Identification and mapping of QTLs associated with drought tolerance traits in rice by a cross between Super Basmati and IR55419-04

M Sabar, G Shabir, SM Shah, K Aslam… - Breeding …, 2019 - jstage.jst.go.jp
Water stress, in a climate change scenario is one of the major threats for sustainable rice
productivity. Combining drought resistance with yield and desirable economic traits is the …

Phenotyping root systems in a set of japonica rice accessions: can structural traits predict the response to drought?

PHR Guimarães, IP de Lima, AP de Castro, AC Lanna… - Rice, 2020 - Springer
Background The root system plays a major role in plant growth and development and root
system architecture is reported to be the main trait related to plant adaptation to drought …

[HTML][HTML] The resilience of rice under water stress will be driven by better roots: Evidence from root phenotyping, physiological, and yield experiments

S Shafi, I Shafi, A Zaffar, SM Zargar, AB Shikari… - Plant Stress, 2023 - Elsevier
Rice is the principal food grain crop of the world, grown on over 164 million hectares. Water
is an important production constraint in food crops. Till recently, crop breeding efforts have …

Drought response QTLs in a Super Basmati× Azucena population by high‐density GBS‐based SNP linkage mapping

R Waheed, JC Ignacio, JD Arbelaez… - Plant …, 2021 - Wiley Online Library
Basmati rice is favoured for its grain type and aroma, but its production is vulnerable due to
climate change and freshwater accessibility. Discovery and refinement of genomic regions …

Root attributes governing drought stress adaptation and the associated molecular markers in chromosome segment substitution lines in rice (Oryza sativa L.)

M Barik, GK Dash, E Pandit, SK Dash… - Available at SSRN …, 2023 - papers.ssrn.com
Wild relatives of the domesticated rice are sources of many novel resistance genes for
abiotic stresses particularly drought. Variety development using chromosome segment …

[PDF][PDF] 栽培稻深根性的遗传研究进展

陈亮, 楼巧君, 李铁梅, 梅捍卫, 冯芳君, 严明, 徐小艳… - 上海农业学报, 2022 - sagc.org.cn
根系是植物吸收水分和养分的主要器官, 培育发达的深根系统是水稻抗旱育种的重要目标.
该文系统介绍了水稻根系生长角度, 根系向重力性, 根系穿透力, 深层土壤根系分布特征等深根性 …

Identification of patterns related to linkage groups or disequilibrium by factor analysis

CF Oliveira, G Teixeira, AS Temoteo, M Nascimento… - Ciência Rural, 2021 - SciELO Brasil
Empirical patterns of linkage disequilibrium (LD) can be used to increase the statistical
power of genetic mapping. This study was carried out with the objective of verifying the …

Identification of patterns related to linkage groups or disequilibrium by factor analysis/Identificacao de padroes relacionados a grupos de ligacao ou de desequilibrio …

CF dec Oliveira, G Teixeira, A da Silva Temoteo… - Ciencia Rural, 2021 - go.gale.com
Padroes empiricos de desequilibrio de ligacao (LD) podem ser utilizados para aumentar o
poder estatistico do mapeamento genetico. Este trabalho foi realizado com o objetivo de …

Phenotyping root systems in a set of japonica rice accessions: Can structural traits predict the response to drought?

PH Ramos Guimaraes, I Pereira De Lima… - 2020 - agritrop.cirad.fr
Background: The root system plays a major role in plant growth and development and root
system architecture is reported to be the main trait related to plant adaptation to drought …