Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Genotypic variation in adaptation to soil acidity in local upland rice varieties

View through CrossRef
Local upland rice germplasm is an invaluable resource for farmers who grow rice on acidic soils without flooding that benefits wetland rice. In this study, we evaluated the adaptation to soil acidity in common local upland rice varieties from an area with acidic soil in Thailand. Tolerance to hydrogen and aluminium (Al) toxicity was determined by measuring root growth, plant dry weight and phosphorus (P) uptake in aerated solution culture without the supplementation of Al (0 mg/l) at pH 7 and 4 and with the supplementation of 10, 20 and 30 mg Al/l at pH 4. The root growth of upland rice plants grown from farmers' seed was depressed less by Al than that of common wetland rice varieties. Pure-line genotypes of upland rice varieties were differentiated into several classes of Al tolerance, with frequency distribution of the classes that sometimes differed between the accessions of the same varieties. The effect of Al tolerance on root length was closely correlated with depression by Al in root dry weight and whole-plant P content. A source for adaptation to soil acidity for exploitation in the genetic improvement of aerobic and rainfed rice is clearly found among local upland rice varieties grown on acidic soils. However, the variation in tolerance to soil acidity within and among the seed lots of the same varieties maintained by individual farmers as well as among the varieties needs to be taken into consideration.
Title: Genotypic variation in adaptation to soil acidity in local upland rice varieties
Description:
Local upland rice germplasm is an invaluable resource for farmers who grow rice on acidic soils without flooding that benefits wetland rice.
In this study, we evaluated the adaptation to soil acidity in common local upland rice varieties from an area with acidic soil in Thailand.
Tolerance to hydrogen and aluminium (Al) toxicity was determined by measuring root growth, plant dry weight and phosphorus (P) uptake in aerated solution culture without the supplementation of Al (0 mg/l) at pH 7 and 4 and with the supplementation of 10, 20 and 30 mg Al/l at pH 4.
The root growth of upland rice plants grown from farmers' seed was depressed less by Al than that of common wetland rice varieties.
Pure-line genotypes of upland rice varieties were differentiated into several classes of Al tolerance, with frequency distribution of the classes that sometimes differed between the accessions of the same varieties.
The effect of Al tolerance on root length was closely correlated with depression by Al in root dry weight and whole-plant P content.
A source for adaptation to soil acidity for exploitation in the genetic improvement of aerobic and rainfed rice is clearly found among local upland rice varieties grown on acidic soils.
However, the variation in tolerance to soil acidity within and among the seed lots of the same varieties maintained by individual farmers as well as among the varieties needs to be taken into consideration.

Related Results

Application of Macro and Micro Fertilizers on Upland Rice Crops Inoculation of Biofertilizers in Bengkulu Coastal Land
Application of Macro and Micro Fertilizers on Upland Rice Crops Inoculation of Biofertilizers in Bengkulu Coastal Land
Coastal land located in the lowlands near the coast has a marginal Entisol soil type. Entisols have the following characteristics: loose soil aggregate, sensitive to erosion, and l...
Ecological soil physics as section of ecological soil science
Ecological soil physics as section of ecological soil science
Nowadays, there is a general penetration of ecology in other related sciences. Soil science is not an exception. To the evidence of this, the works of soil scientists may serve, th...
Yield Evaluation of Upland Rice Varieties (Oryza sativa L.) in Several Levels of Soil Water Content
Yield Evaluation of Upland Rice Varieties (Oryza sativa L.) in Several Levels of Soil Water Content
Production and productivity of upland rice is still very low due to limited water in the upland rice ecosystem. The objective of this study was to evaluate the yields of upland ric...
Upland rice: A new high potential non-traditional cash crop for Africa
Upland rice: A new high potential non-traditional cash crop for Africa
Rice is the main staple food for almost half of the world’s population and leading cereal in terms of production area and consumption. Rapid urbanization and changes in consumer pr...
Investigation of surface soil Phytoliths in Upland Rice Fields of Southern China
Investigation of surface soil Phytoliths in Upland Rice Fields of Southern China
Abstract Background and Aims Upland rice is a distinct ecotype of rice that does not require irrigation, grows only on natural ...
Diversity of Purple Rice (Oryza sativa L.) Landraces in Northern Thailand
Diversity of Purple Rice (Oryza sativa L.) Landraces in Northern Thailand
Purple rice is a functional food with health benefits and industrial potentials. In northern Thailand, purple rice landraces are grown either as wetland or upland rice, in the lowl...
Pengaruh Naungan Terhadap Pertumbuhan dan Produktivitas Padi Ladang Kabupaten Deli Serdang, Sumatera Utara
Pengaruh Naungan Terhadap Pertumbuhan dan Produktivitas Padi Ladang Kabupaten Deli Serdang, Sumatera Utara
One of the factors hindering the development of upland rice cultivation among annual crops is the limited number of shade-tolerant upland rice varieties. It is very important to as...

Back to Top