Evaluation of Soil Applied Arbuscular mycorrhiza Along with Foliar Nutrition of Nitrogen, Iron and Zinc on, Mycorrhizal Colonization, Physiological Parameters, Growth and Yield of Rice under Aerobic Condition

Q3 Agricultural and Biological Sciences Indian Journal Of Agricultural Research Pub Date : 2023-07-17 DOI:10.18805/ijare.a-6095
A. Sangothari, S. Radhamani, P. Janaki, V. Ravichandran, M. Gnanachitra, N. Thavaprakaash
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Abstract

Background: In rice belts, cultivation of rice under aerobic conditions provides an alternative way to reduce the enormous amounts of water usage, by using 50 percent of the water when compared to traditional cultivation. However, micronutrient deficiencies are more common in aerobic rice during its early stages of growth. Mycorrhizal fungi were found to be efficient in mobilizing the nutrients under aerobic situations. Methods: The field experiment was conducted in Department of Agronomy, Tamil Nadu Agricultural University, Coimbatore. The experiment consisted of thirteen treatments which includes different recommended doses of VAM 50, 62.5 and 75kg ha-1 along with different combinations of foliar application of 0.5% urea, 0.5% ZnSO4 and 1% FeSO4. Result: The study revealed that combined application of 150 % of recommended dose of VAM and foliar application of 0.5% urea + 0.5% ZnSO4 + 1% FeSO4 at 25 and 45 DAS significantly increased the VAM colonization area, photosynthetic pigments and growth parameters such as plant height, shoot and root weight, root growth, leaf area index and yield attributes and it was found to be a better optionin rice cultivation to overcome the micronutrient deficiencies in its earlier stages under aerobic conditions.
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土壤施用丛枝菌根与氮、铁、锌叶面营养对水稻好氧条件下菌根定殖、生理参数、生长和产量的评价
背景:在水稻带,在有氧条件下种植水稻提供了另一种减少大量用水量的方法,与传统种植相比,只需使用50%的水。然而,在需氧水稻生长的早期阶段,微量营养素缺乏更为常见。菌根真菌在好氧条件下能有效地调动养分。方法:在哥印拜陀泰米尔纳德邦农业大学农学系进行田间试验。试验共设13个处理,分别为VAM推荐用量50、62.5和75kg hm -1,叶面施用0.5%尿素、0.5% ZnSO4和1% FeSO4不同组合。结果:的研究显示,联合应用150%的推荐剂量的VAM和叶面应用0.5%尿素+ 0.5% ZnSO4 + 1%摘要将在25 - 45 DAS显著增加VAM殖民区,光合色素和生长参数如株高、茎和根重、根系生长、叶面积指数和产量的属性和它被发现是一个更好的optionin水稻种植克服在有氧条件下微量营养素缺乏的早期阶段。
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来源期刊
Indian Journal Of Agricultural Research
Indian Journal Of Agricultural Research Agricultural and Biological Sciences-Soil Science
CiteScore
1.00
自引率
0.00%
发文量
143
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