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Acta Agronomica Sinica ›› 2022, Vol. 48 ›› Issue (10): 2671-2679.doi: 10.3724/SP.J.1006.2022.13058

• RESEARCH NOTES • Previous Articles    

Effects of wheat straw returning and tillage practices on corn yield in oasis irrigation area

WANG Yu-Long(), YU Ai-Zhong(), LYU Han-Qiang, WANG Qi-Ming, SU Xiang-Xiang, CHAI Qiang   

  1. Gansu Provincial Key Laboratory of Arid Land Crop Science / College of Agronomy, Gansu Agricultural University, Lanzhou 730070, Gansu, China
  • Received:2021-10-03 Accepted:2022-01-05 Online:2022-10-12 Published:2022-02-15
  • Contact: YU Ai-Zhong E-mail:wyl1489270573@163.com;yuaizh@gsau.edu.cn
  • Supported by:
    Industrial Support Project of Gansu Provincial Department of Education(2021CYZC-54);Innovation Group of Basic Research in Gansu Province(20JR5RA037);Fuxi Outstanding Talent Cultivation Program of Gansu Agricultural University(Gaufx-04J01)

Abstract:

The traditional continuous maize cropping poses challenge in increasing maize yield in the arid oasis irrigation area of northwest China. In this study, in order to determine the effects of wheat residue management and tillage practices on maize yield, a field experiment was carried out in a typical oasis irrigation region. The results indicated that different wheat straw returning methods and tillage practices had significant effects on corn dry matter accumulation and leaf area index, and there was significant in the interaction between them. During the whole growth period of maize, compared with no straw returning, straw returning treatment increased the dry matter accumulation and leaf area index of maize by 4.2%-8.2% and 7.1%-13.0%, respectively. Compared with no-tillage treatment, the conventional plow-tillage significantly increased the dry matter accumulation and leaf area index of maize by 20.2%-24.1% and 11.0%-16.0%, respectively. Straw returning methods and tillage practices had significant effects on maize grain yield and yield components (no interactions). Compared with no straw returning, the straw returning treatment significantly increased maize grain yield by 21.9%. The conventional plow-tillage significantly increased maize grain yield by 20.0% compared with no-tillage, due to an increase in spike numbers. In conclusion, conventional plow-tillage with straw returning management can be recommend as a feasible cultural method to increase the leaf area index, dry matter accumulation and yield formation of maize in the oasis irrigation areas.

Key words: no-tillage, straw returning, rotation, yield

Fig. 1

Monthly average precipitation during maize growth period at the study area from 2016 to 2018"

Table 1

Tillage and straw returning patterns of different treatments in the experiment"

代码Code 处理Treatment 操作方法Description
NT 免耕+秸秆不还田
No-tillage with no straw returning
小麦低茬收割免耕, 翌年直播玉米。
No-tillage Wheat with low stubble harvesting, and flat planting maize in the next year.
NTS 免耕+秸秆还田
No-tillage with all straw returning
小麦免耕秸秆覆盖, 翌年直播玉米。
No-tillage with full quantity of wheat straw mulched on soil surface, and flat planting maize in the next year.
TP 传统翻耕+秸秆不还田
Conventional plow-tillage with no straw returning
小麦低茬收割翻耕, 翌年全膜覆盖平作玉米。
Wheat low stubble harvesting and tillage, and flat planting maize with full film mulching in the next year.
TSP 传统翻耕+秸秆还田
Conventional plow-tillage with all straw returning
小麦秸秆翻压, 翌年全膜覆盖平作玉米。
Tillage with full quantity of wheat straw incorporated in the soil, and flat planting maize with full film mulching in the next year.

Fig. 2

Dynamics of dry matter accumulation and average net assimilation rate of maize in different treatments TP: conventional plow-tillage with no straw returning; TSP: conventional plow-tillage with all straw returning; NT: no-tillage with no straw returning; NTS: no-tillage with all straw returning. BT: big trumpet; TA: tasseling; FL: glowering; SI: silking; FI: filling; DO: dough; FU: full-ripe. Error bar indicates the value of LSD in the figure A and figure B. Different lowercase letters indicate significant difference within the same year among the treatments at the 0.05 probability level, the error bar indicates standard error (n = 3) in the figure C."

Fig. 3

Dynamic of leaf area index and average leaf area index of maize in different treatments Treatments and abbreviations are the same as those given in Fig. 2. Error bar indicates the value of LSD in the figure A and figure B. Different lowercase letters indicate significant difference within the same year among the treatments at the 0.05 probability level, the error bar indicates standard error (n = 3) in the figure C."

Table 2

Grain yield and yield components of maize in different treatments"

年份
Year
处理
Treatment
籽粒产量
Grain yield
(kg hm-2)
产量构成因素Yield component
穗数
Ear number (ears hm-2)
穗粒数
Kernel number per ear
千粒重
1000-kernel weight (g)
2016 TP 9230 bc 79,400 b 564 ab 470 ab
TSP 12,048 a 84,769 a 594 a 496 a
NT 8105 c 75,700 c 526 c 421 c
NTS 10,352 b 80,034 b 549 bc 446 bc
耕作效应Tillage effect * ** ** **
秸秆效应Residue effect ** ** ** **
互作效应Tillage×Residue ns ns ns ns
2018 TP 11,428 b 83,711 b 586 ab 476 a
TSP 14,336 a 86,259 a 610 a 491 a
NT 8291 c 79,779 c 522 b 445 b
NTS 10,606 b 82,947 b 544 ab 465 ab
耕作效应Tillage effect ** ** ** **
秸秆效应Residue effect ** ** ns *
互作效应Tillage×Residue ns ns ns ns

Table 3

Correlation coefficient and path coefficient of maize between grain yield and yield components"

指标
Index
与籽粒产量的简单相关系数
Correlation coefficient with yield
直接通径系数
Direct path coefficient
间接通径系数Indirect path coefficient
Y1 Y2 Y3
Y1 0.954** 0.673 0.025 0.256
Y2 0.894** 0.028 0.606 0.260
Y3 0.915** 0.286 0.604 0.025
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