Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density

High planting density of maize usually results in higher grain yield but also raises the risk of lodging. Cultivar intercropping had been proved to improve yield and stress resistance. Thus, we aimed to coordinate grain yield and lodging resistance of maize under high planting density by intercroppi...

Full description

Saved in:
Bibliographic Details
Main Authors: Jianhong Ren, Dejie Wei, Xinru Zhang, Cai Wu, Wenwen Han, Lingxin Shi, Zhiyi Tang, Zhihua Wu, Guangzhou Liu, Yanhong Cui, Xiong Du, Zhen Gao
Format: Article
Language:English
Published: Frontiers Media S.A. 2025-04-01
Series:Frontiers in Plant Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fpls.2025.1570921/full
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849310709256552448
author Jianhong Ren
Dejie Wei
Xinru Zhang
Cai Wu
Wenwen Han
Lingxin Shi
Zhiyi Tang
Zhihua Wu
Guangzhou Liu
Yanhong Cui
Xiong Du
Zhen Gao
author_facet Jianhong Ren
Dejie Wei
Xinru Zhang
Cai Wu
Wenwen Han
Lingxin Shi
Zhiyi Tang
Zhihua Wu
Guangzhou Liu
Yanhong Cui
Xiong Du
Zhen Gao
author_sort Jianhong Ren
collection DOAJ
description High planting density of maize usually results in higher grain yield but also raises the risk of lodging. Cultivar intercropping had been proved to improve yield and stress resistance. Thus, we aimed to coordinate grain yield and lodging resistance of maize under high planting density by intercropping short-stalked Zhengdan958 (ZD) with tall-stalked Xianyu335 (XY). Five planting systems were conducted, i.e. SZD: sole Zhengdan 958 at normal density (7.5 plants m-2); SXY and SHXY: sole Xianyu 335 at normal and high density (9.0 plants m-2); IND and IHD: normal density ZD intercropped with normal and high density XY, respectively. Land equivalent ratio (LER) averaged to 0.99 and 0.96 in two experimental years, indicating no land use advantage of maize variety intercropping compared to monocultures. The average relative yield (partial LER) of ZD was 0.36-0.42, but that of XY was 0.54-0.63, indicating dominance of tall XY in the intercropping. Yield of intercropped XY per meter row was 13.3% and 17.0% higher than sole XY in two years; however, yield of intercropped ZD in IND and IHD was 16.7% and 25.3% lower than sole ZD in this study, respectively. Compared with IND, IHD did not significantly improve the population yield. The upper leaf area of intercropped XY was greater than sole stand, leading to increased interception of photosynthetically active radiation (PAR). However, the increased leaf area of intercropped XY resulted in reduced PAR for ZD, especially at the middle layer where assimilates are directly transported to the ear. Moreover, decreased superoxide dismutase (SOD) activity and SPAD, increased malondialdehyde content of ear leaf was observed for intercropped ZD, due to shading stress caused by tall XY. The principal component analysis indicated upper and middle leaf area, light interception, and SOD were closely related to grain yield. Lodging rate of sole XY under normal and high density was 4.3% and 22.0% in 2021, but lodging was absent for ZD and intercropped XY, which demonstrated that the lodging resistance of intercropped XY was significantly enhanced. This study presents a strategy to enhance maize lodging resistance without yield penalty or requiring additional inputs.
format Article
id doaj-art-0d08b3e0eece4159a03d4b16db8eaaf1
institution Kabale University
issn 1664-462X
language English
publishDate 2025-04-01
publisher Frontiers Media S.A.
record_format Article
series Frontiers in Plant Science
spelling doaj-art-0d08b3e0eece4159a03d4b16db8eaaf12025-08-20T03:53:39ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2025-04-011610.3389/fpls.2025.15709211570921Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting densityJianhong RenDejie WeiXinru ZhangCai WuWenwen HanLingxin ShiZhiyi TangZhihua WuGuangzhou LiuYanhong CuiXiong DuZhen GaoHigh planting density of maize usually results in higher grain yield but also raises the risk of lodging. Cultivar intercropping had been proved to improve yield and stress resistance. Thus, we aimed to coordinate grain yield and lodging resistance of maize under high planting density by intercropping short-stalked Zhengdan958 (ZD) with tall-stalked Xianyu335 (XY). Five planting systems were conducted, i.e. SZD: sole Zhengdan 958 at normal density (7.5 plants m-2); SXY and SHXY: sole Xianyu 335 at normal and high density (9.0 plants m-2); IND and IHD: normal density ZD intercropped with normal and high density XY, respectively. Land equivalent ratio (LER) averaged to 0.99 and 0.96 in two experimental years, indicating no land use advantage of maize variety intercropping compared to monocultures. The average relative yield (partial LER) of ZD was 0.36-0.42, but that of XY was 0.54-0.63, indicating dominance of tall XY in the intercropping. Yield of intercropped XY per meter row was 13.3% and 17.0% higher than sole XY in two years; however, yield of intercropped ZD in IND and IHD was 16.7% and 25.3% lower than sole ZD in this study, respectively. Compared with IND, IHD did not significantly improve the population yield. The upper leaf area of intercropped XY was greater than sole stand, leading to increased interception of photosynthetically active radiation (PAR). However, the increased leaf area of intercropped XY resulted in reduced PAR for ZD, especially at the middle layer where assimilates are directly transported to the ear. Moreover, decreased superoxide dismutase (SOD) activity and SPAD, increased malondialdehyde content of ear leaf was observed for intercropped ZD, due to shading stress caused by tall XY. The principal component analysis indicated upper and middle leaf area, light interception, and SOD were closely related to grain yield. Lodging rate of sole XY under normal and high density was 4.3% and 22.0% in 2021, but lodging was absent for ZD and intercropped XY, which demonstrated that the lodging resistance of intercropped XY was significantly enhanced. This study presents a strategy to enhance maize lodging resistance without yield penalty or requiring additional inputs.https://www.frontiersin.org/articles/10.3389/fpls.2025.1570921/fullintercroppingleaf areaphotosynthetically active radiationland equivalent ratioyield
spellingShingle Jianhong Ren
Dejie Wei
Xinru Zhang
Cai Wu
Wenwen Han
Lingxin Shi
Zhiyi Tang
Zhihua Wu
Guangzhou Liu
Yanhong Cui
Xiong Du
Zhen Gao
Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density
Frontiers in Plant Science
intercropping
leaf area
photosynthetically active radiation
land equivalent ratio
yield
title Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density
title_full Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density
title_fullStr Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density
title_full_unstemmed Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density
title_short Intercropping of short- and tall-stature maize decreases lodging risk without yield penalty at high planting density
title_sort intercropping of short and tall stature maize decreases lodging risk without yield penalty at high planting density
topic intercropping
leaf area
photosynthetically active radiation
land equivalent ratio
yield
url https://www.frontiersin.org/articles/10.3389/fpls.2025.1570921/full
work_keys_str_mv AT jianhongren intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT dejiewei intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT xinruzhang intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT caiwu intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT wenwenhan intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT lingxinshi intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT zhiyitang intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT zhihuawu intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT guangzhouliu intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT yanhongcui intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT xiongdu intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity
AT zhengao intercroppingofshortandtallstaturemaizedecreaseslodgingriskwithoutyieldpenaltyathighplantingdensity