

新疆农业科学 ›› 2025, Vol. 62 ›› Issue (6): 1328-1336.DOI: 10.6048/j.issn.1001-4330.2025.06.004
丁银灯(
), 范贵强, 高永红, 黄天荣, 周安定, 吴新元, 方辉(
)
收稿日期:2024-11-05
出版日期:2025-06-20
发布日期:2025-07-29
通信作者:
方辉(1988-),男,河南信阳人,副研究员,硕士,研究方向为小麦遗传育种与栽培,(E-mail)13179911060@163.com作者简介:丁银灯(1992-),男,河南周口人,助理研究员,硕士,研究方向为小麦遗传育种与栽培,(E-mail)1457676749@qq.com
基金资助:
DING Yingdeng(
), FAN Guiqiang, GAO Yonghong, HUANG Tianrong, ZHOU Anding, WU Xinyuan, FANG Hui(
)
Received:2024-11-05
Published:2025-06-20
Online:2025-07-29
Supported by:摘要:
【目的】探明干旱胁迫下植物生长调节剂对冬小麦的影响作用机制,为提高水分利用效率提供依据。【方法】采用双因素裂区试验设计,设2个水分处理:苗期干旱胁迫(正常灌水量的25%,记为I1)和拔节期干旱胁迫(正常灌水量的25%,记为I2),设置1.67、2.22和3.33 g/L三个矮壮素浓度梯度(分别以C1、C2和C3表示),以清水(CK)为对照,分析不同灌水干旱胁迫下叶面喷施矮壮素对冬小麦光合特性、干物质积累和转运及产量的影响。【结果】两种灌水处理下,拔节期干旱胁迫使得孕穗期冬小麦旗叶叶面积、单株叶面积显著降低87.73%和65.40%,花后冬小麦旗叶的Pn值、Tr值降低,Ci浓度上升,同时生殖生长时间缩短,光合产物积累和转运量下降,冬小麦穗数、穗粒数和千粒重降低,最终导致产量下降达40.28%。叶面喷施矮壮素后可削弱干旱胁迫对冬小麦产量减少的负面影响,C2、C3浓度下,冬小麦的旗叶叶面积、单株叶面积上升;叶面喷施矮壮素溶液能够增强冬小麦光合作用,延缓植株衰老,两种处理下花后旗叶光合速率峰值在C1、C2和C3浓度下分别比CK高出28.62%、36.23%、34.19%和21.62%、21.27%、45.87%,光合速率产生的峰值至生育末期下降幅度减小;矮壮素处理下成熟期营养器官干重、干物质转运量和转运率均上升,且均以C2浓度下各指标达到最高;两种灌水处理下C1、C2和C3浓度矮壮素处理的小麦产量分别比CK增加了0.32%、16.08%、11.75%和4.52%、23.60%、6.42%。【结论】综合灌水处理和矮壮素浓度,干旱胁迫对小麦穗数、穗粒数和千粒质量降低,进而导致产量下降,在冬小麦花前干旱胁迫下,以拔节期干旱胁迫对产量的影响更大;外源施加矮壮素均可以不同程度改善干旱胁迫条件对小麦造成的不利影响,其中2.22 g/L浓度效果最佳。
中图分类号:
丁银灯, 范贵强, 高永红, 黄天荣, 周安定, 吴新元, 方辉. 花前干旱和矮壮素浓度对冬小麦光合特性及产量形成的影响[J]. 新疆农业科学, 2025, 62(6): 1328-1336.
DING Yingdeng, FAN Guiqiang, GAO Yonghong, HUANG Tianrong, ZHOU Anding, WU Xinyuan, FANG Hui. Effects of pre-flowering drought and gibberellin concentration on photosynthetic characteristics and yield formation in winter wheat[J]. Xinjiang Agricultural Sciences, 2025, 62(6): 1328-1336.
| 灌水处理 Water injection treatment | 灌水量Irrigation volume(m3) | ||||
|---|---|---|---|---|---|
| 苗期 Seedling stage | 拔节期 Jointing stage | 扬花期 Flowering period | 灌浆期 Grouting period | 灌水总量 Total Water Volume | |
| I1 | 300 | 1 200 | 1 200 | 1 200 | 3 900 |
| I2 | 1 200 | 300 | 1 200 | 1 200 | 325 |
表1 冬小麦各生育时期灌水量
Tab.1 Irrigation amount of spring wheat at different growth stages
| 灌水处理 Water injection treatment | 灌水量Irrigation volume(m3) | ||||
|---|---|---|---|---|---|
| 苗期 Seedling stage | 拔节期 Jointing stage | 扬花期 Flowering period | 灌浆期 Grouting period | 灌水总量 Total Water Volume | |
| I1 | 300 | 1 200 | 1 200 | 1 200 | 3 900 |
| I2 | 1 200 | 300 | 1 200 | 1 200 | 325 |
图2 不同灌水量及矮壮素浓度处理下冬小麦单株叶面积的变化
Fig.2 Changes in leaf area per plant of winter wheat under different irrigation amount treatments and dwarfing concentration
图3 不同灌水量及矮壮素处理下冬小麦旗叶光合速率的变化
Fig.3 Changes of different irrigation amount treatments and paclobutrazol concentrations on the photosynthetic rate of winter wheat flag leaves
图4 不同灌水量及矮壮素处理下冬小麦旗叶蒸腾速率的变化
Fig.4 Changes of different irrigation amount treatments and concentrations of Gibberellic Acid on the transpiration rate of flag leaves in winter wheat
图5 不同灌水量及矮壮素处理下冬小麦旗叶胞间二氧化碳浓度的变化
Fig.5 Changes of different irrigation amount treatments and gibberellin concentrations on intercellular carbon dioxide concentration in winter wheat's flag leaves
| 干旱处理 Drought management | 矮壮素浓度 Gibberellin concentration | 开花期营养 器官干重 Biomass before anthesis (g/株) | 成熟期营养 器官干重 Biomass at maturity (g/株) | 籽粒重 Grain weight (g/株) | 干物质转运量 Dry matter transport amount (g/株) | 干物质转运率 Dry matter transport rate (%) | 干物质转运对 籽粒贡献率 Dry matter transport contribution rate of wheat seed (%) |
|---|---|---|---|---|---|---|---|
| I1 | C1 | 1.452b | 0.964a | 1.046bc | 0.488 1 | 33.60 | 34.57 |
| C2 | 1.565a | 1.039a | 1.188a | 0.526 6 | 33.65 | 32.82 | |
| C3 | 1.501a | 0.996a | 1.176ab | 0.504 6 | 33.62 | 31.79 | |
| CK | 1.397b | 0.928ab | 1.067bc | 0.4693 | 33.59 | 32.59 | |
| I2 | C1 | 0.989cd | 0.699d | 0.830d | 0.289 5 | 29.27 | 25.83 |
| C2 | 1.252c | 0.885c | 0.938cd | 0.366 8 | 29.30 | 28.97 | |
| C3 | 1.095c | 0.775d | 0.800d | 0.320 3 | 29.25 | 29.66 | |
| CK | 0.974d | 0.689d | 0.812d | 0.284 7 | 29.23 | 25.98 |
表2 不同灌水量和矮壮素处理下冬小麦成熟期干物质积累、转运的变化
Tab.2 Changes of different irrigation amount treatments and chlormequat concentrations on dry matter accumulation and translocation during the maturity phase of winter wheat
| 干旱处理 Drought management | 矮壮素浓度 Gibberellin concentration | 开花期营养 器官干重 Biomass before anthesis (g/株) | 成熟期营养 器官干重 Biomass at maturity (g/株) | 籽粒重 Grain weight (g/株) | 干物质转运量 Dry matter transport amount (g/株) | 干物质转运率 Dry matter transport rate (%) | 干物质转运对 籽粒贡献率 Dry matter transport contribution rate of wheat seed (%) |
|---|---|---|---|---|---|---|---|
| I1 | C1 | 1.452b | 0.964a | 1.046bc | 0.488 1 | 33.60 | 34.57 |
| C2 | 1.565a | 1.039a | 1.188a | 0.526 6 | 33.65 | 32.82 | |
| C3 | 1.501a | 0.996a | 1.176ab | 0.504 6 | 33.62 | 31.79 | |
| CK | 1.397b | 0.928ab | 1.067bc | 0.4693 | 33.59 | 32.59 | |
| I2 | C1 | 0.989cd | 0.699d | 0.830d | 0.289 5 | 29.27 | 25.83 |
| C2 | 1.252c | 0.885c | 0.938cd | 0.366 8 | 29.30 | 28.97 | |
| C3 | 1.095c | 0.775d | 0.800d | 0.320 3 | 29.25 | 29.66 | |
| CK | 0.974d | 0.689d | 0.812d | 0.284 7 | 29.23 | 25.98 |
图6 不同灌水量和矮壮素处理下冬小麦成熟期干物质积累、分配的变化
Fig.6 Changes of different irrigation amount treatment and gibberellin concentration on the accumulation and distribution of dry matter at the maturity stage of winter wheat
| 项目 Items | 干旱处理 Drought management | 矮壮素浓度 Gibberellin concentration | |||
|---|---|---|---|---|---|
| C1 | C2 | C3 | CK | ||
| 穗数 Spike | I1 | 583.52a | 594.36a | 578.15a | 570.09a |
| I2 | 538.08b | 562.99b | 541.09b | 526.36b | |
| 平均 | 560.8ab | 578.68a | 559.62ab | 548.23b | |
| 穗粒数 Grain per spike/(个) | I1 | 25.18a | 26.98a | 28.14a | 27.12a |
| I2 | 21.31b | 23.78b | 21.25b | 20.94b | |
| 平均 | 23.25a | 25.38a | 24.7a | 24.03a | |
| 千粒重 Thousand seed Ieight/(g) | I1 | 41.54ab | 44.04a | 41.79a | 39.35c |
| I2 | 38.95d | 39.45c | 39.55c | 38.77d | |
| 平均 | 40.25b | 41.75a | 40.67b | 39.06d | |
| 产量 Yield/(kg/hm2) | I1 | 5 401.35ab | 6 249.68a | 6 016.66a | 5 383.92ab |
| I2 | 3 952.37d | 4 673.95c | 4 024.38cd | 3 781.62d | |
| 平均 | 4 676.86c | 5 461.82ab | 5 020.52ab | 4 582.77c | |
表3 不同灌水量和矮壮素处理下冬小麦产量的变化
Tab.3 Changes of different irrigation amount treatment and gibberellin concentration on winter wheat yield
| 项目 Items | 干旱处理 Drought management | 矮壮素浓度 Gibberellin concentration | |||
|---|---|---|---|---|---|
| C1 | C2 | C3 | CK | ||
| 穗数 Spike | I1 | 583.52a | 594.36a | 578.15a | 570.09a |
| I2 | 538.08b | 562.99b | 541.09b | 526.36b | |
| 平均 | 560.8ab | 578.68a | 559.62ab | 548.23b | |
| 穗粒数 Grain per spike/(个) | I1 | 25.18a | 26.98a | 28.14a | 27.12a |
| I2 | 21.31b | 23.78b | 21.25b | 20.94b | |
| 平均 | 23.25a | 25.38a | 24.7a | 24.03a | |
| 千粒重 Thousand seed Ieight/(g) | I1 | 41.54ab | 44.04a | 41.79a | 39.35c |
| I2 | 38.95d | 39.45c | 39.55c | 38.77d | |
| 平均 | 40.25b | 41.75a | 40.67b | 39.06d | |
| 产量 Yield/(kg/hm2) | I1 | 5 401.35ab | 6 249.68a | 6 016.66a | 5 383.92ab |
| I2 | 3 952.37d | 4 673.95c | 4 024.38cd | 3 781.62d | |
| 平均 | 4 676.86c | 5 461.82ab | 5 020.52ab | 4 582.77c | |
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