Light interception and radiation use efficiency (RUE) in maize (Zea mays. L) intercropping with greengram (Vigna radiata L.)

Q4 Immunology and Microbiology Journal of Applied and Natural Science Pub Date : 2023-09-19 DOI:10.31018/jans.v15i3.4751
Govindaraj T, N. Maragatham, S P. Ramanathan, V. Geethalakshmi, M. K. Kalarani
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Abstract

Intercropping is growing two or more crop species simultaneously, different canopy architectures by row configuration, changing light interception, radiation utilisation, and increased yield. The present study aimed to evaluate different intercropping systems affected light interception per cent and radiation use efficiency in maize (Zea mays L.) intercropping with greengram (Vigna radiata L.) different ratios. Field experiments were conducted for Kharif 2022 and Rabi 2022-2023 seasons, which were laid out in a split-plot design and replicated three times. Three Nitrogen levels viz., N1 - 75 % RDN (Recommended dose of Nitrogen), N2 – 100% RDN, N3-125% RDN had taken as the main plot and three intercropping treatments were taken as subplot viz., M2G2- replacement series (two row of maize and two row of Greengram), M4G2- replacement series (four rows of maize and two row of Greengram), M2G3-paired row system (two rows of maize and three rows of Greengram), and sole maize. Both light interception and radiation use efficiency were significantly affected by intercropping systems. Light interception per cent of the main crop (maize) was significantly higher (69.0, 75.5 and 71.0 % during Kharif and 60.1, 78.1 and 76.6 during rabi) at vegetative, flowering and maturity phases, respectively. The Kharif 2022 and Rabi 2022-2023 maximum Radiation Use Efficiency (RUE) of Maize intercropping with green gram (maize + greengram) was higher in T12 (M2G3 paired row with 125 % Recommended Dose of Nitrogen) recorded as 2.46 (Kharif) and 1.43 (rabi). The outcome might be utilised to optimise the row configuration of intercropping design, explain the mechanism of intercropping on light utilisation, and improve radiation use efficiency.
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玉米的光截获和辐射利用效率(RUE)。L)绿萝间作(Vigna radiata L.)
间作是指同时种植两种或两种以上的作物,通过行配置不同的冠层结构,改变光拦截,辐射利用和提高产量。本研究旨在评价不同间作制度对绿芽玉米(Zea mays L.)间作不同比例光截获率和辐射利用效率的影响。在Kharif 2022和Rabi 2022-2023季节进行了现场试验,采用分块设计,并重复了三次。以N1 - 75% RDN(推荐施氮量)、N2 - 100% RDN、N3-125% RDN 3个氮肥水平为主地块,以M2G2-替代系列(玉米2行、格林格拉姆2行)、M4G2-替代系列(玉米4行、格林格拉姆2行)、m2g3配对行制(玉米2行、格林格拉姆3行)和单玉米3个间作处理为次地块。间作对作物的光截获效率和辐射利用效率均有显著影响。主要作物(玉米)在营养期、开花期和成熟期的光截获率分别为69.0%、75.5%和71.0%,旱季为60.1%、78.1和76.6。Kharif 2022和Rabi 2022-2023绿革间作(玉米+绿革)的最大辐射利用效率(RUE)在T12 (M2G3配对行,推荐施氮量为125%)较高,分别为2.46 (Kharif)和1.43 (Rabi)。研究结果可为优化间作结构设计、解释间作对光能利用的影响机制、提高辐射利用效率提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Applied and Natural Science
Journal of Applied and Natural Science Immunology and Microbiology-Immunology and Microbiology (all)
CiteScore
0.80
自引率
0.00%
发文量
168
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