Rana Muhammad Ajmal, Mahmood Rashid, Nadeem Faisal, Wang Yun, Jin Chongwei, Liu Xingxing
Department of Agronomy, University of the Punjab, Lahore, Pakistan.
Department of Soil Science, University of the Punjab, Lahore, Pakistan.
Front Plant Sci. 2022 Nov 14;13:1039601. doi: 10.3389/fpls.2022.1039601. eCollection 2022.
Soil urease inhibition slows down the urea hydrolysis and prolongs nitrogen (N) stay in soil, resulting in an increased N uptake by plants. Apart from several chemical urease inhibitors, the urease inhibition potential of plant extracts is rarely reported. In our previous study, the soil urease inhibition by leaf extract was reported; however, its role in relation to growth and yield of wheat () under pot and field conditions remains unknown. The acetonic extracts of 10, 20, and 50 g leaves were given code names Vn.Fl-10, Vn.Fl-20 and Vn.Fl-50, respectively, and coated on 100 g of urea individually. The enhancements of growth (total number of tillers, number of productive tillers, number of spikelets per spike, number of grains per spike, and 1000-grains weight) and yield (biological yield, straw yield, and grain yield) parameters of wheat by Vn.Fl-20 and Vn.Fl-50 coated urea treatments were compared with uncoated urea in a pot experiment. The experiment indicated that the extract coatings were effective at improving N persistence in soil, as reflected by increased grain and straw N concentrations as well as uptakes. The reproduction of the aforementioned results, at the half and full recommended dose of urea under field conditions, reconfirmed the effectiveness of coatings. Moreover, the Vn.Fl-20 and Vn.Fl-50 coated urea, at the half as well as full recommended dose under field conditions, proved equally effective in terms of higher biological, straw, and grain yield, and grain N uptake. The increments in the total number of tillers, number of productive tillers, 1000-grain weight, biological yield, straw yield, grain yield, grain N concentration, grain N-, and straw N uptake along with nitrogen use efficiency (NUE) components, i.e. nitrogen partial factor productivity (NPFP), nitrogen agronomic efficiency (NAE), partial nitrogen balance (PNB), and nitrogen recovery efficiency (NRE) of wheat highlighted the superiority of Vn.Fl-20 coating over the hydroquinone (Hq) coating on urea at the full recommended dose under field conditions. Given the findings of this study, leaf extract coating (Vn.Fl-20) can be used as a natural urease inhibitor to reduce urea hydrolysis and enhance wheat productivity.
土壤脲酶抑制作用减缓了尿素水解,延长了氮在土壤中的存留时间,从而增加了植物对氮的吸收。除了几种化学脲酶抑制剂外,植物提取物的脲酶抑制潜力鲜有报道。在我们之前的研究中,报道了叶片提取物对土壤脲酶的抑制作用;然而,其在盆栽和田间条件下对小麦生长和产量的作用仍不清楚。分别将10克、20克和50克叶片的丙酮提取物命名为Vn.Fl-10、Vn.Fl-20和Vn.Fl-50,并分别涂覆在100克尿素上。在盆栽试验中,将Vn.Fl-20和Vn.Fl-50包膜尿素处理对小麦生长(总分蘖数、有效分蘖数、每穗小穗数、每穗粒数和千粒重)和产量(生物产量、秸秆产量和籽粒产量)参数的提高与未包膜尿素进行了比较。试验表明,提取物包膜有效地提高了土壤中氮的存留率,这表现为籽粒和秸秆中氮浓度及吸收量的增加。在田间条件下,在尿素半推荐剂量和全推荐剂量下重复上述结果,再次证实了提取物包膜的有效性。此外,在田间条件下,Vn.Fl-20和Vn.Fl-50包膜尿素在半推荐剂量和全推荐剂量下,在提高生物产量、秸秆产量和籽粒产量以及籽粒氮吸收方面同样有效。小麦的总分蘖数、有效分蘖数、千粒重、生物产量、秸秆产量、籽粒产量、籽粒氮浓度、籽粒氮吸收量和秸秆氮吸收量以及氮利用效率(NUE)组分,即氮偏生产力(NPFP)、氮农学效率(NAE)、部分氮平衡(PNB)和氮回收效率(NRE)的增加突出了在田间条件下全推荐剂量时Vn.Fl-20包膜相对于对苯二酚(Hq)包膜在尿素上的优越性。鉴于本研究的结果,叶片提取物包膜(Vn.Fl-20)可作为一种天然脲酶抑制剂来减少尿素水解并提高小麦生产力。