ACC deaminase producing phytomicrobiomes for amelioration of abiotic stresses in plants for agricultural sustainability

D Kour, SS Khan, H Kour, T Kaur, R Devi… - Journal of Plant Growth …, 2024 - Springer
Abiotic and biotic stresses adversely impact the growth and productivity of the crops globally.
Stressful environmental conditions affect the plants morphological and physiological …

Bacterial ACC-deaminase: An eco-friendly strategy to cope abiotic stresses for sustainable agriculture

S Kumari, A Varma, N Tuteja, DK Choudhary - Plant-microbe interaction …, 2016 - Springer
Ethylene is the simplest unsaturated two-carbon gaseous plant hormone which regulates
many physiological and developmental processes during plant growth at molecular level …

Perspectives of rhizobacteria with ACC deaminase activity in plant growth under abiotic stress

R Raghuwanshi, JK Prasad - Root biology, 2018 - Springer
The abiotic and biotic stresses in the environment trigger the synthesis of ethylene, a
gaseous plant hormone that leads to many physiological changes in plants that inhibit plant …

ACC-deaminase producing rhizobacteria: prospects and application as stress busters for stressed agriculture

R Soni, SK Yadav, AS Rajput - … for Green Revolution: Volume 2: Microbes …, 2018 - Springer
The plant hormone ethylene is responsible for a multiple biological processes in plants and
also regulates plants' response to various biotic-abiotic stress conditions. Ethylene with low …

Bio-prospecting of ACC deaminase producing Rhizobacteria towards sustainable agriculture: A special emphasis on abiotic stress in plants

M Murali, HG Gowtham, SB Singh, N Shilpa, M Aiyaz… - Applied Soil …, 2021 - Elsevier
In agriculture, eco-friendly management practices worldwide are required to enhance food
security under the changing agro-climatic environmental conditions with avoiding the use of …

[PDF][PDF] Unraveling the potential of ACC Deaminase-producing microbes in various agricultural stresses: current status, limitations, and recommendations

SH Larekeng, YK NGADIMAN, Y Khairina… - Pak. J. Bot, 2024 - pakbs.org
More than 50% of the main crops in the world are lost to agricultural stressors, either biotic or
abiotic. It has been demonstrated that using chemical approaches to boost plant yield …

Perspective of plant growth promoting rhizobacteria (PGPR) containing ACC deaminase in stress agriculture

M Saleem, M Arshad, S Hussain… - Journal of industrial …, 2007 - academic.oup.com
Ethylene is a gaseous plant growth hormone produced endogenously by almost all plants. It
is also produced in soil through a variety of biotic and abiotic mechanisms, and plays a key …

Role of ACC deaminase as a stress ameliorating enzyme of plant growth-promoting rhizobacteria useful in stress agriculture: a review

PK Ghosh, TK De, TK Maiti - Role of rhizospheric microbes in soil: volume …, 2018 - Springer
The crop production is inhibited by a large number of both biotic and abiotic stresses. These
stresses include presence of toxic heavy metals, high salt, flood, drought, temperature …

[HTML][HTML] Role of ACC deaminase producing bacteria for abiotic stress management and sustainable agriculture production

S Chandwani, N Amaresan - Environmental Science and Pollution …, 2022 - Springer
Plants are immobile and are exposed to various biotic and abiotic stresses, including heat,
cold, drought, flooding, nutrient deficiency, heavy metal exposure, phytopathogens, and pest …

[PDF][PDF] Isolation and characterization of novel bacteria containing ACC Deaminase from the rhizosphere resource on Dry-Farming Lands

P Zheng, L Zhang, L Tian, L Zhang, F Chen, BZ Li… - Pak. J. Bot, 2014 - pakbs.org
Soil-microbe-plant interactions are known to be intricate and they can greatly influence the
crop vigor and yield. Plant growth promoting rhizobacteria (PGPR) containing ACC …