数字农科院2.0

Omics: The way forward to enhance abiotic stress tolerance in Brassica napus L.

文献类型: 外文期刊

作者: Ali Raza;Ali Razzaq;Sundas Saher Mehmood;Muhammad Azhar Hussain;Su Wei;Huang He;Qamar U Zaman;Zhang Xuekun;Cheng Yong;Mirza Hasanuzzaman

作者机构:

关键词: climate-resilient rapeseed; CRISPR/Cas9; drought; marker-assisted selection; metabolomics; salinity; systems biology; transcriptomics

期刊名称: GM Crops Food

ISSN: 2164-5698

年卷期: 2021 年 12 卷 1 期

页码:

收录情况: JCR(2021版)

摘要: Plant abiotic stresses negative affects growth and development, causing a massive reduction in global agricultural production. Rapeseed (Brassica napus L.) is a major oilseed crop because of its economic value and oilseed production. However, its productivity has been reduced by many environmental adversities. Therefore, it is a prime need to grow rapeseed cultivars, which can withstand numerous abiotic stresses. To understand the various molecular and cellular mechanisms underlying the abiotic stress tolerance and improvement in rapeseed, omics approaches have been extensively employed in recent years. This review summarized the recent advancement in genomics, transcriptomics, proteomics, metabolomics, and their imploration in abiotic stress regulation in rapeseed. Some persisting bottlenecks have been highlighted, demanding proper attention to fully explore the omics tools. Further, the potential prospects of the CRISPR/Cas9 system for genome editing to assist molecular breeding in developing abiotic stress-tolerant rapeseed genotypes have also been explained. In short, the combination of integrated omics, genome editing, and speed breeding can alter rapeseed production worldwide. © 2021 The Author(s). Published with license by Taylor & Francis Group, LLC.

分类号:

  • 相关文献

[1]Can omics deliver temperature resilient ready-to-grow crops?. Raza A.,Tabassum J.,Kudapa H.,Varshney R.K.. 2021

[2]Can omics deliver temperature resilient ready-to-grow crops?. Raza A.,Tabassum J.,Kudapa H.,Varshney R.K.. 2021

[3]Systems Biology Approaches To Study Lipidomes In Health And Disease. Alves, MA, Lamichhane, S, Dickens, A, McGlinchey, A, Ribeiro, HC, Sen, P, Wei, F, Hyotylainen, T, Oresic, M. 2021

[4]Genome- Wide Analysis And Characterization O.f The Trx Gene F amily In Upland Cotton. Su, Junji,Yu, Shuxun,Wang, Hantao,Elasad, Mohammed,Wei, Hengling,Ondati, Evans. 2018

[5]The Role Of Gibberellin Synthase G.ene Ghga2Ox1 In Upland C otton (Gossypium Hirsutum L.) Responses To Drought And Salt Stress. Yan, Gen-Tu,Zhou, Hong,Xu, Qing-Hua,Wang, Ning,Shi, Jian-Bin. 2019

[6]Dynamic Changes In The Starch-Sugar I.nterconversion Within Plant Source A nd Sink Tissues Promote A Better Abiotic Stress Response. Dong, SY, Beckles, DM. 2019

[7]Recurrent Selection Breeding By Dominant M.ale Sterility For Multiple A biotic Stresses Tolerant Rice Cultivars. Pang, YL, Chen, K, Wang, XQ, Xu, JL, Ali, J, Li, ZK. 2017

[8]Biological Roles Of Ornithine Aminotransferase (.Oat) In Plant Stress T olerance: Present Progress And Future Perspectives. Anwar, A, She, MY, Wang, K, Riaz, B, Ye, XG. 2018

[9]Potential Mechanisms Of Abiotic Stress T.olerance In Crop Plants I nduced By Thiourea. Waqas, MA, Kaya, C, Riaz, A, Farooq, M, Nawaz, I, Wilkes, A, Li, Y. 2019

[10]Insight of transcriptional regulators reveals the tolerance mechanism of carpet-grass (Axonopus compressus) against drought. Mohsin Nawaz,Liao Li,Farrukh Azeem,Samina Shabbir,Ali Zohaib,Umair Ashraf,Hubiao Yang,Zhiyong Wang. 2021

[11]Early Drought-Responsive Genes Are Variable And Relevant To Drought Tolerance. He, C, Du, YC, Fu, JJ, Zeng, E, Park, S, White, F, Zheng, J, Liu, SZ. 2020

[12]Mycokey Round Table Discussions Of F.uture Directions In Research O n Chemical Detection Methods, Genetics And Biodiversity Of Mycotoxins. Leslie, JF, Lattanzio, V, Audenaert, K, Battilani, P, Cary, J, Chulze, SN, De Saeger, S, Gerardino, A, Karlovsky, P, Liao, YC, Maragos, CM, Meca, G, Medina, A, Moretti, A, Munkvold, G, Mule, G, Njobeh, P, Pecorelli, I, Perrone, G, Pietri, A, Palazzini, JM, Proctor, RH, Rahayu, ES, Ramirez, ML, Samson, R, Stroka, J, Sulyok, M, Sumarah, M, Waalwijk, C, Zhang, Q, Zhang, H, Logrieco, AF. 2018

[13]Integrated Analyses Of The Transcriptome A.nd Metabolome Of The L eaves Of Albino Tea Cultivars Reveal Coordinated Regulation Of The Carbon And Nitrogen Metabolism. Zhang, QF, Tang, DD, Liu, MY, Ruan, JY. 2018

[14]Metabolomics And Transcriptomics Reveal The T.oxicity Of Difenoconazole To T he Early Life Stages Of Zebrafish (Danio Rerio). Teng, MM, Zhu, WT, Wang, DZ, Qi, SZ, Wang, Y, Yan, J, Dong, K, Zheng, MQ, Wang, CJ. 2018

[15]Transcriptomics Integrated With Metabolomics Reveals The Effect Of Regulated Deficit Irrigation On Anthocyanin Biosynthesis In Cabernet Sauvignon Grape Berries. Yang, BH, He, S, Liu, Y, Liu, BC, Ju, YL, Kang, DZ, Sun, XY, Fang, YL. 2020

[16]Integration of metabolomics and transcriptomics indicates changes in MRSA exposed to terpinen-4-ol. Cheng F.,Mo Y.,Chen K.,Shang X.,Yang Z.,Hao B.,Shang R.,Liang J.,Liu Y.. 2021

[17]Developmental toxicity of TCBPA on the nervous and cardiovascular systems of zebrafish (Danio rerio): A combination of transcriptomic and metabolomics. Liu W., Pan Y., Yang L., Xie Y., Chen X., Chang J., Hao W., Zhu L., Wan B.. 2023

[18]ZBED6基因对巴马香猪脾发育的作用机制分析. 王圣楠,王丹丹,田文杰,浦亚斌,潘登科,邢向阳,马月辉,蒋琳. 2021

[19]基于CRISPR/Cas9基因编辑系统构建敲除DDX5基因的猪肾细胞系. 金彩燕,吴金恩,何童童,孙世琪,郭慧琛,张小丽. 2021

[20]采用 CRISPR/Cas9 创制黄籽高抗裂角油菜杂交种. 蔡雅婷,,郝梦宇,,李一林,,温运飞,,王会,,汪文祥,,付丽,,胡琼,,成洪涛,,梅德圣. 2024

作者其他论文 更多>>