Environmental analysis of soilless tomato production in a high-tech greenhouse DOI Creative Commons
Antonia D’Amico, Annalisa De Boni, Giovanni Ottomano Palmisano

et al.

Cleaner Environmental Systems, Journal Year: 2023, Volume and Issue: 11, P. 100137 - 100137

Published: Sept. 9, 2023

Soilless farming systems are currently considered a viable production technique reducing environmental impacts due to use of chemical factors, soil and water This study analysed the first high-tech hydroponic greenhouse in Southern Italy, using Life Cycle Assessment approach. The performances equipped with automated for monitoring growth environment (high-tech) based without automation climate lighting (low-tech) greenhouses were compared. analysis was on primary data from field surveys. For low-tech greenhouse, secondary literature used. system boundary 'cradle-to-farm-gate', functional unit 1 ha cultivated area. Soil-based cultivation had highest overall primarily attributable consumption fossil fuel fertilisers. results showed that renewable energy soilless closed-loop electronically controlled managed, significantly reduced burden. Results suggest solution expansion improving their by systems. regarding an advanced almost unique reality is suitable be reapplied any context vocated vegetable foresight appropriately complement it economic social assessments.

Language: Английский

Partner or perish: tree microbiomes and climate change DOI
Sarah Addison, Megan A. Rúa, Simeon J. Smaill

et al.

Trends in Plant Science, Journal Year: 2024, Volume and Issue: 29(9), P. 1029 - 1040

Published: April 18, 2024

Language: Английский

Citations

8

Revisiting plant stress memory: mechanisms and contribution to stress adaptation DOI
AB Siddique, Sumaya Parveen, Md. Zahidur Rahman

et al.

Physiology and Molecular Biology of Plants, Journal Year: 2024, Volume and Issue: 30(2), P. 349 - 367

Published: Feb. 1, 2024

Language: Английский

Citations

7

EXPLORING THE RESPONSE MECHANISMS OF RICE TO SALINITY STRESS DOI Creative Commons
Afshan Syed Abbas, A. M. Rashad,

AU REHMAN

et al.

Bulletin of Biological and Allied Sciences Research, Journal Year: 2024, Volume and Issue: 2024(1), P. 58 - 58

Published: Jan. 4, 2024

The world's agricultural productivity has been on the decline due to salinity, which is a significant abiotic element. To find solution this problem, researchers have concentrating their efforts enzymes and biochemical pathways involved in salt tolerance. ultimate objective develop crops that are resistant salt. Developments molecular biology facilitated production of salt-tolerant cultivars by conventional breeding techniques. A amount can inhibit growth rice (Oryza sativa L.), major food crop many nations. This especially true during early stages plant development. Rice's physiological, molecular, reactions excessive salinity subject exploration investigation. possible applications implications tolerance also discussed article, as well approaches be used locate plants tolerant

Language: Английский

Citations

6

Seaweed-Derived Phenolic Compounds in Growth Promotion and Stress Alleviation in Plants DOI Creative Commons
Omolola Aina, Olalekan Olanrewaju Bakare, Augustine Innalegwu Daniel

et al.

Life, Journal Year: 2022, Volume and Issue: 12(10), P. 1548 - 1548

Published: Oct. 6, 2022

Abiotic and biotic stress factors negatively influence the growth, yield, nutritional value of economically important food feed crops. These climate-change-induced factors, together with ever-growing human population, compromise sustainable security for all consumers across world. Agrochemicals are widely used to increase crop yield by improving plant growth enhancing their tolerance factors; however, there has been a shift towards natural compounds in recent years due detrimental effect associated these agrochemicals on crops ecosystem. In view these, use phenolic biostimulants as opposed artificial fertilizers gained significant momentum production. Seaweeds marine organisms excellent sources that useful downstream agricultural applications such promoting resilience against various conditions. this review, we highlight different present seaweed, compare extraction methods, describe agriculture.

Language: Английский

Citations

24

Environmental analysis of soilless tomato production in a high-tech greenhouse DOI Creative Commons
Antonia D’Amico, Annalisa De Boni, Giovanni Ottomano Palmisano

et al.

Cleaner Environmental Systems, Journal Year: 2023, Volume and Issue: 11, P. 100137 - 100137

Published: Sept. 9, 2023

Soilless farming systems are currently considered a viable production technique reducing environmental impacts due to use of chemical factors, soil and water This study analysed the first high-tech hydroponic greenhouse in Southern Italy, using Life Cycle Assessment approach. The performances equipped with automated for monitoring growth environment (high-tech) based without automation climate lighting (low-tech) greenhouses were compared. analysis was on primary data from field surveys. For low-tech greenhouse, secondary literature used. system boundary 'cradle-to-farm-gate', functional unit 1 ha cultivated area. Soil-based cultivation had highest overall primarily attributable consumption fossil fuel fertilisers. results showed that renewable energy soilless closed-loop electronically controlled managed, significantly reduced burden. Results suggest solution expansion improving their by systems. regarding an advanced almost unique reality is suitable be reapplied any context vocated vegetable foresight appropriately complement it economic social assessments.

Language: Английский

Citations

16