宿根附录与来源 · RT-references
参考文献与资料核对范围
检索与核对截至2026年9月27日。原始论文、研究机构试验报告和官方技术资料分别注明;摘要级资料不冒充全文核对。本文为定向证据综述,未登记系统综述方案,未声称穷尽全球全部研究。
[1] Sugar Research Australia. The Sugarcane Advisors Information Kit. Technical publication MN13001, 2013,印刷页8及相关器官学内容。官方技术资料;本篇只概述结构,不转载其受限图片。
https://sugarresearch.com.au/wp-content/uploads/2017/09/Sugarcane-Advisor-Information-Kit-FINAL.pdf
[2] Yang S-l, Zhang Y-b, Deng J, et al. Effect of cutting depth during sugarcane (Saccharum spp. hybrid) harvest on root characteristics and yield. PLOS ONE, 2021, 16(1): e0238085。已核对全文、表1、设计及数据口径。
https://doi.org/10.1371/journal.pone.0238085
[3] Yang S-l, Zhang Y-b, Deng J, et al. Correction: Effect of cutting depth during sugarcane harvest on root characteristics and yield. PLOS ONE, 2021, 16(3): e0248527。已核对图6图例和根体积单位更正。
https://doi.org/10.1371/journal.pone.0248527
[4] Zheng J, Huang X, Wei Y, Li W, Chen B, Li W. Identification of functional pathways and hub genes associated with the heterochronic development of sugarcane axillary buds and sett roots through multi-omics analysis. Frontiers in Plant Science, 2025, 16:1551783。核对全文及图1、图4;离体种段研究。
https://doi.org/10.3389/fpls.2025.1551783
[5] Verma AK, Agarwal AK, Dubey RS, Solomon S, Singh SB. Sugar partitioning in sprouting lateral bud and shoot development of sugarcane. Plant Physiology and Biochemistry, 2013, 62:111–115。核对PubMed原始摘要;未取得全文数据表。
https://doi.org/10.1016/j.plaphy.2012.10.021
[6] Zhao L, Ran M, Zhang J, et al. Comparative Analysis of Ratoon-Competent and Ratoon-Deficient Sugarcane by Hormonal and Transcriptome Profiling. Agronomy, 2025, 15(7):1669。核对出版方PDF;温室幼龄植株截茎研究。
https://doi.org/10.3390/agronomy15071669
[7] Li Y, Yang T, Yang Z, et al. Analysis of Axillary Bud Germination Regulatory Network in Sugarcane Based on Transcriptome and Weighted Gene Co-Expression Network Analysis. Plants, 2026, 15(8):1200。核对开放全文方法及结果;离体芽发育研究。
https://doi.org/10.3390/plants15081200
[8] Bell MJ, Halpin NV, Cunningham G, Garside A, Kingston G. Effects of wet soil during early season ratoon establishment on sugarcane grown under different trash management systems in southern canelands. Proceedings of ASSCT, 1999, 21:139–148。核对昆士兰农业部门原始研究存档摘要。
https://era.dpi.qld.gov.au/id/eprint/12159/
[9] Pierre JS, Perroux JM, Rae AL. Screening for Sugarcane Root Phenes Reveals That Reducing Tillering Does Not Lead to an Increased Root Mass Fraction. Frontiers in Plant Science, 2019, 10:119。核对原始研究目的、材料和结果;温室研究。
https://doi.org/10.3389/fpls.2019.00119
[10] JIRCAS and NARO. Harunoogi, a high ratoon yield sugarcane cultivar developed by interspecific hybridization between sugarcane and Saccharum spontaneum. Research Results 2019。核对研究机构表1、试验地点、年份和统计说明。
https://www.jircas.go.jp/en/publication/research_results/2019_b06
[11] Rott P, Sood S, Comstock JC, Gilbert RA, Sandhu HS. Sugarcane Ratoon Stunting. University of Florida IFAS Extension, SC002。核对官方诊断与种源卫生资料;本篇不引用防治药量。
https://ask.ifas.ufl.edu/publication/SC002
[12] Shukla SK, Yadav RL, Singh PN, Singh I. Potassium nutrition for improving stubble bud sprouting, dry matter partitioning, nutrient uptake and winter initiated sugarcane ratoon yield. European Journal of Agronomy, 2009, 30(1):27–33。核对出版方索引摘要及AGRIS原始摘要;完整试验表未取得。
https://doi.org/10.1016/j.eja.2008.06.005
[13] Aguilera Esteban DA, de Souza ZM, Tormena CA, et al. Soil compaction, root system and productivity of sugarcane under different row spacing and controlled traffic at harvest. Soil and Tillage Research, 2019, 187:60–71。核对FAPESP研究记录所载原始摘要,未重建未报告方差。
[14] de Paula VR, Molin JP. Assessing Damage Caused by Accidental Vehicle Traffic on Sugarcane Ratoon. Applied Engineering in Agriculture, 2013, 29(2):161–169。核对ASABE出版方摘要;保留土质差异与非显著结果。
https://doi.org/10.13031/2013.42642
[15] Sugar Research Australia. Diseases of Australian Sugarcane Field Guide. 2026。核对官方114页PDF及版权页;作为地区诊断资料,不转载其受限照片。
[16] Sugar Research Australia. Pests of Australian Sugarcane Field Guide. 2019。核对官方100页PDF及版权页;地区害虫鉴别资料,不转载受限照片。
[17] Viator RP, Johnson RM, Boykin DL, Richard EP. Sugarcane Postharvest Residue Management in a Temperate Climate. Crop Science, 2009, 49(3):1023–1028。核对USDA ARS原始研究摘要及汇总产糖数据。
https://www.ars.usda.gov/research/publications/publication/?seqNo115=220288
[18] McNeil MD, Bhuiyan SA, Berkman PJ, Croft BJ, Aitken KS. Analysis of the resistance mechanisms in sugarcane during Sporisorium scitamineum infection using RNA-seq and microscopy. PLOS ONE, 2018, 13(6):e0197840。核对开放全文、人工接种表、图1及许可。
https://doi.org/10.1371/journal.pone.0197840
[19] Tippayawat A, Jogloy S, Vorasoot N, et al. Timing and Duration of Drought Differentially Affect Growth and Yield Components Among Sugarcane Genotypes. Plants, 2025, 14(5):796。核对开放全文、水量与表4;未采用单位表述有疑点的其他表项。
https://doi.org/10.3390/plants14050796
[20] Khontiang K, Ketrot D, Tawornpruek S, Wongleecharoen C, Inboonchuay T, Wongsuksri A. Influence of foliar and soil potassium fertilizer on ratoon sugarcane performance: yield, quality, and nutrient uptake. Frontiers in Soil Science, 2025。核对出版方全文、设计及表3和表4。
https://doi.org/10.3389/fsoil.2025.1502972
[21] Dlamini NE, Franke AC, Zhou M. Impact of soil type and harvest season on the ratooning ability of sugarcane varieties. Experimental Agriculture, 2024, 60:e15。核对出版方全文;商业生产数据观察分析。
https://doi.org/10.1017/S0014479724000127
[22] Olivier FC, Singels A. The effect of crop residue layers on evapotranspiration, growth and yield of irrigated sugarcane. Water SA, 2012, 38(1)。核对期刊全文、蒸渗仪设计与结果;重复限制单列。
https://www.scielo.org.za/scielo.php?pid=S1816-79502012000100010&script=sci_arttext
[23] JIRCAS. Sugarcane white leaf disease management manual相关发布资料,2021年3月29日。核对研究机构关于泰国健康种苗、检测与繁育体系的报告;不作为防治增产试验。
https://www.jircas.go.jp/en/reports/2020/r20210329
[24] South African Sugarcane Research Institute. Eldana Manual Updated. 2020。核对官方技术发布说明;地区性综合管理资料。
https://sasri.org.za/eldana-manual-updated/
[25] Dinardo-Miranda LL, Pivetta JP, Fracasso JV. Economic injury level for sugarcane caused by the spittlebug Mahanarva fimbriolata (Stål) (Hemiptera: Cercopidae). Scientia Agricola, 2008。核对期刊原始研究页面、两试验设计和历史经济损害水平;不转用历史药量。
https://www.scielo.br/j/sa/a/mqMtJ3dFMYPDDfbqRP9WPBp/?lang=en
[26] Sugar Research Australia. Viruses to aid biological control of major root-feeding pests of sugarcane. 官方研究项目资料,访问日期2026年9月27日。用于说明研发状态,不作为已验证商业防效。