数字农科院2.0

Leveraging multi-omics tools to comprehend responses and tolerance mechanisms of heavy metals in crop plants

文献类型: 外文期刊

作者: Sidra Charagh;Hong Wang;Jingxin Wang;Ali Raza;Suozhen Hui;Ruijie Cao;Liang Zhou;Shaoqing Tang;Peisong Hu;Shikai Hu

作者机构:

关键词: Defense responses;Food security;Genomics;Hazardous heavy metals;Omics

期刊名称: Functional and Integrative Genomics

ISSN: 1438-793X

年卷期: 2024 年 24 卷 6 期

页码:

收录情况: SCIE(2024版)

摘要: Extreme anthropogenic activities and current farming techniques exacerbate the effects of water and soil impurity by hazardous heavy metals (HMs), severely reducing agricultural output and threatening food safety. In the upcoming years, plants that undergo exposure to HM might cause a considerable decline in the development as well as production. Hence, plants have developed sophisticated defensive systems to evade or withstand the harmful consequences of HM. These mechanisms comprise the uptake as well as storage of HMs in organelles, their immobilization via chemical formation by organic chelates, and their removal using many ion channels, transporters, signaling networks, and TFs, amid other approaches. Among various cutting-edge methodologies, omics, most notably genomics, transcriptomics, proteomics, metabolomics, miRNAomics, phenomics, and epigenomics have become game-changing approaches, revealing information about the genes, proteins, critical metabolites as well as microRNAs that govern HM responses and resistance systems. With the help of integrated omics approaches, we will be able to fully understand the molecular processes behind plant defense, enabling the development of more effective crop protection techniques in the face of climate change. Therefore, this review comprehensively presented omics advancements that will allow resilient and sustainable crop plants to flourish in areas contaminated with HMs.

分类号:

  • 相关文献

[1]Editorial: Omics-driven crop improvement for stress tolerance. Qi W.,Chen J.,Han Y.,Li Z.,苏晓峰.,Yeo F.K.S.. 2023

[2]Glucose restriction enhances oxidative fiber formation: A multi-omic signal network involving AMPK and CaMK2. Zhang K.,Xie N.,Ye H.,Miao J.,Xia B.,Yang Y.,Peng H.,Xu S.,Wu T.,Tao C.,Ruan J.,Wang Y.,Yang S.. 2024

[3]Comparative genomic and transcriptomic analyses provide new insight into symbiotic host specificity. Songli Yuan,Piao Leng,Yong Feng,Fuxiao Jin,Hui Zhang,Chanjuan Zhang,Yi Huang,Zhihui Shan,Zhonglu Yang,Qingnan Hao,Shuilian Chen,Limiao Chen,Dong Cao,Wei Guo,Hongli Yang,Haifeng Chen,Xinan Zhou. 2024

[4]Beyond a reference genome: pangenomes and population genomics of underutilized and orphan crops for future food and nutrition security. Chapman, Mark A.,He, Yuqi,Zhou, Meiliang. 2022

[5]Editorial: Viruses in agricultural systems: Interactions with plants, insect pollinators and fungi. Islam Hamim,Ken Komatsu,Sean Michael Prager,Beilei Wu. 2023

[6]Plant Biochemistry in the Era of Omics: Integrated Omics Approaches to Unravel the Genetic Basis of Plant Stress Tolerance. Sarfraz, Zareen,Zarlashat, Yusra,Ambreen, Alia,Mujahid, Muhammad,Iqbal, Muhammad Sajid,Fatima, Syeda Akash,Iqbal, Muhammad Shahid,Iqbal, Rashid,Fiaz, Sajid. 2025

[7]21世纪功能因组学与生物制药. 孟庆文,于康震. 2001

[8]Chromosome elimination, addition and introgression in intertribal partial hybrids between Brassica rapa and Isatis indigotica. Tu, Yuqin,Sun, Jian,Ge, Xianhong,Li, Zaiyun,Sun, Jian.

[9]Genomic and Pathogenic Diversity of Barley Yellow Mosaic Virus and Barley Mild Mosaic Virus Isolates in Fields of China and Their Compatibility with Resistance Genes of Cultivated Barley. Jiang C., Lei M., Luan H., Pan Y., Zhang L., Zhou S., Cai Y., Xu X., Shen H., Xu R., Feng Z., Zhang J., Yang P.. 2022

[10]Isolation and identification of a gene in response to rice blast disease in rice. Zheng, XW,Chen, XW,Zhang, XH,Lin, ZZ,Shang, JJ,Xu, JC,Zhai, WX,Zhu, LH.

[11]Expression of the ethylene response factor gene TSRF1 enhances abscisic acid responses during seedling development in tobacco. Zhang, Hongbo,Zhang, Zhijin,Huang, Rongfeng,Zhang, Hongbo,Chen, Jia,Wang, Xue-Chen,Yang, Yuhong,Zhang, Hongbo,Zhang, Zhijin,Huang, Rongfeng.

[12]Pectinase production by Aspergillus niger using wastewater in solid state fermentation for eliciting plant disease resistance. Bai, ZH,Zhang, HX,Qi, HY,Peng, XW,Li, BJ.

[13]SPL33, encoding an eEF1A-like protein, negatively regulates cell death and defense responses in rice. Wang, Shuai,Lei, Cailin,Wang, Jiulin,Ma, Jian,Tang, Sha,Wang, Chunlian,Zhao, Kaijun,Tian, Peng,Qi, Changyan,Cheng, Zhijun,Zhang, Xin,Guo, Xiuping,Wu, Chuanyin,Wan, Jianmin,Zhang, Huan,Liu, Linglong,Wan, Jianmin.

[14]Disruption Of Ossec3A Increases The C.ontent Of Salicylic Acid A nd Induces Plant Defense Responses In Rice. Ma, J, Chen, J, Wang, M, Ren, YL, Wang, S, Lei, CL, Cheng, ZJ, Sodmergen. 2018

[15]Spl33, Encoding An Eef1A-Like Protein, N.egatively Regulates Cell Death A nd Defense Responses In Rice. Wang, SA, Lei, CL, Wang, JL, Ma, J, Tang, S, Wang, CL, Zhao, KJ, Tian, P, Zhang, H, Qi, CY, Cheng, ZJ, Zhang, X, Guo, XP, Liu, LL, Wu, CY, Wan, JM. 2017

[16]Watery Saliva Secreted By The G.rain Aphid Sitobion Avenae S timulates Aphid Resistance In Wheat. Zhang, Y,Fan, J,Francis, F,Chen, JL. 2017

[17]Jasmonate-based warfare between the pathogenic intruder and host plant: who wins?. Li, Rui,Yang, Yongfang,Lou, Hao,Wang, Weicheng,Yan, Jianbin,Shan, Xiaoyi,Xie, Daoxin. 2022

[18]Plant-Mediated Interactions Between Two Cereal A.phid Species: Promotion Of A phid Performance And Attraction Of More Parasitoids By Infestation Of Wheat With Phytotoxic Aphid Schizaphis Graminum. Zhang, Y,Fan, J,Fu, Y,Francis, F,Chen, JL. 2019

[19]Nbnrp1 mediates Verticillium dahliae effector PevD1-triggered defense responses by regulating sesquiterpenoid phytoalexins biosynthesis pathway in Nicotiana benthamiana. Yingbo Liang,Ze Li,Yi Zhang,Fanlu Meng,Dewen Qiu,Hongmei Zeng,Guangyue Li,Xiufen Yang. 2021

[20]Two salivary proteins Sm10 and SmC002 from grain aphid Sitobion miscanthi modulate wheat defense and enhance aphid performance. Yu Fu,Xiaobei Liu,Qian Wang,Huan Liu,Yumeng Cheng,Hongmei Li,Yong Zhang,Julian Chen. 2023

作者其他论文 更多>>