Liyi Zhang

ORCID: 0000-0002-5300-9725
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Research Areas
  • Bioenergy crop production and management
  • Genetic Mapping and Diversity in Plants and Animals
  • Crop Yield and Soil Fertility
  • Plant Gene Expression Analysis
  • Wheat and Barley Genetics and Pathology
  • Plant Molecular Biology Research
  • Rice Cultivation and Yield Improvement
  • Plant Reproductive Biology
  • Fungal Plant Pathogen Control
  • Plant Pathogens and Fungal Diseases
  • Seed and Plant Biochemistry
  • Genomics and Phylogenetic Studies
  • Plant Physiology and Cultivation Studies
  • Agriculture, Soil, Plant Science
  • Plant-Microbe Interactions and Immunity
  • GABA and Rice Research
  • Environmental and Agricultural Sciences
  • Genetic diversity and population structure
  • Allelopathy and phytotoxic interactions
  • Ecology and Conservation Studies
  • Seed Germination and Physiology
  • Silicon Effects in Agriculture
  • Powdery Mildew Fungal Diseases
  • Ruminant Nutrition and Digestive Physiology
  • Postharvest Quality and Shelf Life Management

Guizhou Electric Power Design and Research Institute
2013-2024

Guizhou Academy of Agricultural Sciences
2013-2024

Institute of Pomology
2011-2023

Chinese Academy of Agricultural Sciences
2011-2023

Ministry of Agriculture and Rural Affairs
2023

Academia Sinica
2019

Physique et Physiologie Intégratives de l'Arbre en Environnement Fluctuant
2006

Abstract Background Transcription factors, including trihelix transcription play vital roles in various growth and developmental processes abiotic stress responses plants. The gene has been systematically studied some dicots monocots, Arabidopsis, tomato, chrysanthemum, soybean, wheat, corn, rice, buckwheat. However, there are no related studies on sorghum. Results In this study, a total of 40 sorghum ( SbTH ) genes were identified based the genome, among which 34 located nucleus, 5...

10.1186/s12864-021-08000-7 article EN cc-by BMC Genomics 2021-10-14

Grain size is a major determinant of grain yield in sorghum and other cereals. Over 100 quantitative trait loci (QTLs) have been identified sorghum. However, no gene underlying any QTL has cloned. Here, we describe the fine mapping cloning one QTL. From an F8 recombinant inbred line population derived from cross between lines 654 LTR108, 44 QTLs. One QTL, qTGW1a, was detected consistently on long arm chromosome 1 span 4 years. Using extreme recombinants F2:3 fine-mapping population, qTGW1a...

10.1093/jxb/eraa277 article EN Journal of Experimental Botany 2020-05-28

Development of cultivars with multiple resistances has proven to be an effective way prevent diseases in wheat breeding. The Guixie 3 variety (GX3) shown excellent performance resistance stripe rust field for many years. purpose this study was detect quantitative trait loci (QTL) associated the adult plant stage and determine closely linked molecular markers. A population recombinant inbred lines (n = 228) derived from a cross between susceptible landrace Mian 96-5 (M96-5) GX3 evaluated...

10.1007/s13353-022-00686-z article EN cc-by Journal of Applied Genetics 2022-03-26

Adventitious shoot (AS) regeneration is a significant factor in the genetic transformation of horticultural plants. It also noteworthy approach to their vegetative propagation. AS remains highly dependent on genotype or maturity explants. We here found that abilities apple leaves were positively correlated with MdAIL5 expression. overexpression dramatically increased efficiency. Notably, could restore formation ability explants certain extent, which was lost an increase maturity. Endogenous...

10.1093/hr/uhad198 article EN cc-by Horticulture Research 2023-10-10

Alternaria alternata apple pathotype (previously A. mali ) causes alternaria blotch disease of ( Malus × domestica ), which may result in leaf spots and up to 70% premature drop serious cases. This is worldwide importance but most eastern Asia (Japan, Korea, China) parts the United States. The excessive use fungicides not only adds cost growers, also pollutes environment. In this study, we characterized a 5-year F 1 population from cross resistant cultivar (Huacui) susceptible (Golden...

10.21273/jashs.136.2.109 article EN Journal of the American Society for Horticultural Science 2011-03-01

Abstract Background Hongyingzi is a sorghum ( Sorghum bicolor L. Moench) cultivar for brewing Moutai liquor. For an overall understanding of the whole genome Hongyingzi, we performed whole-genome resequencing technology to reveal its comprehensive variations. Results Compared with BTx623 reference genome, uncovered 1,885,774 single nucleotide polymorphisms (SNPs), 309,381 small fragments insertions and deletions (Indels), 31,966 structural variations (SVs), 217,273 copy number (CNVs). These...

10.1186/s41065-020-00130-4 article EN cc-by Hereditas 2020-05-14

Chinese sorghum (S. bicolor) has been a historically critical ingredient for brewing famous distilled liquors ever since Yuan Dynasty (749 ∼ 652 years BP). Incomplete understanding of the population genetics and domestication history limits its broad applications, especially that lack knowledge underlying liquor-brewing properties makes it difficult to establish scientific standards breeding. To unravel domestic sorghum, we re-sequenced 244 lines selected from 16 provinces. We found sorghums...

10.3389/fpls.2022.923734 article EN cc-by Frontiers in Plant Science 2022-06-09

Two Job’s tears cultivars, yy18-1 (high resistance to drought stress) and yy12-7 (susceptible were used investigate the responses of seed germination, root seedling growth, antioxidant characteristics stress simulated by polyethylene glycol (PEG) 6000 solutions with 0, -0.05, -0.1, -0.15, -0.2 MPa osmotic potentials. The results showed that germination energy, rate, index, lengths, diameters, fresh masses, dry relative water content (RWC) decreased decrease potential PEG solution. contents...

10.4236/as.2018.98069 article EN Agricultural Sciences 2018-01-01

Double-flower ornamental crabapples display eye-catching morphologies in comparison to single flower, but the genetic basis of double-flower development is not yet well known apples. In order comprehensively understand differential expression genes (DEGs) between and double transcriptome flower Malus Kelsey, micromalus, Royalty, a cultivar Dolgo were compared by RNA-sequencing. The results showed that there 1854 overlapped DEGs among all sample comparisons apple varieties. A large number...

10.3390/agronomy9030112 article EN cc-by Agronomy 2019-02-26

The aim of this study was to determine the effects sowing time and growing density on yield quality grain in waxy sorghum (Sorghum bicolor L. Moench). main plots were two time: early (5 April) late (20 April), subplots three densities: 0.8 × 105, 1.1 1.4 105 plants/ha. Results showed that had significant cultivar Hongliangfeng 1. Grain yield, plant height, spike length, culm diameter, number per spike, weight plant, 1000-grain weight, protein content, starch amylopectin content...

10.5539/jas.v11n6p12 article EN Journal of Agricultural Science 2019-04-29

The inflorescences morphology (IM) of sorghum (Sorghum bicolor L. Moench) affects its resistance to pests, diseases, and grain yields. However, the specific genetic factors underlying in IM are not yet fully elucidated. Here we conducted a comprehensive genome-wide association analysis (GWAS) identify stable adaptive Quantitative Trait Loci (QTL) for five traits (panicle length, number cob nodes, primary branches, largest length branch, panicle type) panel, which adapted different...

10.1038/s41598-024-76568-7 article EN cc-by-nc-nd Scientific Reports 2024-10-28

Alternaria blotch disease, caused by alternata apple pathotype (AAAP), is one of the major fungal diseases in apple. Early field observations revealed, anther-derived homozygote Hanfu line (HFTH1) was highly susceptible to AAAP, whereas (HF) exhibited resistance AAAP. To understand molecular mechanisms underlying difference sensitivity HF and HFTH1 we performed allele-specific expression (ASE) analysis comparative transcriptomic before after AAAP inoculation. We reported an important immune...

10.3389/fpls.2022.1090621 article EN cc-by Frontiers in Plant Science 2022-12-29
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