Researcher profile

Norsazilawati Saad

· Universiti Putra Malaysia

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Publications

2 research records shown

Biology, Diversity, Detection and Management of Fusarium oxysporum f. sp. niveum Causing Vascular Wilt Disease of Watermelon (Citrullus lanatus): A Review
2021 · Agronomy · DOI 10.3390/agronomy11071310

Fusarium oxysporum f. sp. niveum (Fon) is the causative agent of Fusarium wilt disease of watermelon; it is the most serious soil-borne pathogen around the globe. The yield loss is around 30–80% or even more, and is presently a major hindrance to watermelon cultivation worldwide. Initially, the infected watermelon plant shows symptoms like loss of turgor pressure of the leaves and vines that can be recovered at night. The progress of the disease in contaminated transplants turns into dull green to yellow and finally necrotic. When the fungus continues to colonize the xylem vessel, it usually forms more tyloses, finally limiting water movement and causing wilt. The correct identification of the pathogen is necessary for proper disease control. As such, the selection of a molecular marker could serve as an effective means of screening the pathogen. Additionally, different methods have also been reported for the identification of Fon. Therefore, this review focused on the comprehensive description of the biology, diversity, detection, aggressiveness, mycotoxin production, and eco-friendly management strategies of the Fusarium wilt disease of watermelon.

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A Review of the Biology and Control of Whitefly, Bemisia tabaci (Hemiptera: Aleyrodidae), with Special Reference to Biological Control Using Entomopathogenic Fungi
2020 · Insects · DOI 10.3390/insects11090619

Whitefly, Bemisia tabaci (Gennadius) (Hemiptera: Aleyrodidae), consists of genetically diverse species known to cause significant destruction in several crops around the world. Nymphs and adults of B. tabaci cause damage to plants during feeding, and they can act as a virus vector, thus causing significant yield loss to crops in the tropical and subtropical regions. Chemical pesticides are widely used to control B. tabaci due to their immediate action, but this approach has several drawbacks including food safety issues, insecticide resistance, environmental pollution, and the effect on non-target organisms. A biological control agent using entomopathogenic fungi (EPF) has therefore been developed as an alternative against the conventional use of chemical pesticides in an integrated pest management (IPM) system to effectively control B. tabaci. It is apparent from this review that species of hyphomycetes fungi are the most common EPF used to effectively control B. tabaci, with the second instar being the most susceptible stage of infection. Therefore, this review article focuses specifically on the control of B. tabaci with special emphasis on the use of EPF as biological control agents and their integration in IPM.

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Co-authors

Ibrahim Sani

Universiti Putra Malaysia

1 shared publication
Siti Izera Ismail

Universiti Putra Malaysia

1 shared publication
Sumaiyah Abdullah

Universiti Putra Malaysia

1 shared publication
Johari Jalinas

National University of Malaysia

1 shared publication
Syari Jamian

Universiti Putra Malaysia

1 shared publication
Muhammad Ziaur Rahman

Universiti Putra Malaysia

1 shared publication
Khairulmazmi Ahmad

Universiti Putra Malaysia

1 shared publication
Abdulaziz Bashir Kutawa

Universiti Putra Malaysia

1 shared publication
Yasmeen Siddiqui

Universiti Putra Malaysia

1 shared publication
Tan Geok Hun

Universiti Putra Malaysia

1 shared publication
Erneeza Mohd Hata

Universiti Putra Malaysia

1 shared publication
Md Imam Hossain

Universiti Putra Malaysia

1 shared publication