Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcum

Intercropping and plant growth-promoting rhizobacteria improve sustainability of agro-ecosystems. To evaluate the effect of Azotobacter (Azotobacter chroococcum) inoculation on productivity of a peanut /maize intercropping system, a two-year study was design as a randomized complete block in a facto...

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出版年:Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
主要な著者: Siavash Pourjani, Hashem Aminpanah, mohammadnaghi safarzade vishekaei
フォーマット: 論文
言語:ペルシア語
出版事項: Islamic Azad University, Tabriz Branch 2024-04-01
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オンライン・アクセス:https://sanad.iau.ir/journal/jcep/Article/1106675
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author Siavash Pourjani
Hashem Aminpanah
mohammadnaghi safarzade vishekaei
author_facet Siavash Pourjani
Hashem Aminpanah
mohammadnaghi safarzade vishekaei
author_sort Siavash Pourjani
collection DOAJ
container_title Ikufīziyuluzhī-i Giyāhān-i Zirā̒ī
description Intercropping and plant growth-promoting rhizobacteria improve sustainability of agro-ecosystems. To evaluate the effect of Azotobacter (Azotobacter chroococcum) inoculation on productivity of a peanut /maize intercropping system, a two-year study was design as a randomized complete block in a factorial arrangement with three replicates at Astaneh-ye Ashrafiyeh, Guilan province. Factors were Azotobacter inoculation [control (non-inoculated) and inoculated with Azotobacter chroococcum) and intercropping pattern (Sole cropping of peanut and maize, additive intercropping pattern at three levels (100% peanut + 100% maize, 100% peanut + 50% maize, and 50% peanut + 100% maize), and replacement intercropping pattern at three levels (50% peanut + 50% maize, 67% peanut +33% maize, and 33% peanut + 67% maize). Results showed that gain yields of maize and peanut were significantly affected by Azotobacter inoculation and intercropping pattern. Inoculation with Azotobacter chroococcum significantly increased grain yields of peanut and maize by 10% and 16%, respectively. Maximum and minimum of land equivalent ratio (LER) were observed at 100% peanut + 50% maize and 50% peanut + 50% maize, respectively and inoculated intercropped plots with Azotobacter chroococcum had 12-16% grater LER that non-inoculated ones. Regards to impossibility of mechanical weed control by machines in additive intercropping patterns, to obtain the highest productivity in maize/peanut intercropping system, intercropping pattern of 100% peanut + 50% maize along with Azotobacter application will be suitable in fields with low weed density. Otherwise, based on LER and grain yield of peanut, the intercropping pattern of 67% peanut + 33% maize along with Azotobacter application will be suitable.
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spelling doaj-art-cd4e4ba9ec47403ab977149e6df196e82025-08-20T02:50:37ZfasIslamic Azad University, Tabriz BranchIkufīziyuluzhī-i Giyāhān-i Zirā̒ī2538-18222476-731X2024-04-011767275296Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcumSiavash Pourjani0Hashem Aminpanah1mohammadnaghi safarzade vishekaei2Ph.D. Student of Agronomy, Rasht Branch, Islamic Azad University, Rasht, IranAssociate Professor, Department of Agronomy and Plant Breeding, Rasht Branch, Islamic Azad University, Rasht, IranAssociate Professor, Department of Agronomy and Plant Breeding, Rasht Branch, Islamic Azad University, Rasht, IranIntercropping and plant growth-promoting rhizobacteria improve sustainability of agro-ecosystems. To evaluate the effect of Azotobacter (Azotobacter chroococcum) inoculation on productivity of a peanut /maize intercropping system, a two-year study was design as a randomized complete block in a factorial arrangement with three replicates at Astaneh-ye Ashrafiyeh, Guilan province. Factors were Azotobacter inoculation [control (non-inoculated) and inoculated with Azotobacter chroococcum) and intercropping pattern (Sole cropping of peanut and maize, additive intercropping pattern at three levels (100% peanut + 100% maize, 100% peanut + 50% maize, and 50% peanut + 100% maize), and replacement intercropping pattern at three levels (50% peanut + 50% maize, 67% peanut +33% maize, and 33% peanut + 67% maize). Results showed that gain yields of maize and peanut were significantly affected by Azotobacter inoculation and intercropping pattern. Inoculation with Azotobacter chroococcum significantly increased grain yields of peanut and maize by 10% and 16%, respectively. Maximum and minimum of land equivalent ratio (LER) were observed at 100% peanut + 50% maize and 50% peanut + 50% maize, respectively and inoculated intercropped plots with Azotobacter chroococcum had 12-16% grater LER that non-inoculated ones. Regards to impossibility of mechanical weed control by machines in additive intercropping patterns, to obtain the highest productivity in maize/peanut intercropping system, intercropping pattern of 100% peanut + 50% maize along with Azotobacter application will be suitable in fields with low weed density. Otherwise, based on LER and grain yield of peanut, the intercropping pattern of 67% peanut + 33% maize along with Azotobacter application will be suitable.https://sanad.iau.ir/journal/jcep/Article/1106675land equivalent ratio legume-cereal intercropping plant growth-promoting rhizobacteria sustainable agriculture yield
spellingShingle Siavash Pourjani
Hashem Aminpanah
mohammadnaghi safarzade vishekaei
Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcum
land equivalent ratio
legume-cereal intercropping
plant growth-promoting rhizobacteria
sustainable agriculture
yield
title Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcum
title_full Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcum
title_fullStr Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcum
title_full_unstemmed Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcum
title_short Maize- Peanut Intercropping Under Inoculated with Azotobacter chroococcum
title_sort maize peanut intercropping under inoculated with azotobacter chroococcum
topic land equivalent ratio
legume-cereal intercropping
plant growth-promoting rhizobacteria
sustainable agriculture
yield
url https://sanad.iau.ir/journal/jcep/Article/1106675
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AT hashemaminpanah maizepeanutintercroppingunderinoculatedwithazotobacterchroococcum
AT mohammadnaghisafarzadevishekaei maizepeanutintercroppingunderinoculatedwithazotobacterchroococcum