Split application of phosphorus fertilizer increased wheat grain weight under post-anthesis drought stress by delaying programmed cell death of endosperm

IF 4.5 2区 生物学 Q2 ENVIRONMENTAL SCIENCES
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Abstract

Drought is one of the important factors affecting wheat yield. However, the effect of split application of phosphorus fertilizer on the programmed cell death (PCD) of wheat endosperm cells under different post-anthesis water treatments is still unclear. In this study, three phosphorus fertilization methods (P1, all phosphorus fertilizer was applied at the spring green-up stage; P2, 50 % and 50 % of phosphorus fertilizer were applied at the spring green-up stage and jointing stage, respectively; P3, 40 %, 30 %, and 30 % of phosphorus fertilizer were applied at the spring green-up, jointing, and grain filling stages, respectively) were designed. Besides, two post-anthesis water treatments were designed: WT, full irrigation treatment; DT, drought stress treatment. Then, the effects of P1, P2, and P3 treatments on the endosperm cell development, nuclear number, nuclease activity, DNA fragmentation, DNA content, grain weight, and phosphorus content of winter wheat variety “Xindong 23” under WT and DT conditions were determined at different stages after anthesis. The results showed that under WT and DT conditions, the degree of nuclear deformation and nuclear membrane depression in P3 treatment was milder than that in P1 and P2 treatments. The ACPase amount in P3 treatment was more than that in P1 and P2 treatments. The number of endosperm nuclei in P3 treatment was higher than that in P1 and P2 treatments. Under DT condition, the endosperm DNA content of wheat grains collected 14–35 days post anthesis (DPA) in P3 treatment increased, and the peak time of genomic DNA fragmentation in P3 treatment was later, compared with those in P1 treatment. Under DT condition, the grain weight and grouting rate in P3 treatment were higher than those of P1 treatment at 7–28 DPA, and the 1000-grain weight of P3 was the highest under both WT and DT conditions, reaching 47.03 and 40.57 g, respectively. Under WT and DT conditions, compared with P1 treatment, the protein content change rate (3.16 % and 5.59 %, respectively) and the total phosphorus content change rate (34.36 % and 35.08 %, respectively) of wheat grains in P3 treatment were the highest. In summary, under the DT condition, split application of phosphorus fertilizer (P3, spring green-up stage stage: jointing stage: filling stage = 4: 3: 3) could increase the phosphorus uptake and utilization of wheat plants and grains, suppress the DNA fragmentation of endosperm cells, and delay the deformation and disintegration of nuclei, which ultimately delayed the PCD in endosperm and realized high grain weight and protein content.

通过延迟胚乳细胞的程序性死亡,分次施用磷肥增加了小麦在开花后干旱胁迫下的粒重
干旱是影响小麦产量的重要因素之一。然而,在不同的花后水分处理下,分次施用磷肥对小麦胚乳细胞程序性细胞死亡(PCD)的影响仍不清楚。本研究设计了三种磷肥施用方法(P1,在春季返青期施用全部磷肥;P2,在春季返青期和拔节期分别施用 50 % 和 50 % 的磷肥;P3,在春季返青期、拔节期和籽粒灌浆期分别施用 40 %、30 % 和 30 % 的磷肥)。此外,还设计了两种花后水处理:WT,充分灌溉处理;DT,干旱胁迫处理。然后,测定了P1、P2和P3处理对WT和DT条件下冬小麦品种 "新冬23 "在花后不同阶段胚乳细胞发育、核数、核酸酶活性、DNA片段化、DNA含量、粒重和磷含量的影响。结果表明,在 WT 和 DT 条件下,P3 处理的核变形和核膜凹陷程度比 P1 和 P2 处理轻。P3 处理的 ACPase 量高于 P1 和 P2 处理。P3 处理的胚乳细胞核数量高于 P1 和 P2 处理。在 DT 条件下,P3 处理花后 14-35 天采集的小麦粒胚乳 DNA 含量增加,与 P1 处理相比,P3 处理基因组 DNA 断裂的峰值时间较晚。在 DT 条件下,P3 处理在花后 7-28 天的粒重和灌浆率均高于 P1 处理,P3 处理的千粒重在 WT 和 DT 条件下均最高,分别达到 47.03 克和 40.57 克。在 WT 和 DT 条件下,与 P1 处理相比,P3 处理麦粒蛋白质含量变化率(分别为 3.16 % 和 5.59 %)和总磷含量变化率(分别为 34.36 % 和 35.08 %)最高。综上所述,在 DT 条件下,分次施用磷肥(P3,春季返青期:拔节期:灌浆期=4:3:3)可提高小麦植株和籽粒对磷的吸收和利用,抑制胚乳细胞 DNA 断裂,延缓细胞核变形和解体,最终延缓胚乳 PCD,实现高粒重和高蛋白含量。
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来源期刊
Environmental and Experimental Botany
Environmental and Experimental Botany 环境科学-环境科学
CiteScore
9.30
自引率
5.30%
发文量
342
审稿时长
26 days
期刊介绍: Environmental and Experimental Botany (EEB) publishes research papers on the physical, chemical, biological, molecular mechanisms and processes involved in the responses of plants to their environment. In addition to research papers, the journal includes review articles. Submission is in agreement with the Editors-in-Chief. The Journal also publishes special issues which are built by invited guest editors and are related to the main themes of EEB. The areas covered by the Journal include: (1) Responses of plants to heavy metals and pollutants (2) Plant/water interactions (salinity, drought, flooding) (3) Responses of plants to radiations ranging from UV-B to infrared (4) Plant/atmosphere relations (ozone, CO2 , temperature) (5) Global change impacts on plant ecophysiology (6) Biotic interactions involving environmental factors.
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