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涝灾后施用钾肥可提高大豆种子的品质和产量。

Application of Potassium after Waterlogging Improves Quality and Productivity of Soybean Seeds.

作者信息

Mamun Muhammad Abdullah Al, Sarker Umakanta, Mannan Muhammad Abdul, Rahman Mohammad Mizanur, Karim Md Abdul, Ercisli Sezai, Marc Romina Alina, Golokhvast Kirill S

机构信息

Department of Agronomy, Faculty of Agriculture, Bangabandhu Sheikh Mujibur Rahman Agricultural University, Gazipur 1706, Bangladesh.

Department of Genetics and Plant Breeding, Faculty of Agriculture, Bangabandhu Sheikh Mujibur Rahman Agricultural University, Gazipur 1706, Bangladesh.

出版信息

Life (Basel). 2022 Nov 7;12(11):1816. doi: 10.3390/life12111816.

Abstract

Potassium (K) improves the stress tolerance of crop plants, which varies on the timing of K application and crop varieties. Soybean is a promising crop that can easily fit with the cropping pattern during kharif I season, when water logging occurs due to sudden rain. Therefore, an experiment was conducted to determine the effect of K management on the productivity and seed quality of soybean under normal and waterlogged conditions. The treatments comprised three factors, namely soybean genotypes (BU Soybean-1 and BU Soybean-2), waterlogging (WL) (control and WL for 4 days at the flowering stage (FS)), and K application (full dose as basal and 50% as basal +50% as top dress after termination of the flooding). The trial was laid out in a randomized complete block design with three replications. Findings revealed that BU Soybean-1 produced a higher number of pods and seeds pod under control conditions with basal application of K. On the other hand, BU Soybean-2 produced taller plants and heavier grain, improving grain and straw yield under WL conditions when K was top dressed. The varieties absorbed a higher amount of nitrogen, phosphorus, and potassium under control conditions compared to WL when K was top dressed. Similarly, the seed protein content of both varieties was higher in the control condition with a top dressing of K. However, a higher percentage of seed germination was obtained from BU Soybean-2 in the control condition with a top dressing of K. Further, more electrical conductivity and more mean germination time were recorded in the case of BU Soybean-2 under WL with the basal application of K. Split application of 50% of recommended K fertilizer after the recession of flood water could be suggested for improved grain yield in flood-affected soybean growing areas.

摘要

钾(K)可提高作物的抗逆性,但其效果会因施钾时间和作物品种而异。大豆是一种很有前景的作物,在季风第一季期间,由于突然降雨容易出现涝灾,它能很好地适应这种种植模式。因此,开展了一项试验,以确定钾管理对正常和涝渍条件下大豆生产力和种子质量的影响。试验处理包括三个因素,即大豆基因型(BU大豆 - 1和BU大豆 - 2)、涝渍处理(WL)(对照和在开花期(FS)进行4天涝渍处理)以及施钾方式(全量基肥和在洪水结束后50%基肥 + 50%追肥)。试验采用随机完全区组设计,重复三次。结果表明,在基肥施钾的对照条件下,BU大豆 - 1结荚数和每荚粒数较多。另一方面,BU大豆 - 2植株较高且籽粒较重,在涝渍条件下追肥施钾时,其籽粒和秸秆产量有所提高。与涝渍条件下追肥施钾相比,两个品种在对照条件下吸收的氮、磷、钾量更高。同样,在对照条件下追肥施钾时,两个品种的种子蛋白质含量更高。然而,在对照条件下追肥施钾时,BU大豆 - 2的种子发芽率更高。此外,在涝渍条件下基肥施钾时,BU大豆 - 2的电导率更高,平均发芽时间更长。对于受洪水影响的大豆种植区,建议在洪水退去后分施50%推荐钾肥,以提高籽粒产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6558/9698500/753508e0df63/life-12-01816-g001.jpg

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