Suppr超能文献

氮肥后移施用提高了小麦/玉米间作的干物质转运和系统生产力。

N-fertilizer postponing application improves dry matter translocation and increases system productivity of wheat/maize intercropping.

机构信息

College of Agronomy, Gansu Agricultural University, Lanzhou, 730070, China.

State Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou, 730070, China.

出版信息

Sci Rep. 2021 Nov 24;11(1):22825. doi: 10.1038/s41598-021-02345-5.

Abstract

Intercropping increases the grain yield to feed the ever-growing population in the world by cultivating two crop species on the same area of land. It has been proven that N-fertilizer postponed topdressing can boost the productivity of cereal/legume intercropping. However, whether the application of this technology to cereal/cereal intercropping can still increase grain yield is unclear. A field experiment was conducted from 2018 to 2020 in the arid region of northwestern China to investigate the accumulation and distribution of dry matter and yield performance of wheat/maize intercropping in response to N-fertilizer postponed topdressing application. There were three N application treatments (referred as N, N, N) for maize and the total amount were all 360 kg N ha. N fertilizer were applied at four time, i.e. prior to sowing, at jointing stage, at pre-tasseling stage, and at 15 days post-silking stage, respectively. The N treatment was traditionally used for maize production and allocations subjected to these four stages were 2:3:4:1. The N and N were postponed topdressing treatments which allocations were 2:1:4:3 and 2:2:4:2, respectively. The results showed that the postponed topdressing N fertilizer treatments boosted the maximum average crop growth rate (CGR) of wheat/maize intercropping. The N and N treatments increased the average maximum CGR by 32.9% and 16.4% during the co-growth period, respectively, and the second average maximum CGR was increased by 29.8% and 12.6% during the maize recovery growth stage, respectively, compared with the N treatment. The N treatment was superior to other treatments, since it increased the CGR of intercropped wheat by 44.7% during the co-growth period and accelerated the CGR of intercropped maize by 29.8% after the wheat had been harvested. This treatment also increased the biomass and grain yield of intercropping by 8.6% and 33.7%, respectively, compared with the current N management practice. This yield gain was primarily attributable to the higher total translocation of dry matter. The N treatment increased the transfer amount of intercropped wheat by 28.4% from leaf and by 51.6% from stem, as well as increased the intercropped maize by 49.0% of leaf, 36.6% of stem, and 103.6% of husk, compared to N treatment, respectively. Integrated the N fertilizer postponed topdressing to the wheat/maize intercropping system have a promotion effect on increasing the translocation of dry matter to grain in vegetative organs. Therefore, the harvest index of intercropped wheat and maize with N was 5.9% and 5.3% greater than that of N, respectively. This demonstrated that optimizing the management of N fertilizer can increase the grain yield from wheat/maize intercropping via the promotion of accumulation and translocation of dry matter.

摘要

间作通过在同一土地面积上种植两种作物来增加粮食产量,以养活世界上不断增长的人口。已证明氮肥后移追肥可以提高粮食/豆类间作的生产力。然而,将这项技术应用于粮食/粮食间作是否仍能提高粮食产量尚不清楚。本试验于 2018-2020 年在中国西北干旱地区进行,采用田间试验研究氮肥后移追肥对小麦/玉米间作干物质积累与分配及产量性能的影响。玉米设 3 个施氮处理(分别记为 N、N 和 N),施氮总量均为 360kgNha。氮肥分 4 次施用,分别为播种前、拔节期、抽穗前和抽穗后 15d。N 处理为传统玉米生产施肥方式,各生育阶段的分配比例为 2:3:4:1。N 和 N 为氮肥后移追肥处理,各生育阶段的分配比例分别为 2:1:4:3 和 2:2:4:2。结果表明,氮肥后移追肥处理提高了小麦/玉米间作的最大平均作物生长速率(CGR)。与 N 处理相比,N 和 N 处理分别在共生期提高了平均最大 CGR 32.9%和 16.4%,在玉米恢复生长阶段分别提高了第二平均最大 CGR 29.8%和 12.6%。N 处理优于其他处理,因为它在共生期提高了间作小麦的 CGR 44.7%,并在小麦收获后加速了间作玉米的 CGR 29.8%。该处理还使间作的生物量和产量分别增加了 8.6%和 33.7%,与当前的 N 管理实践相比。这种产量的增加主要归因于干物质总转移量的增加。与 N 处理相比,N 处理分别增加了间作小麦叶片和茎干物质转移量 28.4%和 51.6%,增加了间作玉米叶片、茎和穗的转移量 49.0%、36.6%和 103.6%。将氮肥后移追肥综合应用于小麦/玉米间作系统,对增加营养器官干物质向籽粒的转运有促进作用。因此,N 处理的间作小麦和玉米的收获指数比 N 处理分别增加了 5.9%和 5.3%。这表明优化氮肥管理可以通过促进干物质的积累和转运来提高小麦/玉米间作的籽粒产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/250c/8613184/5c82dd015f0a/41598_2021_2345_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验