Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A comprehensive review on Gossypium hirsutum resistance against cotton leaf curl virus

View through CrossRef
Cotton (Gossypium hirsutumL.) is a significant fiber crop. Being a major contributor to the textile industry requires continuous care and attention. Cotton is subjected to various biotic and abiotic constraints. Among these, biotic factors including cotton leaf curl virus (CLCuV) are dominant. CLCuV is a notorious disease of cotton and is acquired, carried, and transmitted by the whitefly (Bemisia tabaci). A cotton plant affected with CLCuV may show a wide range of symptoms such as yellowing of leaves, thickening of veins, upward or downward curling, formation of enations, and stunted growth. Though there are many efforts to protect the crop from CLCuV, long-term results are not yet obtained as CLCuV strains are capable of mutating and overcoming plant resistance. However, systemic-induced resistance using a gene-based approach remained effective until new virulent strains of CLCuV (like Cotton Leaf Curl Burewala Virus and others) came into existence. Disease control by biological means and the development of CLCuV-resistant cotton varieties are in progress. In this review, we first discussed in detail the evolution of cotton and CLCuV strains, the transmission mechanism of CLCuV, the genetic architecture of CLCuV vectors, and the use of pathogen and nonpathogen-based approaches to control CLCuD. Next, we delineate the uses of cutting-edge technologies like genome editing (with a special focus on CRISPR-Cas), next-generation technologies, and their application in cotton genomics and speed breeding to develop CLCuD resistant cotton germplasm in a short time. Finally, we delve into the current obstacles related to cotton genome editing and explore forthcoming pathways for enhancing precision in genome editing through the utilization of advanced genome editing technologies. These endeavors aim to enhance cotton’s resilience against CLCuD.
Title: A comprehensive review on Gossypium hirsutum resistance against cotton leaf curl virus
Description:
Cotton (Gossypium hirsutumL.
) is a significant fiber crop.
Being a major contributor to the textile industry requires continuous care and attention.
Cotton is subjected to various biotic and abiotic constraints.
Among these, biotic factors including cotton leaf curl virus (CLCuV) are dominant.
CLCuV is a notorious disease of cotton and is acquired, carried, and transmitted by the whitefly (Bemisia tabaci).
A cotton plant affected with CLCuV may show a wide range of symptoms such as yellowing of leaves, thickening of veins, upward or downward curling, formation of enations, and stunted growth.
Though there are many efforts to protect the crop from CLCuV, long-term results are not yet obtained as CLCuV strains are capable of mutating and overcoming plant resistance.
However, systemic-induced resistance using a gene-based approach remained effective until new virulent strains of CLCuV (like Cotton Leaf Curl Burewala Virus and others) came into existence.
Disease control by biological means and the development of CLCuV-resistant cotton varieties are in progress.
In this review, we first discussed in detail the evolution of cotton and CLCuV strains, the transmission mechanism of CLCuV, the genetic architecture of CLCuV vectors, and the use of pathogen and nonpathogen-based approaches to control CLCuD.
Next, we delineate the uses of cutting-edge technologies like genome editing (with a special focus on CRISPR-Cas), next-generation technologies, and their application in cotton genomics and speed breeding to develop CLCuD resistant cotton germplasm in a short time.
Finally, we delve into the current obstacles related to cotton genome editing and explore forthcoming pathways for enhancing precision in genome editing through the utilization of advanced genome editing technologies.
These endeavors aim to enhance cotton’s resilience against CLCuD.

Related Results

A Severe Leaf Curl Disease on Chilies in Pakistan is Associated with Multiple Begomovirus Components
A Severe Leaf Curl Disease on Chilies in Pakistan is Associated with Multiple Begomovirus Components
Chili leaf curl disease is an important limiting factor for chilies in the Indian subcontinent and is associated with begomoviruses (2,3). Field visits of commercially grown chilie...
KECEMASAN SAAT PANDEMI COVID 19: LITERATUR REVIEW Hardiyati, Efri Widianti, Taty Hernawaty Departemen Keperawatan Jiwa Poltekkes Kemenkes Mamuju Sulbar, Universitas Pad...
On $$[H^{1}]^{3 \times 3}$$, $$[H(\text {curl})]^3$$ and $$H(\text {sym Curl})$$ finite elements for matrix-valued Curl problems
On $$[H^{1}]^{3 \times 3}$$, $$[H(\text {curl})]^3$$ and $$H(\text {sym Curl})$$ finite elements for matrix-valued Curl problems
AbstractIn this work we test the numerical behaviour of matrix-valued fields approximated by finite element subspaces of $$[{{\,\mathrm{\textit{H}^1}\,}}]^{3\times 3}$$ ...
Phytochemical, Proximate, Mineral Analysis and Antioxidant Activity of the leaves of Gossypium hirsutum
Phytochemical, Proximate, Mineral Analysis and Antioxidant Activity of the leaves of Gossypium hirsutum
The leaves of Gossypium hirsutum were analyzed for phytochemical, proximate, mineral compositions, and antioxidant activity. The free radical scavenging activity using DPPH procedu...
Gene expression in response to Cotton Leaf Curl Virus infection in Gossypium hirsutum under variable environmental conditions
Gene expression in response to Cotton Leaf Curl Virus infection in Gossypium hirsutum under variable environmental conditions
Cotton Leaf Curl Disease (CLCuD) is one of the threatening constrains of cotton production in Pakistan for which no adequate remedy is available until now. Local variety of G...
INFLUÊNCIA DA IRRIGAÇÃO SUPLEMENTAR COM ÁGUAS RESIDUÁRIAS SOBRE AS TROCAS GASOSAS FOLIARES DO ALGODOEIRO
INFLUÊNCIA DA IRRIGAÇÃO SUPLEMENTAR COM ÁGUAS RESIDUÁRIAS SOBRE AS TROCAS GASOSAS FOLIARES DO ALGODOEIRO
INFLUÊNCIA DA IRRIGAÇÃO SUPLEMENTAR COM ÁGUAS RESIDUÁRIAS SOBRE AS TROCAS GASOSAS FOLIARES DO ALGODOEIRO   ADRIANA CRUZ DE OLIVEIRA1; ANTONIO FLAVIO BATISTA DE ARAUJO2;...
Tomato leaf curl Karnataka virus from Bangalore, India, Appears to be a Recombinant Begomovirus
Tomato leaf curl Karnataka virus from Bangalore, India, Appears to be a Recombinant Begomovirus
The genome of Tomato leaf curl virus (ToLCV) from Bangalore, India, a whitefly-transmitted geminivirus, was cloned (pIND9) and sequenced. The circular DNA of 2,759 nucleotides (U38...
Tomato yellow leaf curl disease in Guangdong is caused by Tomato leaf curl Taiwan virus
Tomato yellow leaf curl disease in Guangdong is caused by Tomato leaf curl Taiwan virus
AbstractA yellow leaf curl disease with chlorotic and yellowish leaves, upward leaf curling and stunting symptoms was observed on tomato in Shantou city of Guangdong province. A vi...

Back to Top