数字农科院2.0

The Biocontrol and Growth-Promoting Potential of Penicillium spp. and Trichoderma spp. in Sustainable Agriculture

文献类型: 外文期刊

作者: Sun, Wenli;Shahrajabian, Mohamad Hesam;Guan, Lijie

作者机构:

关键词: fungal endophytes;plant-growth-promoting fungi;phytohormones;sustainability

期刊名称: PLANTS-BASEL

ISSN: 2223-7747

年卷期: 2025 年 14 卷 13 期

页码:

收录情况: SCIE(2025版)

摘要: Plant-growth-promoting fungi (PGPF) play a central role in promoting sustainable agriculture by improving plant growth and resilience. The aim of this literature review is to survey the impacts of Trichoderma spp. and Penicillium spp. on various agricultural and horticultural plants. The information provided in this manuscript was obtained from randomized control experiments, review articles, and analytical studies and observations gathered from numerous literature sources such as Scopus, Google Scholar, PubMed, and Science Direct. The keywords used were the common and Latin names of various agricultural and horticultural species, fungal endophytes, plant-growth-promoting fungi, Trichoderma, Penicillium, microbial biostimulants, and biotic and abiotic stresses. Endophytic fungi refer to fungi that live in plant tissues throughout part of or the entire life cycle by starting a mutually beneficial symbiotic relationship with its host without any negative effects. They are also capable of producing compounds and a variety of bioactive components such as terpenoids, steroids, flavonoids, alkaloids, and phenolic components. Penicillium is extensively known for its production of secondary metabolites, its impact as a bioinoculant to help with crop productivity, and its effectiveness in sustainable crop production. The plant-growth-promotion effects of Trichoderma spp. are related to better absorption of mineral nutrients, enhanced morphological growth, better reproductive potential and yield, and better induction of disease resistance. Both Penicillium spp. and Trichoderma spp. are effective, affordable, safe, and eco-friendly biocontrol agents for various plant species, and they can be considered economically important microorganisms for both agricultural and horticultural sciences. The present review article aims to present the most up-to-date results and findings regarding the practical applications of two important types of PGPF, namely Penicillium spp., and Trichoderma spp., in agricultural and horticultural species, considering the mechanisms of actions of these species of fungi.

分类号:

  • 相关文献

[1]Antifungal Secondary Metabolites Produced by the Fungal Endophytes: Chemical Diversity and Potential Use in the Development of Biopesticides. Kuo Xu,Xiu Qi Li,Dong Lin Zhao,Peng Zhang. 2021

[2]Agrobacterium-mediated genetic transformation of peanut and the efficient recovery of transgenic plants. Chen, Mingna,Yang, Qingli,Wang, Tong,Chen, Na,Pan, Lijuan,Chi, Xiaoyuan,Yang, Zhen,Wang, Mian,Yu, Shanlin,Chi, Xiaoyuan. 2015

[3]Profiling of phytohormones and their major metabolites in rice using binary solid-phase extraction and liquid chromatography-triple quadrupole mass spectrometry. Cao, Zhao-Yun,Mou, Ren-Xiang,Zhang, Lin-Ping,Lin, Xiao-Yan,Zhu, Zhi-Wei,Chen, Ming-Xue,Sun, Li-Hua.

[4]Combined transcriptome and metabolome analyses to understand the dynamic responses of rice plants to attack by the rice stem borer Chilo suppressalis (Lepidoptera: Crambidae). Wang, Xingyun,Romeis, Jorg,Peng, Yufa,Li, Yunhe,Tzin, Vered,Romeis, Jorg. 2016

[5]Simultaneous determination of 13 phytohormones in oilseed rape tissues by liquid chromatography-electrospray tandem mass spectrometry and the evaluation of the matrix effect. Fan, Sufang,Wang, Xiupin,Li, Peiwu,Zhang, Qi,Zhang, Wen,Fan, Sufang,Wang, Xiupin,Li, Peiwu,Zhang, Qi,Zhang, Wen,Fan, Sufang,Wang, Xiupin,Li, Peiwu.

[6]The Asian Corn Borer Ostrinia F.urnacalis Feeding Increases The D irect And Indirect Defence Of Mid-Whorl Stage Commercial Maize In The Field. Guo, JF,Qi, JF,He, KL,Wu, JQ,Bai, SX,Zhang, TT,Zhao, JR,Wang, ZY. 2019

[7]Genome-wide analysis and expression profile of superoxide dismutase (Sod) gene family in rapeseed (brassica napus l.) under different hormones and abiotic stress conditions. Wei Su,Ali Raza,Ang Gao,Ziqi Jia,Yi Zhang,Muhammad Azhar Hussain,Sundas Saher Mehmood,Yong Cheng,Yan Lv,Xiling Zou. 2021

[8]Morphological Characterization and Transcriptome Analysis of New Dwarf and Narrow-Leaf (dnl2) Mutant in Maize. Lulu Han,Chenggong Jiang,Wei Zhang,Hongwu Wang,Kun Li,Xiaogang Liu,Zhifang Liu,Yujin Wu,Changling Huang,Xiaojiao Hu. 2022

[9]Transcriptomic analysis reveals the key role of histone deacetylation via mediating different phytohormone signalings in fiber initiation of cotton. Zhenzhen Wei,Yonghui Li,Faiza Ali,Ye Wang,Jisheng Liu,Zuoren Yang,Zhi Wang,Yadi Xing,Fuguang Li. 2022

[10]RAD gene family analysis in cotton provides some key genes for flowering and stress tolerance in upland cotton G. hirsutum. Kabir, Nosheen,Zhang, Xin,Liu, Le,Qanmber, Ghulam,Zhang, Lian,Wang, Yu Xuan,Sun, Zhuojing,Zhao, Na,Wang, Gang. 2022

[11]Role of phytohormones in heavy metal tolerance in plants: A review. Ur Rahman S.,Li Y.,Hussain S.,Hussain B.,Khan W.-U.-D.,Riaz L.,Nadeem Ashraf M.,Athar Khaliq M.,Du Z.,Cheng H.. 2023

[12]Hydrogen sulfide: an emerging component against abiotic stress in plants. Raza, A.,Tabassum, J.,Mubarik, M. S.,Anwar, S.,Zahra, N.,Sharif, Y.,Hafeez, M. B.,Zhang, C.,Corpas, F. J.,Chen, H.. 2021

[13]A novel salivary effector, BtE3, is essential for whitefly performance on host plants. Peng, Zhengke,Su, Qi,Ren, Jun,Tian, Lixia,Zeng, Yang,Yang, Yuting,Wang, Shaoli,Xie, Wen,Wu, Qingjun,Li, Zhenyu,Zhang, Youjun. 2023

[14]Multidimensional Role of Silicon to Activate Resilient Plant Growth and to Mitigate Abiotic Stress. Rakeeb Ahmad Mir,Basharat Ahmad Bhat,Henan Yousuf,Sheikh Tajamul Islam,Ali Raza,Masood Ahmad Rizvi,Sidra Charagh,Mohammed Albaqami,Parvaze A. Sofi,Sajad Majeed Zargar. 2022

[15]Plant physiology, microbial community, and risks of multiple fungal diseases along a soil nitrogen gradient. Jingjing Bi,Alin Song,Shidong Li,Mingshun Chen,Yanan Wang,Sai Wang,Zhiyuan Si,Enzhao Wang,Jiayin Zhang,Bismark Asante-Badu,Marie Claire Njyenawe,Qianru Zhang,Piao Xue,Fenliang Fan. 2022

[16]Plant Salinity Stress Response and Nano-Enabled Plant Salt Tolerance. Zengqiang Li,Lan Zhu,Fameng Zhao,Jiaqi Li,Xin Zhang,Xiangjun Kong,Honghong Wu,Zhiyong Zhang. 2022

[17]Updated role of ABA in seed maturation, dormancy, and germination. Faiza Ali,Ghulam Qanmber,Fuguang Li,Zhi Wang. 2022

[18]Leaf senescence attributes: the novel and emerging role of sugars as signaling molecules and the overlap of sugars and hormones signaling nodes. Asim, Muhammad,Zhang, Yan,Sun, Yanguo,Guo, Mei,Khan, Rayyan,Wang, Xiao Lin,Hussain, Quaid,Shi, Yi. 2022

[19]Role of phytohormones in regulating cold stress tolerance: Physiological and molecular approaches for developing cold-smart crop plants. Ali Raza,Sidra Charagh,Shiva Najafi-Kakavand,Saghir Abbas,Yasira Shoaib,Sultana Anwar,Sara Sharifi,Guangyuan Lu,Kadambot H.M. Siddique. 2023

[20]Integrating transcriptome and phytohormones analysis provided insights into plant height development in sesame. Chen Sheng,Shengnan Song,Wangyi Zhou,Senouwa Segla Koffi Dossou,Rong Zhou,Yanxin Zhang,Donghua Li,Jun You,Linhai Wang. 2023

作者其他论文 更多>>