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生石灰和过磷酸钙通过改良酸化土壤缓解苹果重茬病

Quicklime and Superphosphate Alleviating Apple Replant Disease by Improving Acidified Soil.

作者信息

Zhao Lei, Jiang Weitao, Chen Ran, Wang Haiyan, Duan Yanan, Chen Xuesen, Shen Xiang, Yin Chengmiao, Mao Zhiquan

机构信息

State Key Laboratory of Crop Biology, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai'an, Shandong 271018, China.

出版信息

ACS Omega. 2022 Feb 25;7(9):7920-7930. doi: 10.1021/acsomega.1c06876. eCollection 2022 Mar 8.

Abstract

A two-year field experiment was carried out in order to study the effect of different soil modifiers on alleviating apple replant disease (ARD) in the apple orchards. Four treatments were as follows: replanted apple orchard soil (CK), replanted apple orchard soil treated with quicklime 1.0 g·kg (T1), replanted apple orchard soil treated with 1.0 g·kg quicklime and 1.0 g·kg superphosphate (T2), and replanted apple orchard soil treated with 1.0 g·kg plant ash (T3). Soil pH, plant biomass, soil bacteria, soil fungi, , soil enzymes, plant chlorophyll, and photosynthetic parameters were measured to detect the improvement effects of different soil amendments on acidified soil and to alleviate the ARD. The three treatments stably raised the pH of acidified soil and improved the conditions of the plant rhizosphere environment. Compared with the control, T1, T2, and T3 treatments significantly increased growth and plant biomass indexes, such as plant height and ground diameter, as well as photosynthetic parameters. Among the three treatments, T2 had the strongest effects. In July 2018 and July 2019, the number of bacteria was 151.3 and 190.5% higher in T2-treated soil than in control soil, and the number of soil fungi was 53.6 and 53.3% lower. In 2018 and 2019, the copy number of was 63.6 and 58.6% lower and that of was 51.8 and 55.7% lower. The T1, T2, and T3 treatments significantly increased soil enzyme activity and leaf chlorophyll content, and their effects were generally ranked T2 > T1 > T3. In conclusion, a combination of 1.0 g·kg quicklime and 1.0 g·kg superphosphate added to acidified replant soil increased the soil pH, improved the soil environment, increased the number of bacteria, reduced the number of fungi, increased soil enzyme activity, and improved plant photosynthetic capacity, thereby promoting the growth of replanted seedlings and effectively reducing ARD.

摘要

为研究不同土壤改良剂对苹果园苹果再植病(ARD)的缓解效果,开展了一项为期两年的田间试验。试验设置了4个处理:重茬苹果园土壤(CK)、施加1.0 g·kg生石灰的重茬苹果园土壤(T1)、施加1.0 g·kg生石灰和1.0 g·kg过磷酸钙的重茬苹果园土壤(T2)、施加1.0 g·kg草木灰的重茬苹果园土壤(T3)。通过测定土壤pH值、植株生物量、土壤细菌、土壤真菌、土壤酶、植物叶绿素和光合参数,来检测不同土壤改良剂对酸化土壤的改良效果及对ARD的缓解作用。这3个处理均能稳定提高酸化土壤的pH值,改善植株根际环境条件。与对照相比,T1、T2和T3处理显著提高了株高、地径等生长和植株生物量指标以及光合参数。3个处理中,T2的效果最强。2018年7月和2019年7月,T2处理土壤中的细菌数量分别比对照土壤高151.3%和190.5%,土壤真菌数量分别低53.6%和53.3%。2018年和2019年,[此处原文缺失具体物质,无法准确翻译]的拷贝数分别低63.6%和58.6%,[此处原文缺失具体物质,无法准确翻译]的拷贝数分别低51.8%和55.7%。T1、T2和T3处理显著提高了土壤酶活性和叶片叶绿素含量,其效果总体上为T2>T1>T3。综上所述,向酸化重茬土壤中添加1.0 g·kg生石灰和1.0 g·kg过磷酸钙,可提高土壤pH值,改善土壤环境,增加细菌数量,减少真菌数量,提高土壤酶活性,增强植株光合能力,从而促进重茬幼苗生长,有效减轻ARD。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87a3/8908487/3277fbdb0270/ao1c06876_0002.jpg

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