Plant microbiome and its functional mechanism in response to environmental stress

MI Ansari - International Journal of Green Pharmacy (IJGP), 2018 - brncop.org
Stresses are the prime factor for limiting agricultural productivity. Protracted stress conditions
are accountable for the generation of reactive oxygen species (ROS) in various cell …

Assessment of two endemic rock phosphate solubilizing Streptomyces spp. on sugar beet (Beta vulgaris L.) growth under field conditions

Y Aallam, D Dhiba, T El Rasafi, Y Abbas, A Haddioui… - Scientia …, 2023 - Elsevier
Biocontrol agents and plant growth-promoting rhizobacteria represent promising tools to
improve plant growth and health as environmentally friendly biopesticides and fertilizers …

Evolutionary engineering of Fusarium fujikuroi for enhanced production of gibberellic acid

YK Cen, M Li, Q Wang, JM Zhang, JC Yuan… - Process …, 2023 - Elsevier
Fusarium fujikuroi is the microorganism that used for industrial production of gibberellic
acids (GAs), a commercially very important plant hormone. A stable, high-yielding F. fujikuroi …

Nitrogen fixation mutants of the actinobacterium Frankia casuarinae CcI3

K Kucho, D Tamari, S Matsuyama… - Microbes and …, 2017 - jstage.jst.go.jp
Frankia is a representative genus of nitrogen-fixing (N 2-fixing) actinobacteria; however, the
molecular mechanisms underlying various phenomena such as the differentiation of a N 2 …

Stable Transformation of the Actinobacteria Frankia spp

C Pesce, R Oshone, SG Hurst IV… - Applied and …, 2019 - Am Soc Microbiol
ABSTRACT A stable and efficient plasmid transfer system was developed for nitrogen-fixing
symbiotic actinobacteria of the genus Frankia, a key first step in developing a genetic …

[图书][B] Studies on plant-microbe interaction to improve stress tolerance in plants for sustainable agriculture

A Shashidar - 2015 - pub.epsilon.slu.se
Biotic and abiotic stress factors have a major impact on plants and cause extensive losses to
crop production. Bacteria that provide growth promotion and prime stress tolerance of plants …

NAD+ synthetase is required for free-living and symbiotic nitrogen fixation in the Actinobacterium Frankia casuarinae

K Kucho, K Asukai, T Van Nguyen - Microbes and environments, 2023 - jstage.jst.go.jp
Frankia spp. are multicellular actinobacteria that fix atmospheric dinitrogen (N 2) not only in
the free-living state, but also in root-nodule symbioses with more than 200 plant species …

Structure of surface polysaccharides affects symbiotic nitrogen fixation in Frankia alni ACN14a

KI Kucho, M Hashimoto, P Normand… - Journal of Forest …, 2023 - Taylor & Francis
Frankia spp. are nitrogen-fixing actinobacteria that establish root-nodule symbiosis with
actinorhizal plants comprising more than 200 species in eight dicotyledonous families. From …

Molecular methods for research on actinorhiza

H Gherbi, V Hocher, M Ngom, N Diagne… - Methods in Rhizosphere …, 2019 - Springer
Actinorhizal root nodules result from the interaction between a nitrogen-fixing actinomycete
from the genus Frankia and roots of dicotyledonous trees and shrubs belonging to 25 …

Phytomicrobiome studies for combating the abiotic stress

MS Sankhla, R Kumar, SS Sonone - Biointerface Research in …, 2021 - papers.ssrn.com
Agricultural productivity is limited by the various factors of which stresses are the principal
ones. The reactive oxygen species (ROS) production in different cell sections is done by …