Hai-Xiang Jin’s research while affiliated with South China Agricultural University and other places

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Publications (1)


Figure 9. Expression variations and sequence structures of ZIP genes in LY-3 and YN-9 after cold acclimation and freezing treatment. The heatmaps were drawn based on log2FC values, * and ** indicate significant differences at p-values < 0.05 and 0.01, respectively. The sequence structures were drawn based on Interproscan analysis with PANTHER database.
Comparison of leaf blade length and width between YN-9 and LY-3.
A Survey of Enhanced Cold Tolerance and Low-Temperature-Induced Anthocyanin Accumulation in a Novel Zoysia japonica Biotype
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February 2022

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106 Reads

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11 Citations

Hai-Xiang Jin

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Ming Jiang

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Jian-Feng Yang

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Zoysia japonica is a warm-season turfgrass that is extensively used in landscaping, sports fields, and golf courses worldwide. Uncovering the low-temperature response mechanism of Z. japonica can help to accelerate the development of new cold-tolerant cultivars, which could be used to prolong the ornamental and usage duration of turf. A novel Z. japonica biotype, YueNong-9 (YN-9), was collected from northeastern China for this study. Phenotypic measurements, cold-tolerance investigation, and whole-transcriptome surveys were performed on YN-9 and LanYin-3 (LY-3), the most popular Z. japonica cultivar in Southern China. The results indicated the following: YN-9 has longer second and third leaves than LY-3; when exposed to the natural low temperature during winter in Guangzhou, YN-9 accumulated 4.74 times more anthocyanin than LY-3; after cold acclimation and freezing treatment, 83.25 ± 9.55% of YN-9 survived while all LY-3 leaves died, and the dark green color index (DGCI) value of YN-9 was 1.78 times that of LY-3; in YN-9, there was a unique up-regulation of Phenylalanine ammonia-lyase (PAL), Homeobox-leucine Zipper IV (HD-ZIP), and ATP-Binding Cassette transporter B8 (ABCB8) expressions, as well as a unique down-regulation of zinc-regulated transporters and iron-regulated transporter-like proteins (ZIPs) expression, which may promote anthocyanin biosynthesis, transport, and accumulation. In conclusion, YN-9 exhibited enhanced cold tolerance and is thus an excellent candidate for breeding cold-tolerant Z. japonica variety, and its unique low-temperature-induced anthocyanin accumulation and gene responses provide ideas and candidate genes for the study of low-temperature tolerance mechanisms and genetic engineering breeding.

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Citations (1)


... Several genomic and transcriptomic studies have been published on Z. japonica along with their datasets (Ahn et al., 2015;Wei et al., 2015;Xie et al., 2015;Li et al., 2018;Wang et al., 2020;Guan et al., 2022;Jin et al., 2022). These studies aim to explore the genetic makeup and gene expression patterns of Z. japonica under different conditions. ...

Reference:

Unveiling unique alternative splicing responses to low temperature in Zoysia japonica through ZjRTD1.0, a high-quality reference transcript dataset
A Survey of Enhanced Cold Tolerance and Low-Temperature-Induced Anthocyanin Accumulation in a Novel Zoysia japonica Biotype