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优化干旱胁迫下辣椒的生产:结合 Zn 量子点生物炭和脯氨酸提高生长和产量。

Optimizing chili production in drought stress: combining Zn-quantum dot biochar and proline for improved growth and yield.

机构信息

Department of Environmental Sciences, Woman University Multan, Multan, Punjab, Pakistan.

Department of Soil Science, Faculty of Agricultural Sciences and Technology, Bahauddin Zakariya University, Multan, Punjab, Pakistan.

出版信息

Sci Rep. 2024 Mar 19;14(1):6627. doi: 10.1038/s41598-024-57204-w.

Abstract

The reduction in crop productivity due to drought stress, is a major concern in agriculture. Drought stress usually disrupts photosynthesis by triggering oxidative stress and generating reactive oxygen species (ROS). The use of zinc-quantum dot biochar (ZQDB) and proline (Pro) can be effective techniques to overcome this issue. Biochar has the potential to improve the water use efficiency while proline can play an imperative role in minimization of adverse impacts of ROS Proline, functioning as an osmotic protector, efficiently mitigates the adverse effects of heavy metals on plants by maintaining cellular structure, scavenging free radicals, and ensuring the stability of cellular integrity. That's why current study explored the impact of ZQDB and proline on chili growth under drought stress. Four treatments, i.e., control, 0.4%ZQDB, 0.1 mM Pro, and 0.4%ZQDB + Pro, were applied in 4 replications following the complete randomized design. Results exhibited that 0.4%ZQDB + Pro caused an increases in chili plant dry weight (29.28%), plant height (28.12%), fruit length (29.20%), fruit girth (59.81%), and fruit yield (55.78%) over control under drought stress. A significant increment in chlorophyll a (18.97%), chlorophyll b (49.02%), and total chlorophyll (26.67%), compared to control under drought stress, confirmed the effectiveness of 0.4%ZQDB + Pro. Furthermore, improvement in leaves N, P, and K concentration over control validated the efficacy of 0.4%ZQDB + Pro against drought stress. In conclusion, 0.4%ZQDB + Pro can mitigate drought stress in chili. More investigations are suggested to declare 0.4%ZQDB + Pro as promising amendment for mitigation of drought stress in other crops as well under changing climatic situations.

摘要

由于干旱胁迫导致的作物生产力下降是农业中的一个主要关注点。干旱胁迫通常通过触发氧化应激和产生活性氧物种 (ROS) 来破坏光合作用。使用锌量子点生物炭 (ZQDB) 和脯氨酸 (Pro) 可以是克服这个问题的有效技术。生物炭有可能提高水的利用效率,而脯氨酸可以在最小化 ROS 的不利影响方面发挥重要作用。脯氨酸作为一种渗透保护剂,通过维持细胞结构、清除自由基和确保细胞完整性的稳定性,有效地减轻重金属对植物的不利影响。这就是为什么当前的研究探讨了 ZQDB 和脯氨酸在干旱胁迫下对辣椒生长的影响。在完全随机设计下,采用 4 种处理,即对照、0.4%ZQDB、0.1mM Pro 和 0.4%ZQDB+Pro,在 4 个重复中进行处理。结果表明,在干旱胁迫下,0.4%ZQDB+Pro 使辣椒植株干重 (29.28%)、株高 (28.12%)、果实长度 (29.20%)、果实周长 (59.81%)和果实产量 (55.78%)比对照增加。与干旱胁迫下的对照相比,叶绿素 a (18.97%)、叶绿素 b (49.02%)和总叶绿素 (26.67%)显著增加,证实了 0.4%ZQDB+Pro 的有效性。此外,与对照相比,叶片 N、P 和 K 浓度的提高验证了 0.4%ZQDB+Pro 对干旱胁迫的功效。总之,0.4%ZQDB+Pro 可以减轻辣椒的干旱胁迫。建议进行更多的研究,以宣布 0.4%ZQDB+Pro 是在气候变化情况下缓解其他作物干旱胁迫的有前途的改良剂。

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