文献类型: 外文期刊
作者: Yu, Kaixin 1 ; Zhao, Siqi 1 ; Sun, Bo 1 ; Jiang, Hongwei 2 ; Hu, Limin 1 ; Xu, Chang 1 ; Yang, Mingliang 1 ; Han, Xue 1 ; Chen, Qingshan 1 ; Qi, Zhaoming 1 ;
作者机构: 1.Northeast Agr Univ, Natl Res Ctr Soybean Engn & Technol, Natl Key Lab Smart Farm Technol & Syst, Harbin, Heilongjiang, Peoples R China
2.Jilin Acad Agr Sci, Changchun, Jilin, Peoples R China
关键词: biotechnology; food security; genetic improvement; smart agriculture; sustainable agriculture; water-saving
期刊名称:PLANT CELL AND ENVIRONMENT ( 影响因子:6.3; 五年影响因子:7.7 )
ISSN: 0140-7791
年卷期: 2024 年
页码:
收录情况: SCI
摘要: Food security is fundamental to human capacity building and is crucial for sustainable global development. As the global population continues to surge, the demand for food production is increasingly strained, struggling to keep pace with nutritional needs. This challenge is exacerbated by climate change effects, including extreme weather events and natural disasters, leading to significant losses in both crop yield and arable land. In this article, we delve into the innovative strategies employed by plant researchers to enhance crop resilience and productivity. These efforts have led to the development of new crop varieties that boast adaptability to varying climatic conditions, improved resistance to diseases and herbicides, and significantly increased yields. Alongside genetic advancements, the article also highlights sustainable and smart agricultural practices that are pivotal in augmenting crop productivity. These practices include optimizing water resource management during irrigation and integrating modern informational and intelligent technologies in farmland management. By synthesizing these technological and methodological advances, this article proposes a comprehensive approach to addressing the pressing issues of food security. These solutions not only aim to meet the immediate food demands but also foster long-term sustainability in agricultural practices.
- 相关文献
作者其他论文 更多>>
-
Biodegradable film drip fertigation is more conducive to reducing the diversity and abundance of antibiotic resistance genes than plastic film drip fertigation
作者:Li, Yingjie;Yuan, Yuhan;Li, Cuilan;Zhang, Jinjing;Liu, Hang;Wang, Meng;Li, Qian;Zhang, Lei;Sun, Bo;Qin, Yubo
关键词:Antibiotic resistance genes; Biodegradable film drip fertigation; Bacterial diversity; HT-PCR
-
Functional Genomics: From Soybean to Legume
作者:Zhou, Can;Wang, Haiyan;Qi, Zhaoming;Zhou, Can;Wang, Haiyan;Zhu, Xiaobin;Xia, Zhengjun;Li, Yuqiu;Zhang, Bo;Tadege, Million;Wu, Shihao
关键词:legume; T2T; genome; pangenome; functional genomics; soybean
-
Different film-mulching strategies alter soil biological characteristics and fungal and archaeal community structures under a drip fertigation system
作者:Li, Yingjie;Li, Cuilan;Zhang, Jinjing;Liu, Hang;Zhang, Lei;Wang, Meng;Li, Qian;Sun, Bo;Qin, Yubo;Ning, Wei
关键词:Drip fertigation; Biodegradable mulching; Fungal and archaeal communities; Biological characteristics; Co-occurrence networks
-
Comammox dominate soil nitrification under different N fertilization regimes in semi-arid areas of Northeast China
作者:Feng, Xuewan;Tan, Pan;Liu, Hang;Li, Cuilan;Zhang, Jinjing;Wang, Meng;Li, Qian;Qin, Yubo;Sun, Bo
关键词:N fertilization gradient; Comammox; AOA; AOB; Nitrification contribution rate
-
Analysis and Closing of the High-Production-Maize Yield Gap in the Semi-Arid Area of Northeast China
作者:Wang, Meng;Zhang, Lei;Qin, Yubo;Li, Qian;Sun, Bo;Wang, Lichun;Lin, Yuan;Liu, Hang;Zhao, Jiale
关键词:high-production maize; nutrient management; yield gaps; nitrogen fertilizer; planting density
-
Integrated examination of the transcriptome and metabolome of the gene expression response and metabolite accumulation in soybean seeds for seed storability under aging stress
作者:Li, Guang;Xie, Jianguo;Zhang, Wei;Meng, Fanfan;Fan, Xuhong;Sun, Xingmiao;Zheng, Yuhong;Zhang, Yunfeng;Wang, Mingliang;Wang, Shuming;Jiang, Hongwei;Yang, Mingliang;Chen, Qingshan
关键词:soybean; aging; caffeic acid; transcriptome; metabolomic
-
Combined Physiological and Transcriptomic Analysis Reveals Key Regulatory Networks and Potential Hub Genes Controlling Chilling Tolerance During Soybean Germination
作者:Xie, Jianguo;Zheng, Yuhong;Li, Guang;Zhang, Wei;Meng, Fanfan;Fan, Xuhong;Sun, Xingmiao;Zhang, Yunfeng;Wang, Mingliang;Wang, Shuming;Jiang, Hongwei;Zheng, Yuhong;Chen, Qingshan
关键词:chilling tolerance; hub genes; physiological analysis; soybean germination; transcriptome analysis



