数字农科院2.0

Draft Genome Analysis Offers Insights I.nto The Mechanism By W hich Streptomyces Chartreusis Wzs021 Increases Drought Tolerance In Sugarcane

文献类型: 外文期刊

作者: Wang, Zhen;Solanki, Manoj Kumar;Yang, Li-Tao;Solanki, Manoj Kumar;Solanki, Manoj Kumar;Li, Yang-Rui;Yu, Zhuo-Xin;An, Qian-Li;Li, Yang-Rui;Dong, Deng-Feng;Li, Yang-Rui

作者机构:

关键词: drought stress; genome; plant growth promotion; Streptomyces; sugarcane

期刊名称: FRONTIERS IN MICROBIOLOGY

ISSN: 1664-302X

年卷期: 2019 年 9 卷

页码:

摘要: Drought directly affects sugarcane production. Plant growth-promoting bacteria have gained attention as growth promoters of plants under abiotic stresses. The present study focused on genome assessment of the plant-beneficial endophyte Streptomyces chartreusis WZS021 and its vital role in sugarcane plants under drought stress. Based on in vitro plant growth-promoting trait analyses, WZS021 had multiple abilities, including tolerance to drought and production of 1-aminocyclopropane-1-carboxylic deaminase, siderophores, and indole acetic acid. We confirmed root colonization of sugarcane transplants by WZS021 by a sterile sand assay and scanning electron microscopy. Plants inoculated with strain WZS021 had a positive influence on the root parameters such as length and biomass when compared to the control plants. A comparative study of the responses of two sugarcane varieties (ROC22 and B8) to different levels of drought stress in the presence or absence of WZS021 was conducted by assessing the plant chemistry. The expression of antioxidants in sugarcane leaves varied with water stress level. WZS021 inoculation improved the contents of chlorophyll, proline, and phytohormones, revealing some potential for the mechanisms by which this strain improves drought tolerance in sugarcane plants. We identified several genes that might be involved in the plant growth- and drought tolerance-promoting effects of this strain.

分类号:

  • 相关文献

[1]Beneficial Linkages Of Endophytic Burkholderia A.nthina Mysp113 Towards Sugarcane G rowth Promotion. Li, Yang:Rui,Singh, Rajesh Kumar,Yang, Li:Tao,Solanki, Manoj Kumar,Singh, Pratiksha,Solanki, Manoj Kumar,Htun, Reemon,Malviya, Mukesh Kumar,Li, Yang:Rui,Li, Chang:Ning. 2019

[2]Diversity Of Sugarcane Root-Associated Endophytic Bacillus And Their Activities In Enhancing Plant Growth. Wang, Z.,Yu, Z-X,Li, Y-R,Solanki, M. K.,Li, Y-R,Solanki, M. K.,Dong, D-F,Yang, L-T,Xing, Y-X. 2020

[3]Whole Genome Analysis of Sugarcane Root-Associated Endophyte Pseudomonas aeruginosa B18—A Plant Growth-Promoting Bacterium With Antagonistic Potential Against Sporisorium scitamineum. Pratiksha Singh,Rajesh Kumar Singh,Dao-Jun Guo,Anjney Sharma,Ram Nageena Singh,Dong-Ping Li,Mukesh K. Malviya,Xiu-Peng Song,Prakash Lakshmanan,Li-Tao Yang,Yang-Rui Li. 2021

[4]Streptomyces typhae sp. nov., a novel endophytic actinomycete with antifungal activity isolated the root of cattail (Typha angustifolia L.). Chenghui Peng,Xiaoxin Zhuang,Congting Gao,Zhiyan Wang,Junwei Zhao,Shengxiong Huang,Chongxi Liu,Wensheng Xiang. 2021

[5]Complete Genome Sequence Of Soil A.ctinobacteria Streptomyces Cavourensis Tj430. Wang, PP, Liu, ZQ, Huang, YC. 2018

[6]Antifungal, Plant Growth-Promoting, And Genomic P.roperties Of An Endophytic A ctinobacterium Streptomyces Sp. Neau-S7Gs2. Yan, Rui,Liu, Dongli,Fu, Yansong,Xiang, Wensheng,Xiang, Wensheng,Zhang, Ji,Wang, Xiangjing. 2019

[7]Genetic Dissection for Leaf Correlative Traits of Rice (Oryza sativa L.)Under Drought Stress. Guo Longbiao,Qian Qian,Zeng Dali,Dong Guojun,Teng Sheng,Zhu Lihuang. 2004

[8]Genome-wide detection of genetic structure and runs of homozygosity analysis in Anhui indigenous and Western commercial pig breeds using PorcineSNP80k data. Jiang Y., Li X., Liu J., Zhang W., Zhou M., Wang J., Liu L., Su S., Zhao F., Chen H., Wang C.. 2022

[9]Genome-wide identification studies – A primer to explore new genes in plant species. Safder I., Shao G., Sheng Z., Hu P., Tang S.. 2022

[10]Regulation Of Antibiotic Production By Signaling Molecules In Streptomyces. Nie, Ju,Niu, Guoqing,Niu, Guoqing,Kong, Dekun,Wang, Xia,Wang, Xia,Nie, Ju,Kong, Dekun. 2019

[11]Extracellular Production Of Active-Form Streptomyces Mobaraensis Transglutaminase In Bacillus Subtilis. Fu, LH, Wang, Y, Ju, JS, Cheng, L, Xu, YQ, Yu, B, Wang, LM. 2020

[12]Scalable secondary metabolite production in Streptomyces using a plug-and-play system. Yang, Bowen,Li, Zilong,Zhang, Jingyu,Qiu, Shiwen,Liu, Xueting,Liang, Zonglin,Yan, Hao,Zhang, Yanyan,Liu, Lihong,Xia, Bing,Bao, Lianqun,Li, Defeng,Zhou, Shanshan,Corre, Christophe,Zhang, Chengyu,Lu, Yinhua,Tan, Gao-Yi,Xia, Xuekui,Li, Shanshan,Zhang, Lixin,Wang, Weishan. 2025

[13]Indole-3-Acetic Acid Production By Streptomyces F.radiae Nkz-259 And Its F ormulation To Enhance Plant Growth. Shi, Liming,Zhang, Kecheng,Ma, Jinjin,Liu, Binghua,Jiang, Mingguo,Ge, Beibei,Myo, Ei Mon,Myo, Ei Mon,Cui, Hailan. 2019

[14]Seed Treatment Containing Bacillus Subtilis B.y-2 In Combination With O ther Bacillus Isolates For Control Of Sclerotinia Sclerotiorum On Oilseed Rape. Hu, XJ, Roberts, DP, Xie, LH, Qin, L, Li, YS, Liao, XS, Han, PP, Yu, CB, Liao, X. 2019

[15]Diversity And Probiotic Activities Of E.ndophytic Bacteria Associated With T he Coastal Halophyte Messerschmidia Sibirica. Zhang, CW, Tian, XY, Zhang, CS. 2019

[16]Impact Of Sugarcane-Legume Intercropping On Diazotrophic Microbiome. Solanki, Manoj Kumar,Yang, Li-Tao,Li, Yang-Rui,Wang, Zhen,Singh, Rajesh Kumar,Lan, Tao-Ju,Singh, Pratiksha,Li, Chang-Ning,Li, Chang-Ning,Li, Yang-Rui,Solanki, Manoj Kumar,Wang, Fei-Yong,Wang, Fei-Yong,Wang, Fei-Yong. 2020

[17]Transcriptome Profile Analysis Of Twisted Leaf Disease Response In Susceptible Sugarcane With Narenga Porphyrocoma Genetic Background. Wei, Jinju,Xiu, Zhihui,Chen, Junhui,Jiang, Huayan,Yang, Rongzhong,Li, Yangrui,Huang, Dongliang,Liu, Xihui,Tan, Hongwei,Li, Haibi,Zhang, Xiaoqiu,Ou, Huiping,Zhang, Ronghua,Gui, Yiyun,Zhou, Hui. 2019

[18]Dissipation Behavior Of Chlorpyrifos Residues A.nd Risk Assessment In S ugarcane Fields. Yang, Renbin,Wang, Haiping,Yu, Wanting,Cao, Xiaomin,Zheng, Liguo. 2019

[19]Physiological And Molecular Analysis Of S.ugarcane (Varieties-F134 And Nco310) D uring Sporisorium Scitamineum Interaction. Singh, Pratiksha,Singh, Rajesh Kumar,Solanki, Manoj Kumar,Yang, Li-Tao,Song, Qi-Qi,Li, Hai-Bi,Li, Yang-Rui,Li, Yang-Rui. 2019

[20]Effect Of Biochar On Growth, P.hotosynthetic Characteristics And Nutrient D istribution In Sugarcane. Liao, Fen,Yang, Litao,Huang, Dongliang,Huang, Dongliang,Xue, Jianjun,Yang, Liu,Yang, Liu,Yang, Liu,Li, Qiang,Li, Yangrui,Liao, Fen,Huang, Dongliang,Liao, Fen,Li, Yangrui,Li, Yangrui,Liao, Fen. 2019

作者其他论文 更多>>