[HTML][HTML] Effects of silicon and silicon-based nanoparticles on rhizosphere microbiome, plant stress and growth

VD Rajput, T Minkina, M Feizi, A Kumari, M Khan… - Biology, 2021‏ - mdpi.com
Simple Summary Abiotic and biotic stresses are a major challenge for agricultural
production. To deal with stressed conditions, many techniques, including the use of …

Nanoparticles and their potential role in plant adaptation to abiotic stress in horticultural crops: A review

F Hayat, F Khanum, J Li, S Iqbal, U Khan, HU Javed… - Scientia …, 2023‏ - Elsevier
Abiotic stresses such as salinity, drought, heavy metals, and extreme temperatures are a
major constraint that negatively affect growth and productivity of horticultural plants. In order …

[HTML][HTML] Influence of silicon on biocontrol strategies to manage biotic stress for crop protection, performance, and improvement

KK Verma, XP Song, DD Tian, DJ Guo, ZL Chen… - Plants, 2021‏ - mdpi.com
Silicon (Si) has never been acknowledged as a vital nutrient though it confers a crucial role
in a variety of plants. Si may usually be expressed more clearly in Si-accumulating plants …

Silicon nanoparticles (SiNPs): Challenges and perspectives for sustainable agriculture

M Yuvaraj, RS Priya, N Jagathjothi, M Saranya… - … and Molecular Plant …, 2023‏ - Elsevier
In the recent scenario of global warming and climate change, numerous biotic and abiotic
stresses inhibit crop growth and development and finally lead to reduced crop productivity …

Silicon and soil microorganisms improve rhizospheric soil health with bacterial community, plant growth, performance and yield

KK Verma, XP Song, DM Li, M Singh… - Plant Signaling & …, 2022‏ - Taylor & Francis
The interaction of silicon and soil microorganisms stimulates crop enhancement to ensure
sustainable agriculture. Silicon may potentially increase nutrient availability in rhizosphere …

Climate change adaptation: Challenges for agricultural sustainability

KK Verma, XP Song, A Kumari… - Plant, Cell & …, 2024‏ - Wiley Online Library
Climate change poses a substantial threat to agricultural sustainability globally. Agriculture
is a vital component of the gross domestic production of develo** countries. The …

Investigation of defensive role of silicon during drought stress induced by irrigation capacity in sugarcane: physiological and biochemical characteristics

KK Verma, XP Song, DD Tian, M Singh, CL Verma… - ACS …, 2021‏ - ACS Publications
Water stress may become one of the most inevitable factors in years to come regulating crop
growth, development, and productivity globally. The application of eco-friendly stress …

Action of silicon on the activity of antioxidant enzymes and on physiological mechanisms mitigates water deficit in sugarcane and energy cane plants

GCM Teixeira, RM de Prado, AMS Rocha… - Scientific Reports, 2022‏ - nature.com
Production of sugarcane and more recently of energy cane strengthen renewable bioenergy
production capacity. However, droughts resulting from climate change have limited the …

Impact of Agroclimatic Variables on Proteogenomics in Sugar Cane (Saccharum spp.) Plant Productivity

KK Verma, XP Song, G Yadav, HD Degu, A Parvaiz… - Acs Omega, 2022‏ - ACS Publications
Sugar cane (Saccharum spp. hybrids) is a major crop for sugar and renewable bioenergy
worldwide, grown in arid and semiarid regions. China, the world's fourth-largest sugar …

[HTML][HTML] Rice-husks synthesized-silica nanoparticles modulate silicon content, ionic homeostasis, and antioxidants defense under limited irrigation regime in …

NA Younes, M El-Sherbiny, AA Alkharpotly, OA Sayed… - Plant Stress, 2024‏ - Elsevier
The utilization of nanoparticles in agricultural land is widely increasing worldwide. The
present study takes the advent from converting the rice husk waste to silica nanoparticles …