碳点提高氮素生物利用度,促进干旱胁迫下大豆生长和营养品质

IF 15.8 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
ACS Nano Pub Date : 2022-08-10 DOI:10.1021/acsnano.2c03591
Chuanxi Wang, Yahui Ji, Xuesong Cao, Le Yue, Feiran Chen, Jing Li, Hanyue Yang, Zhenyu Wang* and Baoshan Xing, 
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引用次数: 19

摘要

土壤氮素利用效率低下和干旱胁迫严重威胁着农业和粮食生产。综上所述,土壤施碳点(cd, 5 mg kg-1)通过提高氮素生物有效性促进大豆生长和营养品质,有利于减轻干旱胁迫造成的经济损失。土壤施镉提高根瘤固氮能力,调控根际过程,最终提高干旱胁迫下大豆对氮和水分的吸收。与对照(干旱胁迫)相比,干旱胁迫下施用cd可使大豆氮酶活性提高8.6%,使大豆茎部和根系氮含量分别提高18.5%和14.8%。土壤cd促进根系分泌物(有机酸、脂肪酸、聚酮类)的分泌,调节有益菌群(变形菌门、酸性菌门、双胞菌门、放线菌门),促进土壤氮释放。此外,与对照相比,GmNRT、GmAMT、GmLB和GmAQP基因在根系中的表达分别上调了1.2倍、1.8倍、2.7倍和2.3倍,表明氮转运和水分吸收增强。氮素生物利用度提高后,大豆籽粒蛋白质、脂肪酸和氨基酸含量分别提高了3.4%、6.9%和17.3%。因此,光盘农业有望提高大豆的耐旱性和品质,这对应对全球气候变化危机的粮食安全具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Carbon Dots Improve Nitrogen Bioavailability to Promote the Growth and Nutritional Quality of Soybeans under Drought Stress

Carbon Dots Improve Nitrogen Bioavailability to Promote the Growth and Nutritional Quality of Soybeans under Drought Stress

The inefficient utilization of nitrogen (N) in soil and drought stress seriously threatens agricultural and food production. Herein, soil application of carbon dots (CDs, 5 mg kg–1) promoted the growth and nutritional quality of soybeans by improving N bioavailability, which was beneficial to alleviate the economic losses caused by drought stress. Soil application of CDs enhanced the N-fixing ability of nodules, regulated rhizosphere processes, and ultimately enhanced N and water uptake in soybeans under drought stress. Compared to control (drought stress), the application of CDs under drought stress enhanced soybean nitrogenase activity by 8.6% and increased N content in soybean shoots and roots by 18.5% and 14.8%, respectively. CDs in soil promoted the secretion of root exudates (e.g., organic acids, fatty acids, and polyketides) and regulated beneficial microbial communities (e.g., Proteobacteria, Acidobacteria, Gemmatimonadetes, and Actinobacteria), thus enhancing the N release from soil. Besides, compared to control, the expression of GmNRT, GmAMT, GmLB, and GmAQP genes in roots were upregulated by 1.2-, 1.8-, 2.7-, and 2.3-fold respectively, implying enhanced N transport and water uptake. Furthermore, the proteins, fatty acids, and amino acids in soybean grains were improved by 3.4%, 6.9%, and 17.3%, respectively, as a result of improved N bioavailability. Therefore, CD-enabled agriculture is promising for improving the drought tolerance and quality of soybeans, which is of significance for food security in facing the crisis of global climate change.

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来源期刊
ACS Nano
ACS Nano 工程技术-材料科学:综合
CiteScore
26.00
自引率
4.10%
发文量
1627
审稿时长
1.7 months
期刊介绍: ACS Nano, published monthly, serves as an international forum for comprehensive articles on nanoscience and nanotechnology research at the intersections of chemistry, biology, materials science, physics, and engineering. The journal fosters communication among scientists in these communities, facilitating collaboration, new research opportunities, and advancements through discoveries. ACS Nano covers synthesis, assembly, characterization, theory, and simulation of nanostructures, nanobiotechnology, nanofabrication, methods and tools for nanoscience and nanotechnology, and self- and directed-assembly. Alongside original research articles, it offers thorough reviews, perspectives on cutting-edge research, and discussions envisioning the future of nanoscience and nanotechnology.
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