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Showing 41-60 of 8,538 results
  1. Biochemical dynamics during plant pathogen interaction and its potential as disease screening index in Cercospora canescens–mung bean interaction

    To explore effective physiological/biochemical traits for screening of mung bean resistance to Cercospora Leaf Spot (CLS) disease, against Cercospora...

    Priyanka Choudhary, Ramesh Chand in Indian Phytopathology
    Article 10 February 2022
  2. Seaweed liquid extracts induce hormetic growth responses in mung bean plants

    Hormesis is a dose–response phenomenon that is characterized by stimulation at low doses and inhibition at high doses. Extensive evidence has...

    Dania Andrea Di Filippo-Herrera, Rosalba Mireya Hernández-Herrera, ... Gustavo Hernández-Carmona in Journal of Applied Phycology
    Article 05 January 2021
  3. Genome-wide identification and expression profiles of AP2/ERF transcription factor family in mung bean (Vigna radiata L.)

    Mung bean ( Vigna radiata L. Wilczek) is an economically important grain legume crop in Asia, with high nutritional quality and potential in other...

    Honglin Chen, Liangliang Hu, ... Xuzhen Cheng in Journal of Applied Genetics
    Article 06 January 2022
  4. Aspergillus awamori ameliorates the physicochemical characteristics and mineral profile of mung bean under salt stress

    Background

    In the list of abiotic stresses, salt stress is a main growth retarding factor which affects 7% of rain-fed while 30% worldwide irrigated...

    Raid Ali, Humaira Gul, ... In-Jung Lee in Chemical and Biological Technologies in Agriculture
    Article Open access 10 February 2021
  5. Improving arsenic toxicity tolerance in mung bean [Vigna radiata (L.) Wilczek] by salicylic acid application

    Arsenic (As) is a widespread toxic heavy metal which lowers plant growth and development. Salicylic acid (SA) is a prominent signaling molecule in...

    Omid Sadeghipour, Reza Monem in Vegetos
    Article 13 June 2021
  6. Salicylic Acid– and Ascorbic Acid–Induced Salt Tolerance in Mung bean (Vigna radiata (L.) Wilczek) Accompanied by Oxidative Defense Mechanisms

    The present study aimed at investigating the physiochemical role of phytoprotectants, i.e., salicylic acid (SA) and ascorbic acid (AsA), to induce...

    Maria Nawaz, Muhammad Yasin Ashraf, ... Fahim Nawaz in Journal of Soil Science and Plant Nutrition
    Article 20 May 2021
  7. Mung Bean

    Mung bean (Vigna radiata L. Wilczek) popularly known as green gram, believed to be native crop of India, is a tiny circular shaped bean in green...
    G. Mohan Naik, P. Abhirami, N. Venkatachalapathy in Pulses
    Chapter 2020
  8. The role of nutrients underlying interactions among root-nodule bacteria (Bradyrhizobium sp.), arbuscular mycorrhizal fungi (Funneliformis mosseae) and root-lesion nematodes (Pratylenchus thornei) in nitrogen fixation and growth of mung bean (Vigna radiata)

    Purpose

    To investigate the role nutrients play in arbuscular mycorrhizal fungal improvement of biological nitrogen fixation (BNF) by Bradyrhizobium ...

    E. C. Gough, K. J. Owen, ... J. P. Thompson in Plant and Soil
    Article 23 January 2022
  9. Effects of Thiobacillus and Different Levels of Sulfur Fertilizer on Growth and Physiological Indices in Intercrop** of Sesame (Sesamum Indicum L.) and Mung Bean (Vigna Radiata L.)

    The two-location field experiment was conducted to investigate the effect of Thiobacillus and different levels of sulfur fertilizer on growth and...

    Alireza Gilani, Hamid Abbasdokht, Ahmad Gholami in Gesunde Pflanzen
    Article 26 April 2021
  10. Arbuscular mycorrhizal fungi acted synergistically with Bradyrhizobium sp. to improve nodulation, nitrogen fixation, plant growth and seed yield of mung bean (Vigna radiata) but increased the population density of the root-lesion nematode Pratylenchus thornei

    Purpose

    Mung bean is a host of the root-lesion nematode Pratylenchus thornei (Sher & Allen) and the beneficial symbionts arbuscular mycorrhizal fungi...

    Elaine C. Gough, Kirsty J. Owen, ... John P. Thompson in Plant and Soil
    Article 09 June 2021
  11. Strigolactone inhibits hydrogen peroxide and plasma membrane H+-ATPase activities to downregulate adventitious root formation in mung bean hypocotyls

    Strigolactones regulate root development and are known to inhibit adventitious root formation. However, the hormonal targets of strigolactones during...

    L. O. Omoarelojie, M. G. Kulkarni, ... J. van Staden in Plant Growth Regulation
    Article 17 February 2021
  12. Genomics of Abiotic Stress in Rice bean (Vigna umbellata)

    Rice bean (Vigna umbellata) also known as red bean and mambi bean is a multipurpose crop cultivated mainly in South and Southeast Asian countries. It...
    A. Karthikeyan, V. G. Renganathan, ... N. Senthil in Legumes: Physiology and Molecular Biology of Abiotic Stress Tolerance
    Chapter 2023
  13. Response of Vigna radiata L. (Mung Bean) to Ozone Phytotoxicity Using Ethylenediurea and Magnesium Nitrate

    The response of Vigna radiata L. (mung bean) to tropospheric ozone (O 3 ) phytotoxicity using Ethylenediurea (EDU) and magnesium nitrate (Mg(NO 3 ) 2 ,...

    Sehrish Nigar, Shahla Nazneen, ... Tasneem Sarwar in Journal of Plant Growth Regulation
    Article 17 November 2021
  14. Field evaluation of horticultural mineral oils and botanicals against bean thrips, Megalurothrips distalis (Karny) (Thysanoptera: Thripidae), in summer mung bean

    Background

    Bean thrips, Megalurothrips distalis (Karny), are a serious insect pest of mung bean grown in summer season as a catch crop in wheat–rice...

    Harkamalpreet Singh, Harpreet Kaur Cheema, Ravinder Singh in Egyptian Journal of Biological Pest Control
    Article Open access 06 October 2020
  15. Biotic Stresses in Multipurpose Legume: Rice Bean

    Rice bean [Vigna umbellata (Thunb.) Ohwi and Ohashi] is a multipurpose underutilized legume crop having profuse pod-bearing ability, wider...
    Susmita Oraon, Sabyasachi Mukhopadhyay, ... Kousik Atta in Diseases in Legume Crops
    Chapter 2023
  16. Treatment of Mung Bean (Vigna radiata L. (R) Wilczek) Seeds as an Agrotechnical Element of Crop Introduction in the Middle Volga Region

    Abstract

    Mung bean ( Vigna radiata L. (R) Wilczek) is considered to have a potential for introduction under climatic conditions of the Middle Volga....

    A. A. Kurianovich, M. N. Kincharova, I. A. Titova in Russian Agricultural Sciences
    Article 01 May 2021
  17. Comparative phylogenetic analysis of the mediator complex subunit in asparagus bean (Vigna unguiculata ssp. sesquipedialis) and its expression profile under cold stress

    Background

    The mediator complex subunits (MED) constitutes a multiprotein complex, with each subunit intricately involved in crucial aspects of plant...

    Le Liang, Dong Wang, ... Huanxiu Li in BMC Genomics
    Article Open access 06 February 2024
  18. Stress Memory and Its Mitigation via Responses Through Physiological and Biochemical Traits in Mung Bean Under Moisture Stress

    The experience of stressful events can alter the plant structures involved in memory encoding, storage, and its retrieval. Stress may sometimes...
    B. Sunil Kumar, K. R. Saravanan, ... M. Prakash in Legumes: Physiology and Molecular Biology of Abiotic Stress Tolerance
    Chapter 2023
  19. Optimal N Application Improves Interspecific Relationship, Productivity and N Utilization in Wheat/Faba Bean Intercrop**

    We assessed the effects of various N levels on interspecific interaction and faba bean N utilization and yield in wheat/faba bean intercrop**...

    **g Zhang, Yiran Zheng, ... Yan Dong in Journal of Soil Science and Plant Nutrition
    Article 18 March 2024
  20. A non-synonymous SNP in homolog of BADH2 gene is associated with fresh pod fragrance in dolichos bean (Lablab purpureus var. lignosus (Prain) Kumari)

    Fresh pods are harvestable and marketable economic product in dolichos bean. Fresh pod fragrance is one of the ‘farmers’ and ‘consumers’ preferred...

    Gonal Basanagouda, Sampangi Ramesh, ... Hosakoti Sathish in Genetic Resources and Crop Evolution
    Article 06 January 2023
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