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植物生物调节剂与微量营养素的综合应用可改善晚播小麦的作物生理学特性、提高其生产力并实现粮食的生物强化。

Integrated application of plant bioregulator and micronutrients improves crop physiology, productivity and grain biofortification of delayed sown wheat.

机构信息

Department of Agronomy, University of Agriculture Faisalabad, Faisalabad, Pakistan.

College of Agronomy, Northwest A&F University, Yangling, Shaanxi, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2022 Jul;29(35):52534-52543. doi: 10.1007/s11356-022-19476-5. Epub 2022 Mar 9.

DOI:10.1007/s11356-022-19476-5
PMID:35262890
Abstract

Delay sowing of wheat is a common problem in Punjab that exacerbates serious yield loss. To reduce yield loss and improve yield, different combinations of foliar-applied bioregulator and micronutrients, control (CK), zinc (Zn), boron (B), thiourea (TU), Zn + B (ZnB), Zn + TU (ZnTU), B + TU (BTU), Zn + B + TU (ZnBTU) were applied at booting and grain filling stages in delayed sown wheat in 2017-18 and 2018-19. The results showed that ZnBTU treatment significantly increased leaf area index by 25.06% and 23.21%, spike length by 15.11% and 19.65% in 2017 and 2018, respectively, compared to CK. The ZnBTU treatment also increased 1000-grain weight by 21.96% and 22.01% in 2017 and 2018, respectively, compared to CK. Similarly, higher Zn, B and N contents in straw and grain were recoded for ZnBTU treatment which was statistically similar to ZnB and ZnTU treatments. Overall, ZnBTU treatment also increased the photosynthetic rate, transpiration rate, stomatal conductance by 46.67%, 26.03%, 76.25% and decreased internal CO by 28.18%, compared to CK, respectively. Moreover, ZnBTU also recorded the highest grain yield in 2017-18 (25.05%) and 2018-19 (28.49%) than CK. In conclusion, foliar application of ZnBTU at the booting and grain filling stages of delayed sown wheat could be a promising strategy to increase grain yield.

摘要

在旁遮普邦,小麦播种推迟是一个常见问题,会导致严重的产量损失。为了减少产量损失并提高产量,在 2017-18 年和 2018-19 年,在播种推迟的小麦的拔节期和灌浆期,应用了不同组合的叶面喷施生物调节剂和微量元素,对照(CK)、锌(Zn)、硼(B)、硫脲(TU)、Zn+B(ZnB)、Zn+TU(ZnTU)、B+TU(BTU)、Zn+B+TU(ZnBTU)。结果表明,与 CK 相比,ZnBTU 处理分别显著增加了叶片面积指数 25.06%和 23.21%,穗长增加了 15.11%和 19.65%。ZnBTU 处理还分别增加了 2017 年和 2018 年的千粒重 21.96%和 22.01%。同样,在茎秆和籽粒中记录到较高的 Zn、B 和 N 含量,ZnBTU 处理与 ZnB 和 ZnTU 处理在统计学上相似。总体而言,与 CK 相比,ZnBTU 处理还分别增加了 46.67%、26.03%和 76.25%的光合速率、蒸腾速率和气孔导度,降低了 28.18%的内部 CO。此外,ZnBTU 在 2017-18 年(25.05%)和 2018-19 年(28.49%)的籽粒产量也高于 CK。总之,在播种推迟的小麦的拔节期和灌浆期叶面喷施 ZnBTU 可能是提高籽粒产量的一种有前途的策略。

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