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Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system

Intercropping is an important agronomic practice adopted to increase crop production and resource efficiency in areas with intensive agricultural production. Two sequential field trials were conducted in 2015–2016 to investigate the effect of shading on the morphological features, leaf structure, an...

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Autores principales: Fan, Yuanfang, Chen, Junxu, Cheng, Yajiao, Raza, Muhammad Ali, Wu, Xiaoling, Wang, Zhonglin, Liu, Qinlin, Wang, Rui, Wang, Xiaochun, Yong, Taiwen, Liu, Weiguo, Liu, Jiang, Du, Junbo, Shu, Kai, Yang, Wenyu, Yang, Feng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5979024/
https://www.ncbi.nlm.nih.gov/pubmed/29851989
http://dx.doi.org/10.1371/journal.pone.0198159
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author Fan, Yuanfang
Chen, Junxu
Cheng, Yajiao
Raza, Muhammad Ali
Wu, Xiaoling
Wang, Zhonglin
Liu, Qinlin
Wang, Rui
Wang, Xiaochun
Yong, Taiwen
Liu, Weiguo
Liu, Jiang
Du, Junbo
Shu, Kai
Yang, Wenyu
Yang, Feng
author_facet Fan, Yuanfang
Chen, Junxu
Cheng, Yajiao
Raza, Muhammad Ali
Wu, Xiaoling
Wang, Zhonglin
Liu, Qinlin
Wang, Rui
Wang, Xiaochun
Yong, Taiwen
Liu, Weiguo
Liu, Jiang
Du, Junbo
Shu, Kai
Yang, Wenyu
Yang, Feng
author_sort Fan, Yuanfang
collection PubMed
description Intercropping is an important agronomic practice adopted to increase crop production and resource efficiency in areas with intensive agricultural production. Two sequential field trials were conducted in 2015–2016 to investigate the effect of shading on the morphological features, leaf structure, and photosynthetic characteristics of soybean in a maize-soybean relay-strip intercropping system. Three treatments were designed on the basis of different row configurations A1 (“50 cm + 50 cm” one row of maize and one row of soybean with a 50 cm spacing between the rows), A2 (“160 cm + 40 cm” two rows of maize by wide-narrow row planting, where two rows of soybean were planted in the wide rows with a width of 40 cm, and with 60 cm row spacing was used between the maize and soybean rows), and CK (sole cropping of soybean, with 70 cm rows spacing). Results showed that the photosynthetically active radiation transmittances of soybean canopy at V5 stage under A2 treatment (31.1%) were considerably higher than those under A1 (8.7%) treatment, and the red-to-far-red ratio was reduced significantly under A1 (0.7) and A2 (1.0) treatments compared with those under CK (1.2). By contrast with CK, stem diameter, total aboveground biomass, chlorophyll content and net photosynthetic rate decreased significantly except plant height under A1 and A2. The thickness of palisade tissue and spongy tissue of soybean leaf under A1 and A2 were significantly reduced at V5 stage compared with CK. The leaf thicknesses under A1 and A2 were lower than those in CK by 39.5% and 18.2%, respectively. At the R1 stage of soybean (after maize harvest), the soybean plant height, stem biomass, leaf biomass and petiole biomass under A1 and A2 treatments were still significantly lower than those under CK, but no significant differences were observed in Chl a/b, P(n), epidermis thickness and spongy tissue thickness of soybean leaves in A2 compared with CK. In addition, the soybean yields (g plant(-1)) under A1 and A2 were 54.69% and 16.83% lower than those in CK, respectively. These findings suggested that soybean plants can regulate its morphological characteristics and leaf anatomical structures under different light environments.
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spelling pubmed-59790242018-06-17 Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system Fan, Yuanfang Chen, Junxu Cheng, Yajiao Raza, Muhammad Ali Wu, Xiaoling Wang, Zhonglin Liu, Qinlin Wang, Rui Wang, Xiaochun Yong, Taiwen Liu, Weiguo Liu, Jiang Du, Junbo Shu, Kai Yang, Wenyu Yang, Feng PLoS One Research Article Intercropping is an important agronomic practice adopted to increase crop production and resource efficiency in areas with intensive agricultural production. Two sequential field trials were conducted in 2015–2016 to investigate the effect of shading on the morphological features, leaf structure, and photosynthetic characteristics of soybean in a maize-soybean relay-strip intercropping system. Three treatments were designed on the basis of different row configurations A1 (“50 cm + 50 cm” one row of maize and one row of soybean with a 50 cm spacing between the rows), A2 (“160 cm + 40 cm” two rows of maize by wide-narrow row planting, where two rows of soybean were planted in the wide rows with a width of 40 cm, and with 60 cm row spacing was used between the maize and soybean rows), and CK (sole cropping of soybean, with 70 cm rows spacing). Results showed that the photosynthetically active radiation transmittances of soybean canopy at V5 stage under A2 treatment (31.1%) were considerably higher than those under A1 (8.7%) treatment, and the red-to-far-red ratio was reduced significantly under A1 (0.7) and A2 (1.0) treatments compared with those under CK (1.2). By contrast with CK, stem diameter, total aboveground biomass, chlorophyll content and net photosynthetic rate decreased significantly except plant height under A1 and A2. The thickness of palisade tissue and spongy tissue of soybean leaf under A1 and A2 were significantly reduced at V5 stage compared with CK. The leaf thicknesses under A1 and A2 were lower than those in CK by 39.5% and 18.2%, respectively. At the R1 stage of soybean (after maize harvest), the soybean plant height, stem biomass, leaf biomass and petiole biomass under A1 and A2 treatments were still significantly lower than those under CK, but no significant differences were observed in Chl a/b, P(n), epidermis thickness and spongy tissue thickness of soybean leaves in A2 compared with CK. In addition, the soybean yields (g plant(-1)) under A1 and A2 were 54.69% and 16.83% lower than those in CK, respectively. These findings suggested that soybean plants can regulate its morphological characteristics and leaf anatomical structures under different light environments. Public Library of Science 2018-05-31 /pmc/articles/PMC5979024/ /pubmed/29851989 http://dx.doi.org/10.1371/journal.pone.0198159 Text en © 2018 Fan et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Fan, Yuanfang
Chen, Junxu
Cheng, Yajiao
Raza, Muhammad Ali
Wu, Xiaoling
Wang, Zhonglin
Liu, Qinlin
Wang, Rui
Wang, Xiaochun
Yong, Taiwen
Liu, Weiguo
Liu, Jiang
Du, Junbo
Shu, Kai
Yang, Wenyu
Yang, Feng
Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system
title Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system
title_full Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system
title_fullStr Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system
title_full_unstemmed Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system
title_short Effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system
title_sort effect of shading and light recovery on the growth, leaf structure, and photosynthetic performance of soybean in a maize-soybean relay-strip intercropping system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5979024/
https://www.ncbi.nlm.nih.gov/pubmed/29851989
http://dx.doi.org/10.1371/journal.pone.0198159
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