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叶面喷施锌和丛枝菌根真菌接种对巴斯马蒂水稻生长、产量和籽粒养分的单独及联合效应。

Sole and combined effect of foliar zinc and arbuscular mycorrhizae inoculation on basmati rice growth, productivity and grains nutrient.

机构信息

Department of Soil Science, Faculty of Agricultural Sciences and Technology, Bahauddin Zakariya University, Multan, Punjab, Pakistan.

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

出版信息

PLoS One. 2022 Apr 29;17(4):e0266248. doi: 10.1371/journal.pone.0266248. eCollection 2022.

Abstract

Mismanagement in foliar fertilizer application at different crop stages decreases the productivity of the crop. Likewise, higher application of phosphorus (P) beyond recommended application rates not only decrease zinc (Zn) uptake in rice but also increase fertilizer use cost. Inoculation of arbuscular mycorrhizae (AMF) may optimize the uptake of P and improve crops production via organic secretions. That's why the current study was conducted to examine the individual and coordinated effects of 0.5% Zn (0.5Zn) foliar spray (tillering (T) and/or panicle (P) initiation stage) and AMF application. Application of foliar 0.5Zn at tillering+panicle stage remained significantly better for significant enhancement in plant height, spike length, gas exchange attributes and total chlorophyll contents than control. A significant decrease in electrolyte leakage Also validated the effectiveness of treatment 0.5ZnT+P compared to control. Compared to control, the maximum increase in N (14.5 and 25.7%), P (42.1 and 33.3%), K (22.2 and 30.0%) and Zn (19.3 and 27.8%) accumulation was also found in 0.5ZnT+P, with and without AMF, respectively. In conclusion, 0.5ZnT+P with AMF is a better approach than sole application of Zn at tillering or panicle initiation stages. Nevertheless, more investigations are suggested at field level under variable climatic zones to confirm the effectiveness of 0.5ZnT+P with AMF for improvement in rice growth and production.

摘要

在不同作物阶段不当施用叶面肥会降低作物的生产力。同样,超过推荐施用量的高磷(P)应用不仅会降低水稻中的锌(Zn)吸收,还会增加肥料使用成本。接种丛枝菌根(AMF)可以通过有机分泌物优化 P 的吸收并提高作物产量。这就是为什么进行当前研究以检查 0.5%Zn(0.5Zn)叶面喷施(分蘖(T)和/或穗(P)起始阶段)和 AMF 应用的单独和协同作用。与对照相比,在分蘖+穗期喷施叶面 0.5Zn 仍然显著更好,可显著提高株高、穗长、气体交换特性和总叶绿素含量。电导率泄漏的显著减少也验证了处理 0.5ZnT+P 比对照更有效。与对照相比,在分蘖+穗期喷施叶面 0.5Zn 与 AMF 一起或不与 AMF 一起,N(14.5 和 25.7%)、P(42.1 和 33.3%)、K(22.2 和 30.0%)和 Zn(19.3 和 27.8%)的积累也有最大增加。总之,与单独在分蘖或穗期施用 Zn 相比,0.5ZnT+P 与 AMF 一起是一种更好的方法。然而,建议在不同气候带的田间水平进行更多研究,以确认 0.5ZnT+P 与 AMF 对提高水稻生长和产量的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32d7/9053806/a3b0308907cc/pone.0266248.g001.jpg

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