, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, People's Republic of China.
School of Land and Food, University of Tasmania, Hobart, Australia.
Environ Sci Pollut Res Int. 2017 Apr;24(11):10056-10067. doi: 10.1007/s11356-017-8421-y. Epub 2017 Jan 21.
Soil compaction causes substantial reduction in agriculture productivity and has always been of great distress for farmers. Intensive agriculture seems to be more crucial in causing compaction. High mechanical load, less crop diversification, intensive grazing, and irrigation methods lead to soil compaction. It is further exasperated when these factors are accompanied with low organic matter, animal trampling, engine vibrations, and tillage at high moisture contents. Soil compaction increases soil bulk density and soil strength, while decreases porosity, aggregate stability index, soil hydraulic conductivity, and nutrient availability, thus reduces soil health. Consequently, it lowers crop performance via stunted aboveground growth coupled with reduced root growth. This paper reviews the potential causes of compaction and its consequences that have been published in last two decades. Various morphological and physiological alterations in plant as result of soil compaction have also been discussed in this review.
土壤压实会导致农业生产力大幅下降,一直是农民面临的重大困扰。集约农业似乎在导致土壤压实方面更为关键。高机械负荷、作物多样性少、过度放牧和灌溉方式都会导致土壤压实。当这些因素再加上低有机质、动物践踏、发动机振动以及在高含水量时进行耕作时,情况会进一步恶化。土壤压实会增加土壤容重和土壤强度,同时降低孔隙度、团聚体稳定性指数、土壤水力传导率和养分有效性,从而损害土壤健康。因此,它会通过抑制地上部分生长以及减少根系生长来降低作物产量。本文综述了过去二十年来已发表的有关土壤压实的潜在原因及其后果。本综述还讨论了土壤压实导致的植物各种形态和生理变化。