Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Soil, climate, and variety impact on quantity and quality of maize root mucilage exudation

Domain:

agriculture
Creator:
MeiNatCalKyl
Publisher:
Spr
Host:
Abstract Aims This study investigated the influence of climate and soil on the exudation rate and polysaccharide composition of aerial nodal root mucilage from drought-resistant and drought-susceptible maize varieties. Methods Two maize varieties were grown in two different soils (sandy-clay loam Acrisol and loam Luvisol) under simulated climatic conditions of their agroecological zones of origin in Kenya and Germany. The exudation rate of mucilage from the aerial nodal roots was quantified as dry weight per root tip per day and the mucilage was characterized for its polysaccharide composition. Results On average, the mucilage exudation rate was 35.8% higher under the Kenyan semi-arid tropical than under the German humid temperate climatic conditions. However, cultivation in the loam Luvisol soil from Germany led to 73.7% higher mucilage exudation rate than cultivation in the sandy-clay loam Acrisol soil from Kenya, plausibly due to its higher microbial biomass and nutrient availability. The drought-resistant Kenyan maize variety exuded 58.2% more mucilage than the drought-susceptible German variety. On average, mucilage polysaccharides were composed of 40.6% galactose, 26.2% fucose, 13.1% mannose, 11% arabinose, 3.5% glucose, 3.2% xylose, 1.3% glucuronic acid, and 1% an unknown uronic acid. Overall, significantly higher proportions of the uronic acids were found in the mucilage of the plants grown in the Kenyan sandy-clay loam soil and under the Kenyan semi-arid tropical climatic conditions. Conclusions Maize is able to enhance its mucilage exudation rate under warm climatic conditions and in soils of high microbial activity to mitigate water stress and support the rhizosphere microbiome, respectively. Graphical abstract

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0https://creativecommons.org/licenses/by/4.0

Similar

Assessing the Effect of Residue Quantity and Quality, and Water Conservation on Maize Productivity and Nitrogen Dynamics on Smallholder Farms in MalawiCrop–Livestock Interaction Effect on Soil Quality and Maize Yield in Northern GhanaImpact of climate change and variability on maize yield in Tropical AfricaImpact of three and seven years of no-tillage on the soil water storage, in the plant root zone, under a dry subhumid Tunisian climateIMPACT OF CLIMATE CHANGE ON SOIL QUALITY, FARMERS LIVELIHOOD ACTIVITIES AND ADAPTATION STRATEGIES IN THE FEDERAL CAPITAL TERRITORY (FCT), NIGERIAImpact of Climate Change on Maize and Pigeonpea Yields in Semi-Arid Kenya

Assessing the Effect of Residue Quantity and Quality, and Water Conservation on Maize Productivity and Nitrogen Dynamics on Smallholder Farms in Malawi

Many soils on smallholder farms in Malawi have poor soil organic matter content. This results in poo

Crop–Livestock Interaction Effect on Soil Quality and Maize Yield in Northern Ghana

Core Ideas Soil chemical and biological sub‐indices increased with sheep and goats corralling.

Impact of climate change and variability on maize yield in Tropical Africa

<p> <span><span>Tropical Africa has been experiencing a lo

Impact of three and seven years of no-tillage on the soil water storage, in the plant root zone, under a dry subhumid Tunisian climate

IMPACT OF CLIMATE CHANGE ON SOIL QUALITY, FARMERS LIVELIHOOD ACTIVITIES AND ADAPTATION STRATEGIES IN THE FEDERAL CAPITAL TERRITORY (FCT), NIGERIA

This study investigated the impact of climate change on soil quality, farmers’ livelihood activities

Impact of Climate Change on Maize and Pigeonpea Yields in Semi-Arid Kenya

The objective of this study was to assess the impact of climate change on intercrops of maize and im