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Profil bibliographique

M. Z. Yang

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

13Publications signalées
517Citations signalées
0Affiliations récentes

Les domaines associés

Plant Molecular Biology ResearchInsect-Plant Interactions and ControlPlant nutrient uptake and metabolismPlant Reproductive BiologyParticle physics theoretical and experimental studies

Les publications récentes

Accès ouvert 2024 article OpenAlex

A gradient of the HD-Zip regulator Woolly regulates multicellular trichome morphogenesis in tomato

Minliang Wu, Xinxin Bian, S.S. Hu, Benben Huang et autres

Homeodomain (HD) proteins regulate embryogenesis in animals such as the fruit fly (Drosophila melanogaster), often in a concentration-dependent manner. HD-leucine zipper (Zip) IV family genes are unique to plants and often function in the L1 epidermal cell layer. However, our understanding of …

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47 citations The Plant Cell
Accès ouvert 2022 article OpenAlex

SlSPX1-SlPHR complexes mediate the suppression of arbuscular mycorrhizal symbiosis by phosphate repletion in tomato

Dehua Liao, Chao Sun, Haiyan Liang, Yang Wang et autres

Forming mutualistic symbioses with arbuscular mycorrhizae (AMs) improves the acquisition of mineral nutrients for most terrestrial plants. However, the formation of AM symbiosis usually occurs under phosphate (Pi)-deficient conditions. Here, we identify SlSPX1 (SYG1 (suppressor of yeast GPA1)/Pho81(phosphate 81)/XPR1 (xenotropic and polytropic …

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83 citations The Plant Cell
Accès ouvert 2022 article OpenAlex

H and HL synergistically regulate jasmonate-triggered trichome formation in tomato

Bing Hua, Jiang Chang, Xiaoqian Han, Zhijing Xu et autres

Abstract The development of trichomes, which protect plants against herbivores, is affected by various stresses. In tomato, previous studies showed that stress-triggered jasmonic acid (JA) signaling influences trichome formation, but the underlying mechanism is not fully resolved. Here, we found that two …

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40 citations Horticulture Research
2021 article OpenAlex

HOMEODOMAIN PROTEIN8 mediates jasmonate‐triggered trichome elongation in tomato

Bing Hua, Jiang Chang, Zhijing Xu, Xiaoqian Han et autres

Plant hormones can adjust the physiology and development of plants to enhance their adaptation to biotic and abiotic challenges. Jasmonic acid (JA), one of the immunity hormones in plants, triggers genome-wide transcriptional changes in response to insect attack and wounding. Although JA …

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93 citations New Phytologist
Accès ouvert 2020 article OpenAlex

Mediation of JA signalling in glandular trichomes by the woolly/SlMYC1 regulatory module improves pest resistance in tomato

Bing Hua, Jiang Chang, Minliang Wu, Zhijing Xu et autres

Almost all plants form trichomes, which protect them against insect herbivores by forming a physical barrier and releasing chemical repellents. Glandular trichomes produce a variety of specialized defensive metabolites, including volatile terpenes. Previous studies have shown that the defence hormone jasmonic acid …

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128 citations Plant Biotechnology Journal
Accès ouvert 2019 article OpenAlex

Spatiotemporal cytoskeleton organizations determine morphogenesis of multicellular trichomes in tomato

Jiang Chang, Zhijing Xu, Meng Li, M. Z. Yang et autres

Plant trichomes originate from epidermal cell, forming protective structure from abiotic and biotic stresses. Different from the unicellular trichome in Arabidopsis, tomato trichomes are multicellular structure and can be classified into seven different types based on cell number, shape and the presence …

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65 citations PLoS Genetics
Accès ouvert 2018 article OpenAlex

Spatial Expression and Functional Analysis of Casparian Strip Regulatory Genes in Endodermis Reveals the Conserved Mechanism in Tomato

Pengxue Li, M. Z. Yang, Jiang Chang, Junqing Wu et autres

Casparian strip (CS) is an impregnation of endodermal cell wall, forming an apoplastic diffusion barrier which forces the symplastic and selective transport of nutrients across endodermis. This extracellular structure can be found in the roots of all higher plants and is thought …

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31 citations Frontiers in Plant Science

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