Stocktake Sale on now: wide range of books at up to 70% off!
Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Responses of rice to Fe2+ in aerated and stagnant conditions: growth, root porosity and radial oxygen loss barrier

Jenjira Mongon A C D , Dennis Konnerup B , Timothy D. Colmer B and Benjavan Rerkasem A
+ Author Affiliations
- Author Affiliations

A Division of Agronomy, Department of Plant Science and Natural Resources, Faculty of Agriculture, Chiang Mai University, Chiang Mai 50200, Thailand.

B School of Plant Biology and University of Western Australia Institute of Agriculture, Faculty of Science, The University of Western Australia, 35 Stirling Highway, Crawley, WA 6009, Australia.

C College of Bhodivijalaya, Srinakharinwirot University, Bangkok 10110, Thailand.

D Corresponding author. Email: jenjira_mongon@hotmail.com

Functional Plant Biology 41(9) 922-929 https://doi.org/10.1071/FP13359
Submitted: 18 December 2013  Accepted: 8 March 2014   Published: 6 May 2014



32 articles found in Crossref database.

Microarray analysis of laser-microdissected tissues indicates the biosynthesis of suberin in the outer part of roots during formation of a barrier to radial oxygen loss in rice (Oryza sativa)
Shiono Katsuhiro, Yamauchi Takaki, Yamazaki So, Mohanty Bijayalaxmi, Malik Al Imran, Nagamura Yoshiaki, Nishizawa Naoko K., Tsutsumi Nobuhiro, Colmer Timothy D., Nakazono Mikio
Journal of Experimental Botany. 2014 65(17). p.4795
Abscisic acid is required for exodermal suberization to form a barrier to radial oxygen loss in the adventitious roots of rice (Oryza sativa)
Shiono Katsuhiro, Yoshikawa Marina, Kreszies Tino, Yamada Sumiyo, Hojo Yuko, Matsuura Takakazu, Mori Izumi C., Schreiber Lukas, Yoshioka Toshihito
New Phytologist. 2022 233(2). p.655
(2023)
Ullah Hayat, Ahmed Sheikh Faruk, Santiago-Arenas Raquel, Himanshu Sushil K., Mansour Elsayed, Cha-um Suriyan, Datta Avishek
Mitigation of Greenhouse Gas Emissions from Rice via Manipulation of Key Root Traits
Jiménez Juan de la Cruz, Pedersen Ole
Rice. 2023 16(1).
The barrier to radial oxygen loss protects roots against hydrogen sulphide intrusion and its toxic effect
Peralta Ogorek Lucas León, Takahashi Hirokazu, Nakazono Mikio, Pedersen Ole
New Phytologist. 2023 238(5). p.1825
Exploring Phosphorus Dynamics in Submerged Soils and Its Implications on the Inconsistent Rice Yield Response to Added Inorganic Phosphorus Fertilisers in Paddy Soils in Sri Lanka
Palihakkara Janani, Burkitt Lucy, Jeyakumar Paramsothy, Attanayake Chammi P.
Journal of Soil Science and Plant Nutrition. 2024 24(1). p.1
The Pyramiding of Three Key Root Traits Aid Breeding of Flood-Tolerant Rice
Lin Chen, Zhu Tongtong, Ogorek Lucas León Peralta, Wang Youping, Sauter Margret, Pedersen Ole
Plants. 2022 11(15). p.2033
C-CdTe Quantum Dots as Dual-Wavelength Fluorescence and Colorimetric Probes to Detect Hydrogen Peroxide, Hydroxyl Radicals, and Iron(II) in Serum
Zhou Jialing, Zhang Yumeng, Du Yaqian, Zhao Ruoxi, Liu Shikai, Li Wenting, Wang Qingqing, Yang Piaoping
ACS Applied Nano Materials. 2022 5(10). p.15875
Outer apoplastic barriers in roots: prospects for abiotic stress tolerance
Peralta Ogorek Lucas León, Jiménez Juan de la Cruz, Visser Eric J. W., Takahashi Hirokazu, Nakazono Mikio, Shabala Sergey, Pedersen Ole, Munns Rana
Functional Plant Biology. 2023 51(1).
Leaf gas films contribute to rice (Oryza sativa) submergence tolerance during saline floods
Herzog Max, Konnerup Dennis, Pedersen Ole, Winkel Anders, Colmer Timothy David
Plant, Cell & Environment. 2018 41(5). p.885
Below‐ground plant–soil interactions affecting adaptations of rice to iron toxicity
Kirk Guy J. D., Manwaring Hanna R., Ueda Yoshiaki, Semwal Vimal K., Wissuwa Matthias
Plant, Cell & Environment. 2022 45(3). p.705
Responses of Plants to Soil Flooding (2024)
Shiono Katsuhiro, Nakazono Mikio
Understanding the regulation of iron nutrition: can it contribute to improving iron toxicity tolerance in rice?
Onaga Geoffrey, Dramé Khady Nani, Ismail Abdelbagi M.
Functional Plant Biology. 2016 43(8). p.709
Phosphorus and Iron Deficiencies Influences Rice Shoot Growth in an Oxygen Dependent Manner: Insight from Upland and Lowland Rice
Mongon Jenjira, Chaiwong Nanthana, Bouain Nadia, Prom-u-thai Chanakan, Secco David, Rouached Hatem
International Journal of Molecular Sciences. 2017 18(3). p.607
The quantitative importance of key root traits for radial water loss under low water potential
Song Zhiwei, Zonta Francesco, Ogorek Lucas León Peralta, Bastegaard Viggo Klint, Herzog Max, Pellegrini Elisa, Pedersen Ole
Plant and Soil. 2023 482(1-2). p.567
Effects of rhizosphere oxygen concentration on root physiological characteristics and anatomical structure at the tillering stage of rice
Xu Chunmei, Chen Liping, Chen Song, Chu Guang, Wang Danying, Zhang Xiufu
Annals of Applied Biology. 2020 177(1). p.61
Radial Oxygen Loss from Plant Roots—Methods
Jiménez Juan de la Cruz, Pellegrini Elisa, Pedersen Ole, Nakazono Mikio
Plants. 2021 10(11). p.2322
Flooding-adaptive root and shoot traits in rice
Lin Chen, Zhang Zhao, Shen Xuwen, Liu Dan, Pedersen Ole, Schmidt-Schippers Romy
Functional Plant Biology. 2024 51(1).
Dealing with iron metabolism in rice: from breeding for stress tolerance to biofortification
Santos Railson Schreinert dos, Araujo Júnior Artur Teixeira de, Pegoraro Camila, Oliveira Antonio Costa de
Genetics and Molecular Biology. 2017 40(1 suppl 1). p.312
Aluminum Stress Adaptation in Plants (2015)
Poschenrieder Charlotte, Tolrà Roser, Hajiboland Roghieh, Arroyave Catalina, Barceló Juan
Some Accessions of Amazonian Wild Rice (Oryza glumaepatula) Constitutively Form a Barrier to Radial Oxygen Loss along Adventitious Roots under Aerated Conditions
Ejiri Masato, Sawazaki Yuto, Shiono Katsuhiro
Plants. 2020 9(7). p.880
Contrasting roles of rice root iron plaque in retention and plant uptake of silicon, phosphorus, arsenic, and selenium in diverse paddy soils
Linam Franklin A., Limmer Matt A., Seyfferth Angelia L.
Plant and Soil. 2024
Novel functions of the root barrier to radial oxygen loss – radial diffusion resistance to H2 and water vapour
Peralta Ogorek Lucas León, Pellegrini Elisa, Pedersen Ole
New Phytologist. 2021 231(4). p.1365
Dynamics and Activity of Iron-Reducing Bacterial Populations in a West African Rice Paddy Soil under Subsurface Drainage: Case Study of Kamboinse in Burkina Faso
Otoidobiga Cécile Harmonie, Keita Amadou, Yacouba Hamma, Traore Alfred S., Dianou Dayéri
Agricultural Sciences. 2015 06(08). p.860
Temporal variability in trace metal solubility in a paddy soil not reflected in uptake by rice (Oryza sativa L.)
Pan Yunyu, Koopmans Gerwin F., Bonten Luc T. C., Song Jing, Luo Yongming, Temminghoff Erwin J. M., Comans Rob N. J.
Environmental Geochemistry and Health. 2016 38(6). p.1355
Iron toxicity-induced physiological and metabolite profile variations among tolerant and sensitive rice varieties
Turhadi Turhadi, Hamim Hamim, Ghulamahdi Munif, Miftahudin Miftahudin
Plant Signaling & Behavior. 2019 14(12). p.1682829
Physiological and molecular mechanisms of plant-root responses to iron toxicity
Li Guangjie, Wu Jinlin, Kronzucker Herbert J., Li Baohai, Shi Weiming
Journal of Plant Physiology. 2024 297 p.154257
Mutualistic fungus Phomopsis liquidambari increases root aerenchyma formation through auxin-mediated ethylene accumulation in rice (Oryza sativa L.)
Hu Li-Yan, Li Dan, Sun Kai, Cao Wei, Fu Wan-Qiu, Zhang Wei, Dai Chuan-Chao
Plant Physiology and Biochemistry. 2018 130 p.367
Parallels between drought and flooding: An integrated framework for plant eco‐physiological responses to water stress
Chen Siluo, ten Tusscher Kirsten H. W. J., Sasidharan Rashmi, Dekker Stefan C., de Boer Hugo J.
Plant-Environment Interactions. 2023 4(4). p.175
Regulation of root adaptive anatomical and morphological traits during low soil oxygen
Pedersen Ole, Sauter Margret, Colmer Timothy David, Nakazono Mikio
New Phytologist. 2021 229(1). p.42
The Response of the Root Apex in Plant Adaptation to Iron Heterogeneity in Soil
Li Guangjie, Kronzucker Herbert J., Shi Weiming
Frontiers in Plant Science. 2016 7
A novel way to understand plant species preferences in relation to groundwater discharge conditions using a trait‐based approach
van der Knaap Yasmijn A. M., Douma Jacob C., Aerts Rien, van Ek Remco, van Bodegom Peter M.
Ecohydrology. 2016 9(4). p.549

Committee on Publication Ethics


Abstract Export Citation Get Permission