Root endophyte-enhanced peanut-rhizobia interaction is associated with regulation of root exudates

2021 ◽  
pp. 126765
Author(s):  
Hong-Wei Wang ◽  
Chen-Yu Ma ◽  
Fang-Ji Xu ◽  
Fan Lu ◽  
Wei Zhang ◽  
...  
Keyword(s):  
2009 ◽  
Vol 17 (1) ◽  
pp. 64-69
Author(s):  
Yong LI ◽  
Xiao-Fang HUANG ◽  
Wan-Long DING
Keyword(s):  

Author(s):  
Heng‐Yu Hu ◽  
Hong Li ◽  
Min‐Min Hao ◽  
Ya‐Nan Ren ◽  
Meng‐Kun Zhang ◽  
...  

1972 ◽  
Vol 52 (4) ◽  
pp. 643-649 ◽  
Author(s):  
R. A. HAMLEN ◽  
F. L. LUKEZIC ◽  
J. R. BLOOM

Influence of clipping height on neutral carbohydrate levels in root exudates of alfalfa grown gnotobiotically was investigated by gas-chromatographic and mass-spectral techniques. Exudates were obtained from plants that were lightly clipped (removal of flower buds), intermediately clipped (15 cm), and severely clipped (removal of all but four mature leaves). Glucose, inositol, sucrose, and four unidentified (U) components were detected. Fluctuations in the level of sugars were observed in exudates from two sampling periods. Glucose and U1 were most concentrated under light clipping. Levels of inositol and sucrose were maximum under intermediate clipping. Amounts of U3 were greatest from severely clipped plants, whereas levels of U5 remained constant at all cuttings. Concentration of U4 was lowest under severe clipping. U2, present in exudates from seedling plants, was not detected. Quantities of sugars released per gram of dry weight of root tissue were greater under severe clipping. U1 was the major component, with glucose, inositol, and sucrose minor components of the total sugars.


2021 ◽  
Vol 203 (9) ◽  
pp. 5599-5611
Author(s):  
Chisato Matsushima ◽  
Matthew Shenton ◽  
Ayaka Kitahara ◽  
Jun Wasaki ◽  
Akira Oikawa ◽  
...  

2021 ◽  
Author(s):  
Adrien Frémont ◽  
Eszter Sas ◽  
Mathieu Sarrazin ◽  
Emmanuel Gonzalez ◽  
Jacques Brisson ◽  
...  
Keyword(s):  

Mycorrhiza ◽  
2021 ◽  
Author(s):  
Grace A. Hoysted ◽  
Jill Kowal ◽  
Silvia Pressel ◽  
Jeffrey G. Duckett ◽  
Martin I. Bidartondo ◽  
...  

AbstractNon-vascular plants associating with arbuscular mycorrhizal (AMF) and Mucoromycotina ‘fine root endophyte’ (MFRE) fungi derive greater benefits from their fungal associates under higher atmospheric [CO2] (a[CO2]) than ambient; however, nothing is known about how changes in a[CO2] affect MFRE function in vascular plants. We measured movement of phosphorus (P), nitrogen (N) and carbon (C) between the lycophyte Lycopodiella inundata and Mucoromycotina fine root endophyte fungi using 33P-orthophosphate, 15 N-ammonium chloride and 14CO2 isotope tracers under ambient and elevated a[CO2] concentrations of 440 and 800 ppm, respectively. Transfers of 33P and 15 N from MFRE to plants were unaffected by changes in a[CO2]. There was a slight increase in C transfer from plants to MFRE under elevated a[CO2]. Our results demonstrate that the exchange of C-for-nutrients between a vascular plant and Mucoromycotina FRE is largely unaffected by changes in a[CO2]. Unravelling the role of MFRE in host plant nutrition and potential C-for-N trade changes between symbionts under different abiotic conditions is imperative to further our understanding of the past, present and future roles of plant-fungal symbioses in ecosystems.


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