Results 11 to 20 of about 5,835 (139)

Morphological and anatomical study in some species of Orobanche [PDF]

open access: yesمجلة مركز بحوث التقنيات الاحيائية, 2021
  Orobanche aegyptiaca Pers., Orobanche cernua L. and  Orobanche coelestis (Reut.) Boiss. and Reut. ex Beck are  plants belong to the Orobanchaceae family in Iraq.  Morphological and anatomical study of the three species is very important to to know the
Khansaa Rasheed Al-Joboury   +1 more
doaj   +2 more sources

Molecular Characterization of a New Ecotype of Holoparasitic Plant Orobanche L. on Host Weed Xanthium spinosum L.

open access: yesPlants, 2022
A species of Orobanche was observed on spiny cocklebur (Xanthium spinosum) for the first time in Iran and tentatively was named IR-Iso.This study was conducted to make a phylogenetic analysis of the Orobanche using 5.8S rRNA region sequences, and also to
Ali Reza Yousefi   +6 more
doaj   +2 more sources

Exogenous Cellulase Contributes to Mycoherbicidal Activity of Fusarium arthrosporioides on Orobanche aegyptiaca

open access: yesInternational Journal of Agronomy, 2010
This paper investigates an association between the tubercle size of Orobanche aegyptiaca, tubercle death, and days to tubercle death in relation to cellulase-assisted mycoherbicide.
Olubukola O. Babalola
doaj   +2 more sources

Has the Striga problem been solved? A field perspective critique of recent progress. [PDF]

open access: yesPest Manag Sci
The potential field efficacy of recently proposed breeding, biocontrol, suicidal germination, gene editing and transgenic solutions for Striga control is critically evaluated and mostly found wanting improvements. Abstract Three root‐parasitic witchweed (Striga) species can cause up to total loss of grain and legume crops for millions of farmers in ...
Gressel J.
europepmc   +2 more sources

6-Hydroxynicotinic Acid From Cucumis melo Inhibits Prehaustorium Formation in Phelipanche aegyptiaca via Disruption of Auxin Signalling Pathway. [PDF]

open access: yesMol Plant Pathol
6‐hydroxynicotinic acid inhibits prehaustorium development in Phelipanche aegyptiaca by inhibiting GH3‐mediated auxin conjugation, downregulating key auxin‐responsive genes, and impairing the auxin transporter AUX1. ABSTRACT Phelipanche aegyptiaca, a root holoparasitic weed, severely threatens agricultural productivity due to its detrimental effects ...
Hu X   +10 more
europepmc   +2 more sources

Inoculation with Talaromyces trachyspermus and arbuscular mycorrhizal fungus alongside sulfonylurea herbicides alters Orobanche aegyptiaca and tomato growth [PDF]

open access: yesScientific Reports
The life cycle and unique biology of broomrape (Orobanche aegyptiaca ) have made the management of this root- parasitic plant one of the greatest challenges in agriculture.
Mina Agha Baba Dastjerdi   +4 more
doaj   +2 more sources

Thermal time model for Egyptian broomrape ‎‎(Phelipanche aegyptiaca) parasitism dynamics in carrot ‎‎(Daucus carota L.): Field validation ‎ [PDF]

open access: yesFrontiers in Plant Science, 2016
Carrot, a highly profitable crop in Israel, is severely damaged by Phelipanche aegyptiaca ‎parasitism. Herbicides can effectively control the parasite and prevent damage, but for ‎optimal results, knowledge about the soil-subsurface phenological stage of
Amnon Cochavi   +3 more
doaj   +2 more sources

Secretory Proteins Are Involved in the Parasitism of Melon by Phelipanche aegyptiaca During the Attachment Stage [PDF]

open access: yesPlants
Parasitic plants represent a significant challenge in global agriculture, with Broomrape (Orobanche/Phelipanche spp.) being a notable example of a holoparasitic species that targets the roots of host plants.
Lifeng Xiao   +4 more
doaj   +2 more sources

Effects of Arbuscular Mycorrhizal Symbiosis (Glomus intraradice) on Egyptian Broomrape (Orobanche aegyptiaca. Pers) in Cultivated Tomato (Lycopersicon esculentum Mill.)

open access: yesMajallah-i ḥifāẓat-i giyāhān, 2017
Introduction: Mycorrhizal symbiosis is one of the most popular and highest symbiotic relationship in plant kingdom. Most plants (about 80% of vascular plant species) have at least one type of mycorrhiza.
mojtaba zafarian, ali tadayyn
doaj   +2 more sources

Vestigial Plastids in Parasitic Plants: Evolutionary Remnants or Adaptive Innovations? [PDF]

open access: yesPlant Cell Environ
ABSTRACT Throughout the evolutionary history of plants, chloroplasts originating from a cyanobacterial endosymbiosis have undergone remarkable adaptation and specialization, giving rise to a multitude of plastid types. The evolution toward parasitism in plants represents a particularly extreme case of such specialization.
Jené L, Munné-Bosch S.
europepmc   +2 more sources

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