

①丙酮易挥发,4℃预冷后再使用,研磨时必须在冰上进行;
②试剂的挥发性均较高,建议在通风厨中进行操作,并做好防护措施;
③若测定吸光值超出标准吸光值线性范围:高于最高值建议将待测样本使用丙酮适当稀释后再进行测定,低于最低值建议适当增加样本量后再进行测定,计算时相应修改;
[1] Han W, Ding J, Qiao B, et al. Self‐Sustained Biophotocatalytic Nano‐Organelle Reactors with Programmable DNA Switches for Combating Tumor Metastasis[J]. Advanced Materials, 2025: 2415030. (IF 27.4)
[2] Wang J, Li X, Chen P, et al. Cellulase-and pH-Stimulating Selenium Nanopesticide Enhances Antifungal Efficacy to Anthracnose: Action Mechanism and Environmental Safety[J]. ACS nano, 2025. (IF 16.0)
[3] Xue T, Wei H, Li F, et al. MicroRNA‐Modified DNA Hexahedron‐Induced Hepatocyte‐Like Cells Integrating 3D Printed Scaffold for Acute Liver Failure Therapy[J]. Advanced Functional Materials, 2024: 2402339. (IF 19.0)
[4] Xu Z, Chen X, Jin X, et al. Study on the effective removal of chlorpyrifos from water by dielectric barrier discharge (DBD) plasma: The influence of reactive species and different water components[J]. Chemical Engineering Journal, 2023, 473: 144755.(IF 15.1)
[5] Chen B, Wang Z, Jiao M, et al. Lysine 2‐Hydroxyisobutyrylation‐and Succinylation‐Based Pathways Act Inside Chloroplasts to Modulate Plant Photosynthesis and Immunity[J]. Advanced Science, 2023, 10(27): 2301803.(IF 15.1)
[6] Yuan H, Cheng M, Fan F, et al. OsGRF6‐OsYUCCA1/OsWRKY82 Signaling Cascade Upgrade Grain Yield and Bacterial Blight Resistance in Rice[J]. Advanced Science, 2024: 2407733. (IF 14.3)
[7] Yuan H, Cheng M, Wang R, et al. miR396b/GRF6 module contributes to salt tolerance in rice[J]. Plant Biotechnology Journal, 2024. (IF 13.8)
[8] Chen K, Zheng C, Lv Y, et al. Complement opsonized protein corona activated by precoated immunoglobulin enables neutrophil-hitchhiking for rapid and enhanced drug delivery for acute liver failure recovery[J]. Nano Today, 2024, 59: 102512. (IF 13.2)
[9] Zhou M, Zhou C, Geng H, et al. EGCG‐enabled Deep Tumor Penetration of Phosphatase and Acidity Dual‐responsive Nanotherapeutics for Combinatory Therapy of Breast Cancer[J]. Small, 2024: 2406245. (IF 13.0)
[10] Lv M, Xu J, Chen R, et al. Albumin Corona‐Coated Nanoscale Metal–Organic Framework for Enzyme‐Mediated Cascade Metabolization of Uric Acid in Hyperuricemia[J]. Small, 2025: 2412612. (IF 13.0)
[11] Li Z, Huang G, Dai X, et al. Laser-facilitated peroxidase-like hydrogel with simultaneous wound infection monitoring and eliminating[J]. Biomaterials, 2025: 123542. (IF 12.9)
[12] Yin L, Wei Y, Liu Y, et al. Bio-responsive Au-miR-183 inhibitor enhances immunotherapy in hepatocellular carcinoma by inducing immunogenic cell death[J]. Journal of Controlled Release, 2024, 368: 498-517. (IF 10.8)
[13] Yao J, Li M, Wu Z, et al. PagSAMDC4a‐Mediated Polyamine Synthesis Regulate Vessel Differentiation Under Drought Stress Conditions in Poplar[J]. Plant Biotechnology Journal, 2025. (IF 10.5)
[14] Wang X, Mu Y, Yang K, et al. Reversible Regulation of the Reactive Oxygen Species Level Using a Semiconductor Heterojunction[J]. ACS Applied Materials & Interfaces, 2022, 14(41): 46324-46339.(IF 10.383)
[15] Yang D, Li Y, Tan J, et al. Biomimetic Antithrombotic Tissue‐Engineered Vascular Grafts for Converting Cholesterol and Free Radicals into Nitric Oxide[J]. Advanced Healthcare Materials, 2023, 12(23): 2300340.(IF 10)
[16] Zhang Y, Tian X, Huang P, et al. Biochemical and transcriptomic responses of buckwheat to polyethylene microplastics[J]. Science of The Total Environment, 2023, 899: 165587.(IF 9.8)
[17] He F, Hu S, Liu R, et al. Decoding the biological toxicity of phenanthrene on intestinal cells of Eisenia fetida: Effects, toxicity pathways and corresponding mechanisms[J]. Science of The Total Environment, 2023, 904: 166903.(IF 9.8)
[18] Chen L, Yue M, Liu X, et al. Dynamic distribution and temporal transcriptome adaptations elucidate lithium accumulation pattern in Cardamine violifolia[J]. Environmental Chemistry and Ecotoxicology, 2025. (IF 9.0)
[19] Wang J, Lu S, Bian H, et al. Effects of individual and combined polystyrene nanoplastics and phenanthrene on the enzymology, physiology, and transcriptome parameters of rice (Oryza sativa L.)[J]. Chemosphere, 2022, 304: 135341.(IF 8.943)
[20] Zhu W, Lu S, Jiang H, et al. Interactions between phenanthrene and polystyrene micro/nano plastics: Implications for rice (Oryza sativa L.) toxicity[J]. Environmental Pollution, 2023, 337: 122360.(IF 8.9)
[21] Qiu J, Chen Y, Liu Z, et al. The application of zinc oxide nanoparticles: An effective strategy to protect rice from rice blast and abiotic stresses[J]. Environmental Pollution, 2023: 121925.(IF 8.9)
[22] He F, Qi T, Guo S, et al. Mechanistic insights into pyridine exposure induced toxicity in model Eisenia fetida species: Evidence from whole-animal, cellular, and molecular-based perspectives[J]. Chemosphere, 2023: 139139.(IF 8.8)[23] He F, Wan J, Huo C, et al. New strategies for evaluating imidacloprid-induced biological consequences targeted to Eisenia fetida species and the corresponding mechanisms of its toxicity[J]. Journal of Environmental Management, 2024, 349: 119456.(IF 8.7)
[24] Sun N, Hu S, Zhao X, et al. Polystyrene nanoplastics and benzo [a] pyrene co-exposure differentially impacts earthworm intra-and extracellular lysozyme[J]. International Journal of Biological Macromolecules, 2025: 146255. (IF 8.5)
[25] Xu Y, Wang Y, Guan L, et al. Precision Drug Delivery for Multifunctional Treatment of Abdominal Aortic Aneurysm Using Bioactive Tea Polyphenol Nanoparticles[J]. ACS Applied Materials & Interfaces, 2025. (IF 8.2)
[26] Qiu J, Liu Z, Xie J, et al. Dual impact of ambient humidity on the virulence of Magnaporthe oryzae and basal resistance in rice[J]. Plant, Cell & Environment, 2022, 45(12): 3399-3411.(IF 7.947)
[27] Zhang Y, Wang R, Wang H, et al. Herbal hydrogel incorporating Scutellaria baicalensis Georgi carbon dots and baicalein for antibacterial, anti-inflammatory, and wound healing applications[J]. Materials & Design, 2025: 114468. (IF 7.9)
[28] Liu J, Qiu X R, Tian Y L, et al. Urchin-like magnetic nanoparticles loaded with type X collagen siRNA and Stattic to treat triple negative breast cancer under rotating magnetic field like an “enchanted micro-scalpel”[J]. International Journal of Biological Macromolecules, 2025, 300: 140318. (IF 7.7)
[29] Wang C, Shan D, Bai Y, et al. MdMAPK3-driven phosphorylation enhances MdWRKY17-mediated regulation of high-affinity K+ transporter 1 MdHAK1 for salt tolerance in apple[J]. International Journal of Biological Macromolecules, 2025: 144633. (IF 7.7)
[30] Yuan N, Wang K, Zhou J, et al. Biochar-supported Fe₃O₄ nanoparticles affects bacterial community diversity and phosphorus speciation transformation during pig manure aerobic composting by generating hydroxyl radicals and hydrogen peroxide[J]. Journal of Environmental Chemical Engineering, 2025: 115364. (IF 7.4)
[31] Ren B, Zhang T, Guo Q, et al. Nrf2 Deficiency Attenuates Testosterone Efficiency in Ameliorating Mitochondrial Function of the Substantia Nigra in Aged Male Mice[J]. Oxidative Medicine and Cellular Longevity, 2022, 2022.(IF 7.31)
[32] Liu T, Wang J, Chen L, et al. ScAREB4 promotes potato constitutive and acclimated freezing tolerance associated with enhancing trehalose synthesis and oxidative stress tolerance[J]. Plant, Cell & Environment, 2023, 46(12): 3839-3857.(IF 7.3)
[33] Liang X, Li Y, Wang L, et al. Knockout of stigmatic ascorbate peroxidase 1 (APX1) delays pollen rehydration and germination by mediating ROS homeostasis in Brassica napus L[J]. The Plant Journal, 2024. (IF 7.2)
[34] Li K, Xu R, Cao J, et al. Nordihydroguaiaretic acid (NDGA) maintains the postharvest quality of fresh daylily flower buds (Hemerocallis citrina) by enhancing antioxidant metabolism and regulating phytohormone equilibrium[J]. Postharvest Biology and Technology, 2023, 200: 112326.(IF 7)
[35] Wang H, Zhang Y, Pu Y, et al. Composite coating of guar gum with salicylic acid alleviates the quality deterioration of vibration damage in ‘Huangguan’pear fruit through the regulation of antioxidant metabolism[J]. Postharvest Biology and Technology, 2023, 205: 112476.(IF 7)
[36] Xu Z, Tang Y, Hu S, et al. Inactivation of Staphylococcus aureus in water by dielectric barrier discharge plasma jet: The role of inorganic ions, organic matter, and turbidity[J]. Journal of Water Process Engineering, 2023, 56: 104449.(IF 7)
[37] Liu H, He H, Wang Q, et al. Near-freezing temperature alters ROS metabolism and gene transcription to enhance peach chilling tolerance and aroma quality[J]. Food Research International, 2025: 116297. (IF 7.0)
[38] Liu J, Guo J, Yang J, et al. Comparative transcriptome and metabolome analyses reveal the mechanism of slightly acidic electrolyzed water in delaying browning and senescence in rambutan fruit[J]. Postharvest Biology and Technology, 2025, 230: 113778. (IF 6.8)
[39] Zhu K, Yan D, Wang Y, et al. Chlorophyll retention reduces storability and pathogen defense in a novel citrus brown flavedo mutant[J]. Postharvest Biology and Technology, 2022, 192: 112006.(IF 6.751)
[40] Yao X, Li R, Liu Y, et al. Feedback regulation of the isoprenoid pathway by SsdTPS overexpression has the potential to enhance plant tolerance to drought stress[J]. Physiologia Plantarum, 2024, 176(2): e14277. (IF 6.4)
[41] Shu P, Sheng J, Qing Y, et al. SlATG5 is crucial for the accumulation of ROS in postharvest tomato fruit resistance to B. cinerea mediated by nitric oxide[J]. Postharvest Biology and Technology, 2025, 219: 113204. (IF 6.4)
[42] Li M, Liu X, Zhao X, et al. Phosphorylation of Wild Soybean (Glycine soja) Splicing Factor GsSCL30a by GsSnRK1 Regulates Soybean Tolerance to Alkali Stress[J]. Plant, Cell & Environment, 2025. (IF 6.3)
[43] Huang Y, Hu B, Li T, et al. Intercropping and Nano Zinc Oxide Application Enhance Plant Resistance and Alleviate Pesticide Stress by Altering the Soil Microenvironment[J]. Journal of Agricultural and Food Chemistry, 2025. (IF 6.2)
[44] Yue Z, Guo Y, Zhang Y, et al. Endophytic Pantoea sp. EEL5 isolated from Elytrigia elongata improves wheat resistance to combined salinity-cadmium stress by affecting host gene expression and altering the rhizosphere microenvironment[J]. Industrial Crops and Products, 2025, 234: 121585. (IF 6.2)
[45] Shu P, Li Y, Sheng J, et al. Tomato SlMAPK3 Modulates Cold Resistance by Regulating the Synthesis of Raffinose and the Expression of SlWRKY46[J]. Journal of Agricultural and Food Chemistry, 2024. (IF 6.1)
[46] Liu M, Yu Y, Tang Z, et al. Small heat shock protein IbHSP18. 0 selected from Genome-wide association study enhances tolerance to low potassium stress in sweetpotato[J]. Plant Physiology and Biochemistry, 2025: 110094. (IF 6.1)
[47] Chen Y, Xu Y, Han X, et al. Azacytidine shows potential in controlling the chilling injury of banana peel during cold storage[J]. Food Control, 2024, 159: 110283.(IF 6)
[48] Chen X, Fan Y, Nan H, et al. G hGME31D identified to regulate AsA activation in response to alkali stress from GME gene family implications in cotton[J]. Environmental Sciences Europe, 2024, 36(1): 191. (IF 6.0)
[49] He H, Liu C, Wang Q, et al. Acidic calcium sulfate improved chilling tolerance and aroma quality by regulating reactive oxygen species metabolism and biosynthesis of volatiles in peaches[J]. LWT, 2024: 117157. (IF 6.0)
[50] Xu X, Wang Y, Yan D, et al. Enhanced Fe (ii)-artemisinin-mediated chemodynamic therapy with efficient Fe (iii)/Fe (ii) conversion circulation for cancer treatment[J]. Biomaterials Science, 2024, 12(22): 5856-5869. (IF 5.8)
[51] Wang S, Shen X, Guan X, et al. Nano-silicon enhances tomato growth and antioxidant defense under salt stress[J]. Environmental Science: Nano, 2024. (IF 5.8)
[52] Peng C, Deng L, Tan H, et al. Transcriptome and metabolome analysis of preharvest internal browning in Nane plum fruit caused by high temperatures[J]. Horticultural Plant Journal, 2024. (IF 5.7)
[53] Jiang C, Hu W, Lu H, et al. Alterations of phenotype, physiology, and functional substances reveal the chilling-tolerant mechanism in two common Olea Europaea cultivars[J]. Frontiers in Plant Science, 2023, 14: 1046719.(IF 5.6)
[54] Ma T, Zhang Y, Li Y, et al. The Resistance of Soybean Variety Heinong 84 to Apple Latent Spherical Virus Is Controlled by Two Genetic Loci[J]. International Journal of Molecular Sciences, 2024, 25(4): 2034. (IF 5.6)
[55] Zhen X, Liu C, Guo Y, et al. Leaf Senescence Regulation Mechanism Based on Comparative Transcriptome Analysis in Foxtail Millet[J]. International Journal of Molecular Sciences, 2024, 25(7): 3905. (IF 5.6)
[56] Liu C, Kong F, Qiao Y, et al. Allicin derivative (DETS) treatment reduced post-harvest decay in strawberries by inhibiting Botrytis cinerea viability and increasing antioxidant capacity[J]. Food Control, 2025: 111142. (IF 5.6)
[57] Ayaz A, Mingxing C, Yu G, et al. Identification and Characterization of WAKg Genes Involved in Rice Disease Resistance and Yield[J]. Rice Science, 2025. (IF 5.6)
[58] Zhao X, Xu H, Yang Y, et al. Defense Responses of Different Rice Varieties Affect Growth Performance and Food Utilization of Cnaphalocrocis medinalis Larvae[J]. Rice, 2024, 17(1): 9.(IF 5.5)
[59] Zhang Y, Wang E, Han Y, et al. Glucose activated synergistic cascade therapy of diabetic wound by platinum and glucose oxidase decorated camelina lipid droplets[J]. Colloids and Surfaces B: Biointerfaces, 2024: 114142. (IF 5.4)
[60] Raza A, Li Y, Rizwan H M, et al. Harnessing light‐harvesting chlorophyll a/b‐binding proteins for multiple abiotic stress tolerance in Chlamydomonas reinhardtii: Insights from genomic and physiological analysis[J]. Physiologia Plantarum, 2024, 176(6): e14653. (IF 5.4)
[61] Liu W, Jiang Y, Lv Y, et al. CmPYL7 positively regulates the cold tolerance via interacting with CmPP2C24‐like in oriental melon[J]. Physiologia Plantarum, 2024, 176(6): e14628. (IF 5.4)
[62] Gong L, Chen L, Huang X, et al. Unraveling the molecular mechanisms underlying flat stem formation in Atractylodes lancea in response to phytoplasmas[J]. Physiologia Plantarum, 2025, 177(2): e70192. (IF 5.4)
[63] Wang R, Shi Y C, Zhang B, et al. Gene expression profiles and metabolic pathways responsible for male sterility in cybrid pummelo[J]. Plant Cell Reports, 2024, 43(11): 262. (IF 5.3)
[64] Sun Y, Wang N, Chen X, et al. GHCYP706A7 governs anthocyanin biosynthesis to mitigate ROS under alkali stress in cotton[J]. Plant Cell Reports, 2025, 44(3): 1-15. (IF 5.3)
[65] Tong B, Liu Y, Wang Y, et al. PagMYB180 regulates adventitious rooting via a ROS/PCD-dependent pathway in poplar[J]. Plant Science, 2024: 112115. (IF 5.2)
[66] Weng S, Li Q, Zhang T, et al. Enhanced Glycosylation Caused by Overexpression of Rv1002c in a Recombinant BCG Promotes Immune Response and Protects against Mycobacterium tuberculosis Infection[J]. Vaccines, 2024, 12(6): 622. (IF 5.2)
[67] Yu J, Yan W, Zhu B, et al. Degradation of carbamazepine by high-voltage direct current gas–liquid plasma with the addition of H2O2 and Fe2+[J]. Environmental Science and Pollution Research, 2022, 29(51): 77771-77787.(IF 5.19)
[68] Cao L, Zhu Z, Qin H, et al. Effects of a Pirin-like protein on strain growth and spinosad biosynthesis in Saccharopolyspora spinosa[J]. Applied Microbiology and Biotechnology, 2023, 107(17): 5439-5451.(IF 5)
[69] Ma H, Liu X, Zhang R, et al. Function of Nodulation-Associated GmNARK Kinase in Soybean Alkali Tolerance[J]. International Journal of Molecular Sciences, 2025, 26(1): 325. (IF 4.9)
[70] Wang J, Wang R, Liu L, et al. Integrated Physiological, Transcriptomic and Metabolomic Analyses of the Response of Rice to Aniline Toxicity[J]. International Journal of Molecular Sciences, 2025, 26(2): 582. (IF 4.9)
[71] Jian P, Zhang H, Xi X, et al. Research on the Response of Arbuscular Mycorrhizae Fungi to Grape Growth Under High Temperature Stress[J]. International Journal of Molecular Sciences, 2025, 26(13): 6165. (IF 4.9)
[72] Zhang Y, Wang R, Wang H, et al. LuCSD3 Enhances Salt Stress Tolerance in Flax: Genome-Wide Profiling and Functional Validation of the SOD Gene Family[J]. Frontiers in Plant Science, 2025, 16: 1609085. (IF 4.8)
[73] Yang X, Chen M, Liu M, et al. ABA-GA antagonism and modular gene networks cooperatively drive acquisition of desiccation tolerance in perilla seeds[J]. Frontiers in Plant Science, 2025, 16: 1624742. (IF 4.8)
[74] Ntezimana B, Xu W, Li Y, et al. Integrated Transcriptomic and Metabolomic Analyses Reveal Changes in Aroma-and Taste-Related Substances During the Withering Process of Black Tea[J]. Foods, 2024, 13(23): 3977. (IF 4.7)
[75] He Q, Jiang Y, Huang C, et al. Molecular mechanism of delayed development by interfering RNA targeting the phenylalanine ammonia lyase gene (pal1) in Pleurotus ostreatus[J]. Journal of Integrative Agriculture, 2024. (IF 4.6)
[76] Peng S, Duan C, Liu Q, et al. Biocontrol potential of Streptomyces sp. N2 against green and blue mold disease in postharvest navel orange and the action mechanism[J]. Food Microbiology, 2024: 104658. (IF 4.5)
[77] Li T, Liu R, Liu Z, et al. Effects of intermittent temperature and humidity regulation on tomato gray mold[J]. Plant Disease, 2023 (ja). (IF 4.5)
[78] Wang Y, Wen X, Lv H Z, et al. Genome-wide identification of SnRK gene family and functional characterization of AcSnRK2. 4 in response to heat stress in kiwifruit[J]. Environmental and Experimental Botany, 2025: 106146. (IF 4.5)
[79] Zhao X, Sui X, Zhao L, et al. Morphological and physiological response mechanism of lettuce (Lactuca Sativa L.) to consecutive heat stress[J]. Scientia Horticulturae, 2022, 301: 111112.(IF 4.342)
[80] Shen L, Zhou Y, Yang X. Genome-wide identification of ascorbate peroxidase (APX) gene family and the function of SmAPX2 under high temperature stress in eggplant[J]. Scientia Horticulturae, 2024, 326: 112744.(IF 4.3)
[81] Song X, Duan Y Y, Tan F Q, et al. Comparative transcriptome analysis of salt tolerance of roots in diploid and autotetraploid citrus rootstock (C. junos cv. Ziyang xiangcheng) and identification of salt tolerance-related genes[J]. Scientia Horticulturae, 2023, 317: 112083.(IF 4.3)
[82] Wang S, Liu D, Jin T, et al. Manipulation of brassinosteroid signaling via overexpression of its major receptor SlBRI1 regulates salt tolerance in tomato[J]. Scientia Horticulturae, 2023, 322: 112457.(IF 4.3)
[83] Chen M, Liu M, Wang C, et al. Critical radicle length window governing loss of dehydration tolerance in germinated Perilla seeds: insights from physiological and transcriptomic analyses[J]. BMC Plant Biology, 2024, 24(1): 1078. (IF 4.3)
[84] Shi J, Zhou Y, Yang S, et al. The key metabolic pathway of roots and leaves responses in Arachis hypogaea under Al toxicity stress[J]. BMC Plant Biology, 2025, 25(1): 439. (IF 4.3)
[85] Wang J, Zheng B, Yang S, et al. The protective effects of Agomelatine against Aβ1-42 oligomers-induced cellular senescence mediated by SIRT6 and Agomelatine’s potential in AD treatment[J]. Human Cell, 2021, 34: 1734-1743.(IF 4.174)
[86] Wang C, Liu H, Liu C, et al. Effects of slightly acidic electrolyzed water on the quality and antioxidant capacity of fresh red waxy corn during postharvest cold storage[J]. Frontiers in Plant Science, 2024, 15: 1428394. (IF 4.1)
[87] Zhang Y, Zhang H, Zhang Y, et al. Utilizing physiologies, transcriptomics, and metabolomics to unravel key genes and metabolites of Salvia miltiorrhiza Bge. seedlings in response to drought stress[J]. Frontiers in Plant Science, 2025, 15: 1484688. (IF 4.1)
[88] Yang J, Chen R, Liu W, et al. Genome-wide identification, phylogenetic investigation and abiotic stress responses analysis of the PP2C gene family in litchi (Litchi chinensis Sonn.)[J]. Frontiers in Plant Science, 2025, 16: 1547526. (IF 4.1)
[89] Li Z, Li X, He F. Drip Irrigation Depth Alters Root Morphology and Architecture and Cold Resistance of Alfalfa[J]. Agronomy, 2022, 12(9): 2192.(IF 3.949)
[90] Zhai R, Shi M, Chen P, et al. Prothioconazole Stress Reduces Bacterial Richness and Alters Enzyme Activity in Soybean Rhizosphere[J]. Toxics, 2024, 12(10): 692. (IF 3.9)
[91] Yang J, Zhou Z, Qi W, et al. Phenotypic plasticity and integration synergistically enhance plant adaptability to flooding and nitrogen stresses[J]. Plant and Soil, 2025: 1-22. (IF 3.9)
[92] Guan M, Zheng X, Zhu Y. S-nitrosoglutathione reductase disfavors cadmium tolerance in shoots of Arabidopsis[J]. Scientific Reports, 2024, 14(1): 26401. (IF 3.8)
[93] Fan F, Zhu Y X, Wu M Y, et al. Mitochondrial inner membrane ABC transporter Bcmdl1 is involved in conidial germination, virulence, and resistance to anilinopyrimidine fungicides in Botrytis cinerea[J]. Microbiology Spectrum, 2023, 11(4): e00108-23. (IF 3.7)
[94] Wang F H, Zhang C, Wang C L, et al. Estimating the role of maize Y-EPSPS gene in glyphosate resistance in Arabidopsis transgenic lines[J]. Plant Growth Regulation, 2024: 1-13. (IF 3.5)
[95] Niu J, Zhao J, Guo Q, et al. WGCNA Reveals Hub Genes and Key Gene Regulatory Pathways of the Response of Soybean to Infection by Soybean mosaic virus[J]. Genes, 2024, 15(5): 566. (IF 3.5)
[96] Kou J, Su Y, Lei T, et al. Transcriptome and Physio-Biochemical Profiling Reveals Differentially Expressed Genes in Seedlings from Aerial and Subterranean Seeds Subjected to Drought Stress in Amphicarpaea edgeworthii Benth[J]. Agronomy, 2025, 15(3): 735. (IF 3.3)
[97] Zhang J, Chen Y, He J, et al. Genome-Wide Identification of LACS Family Genes and Functional Characterization of CaLACS6/9 in Response to Cold Stress in Pepper (Capsicum annuum L.)[J]. Agronomy, 2025, 15(4): 970. (IF 3.3)
[98] Bai L, Zhu H, Shi Y, et al. Antisense Overexpression of Gγ Subunit CsGG3. 1-2 Reduces Soluble Sugar Content and Chilling Tolerance in Cucumber[J]. Horticulturae, 2023, 9(2): 240.(IF 3.1)
[99] Li Q Y, Wang S, Wu G Y, et al. Physiological and biochemical changes in leaf abscission of Cyclocarya paliurus stem segments in vitro[J]. Plant Cell, Tissue and Organ Culture (PCTOC), 2023: 1-11.(IF 3)
[100] Zhang J, Fan J, Tan Z, et al. Identification of Glucose-6-Phosphate Dehydrogenase Family Members Associated with Cold Stress in Pepper (Capsicum annuum L.)[J]. Horticulturae, 2025, 11(7): 719. (IF 3.0)
[101] Zhang P, Chao R, Qiu L, et al. ChaWRKY40 Enhances Drought Tolerance of ‘Dawei’Hazelnuts by Positively Regulating Proline Synthesis[J]. Forests, 2024, 15(3): 407. (IF 2.9)