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缺磷条件下丛枝菌根真菌对旱稻土壤磷素利用及酶活性的影响

Arbuscular Mycorrhizal Fungi Response on Soil Phosphorus Utilization and Enzymes Activities in Aerobic Rice under Phosphorus-Deficient Conditions.

作者信息

Mitra Debasis, Panneerselvam Periyasamy, Senapati Ansuman, Chidambaranathan Parameswaran, Nayak Amaresh Kumar, Mohapatra Pradeep Kumar Das

机构信息

Department of Microbiology, Raiganj University, Raiganj 733134, West Bengal, India.

ICAR-National Rice Research Institute, Cuttack 753006, Odisha, India.

出版信息

Life (Basel). 2023 Apr 30;13(5):1118. doi: 10.3390/life13051118.

Abstract

The prominence of arbuscular mycorrhizal fungi (AMF) in sustainable rice production has long been recognized. However, there is little information about AMF response in aerobic rice cultivation under phosphorus (P)-deficient conditions. The aim of this experiment was to compare and determine the preeminent AMF effects on rice mycorrhizal colonization, responsiveness, P utilization, and different growth-promoting traits under P-deficient conditions. Different AMF genera . ( sp., sp., sp., sp., and sp.) in four different aerobic rice varieties developed by ICAR-NRRI, India (CR Dhan 201, CR Dhan 204, CR Dhan 205, and CR Dhan 207) were investigated using the check P-susceptible variety (IR 36) and the P-tolerant variety (Kasalath IC459373). Data analyzed through linear modeling approaches and bivariate associations found that AMF colonization was highly correlated with soil enzymes, particularly fluorescein diacetate (FDA) and plant P uptake. The microbial biomass carbon (MBC) and FDA content were significantly changed among rice varieties treated with AMF compared to uninoculated control. Out of four different rice varieties, CR Dhan 207 inoculated with AMF showed higher plant P uptake compared to other varieties. In all the rice varieties, AMF colonization had higher correlation coefficients with soil enzymes (FDA), MBC, and plant P uptake than uninoculated control. The present study indicates that AMF intervention in aerobic rice cultivation under P-deficient conditions significantly increased plant P uptake, soil enzymes activities and plant growth promotion. Thus, the information gathered from this study will help us to develop a viable AMF package for sustainable aerobic rice cultivation.

摘要

丛枝菌根真菌(AMF)在水稻可持续生产中的重要性早已得到认可。然而,关于缺磷条件下旱稻栽培中AMF的反应,目前所知甚少。本实验的目的是比较并确定在缺磷条件下,不同AMF对水稻菌根定殖、反应性、磷利用及不同促生长性状的卓越影响。研究了印度ICAR-NRRI培育的四个不同旱稻品种(CR Dhan 201、CR Dhan 204、CR Dhan 205和CR Dhan 207)中的不同AMF属( 种、 种、 种、 种和 种),以感磷品种(IR 36)和耐磷品种(Kasalath IC459373)作为对照。通过线性建模方法和双变量关联分析数据发现,AMF定殖与土壤酶,特别是荧光素二乙酸酯(FDA)和植物磷吸收高度相关。与未接种对照相比,接种AMF处理的水稻品种间微生物生物量碳(MBC)和FDA含量有显著变化。在四个不同水稻品种中,接种AMF的CR Dhan 207比其他品种表现出更高的植物磷吸收。在所有水稻品种中,与未接种对照相比,AMF定殖与土壤酶(FDA)、MBC和植物磷吸收的相关系数更高。本研究表明,在缺磷条件下,AMF对旱稻栽培的干预显著增加了植物磷吸收、土壤酶活性和促进了植物生长。因此,本研究收集的信息将有助于我们开发一套可行的AMF方案,用于可持续旱稻栽培。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5bd/10221761/281c66fd4c35/life-13-01118-g001.jpg

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