草业学报 ›› 2025, Vol. 34 ›› Issue (6): 181-192.DOI: 10.11686/cyxb2024297
• 研究论文 • 上一篇
姜沛沛1(
), 郭锦花1, 肖慧淑1, 彭彦珉1, 张军1, 田文仲2,3, 吕军杰2,3, 吴金芝1, 王贺正1, 付国占1, 黄明1(
), 李友军1(
)
收稿日期:2024-07-24
修回日期:2024-09-25
出版日期:2025-06-20
发布日期:2025-04-03
通讯作者:
黄明,李友军
作者简介:lyj@haust.edu.cn基金资助:
Pei-pei JIANG1(
), Jin-hua GUO1, Hui-shu XIAO1, Yan-min PENG1, Jun ZHANG1, Wen-zhong TIAN2,3, Jun-jie Lyu2,3, Jin-zhi WU1, He-zheng WANG1, Guo-zhan FU1, Ming HUANG1(
), You-jun LI1(
)
Received:2024-07-24
Revised:2024-09-25
Online:2025-06-20
Published:2025-04-03
Contact:
Ming HUANG,You-jun LI
摘要:
为探明不同轮耕模式对旱地夏玉米-冬小麦(简称玉-麦)两熟体系作物产量和品质的影响,利用始于2004年设置在中国农业科学院洛阳旱农试验基地的玉米季免耕+麦季免耕(MNWN)、玉米季深松+麦季免耕(MSWN)、玉米季免耕+麦季3年免耕1年翻耕(MNW3N1P)、玉米季深松+麦季3年免耕1年翻耕(MSW3N1P)和传统的两季均翻耕(CK)5个处理的定位试验,分析了2015-2021年度作物产量以及2020-2021年度作物籽粒氮、磷、钾含量,蛋白质产量和冬小麦籽粒蛋白质组分含量。结果表明:MNWN、MSWN、MNW3N1P和MSW3N1P下夏玉米和冬小麦籽粒产量的差异均不显著,但与CK相比均表现出不同程度的提升,且效应因降水年型而异,其与CK相比在干旱年使小麦和周年产量分别显著提高56.2%~65.2%和28.2%~32.6%,在平水年使夏玉米产量和周年产量分别显著提高47.5%~57.7%和25.7%~29.8%,在丰水年仅使冬小麦产量显著提高18.9%~31.2%。MSW3N1P提高夏玉米、冬小麦籽粒氮磷钾含量和蛋白质产量以及小麦籽粒蛋白组分含量的效果最优,与CK相比使夏玉米籽粒氮钾含量和蛋白质产量分别显著提高4.5%、15.6%和25.8%,冬小麦籽粒氮磷含量、蛋白质产量、谷蛋白含量、谷醇比和贮藏蛋白含量分别显著提高7.7%、15.2%、109.8%、16.1%、9.6%和11.9%,周年蛋白质产量显著提高38.5%。虽然MNW3N1P较CK也能使冬小麦籽粒谷蛋白含量、谷醇比和贮藏蛋白含量分别显著提高15.9%、14.4%和9.2%,但MSW3N1P较MNW3N1P可使冬小麦籽粒醇溶蛋白和贮藏蛋白含量分别显著提高5.4%和2.5%。综合来看,玉米季深松+麦季3年免耕1年翻耕是旱地玉-麦两熟体系高产优质栽培的适宜轮耕模式。
姜沛沛, 郭锦花, 肖慧淑, 彭彦珉, 张军, 田文仲, 吕军杰, 吴金芝, 王贺正, 付国占, 黄明, 李友军. 轮耕模式对旱地玉-麦两熟体系作物产量和品质的影响[J]. 草业学报, 2025, 34(6): 181-192.
Pei-pei JIANG, Jin-hua GUO, Hui-shu XIAO, Yan-min PENG, Jun ZHANG, Wen-zhong TIAN, Jun-jie Lyu, Jin-zhi WU, He-zheng WANG, Guo-zhan FU, Ming HUANG, You-jun LI. Effect of rotational tillage patterns on the crop yield and quality in a maize-wheat (Zea mays-Triticum aestivum) double cropping system in dryland agriculture[J]. Acta Prataculturae Sinica, 2025, 34(6): 181-192.
图1 2015-2021年逐月降水量和近21年的平均月降水量2000-2021代表2000年6月至2021年5月的平均月降水量。2000-2021 represents the average monthly precipitation from June 2000 to May 2021.
Fig.1 2015-2021 and latest 21-year average monthly precipitation
| 年度 Year | 夏玉米 Summer maize | 冬小麦 Winter wheat | 周年 Annual | |||
|---|---|---|---|---|---|---|
| DI | 降水年型 Precipitation type | DI | 降水年型 Precipitation type | DI | 降水年型 Precipitation type | |
| 2015 (2015-2016) | -1.10 | 干旱年Dry year | 0.31 | 平水年Normal year | -0.72 | 干旱年Dry year |
| 2016 (2016-2017) | -0.16 | 平水年Normal year | 0.32 | 平水年Normal year | 0.02 | 平水年Normal year |
| 2017 (2017-2018) | -0.42 | 干旱年Dry year | 1.98 | 丰水年Rainy year | 0.48 | 丰水年Rainy year |
| 2018 (2018-2019) | 0.52 | 丰水年Rainy year | -1.67 | 干旱年Dry year | -0.24 | 平水年Normal year |
| 2019 (2019-2020) | 0.74 | 丰水年Rainy year | 0.21 | 平水年Normal year | 0.68 | 丰水年Rainy year |
| 2020 (2020-2021) | -0.96 | 干旱年Dry year | -0.30 | 平水年Normal year | -0.85 | 干旱年Dry year |
表1 2015-2021年试验区降水年型
Table 1 Precipitation year type in the experiment area from 2015 to 2021
| 年度 Year | 夏玉米 Summer maize | 冬小麦 Winter wheat | 周年 Annual | |||
|---|---|---|---|---|---|---|
| DI | 降水年型 Precipitation type | DI | 降水年型 Precipitation type | DI | 降水年型 Precipitation type | |
| 2015 (2015-2016) | -1.10 | 干旱年Dry year | 0.31 | 平水年Normal year | -0.72 | 干旱年Dry year |
| 2016 (2016-2017) | -0.16 | 平水年Normal year | 0.32 | 平水年Normal year | 0.02 | 平水年Normal year |
| 2017 (2017-2018) | -0.42 | 干旱年Dry year | 1.98 | 丰水年Rainy year | 0.48 | 丰水年Rainy year |
| 2018 (2018-2019) | 0.52 | 丰水年Rainy year | -1.67 | 干旱年Dry year | -0.24 | 平水年Normal year |
| 2019 (2019-2020) | 0.74 | 丰水年Rainy year | 0.21 | 平水年Normal year | 0.68 | 丰水年Rainy year |
| 2020 (2020-2021) | -0.96 | 干旱年Dry year | -0.30 | 平水年Normal year | -0.85 | 干旱年Dry year |
项目 Item | 夏玉米 Summer maize | 冬小麦 Winter wheat | 周年 Annual | ||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
干旱年 Dry year | 平水年 Normal year | 丰水年 Rainy year | 干旱年 Dry year | 平水年 Normal year | 丰水年 Rainy year | 干旱年 Dry year | 平水年 Normal year | 丰水年 Rainy year | |||||||
| 籽粒产重Grain yield (kg·hm-2) | 4414c | 5649b | 8140a | 2193b | 3660a | 3900a | 7948b | 9380ab | 10625a | ||||||
| F值 F value | |||||||||||||||
| 年型 Year (Y) | 724.84** | 272.95** | 228.97** | ||||||||||||
| 处理 Treatment (T) | 44.46** | 33.73** | 71.83** | ||||||||||||
| 年型×处理 Y×T | 0.07 | 0.02 | 0.03 | ||||||||||||
表2 不同降水年型籽粒产量均值及变异来源
Table 2 Annual average yield under different precipitation types and source of variation
项目 Item | 夏玉米 Summer maize | 冬小麦 Winter wheat | 周年 Annual | ||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
干旱年 Dry year | 平水年 Normal year | 丰水年 Rainy year | 干旱年 Dry year | 平水年 Normal year | 丰水年 Rainy year | 干旱年 Dry year | 平水年 Normal year | 丰水年 Rainy year | |||||||
| 籽粒产重Grain yield (kg·hm-2) | 4414c | 5649b | 8140a | 2193b | 3660a | 3900a | 7948b | 9380ab | 10625a | ||||||
| F值 F value | |||||||||||||||
| 年型 Year (Y) | 724.84** | 272.95** | 228.97** | ||||||||||||
| 处理 Treatment (T) | 44.46** | 33.73** | 71.83** | ||||||||||||
| 年型×处理 Y×T | 0.07 | 0.02 | 0.03 | ||||||||||||
图2 不同降水年型下不同处理对夏玉米、冬小麦及周年产量的影响MNWN代表玉米季免耕+麦季免耕;MSWN代表玉米季深松+麦季免耕;MNW3N1P代表玉米季免耕+麦季3年免耕1年翻耕;MSW3N1P代表玉米季深松+麦季3年免耕1年翻耕;CK代表传统两季均翻耕。下同。误差线表示标准误,柱上不同小写字母表示同一降水年型下不同处理间差异显著(P<0.05)。MNWN represents no tillage in both maize season and wheat season; MSWN represents subsoiling in maize season and no tillage in wheat season; MNW3N1P represents no tillage in maize season plus consecutive 3-year no-tillage and 1-year plough in wheat season; MSW3N1P represents subsoiling in maize season plus consecutive 3-year no-tillage and 1-year plough in wheat season; CK represents conventional plough after wheat and maize harvest. The same below. The error line represents the standard error. Different lowercase letters indicate significant difference among treatments within the same precipitation year types (P<0.05).
Fig.2 Effects of different treatments on grain yield of summer maize, winter wheat and annual under different precipitation types
处理 Treatment | 夏玉米 Summer maize | 冬小麦 Winter wheat | ||||
|---|---|---|---|---|---|---|
氮含量 Nitrogen content | 磷含量 Phosphorus content | 钾含量 Potassium content | 氮含量 Nitrogen content | 磷含量 Phosphorus content | 钾含量 Potassium content | |
| MNWN | 1.33ab | 0.26a | 0.35ab | 2.21b | 2.76b | 2.19c |
| MSWN | 1.34ab | 0.25a | 0.34ab | 2.20b | 2.92ab | 2.47bc |
| MNW3N1P | 1.36ab | 0.27a | 0.37a | 2.31a | 2.88ab | 3.09a |
| MSW3N1P | 1.38a | 0.25a | 0.34ab | 2.38a | 3.18a | 2.70b |
| CK | 1.32b | 0.24a | 0.32b | 2.21b | 2.76b | 3.26a |
表3 不同轮耕模式对旱地玉-麦两熟体系作物籽粒氮磷钾含量的影响
Table 3 Effects of different rotational tillage modes on nitrogen, phosphorus and potassium contents in grains in dryland maize-wheat double cropping system (%)
处理 Treatment | 夏玉米 Summer maize | 冬小麦 Winter wheat | ||||
|---|---|---|---|---|---|---|
氮含量 Nitrogen content | 磷含量 Phosphorus content | 钾含量 Potassium content | 氮含量 Nitrogen content | 磷含量 Phosphorus content | 钾含量 Potassium content | |
| MNWN | 1.33ab | 0.26a | 0.35ab | 2.21b | 2.76b | 2.19c |
| MSWN | 1.34ab | 0.25a | 0.34ab | 2.20b | 2.92ab | 2.47bc |
| MNW3N1P | 1.36ab | 0.27a | 0.37a | 2.31a | 2.88ab | 3.09a |
| MSW3N1P | 1.38a | 0.25a | 0.34ab | 2.38a | 3.18a | 2.70b |
| CK | 1.32b | 0.24a | 0.32b | 2.21b | 2.76b | 3.26a |
图3 不同轮耕模式对旱地玉-麦两熟体系作物籽粒蛋白质产量的影响误差线表示标准误,柱上不同小写字母表示相同作物或周年下不同处理间差异显著(P<0.05)。The error line represents the standard error. Different lowercase letters indicate significant difference among treatments within the same crop or annual (P<0.05).
Fig.3 Effects of different rotational tillage patterns on grain protein yield in dryland maize-wheat double cropping system
处理 Treatment | 清蛋白 Albumin | 球蛋白 Globulin | 醇溶蛋白 Gliadin | 谷蛋白 Glutelin | 谷醇比 Glutelin/gliadin | 贮藏蛋白 Storage protein |
|---|---|---|---|---|---|---|
| MNWN | 2.33b | 1.71ab | 3.33b | 4.14b | 1.24c | 7.46c |
| MSWN | 2.36b | 1.76ab | 3.36b | 4.07b | 1.21c | 7.43c |
| MNW3N1P | 2.54a | 1.85a | 3.36b | 4.81a | 1.43a | 8.16b |
| MSW3N1P | 2.36b | 1.78ab | 3.54a | 4.82a | 1.37b | 8.36a |
| CK | 2.32b | 1.66b | 3.32b | 4.15b | 1.25c | 7.47c |
表4 不同轮耕模式对旱地玉-麦两熟体系冬小麦籽粒蛋白质组分特征的影响
Table 4 Effects of different rotational tillage patterns on the properties of protein components in winter wheat grains in dryland maize-wheat double cropping system (%)
处理 Treatment | 清蛋白 Albumin | 球蛋白 Globulin | 醇溶蛋白 Gliadin | 谷蛋白 Glutelin | 谷醇比 Glutelin/gliadin | 贮藏蛋白 Storage protein |
|---|---|---|---|---|---|---|
| MNWN | 2.33b | 1.71ab | 3.33b | 4.14b | 1.24c | 7.46c |
| MSWN | 2.36b | 1.76ab | 3.36b | 4.07b | 1.21c | 7.43c |
| MNW3N1P | 2.54a | 1.85a | 3.36b | 4.81a | 1.43a | 8.16b |
| MSW3N1P | 2.36b | 1.78ab | 3.54a | 4.82a | 1.37b | 8.36a |
| CK | 2.32b | 1.66b | 3.32b | 4.15b | 1.25c | 7.47c |
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