Endophyte roles in nutrient acquisition, root system architecture development and oxidative stress tolerance

被引:110
|
作者
Verma, S. K. [1 ]
Sahu, P. K. [2 ]
Kumar, K. [1 ]
Pal, G. [1 ]
Gond, S. K. [3 ]
Kharwar, R. N. [1 ]
White, J. F. [4 ]
机构
[1] Banaras Hindu Univ, Ctr Adv Study Bot, Varanasi 221005, Uttar Pradesh, India
[2] Natl Bur Agr Important Microorganism, Mau, Uttar Pradesh, India
[3] Banaras Hindu Univ, Bot Sect, MMV, Varanasi, Uttar Pradesh, India
[4] Rutgers State Univ, Dept Plant Biol, New Brunswick, NJ 08901 USA
关键词
endophyte; growth regulators; nutrient acquisition; rhizophagy cycle; root system architecture; PIRIFORMOSPORA-INDICA; BACTERIAL ENDOPHYTES; AUXIN TRANSPORT; PLANT-GROWTH; NEOTYPHODIUM-ENDOPHYTES; ARABIDOPSIS-THALIANA; SEEDLING DEVELOPMENT; TRANSCRIPTION FACTOR; FUNGAL ENDOPHYTES; DROUGHT TOLERANCE;
D O I
10.1111/jam.15111
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Plants associate with communities of microbes (bacteria and fungi) that play critical roles in plant development, nutrient acquisition and oxidative stress tolerance. The major share of plant microbiota is endophytes which inhabit plant tissues and help them in various capacities. In this article, we have reviewed what is presently known with regard to how endophytic microbes interact with plants to modulate root development, branching, root hair formation and their implications in overall plant development. Endophytic microbes link the interactions of plants, rhizospheric microbes and soil to promote nutrient solubilization and further vectoring these nutrients to the plant roots making the soil-plant-microbe continuum. Further, plant roots internalize microbes and oxidatively extract nutrients from microbes in the rhizophagy cycle. The oxidative interactions between endophytes and plants result in the acquisition of nutrients by plants and are also instrumental in oxidative stress tolerance of plants. It is evident that plants actively cultivate microbes internally, on surfaces and in soils to acquire nutrients, modulate development and improve health. Understanding this continuum could be of greater significance in connecting endophytes with the hidden half of the plant that can also be harnessed in applied terms to enhance nutrient acquisition through the development of favourable root system architecture for sustainable production under stress conditions.
引用
收藏
页码:2161 / 2177
页数:17
相关论文
共 50 条
  • [21] Efficient root system for abiotic stress tolerance in crops
    Siddique, K. H. M.
    Chen, Y. L.
    Rengel, Z.
    AGRICULTURE AND CLIMATE CHANGE - ADAPTING CROPS TO INCREASED UNCERTAINTY (AGRI 2015), 2015, 29 : 295 - 295
  • [22] Root Development and Stress Tolerance in rice: The Key to Improving Stress Tolerance without Yield Penalties
    Seo, Deok Hyun
    Seomun, Subhin
    Choi, Yang Do
    Jang, Geupil
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2020, 21 (05)
  • [23] Phosphate Source Interacts with Endophyte Strain to Influence Biomass and Root System Architecture in Tall Fescue
    Ding, Na
    Kupper, Joseph V.
    McNear, David H., Jr.
    AGRONOMY JOURNAL, 2015, 107 (02) : 662 - 670
  • [24] Root fungal endophytes: identity, phylogeny and roles in plant tolerance to metal stress
    Barberis, Louise
    Michalet, Serge
    Piola, Florence
    Binet, Philippe
    FUNGAL BIOLOGY, 2021, 125 (04) : 326 - 345
  • [25] Linking oxidative and salinity stress tolerance in barley: can root antioxidant enzyme activity be used as a measure of stress tolerance?
    Jelena Dragišić Maksimović
    Jingyi Zhang
    Fanrong Zeng
    Branka D. Živanović
    Lana Shabala
    Meixue Zhou
    Sergey Shabala
    Plant and Soil, 2013, 365 : 141 - 155
  • [26] Linking oxidative and salinity stress tolerance in barley: can root antioxidant enzyme activity be used as a measure of stress tolerance?
    Maksimovic, Jelena Dragisic
    Zhang, Jingyi
    Zeng, Fanrong
    Zivanovic, Branka D.
    Shabala, Lana
    Zhou, Meixue
    Shabala, Sergey
    PLANT AND SOIL, 2013, 365 (1-2) : 141 - 155
  • [27] Roles of Auxin in the Growth, Development, and Stress Tolerance of Horticultural Plants
    Zhang, Qiongdan
    Gong, Min
    Xu, Xin
    Li, Honghai
    Deng, Wei
    CELLS, 2022, 11 (17)
  • [28] Critical roles of VipB protein on virulence and oxidative stress tolerance in Aeromonas veronii
    Song, Haichao
    Yang, Bintong
    Kang, Yuanhuan
    Cong, Wei
    JOURNAL OF FISH DISEASES, 2023, 46 (05) : 487 - 497
  • [29] Maize Root Architecture and Water Stress Tolerance: An Approximation from Crop Models
    Carretero, Ramiro
    Esteban Bert, Federico
    Podesta, Guillermo
    AGRONOMY JOURNAL, 2014, 106 (06) : 2287 - 2295
  • [30] Glomus mosseae Inoculation Improves the Root System Architecture, Photosynthetic Efficiency and Flavonoids Accumulation of Liquorice under Nutrient Stress
    Chen, Meilan
    Yang, Guang
    Sheng, Ye
    Li, Pengying
    Qiu, Hongyan
    Zhou, Xiuteng
    Huang, Luqi
    Chao, Zhi
    FRONTIERS IN PLANT SCIENCE, 2017, 8