Suppr超能文献

基于作物蒸散量(ET)预测的水肥耦合对枸杞光合作用及品质的影响

Effects of water-fertiliser coupling on the photosynthesis and quality of Lycium barbarum based on predicted crop evapotranspiration (ET).

作者信息

Liang Yunfeng, Feng Dongpu, Sun Zhaojun, Ye Ping, Liang Shengfan, Shi Taiyue

机构信息

School of Civil and Hydraulic Engineering, Ningxia University, Yinchuan, Ningxia, 750021, China.

School of Mechanical Engineering, Ningxia University, Yinchuan, Ningxia, 750021, China.

出版信息

Sci Rep. 2024 Dec 28;14(1):31405. doi: 10.1038/s41598-024-82986-4.

Abstract

Lycium barbarum is an important economic crop in the arid region of Northwest China, and the regulation of irrigation and fertilisation is an important way to improve the quality and yield of Lycium barbarum. To explore the effects of water-fertiliser coupling on photosynthesis, quality and yield of Lycium barbarum under irrigation methods based on predicted crop evapotranspiration (ET), ET was calculated via reference evapotranspiration (ET) predicted on the basis of public weather forecasts, and the irrigation water volume was determined as a proportion of this ET. A field experiment was conducted via a completely randomised experimental design with five irrigation water volumes (W0 (100% ET), W1 (90% ET), W2 (80% ET), W3 (70% ET) and W4 (65% ET)) and three fertiliser application rates (high fertiliser (FH), medium fertiliser (FM) and low fertiliser (FL)). The results revealed that the chlorophyll content, G, C of Lycium barbarum leaves and 100-grain weight and yield of fresh fruit of Lycium barbarum increased with increasing irrigation, and the protein content, fat content, total sugar content and polysaccharide content in the dried fruits of Lycium barbarum first increased and then decreased with increasing irrigation under the same level of fertilisation, and the maximum value of these indexes reached 70% ET - 100% ET. At the same irrigation level, E, A, G, C of Lycium barbarum leaves and protein content, fat content, total sugar content and polysaccharide content in the dried fruits of Lycium barbarum increased and then decreased with increasing of fertiliser application volume, and these indexes reached the maximum value at the fertiliser application rate of FM. A comprehensive evaluation based on principal component analysis (PCA) revealed that the optimum treatment in both years was W0FM (irrigation level of 100% ET, corresponding to irrigation water in the range of 254.2-309.4 mm, and fertiliser application of N-PO-KO of 315-82-135 kg ha), which was significantly greater in 2021 (2022) than in the CK. E, A, G and C of daily changes of Lycium barbarum leaves in the W0FM treatment in 2021 (2022) increased by 46.54% (31.53%), 7.08% (59.26%), 18.55% (10.74%) and 34.58% (29.81%), respectively. In 2021 (2022), W0FM treatment increased fat content, polysaccharide content, and betaine content of dried fruits of Lycium barbarum and the 100-grain weight and yield of fresh fruit by 2.88% (10.11%), 1.56% (10.02%), 8.37% (21.69%), 13.57% (24.81%) and 31.39% (71.50%), respectively. The results of this study may provide a theoretical basis for improving the quality and efficiency of Lycium barbarum in the field in the arid zone of Northwest China.

摘要

枸杞是中国西北干旱地区的一种重要经济作物,灌溉和施肥调控是提高枸杞品质和产量的重要途径。为了探讨基于作物蒸散量(ET)预测的灌溉方式下,水肥耦合对枸杞光合作用、品质和产量的影响,通过基于公共天气预报预测的参考蒸散量(ET)计算ET,并将灌溉水量确定为该ET的一定比例。采用完全随机试验设计进行田间试验,设置5个灌溉水量水平(W0(100%ET)、W1(90%ET)、W2(80%ET)、W3(70%ET)和W4(65%ET))和3个施肥量水平(高肥(FH)、中肥(FM)和低肥(FL))。结果表明,枸杞叶片的叶绿素含量、净光合速率(Pn)、气孔导度(Gs)、胞间CO₂浓度(Ci)以及枸杞鲜果的百粒重和产量随灌溉量增加而增加,在相同施肥水平下,枸杞干果中的蛋白质含量、脂肪含量、总糖含量和多糖含量随灌溉量增加先升高后降低,这些指标的最大值出现在70%ET - 100%ET。在相同灌溉水平下,枸杞叶片的蒸腾速率(Tr)、光合有效辐射(PAR)、Gs、Ci以及枸杞干果中的蛋白质含量、脂肪含量、总糖含量和多糖含量随施肥量增加先升高后降低,这些指标在中肥处理时达到最大值。基于主成分分析(PCA)的综合评价表明,两年的最优处理均为W0FM(灌溉水平为100%ET,对应灌溉水量在254.2 - 309.4mm范围内,施肥量为N-P₂O₅-K₂O 315 - 82 - 135kg·ha),2021年(2022年)该处理显著高于对照(CK)。2021年(2022年)W0FM处理下枸杞叶片的Tr、PAR、Gs、Ci日变化分别增加了46.54%(31.53%)、7.08%(59.26%)、18.55%(10.74%)和34.58%(29.81%)。2021年(2022年),W0FM处理使枸杞干果的脂肪含量、多糖含量、甜菜碱含量以及鲜果的百粒重和产量分别提高了2.88%(10.11%)、1.56%(10.02%)、8.37%(21.69%)、13.57%(24.81%)和31.39%(71.50%)。本研究结果可为提高中国西北干旱区田间枸杞的品质和效益提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81e2/11682182/855e393b1c88/41598_2024_82986_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