Coniferous forest nitrogen (N) budgets indicate unknown sources of N. A consistent association between limber pine (Pinus flexilis) and potential N2 -fixing acetic acid bacteria (AAB) indicates that native foliar endophytes may supply subalpine forests with N. To assess whether the P. flexilis-AAB association is consistent across years, we re-sampled P. flexilis twigs at Niwot Ridge, CO and characterized needle endophyte communities via 16S rRNA Illumina sequencing. To investigate whether endophytes have access to foliar N2 , we incubated twigs with (13) N2 -enriched air and imaged radioisotope distribution in needles, the first experiment of its kind using (13) N. We used the acetylene reduction assay to test for nitrogenase activity within P. flexilis twigs four times from June to September. We found evidence for N2 fixation in P. flexilis foliage. N2 diffused readily into needles and nitrogenase activity was positive across sampling dates. We estimate that this association could provide 6.8-13.6 μg N m(-2)  d(-1) to P. flexilis stands. AAB dominated the P. flexilis needle endophyte community. We propose that foliar endophytes represent a low-cost, evolutionarily stable N2 -fixing strategy for long-lived conifers. This novel source of biological N2 fixation has fundamental implications for understanding forest N budgets.

Download full-text PDF

Source
http://dx.doi.org/10.1111/nph.13850DOI Listing

Publication Analysis

Top Keywords

foliar endophytes
8
p flexilis twigs
8
needle endophyte
8
nitrogenase activity
8
p flexilis
5
evidence foliar
4
foliar endophytic
4
endophytic nitrogen
4
nitrogen fixation
4
fixation distributed
4

Similar Publications

Role of the Foliar Endophyte in the Resistance of Invasive to Disease and Abiotic Stress.

Microorganisms

December 2024

State Key Laboratory for Conservation and Utilization of Bio-Resources in Yunnan, Yunnan University, Kunming 650091, China.

Plant-associated fungi often drive plant invasion success by increasing host growth, disease resistance, and tolerance to environmental stress. A high abundance of asymptomatically accumulated in the leaves of . In this study, we aimed to clarify whether three genetically distinct endophytic isolates (AX39, AX115, and AX198) activate invasive plant defenses against disease and environmental stress.

View Article and Find Full Text PDF

The widespread use of pesticides to manage has led to significant challenges. This insect has developed resistance to 47 active insecticide ingredients. Therefore, endophytic entomopathogenic bacteria have been explored as an alternative pest management strategy, offering the potential to reduce reliance on chemical pesticides.

View Article and Find Full Text PDF
Article Synopsis
  • The study examines how the developmental stage of ecosystems influences the colonization of bacterial and fungal endophytes in plants.
  • The researchers found that ecosystem development had no significant impact on colonization levels, but that different factors governed the colonization of bacteria and fungi.
  • The study emphasizes the importance of quantifying endophytic colonization for ecological research and highlights the usefulness of a low-cost qPCR method to gather valuable data.
View Article and Find Full Text PDF

Plants host diverse assemblages of fungi on their foliar tissues, both in internal compartments and on exterior surfaces. When plant distributions shift, they can move with their fungal associates (i.e.

View Article and Find Full Text PDF

Fungus-derived opine enhances plant photosynthesis.

J Adv Res

November 2024

College of Agronomy and Biotechnology, Southwest University, Chongqing 400715, China. Electronic address:

Introduction: Plant-fungal interactions stimulate endophytic fungi to produce a plethora of metabolites that enhance plant growth and improve stress resistance. Opines, naturally occurring compounds formed through the condensation of amino acids with α-keto acids or sugars, have diverse biological functions and are mainly present in bacteria. Interestingly, investigations have revealed the presence of opine synthases (OSases) in fungal species as well, and their functions are yet to be studied.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!