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Shuxun Yu

Researcher at Civil Aviation Authority of Singapore

Publications -  112
Citations -  5231

Shuxun Yu is an academic researcher from Civil Aviation Authority of Singapore. The author has contributed to research in topics: Gene & Gossypium. The author has an hindex of 26, co-authored 95 publications receiving 4161 citations. Previous affiliations of Shuxun Yu include Zhejiang A & F University & Northwest A&F University.

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AFLP-RGA Markers in Comparison with RGA and AFLP in Cultivated Tetraploid Cotton

TL;DR: Genetic similarity among the eight genotypes based on AFLP-RGA or AFLP lead to similar results in genotype grouping at the species and intraspecies level, however, RGA markers amplified by only degenerate RGA primers could not discriminate several genotypes.
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The WRKY transcription factor GhWRKY27 coordinates the senescence regulatory pathway in upland cotton (Gossypium hirsutum L.)

TL;DR: The expression of GhWRKY27 was induced by leaf senescence and was higher in an early-ageing cotton variety than in a non-early-ageed cotton variety, and the expression patterns of GhTT2, GhCYP94C1 and GhRipen2–2 were identified during leafsenescence.
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The Cotton GhWRKY91 Transcription Factor Mediates Leaf Senescence and Responses to Drought Stress in Transgenic Arabidopsis thaliana

TL;DR: The results suggest that GhWRKY91 might negatively regulate natural and stress-induced leaf senescence and provide a foundation for further functional studies on leaf senesence and the stress response in cotton.
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Identification of the group IIa WRKY subfamily and the functional analysis of GhWRKY17 in upland cotton (Gossypium hirsutum L.).

TL;DR: The over-expression of GhWRKY17 in Arabidopsis up-regulated the senescence-associated genes AtWRKY53, AtSAG12 and AtSAg13, enhancing the plant’s susceptibility to leaf senescences and laying the foundation for further analysis and study of the functions of WRKY genes in cotton.
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GhNAC12, a neutral candidate gene, leads to early aging in cotton (Gossypium hirsutum L)

TL;DR: In this paper, qRT-PCR analysis indicated that GhNAC12 expression increased during the early-aging process and the aging of cotyledons in upland cotton.