Search Results - "Gou, Huimin"
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VvJAZ13 Positively Regulates Cold Tolerance in Arabidopsis and Grape
Published in International journal of molecular sciences (18-04-2024)“…Cold stress adversely impacts grape growth, development, and yield. Therefore, improving the cold tolerance of grape is an urgent task of grape breeding. The…”
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2
Genome-Wide Identification and Abiotic Stress Response Analysis of PP2C Gene Family in Woodland and Pineapple Strawberries
Published in International journal of molecular sciences (01-02-2023)“…Protein phosphatase 2C (PP2C) is a negative regulator of serine/threonine residue protein phosphatase and plays an important role in abscisic acid (ABA) and…”
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3
Identification and Expression Analysis of the SKP1-Like Gene Family under Phytohormone and Abiotic Stresses in Apple (Malus domestica)
Published in International journal of molecular sciences (01-11-2023)“…Ubiquitination participates in plant hormone signaling and stress response to adversity. SKP1-Like, a core component of the SCF (Skp1-Cullin-F-box) complex, is…”
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4
Overexpression VaPYL9 improves cold tolerance in tomato by regulating key genes in hormone signaling and antioxidant enzyme
Published in BMC plant biology (15-07-2022)“…Abstract Background Abscisic acid (ABA) has been reported in controlling plant growth and development, and particularly dominates a role in resistance to…”
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5
The role of gibberellin synthase gene VvGA2ox7 acts as a positive regulator to salt stress in Arabidopsis thaliana
Published in BMC plant biology (07-11-2024)“…Soil salinity is an important environmental component affecting plant growth and yield, but high-salinity soils are a major constraint to the development of…”
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Genome-wide identification and expression analysis of the BURP domain-containing genes in Malus domestica
Published in Physiology and molecular biology of plants (01-11-2023)“…The conserved BURP-containing proteins are specific to plants and play a crucial role in plant growth, development, and response to abiotic stresses. However,…”
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Genome-wide identification and expression analysis of PIN gene family under phytohormone and abiotic stresses in Vitis Vinifera L
Published in Physiology and molecular biology of plants (01-10-2022)“…The auxin efflux transport proteins PIN-formed (PIN) has wide adaptability to hormone and abiotic stress, but the response mechanism of PINs in grape remains…”
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Whole-genome resequencing and transcriptome analyses of four generation mutants to reveal spur-type and skin-color related genes in apple (Malus domestica Borkh. Cv. Red delicious)
Published in BMC plant biology (30-11-2023)“…Abstract Background Bud sport is a kind of somatic mutation that usually occurred in apple. ‘Red Delicious’ is considered to be a special plant material of bud…”
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Identification and expression analysis of the grape pentatricopeptide repeat (PPR) gene family in abiotic stress
Published in Physiology and molecular biology of plants (01-10-2022)“…The pentatricopeptide repeat (PPR) is one of the largest gene family in plants, and play important role in regulating plant growth, development and abiotic…”
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10
Comparative analysis of the NF-Y transcription factor family identifies VaNF-YA6 as a positive regulator of salt and drought tolerance in grapevine
Published in Plant stress (Amsterdam) (01-12-2024)“…•A total of 27 and 26 NF-Y TFs were identified between V. vinifera and V. amurensis.•RT-qPCR analysis of VaNF-YA6, VaNF-YB5, VvNF-YA3, VvNF-YA5, and VvNF-YC2…”
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11
Glucose enhanced lignin accumulation in grapevine stems via promoting phenylpropanoid biosynthesis
Published in Chemical and biological technologies in agriculture (08-10-2024)“…Background The lignification of branches can promote the accumulation of nutrients, increase plant survival and resistance to biotic and abiotic stresses. As…”
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12
Profiling the lncRNA–miRNA–mRNA interaction network in the cold-resistant exercise period of grape (Vitis amurensis Rupr.)
Published in Chemical and biological technologies in agriculture (19-09-2024)“…Background Grape is a plant that is sensitive to low temperature and vulnerable to low-temperature damage. However, little is known about the roles of lncRNAs,…”
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13
Evolution of the 14–3–3 gene family in monocotyledons and dicotyledons and validation of MdGRF13 function in transgenic Arabidopsis thaliana
Published in Plant cell reports (01-08-2023)“…Key message The 14–3–3 family is more highly conserved among monocotyledons, and overexpression of MdGRF13 improved drought and salt tolerance in transgenic…”
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14
Genome-wide identification of Aux/IAA gene family members in grape and functional analysis of VaIAA3 in response to cold stress
Published in Plant cell reports (01-11-2024)“…Key message Twenty-five VvIAA genes and eighteen VaIAA genes were identified from Pinot Noir and Shanputao, respectively. The overexpression of VaIAA3 in…”
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15
Overexpression of VaBAM3 from Vitis amurensis enhances seedling cold tolerance by promoting soluble sugar accumulation and reactive oxygen scavenging
Published in Plant cell reports (01-06-2024)“…Key message The VaBAM3 cloned from Vitis amurensis can enhance the cold tolerance of overexpressed plants, but VaBAM3 knock out by CRISPR/Cas9 system weakened…”
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16
IVvJAZ13/I Positively Regulates Cold Tolerance in IArabidopsis/I and Grape
Published in International journal of molecular sciences (01-04-2024)“…Cold stress adversely impacts grape growth, development, and yield. Therefore, improving the cold tolerance of grape is an urgent task of grape breeding. The…”
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17
Identification and Expression Analysis of the ISKP1-Like/I Gene Family under Phytohormone and Abiotic Stresses in Apple
Published in International journal of molecular sciences (01-11-2023)“…Ubiquitination participates in plant hormone signaling and stress response to adversity. SKP1-Like, a core component of the SCF (Skp1-Cullin-F-box) complex, is…”
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18
Evolution of PIN gene family between monocotyledons and dicotyledons and VvPIN1 negatively regulates freezing tolerance in transgenic Arabidopsis
Published in Physiologia plantarum (01-07-2024)“…The PIN‐FORMED (PIN) proteins mediate the auxin flow throughout the plant and have been identified in many species. However, evolution differences in the PIN…”
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