数字农科院2.0

Genetic Control of Photosynthesis in Sugarcane During Successive Ratoon Cycles

文献类型: 外文期刊

作者: Zhang, Chi;Wei, Yibin;Xu, Yuzhi;Khan, Abdullah;Jiang, Chunxiu;Li, Huojian;Chen, Jun;Wu, Yuling;Yang, Zuli;Chen, Jiafu;Liang, Fangmei;Xu, Jianlong;Zhang, Muqing;Bao, Yixue

作者机构:

关键词: sugarcane;photosynthetic traits;photosystem II;sugarcane quality

期刊名称: BIOLOGY-BASEL

ISSN:

年卷期: 2025 年 15 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: This study analyzed the photosynthetic traits of 74 sugarcane genotypes using PAM-2500 and SPAD instruments over three years. Our findings revealed significant variations in photosynthetic characteristics among different genotypes and ratoon years, highlighting the complex interplay between genotype and ratoon age. Notably, the heritability of these traits ranged from 0.70 to 0.86, indicating a strong genetic influence. Through principal component analysis, we identified three critical aspects of photosynthesis: efficiency and light utilization, electron transfer and reaction center status, and chlorophyll content, which collectively accounted for 99.9% of the observed variance. The germplasms were categorized into three efficiency groups-high, moderate, and low-based on their photosynthetic performance. Among these, 45 genotypes were classified as High Photosynthetic Efficiency (HPE), 19 as Moderate Photosynthetic Efficiency (MPE), and 10 as Low Photosynthetic Efficiency (LPE). Importantly, germplasms with high photosynthetic efficiency correlated with increased stalk weight and sucrose content, suggesting potential targets for breeding programs. These findings establish a quantitative framework linking photosynthetic performance with agronomic outputs, providing breeders with measurable selection criteria for developing next-generation sugarcane cultivars optimized for both biomass and sucrose production.

分类号:

  • 相关文献

[1]Increased grain yield with improved photosynthetic characters in modern maize parental lines. Li Cong-feng,Tao Zhi-qiang,Zhao Ming,Liu Peng,Zhang Ji-wang,Dong Shu-ting,Zhuang Ke-zhang. 2015

[2]Variations in phenological, physiological, plant architectural and yield-related traits, their associations with grain yield and genetic basis. Li, Yibo,Tao, Fulu,Hao, Yuanfeng,Tong, Jingyang,Xiao, Yonggui,He, Zhonghu,Reynolds, Matthew. 2023

[3]Traits and the associated loci in wheat favoring extreme high temperature tolerance. Yibo Li,Fulu Tao,Yuanfeng Hao,Jingyang Tong,Yonggui Xiao,Zhonghu He,Matthew Reynolds. 2023

[4]Identifying High-Yielding and Drought-Tolerant Wheat Cultivars Based on Ideotypic Traits and Yield Responses to Stress. Yibo Li,Fulu Tao,Yuanfeng Hao,Yonggui Xiao,Zhonghu He,Matthew Reynolds. 2024

[5]Photosynthetic traits, water use and the yield of maize are influenced by soil water stability. Ge Li,Huaiyu Long,Renlian Zhang,Aiguo Xu,Li Niu. 2024

[6]Leaf hydraulic decline coordinates stomatal and photosynthetic limitations through anatomical adjustments under drought stress in cotton. Li, Xiuli,Wang, Shuo,Zhu, Lingxiao,Zhang, Peng,Qi, Hong,Zhang, Ke,Sun, Hongchun,Zhang, Yongjiang,Lei, Xiaopeng,Li, Anchang,Wang, Zhanbiao,Li, Cundong,Liu, Liantao. 2025

[7]A New Light On Photosystem I.i Maintenance In Oxygenic P hotosynthesis. Liu, Jun,Lu, Yan,Hua, Wei,Last, Robert L.,Last, Robert L.,Liu, Jun. 2019

[8]Characterization of a common wheat (Triticum aestivum L.) TaSnRK2.7 gene involved in abiotic stress responses. Zhang, Hongying,Mao, Xinguo,Jing, Ruilian,Chang, Xiaoping,Zhang, Hongying,Xie, Huimin.

[9]Physiological and biochemical characterization of sheepgrass (Leymus chinensis) reveals insights into photosynthetic apparatus coping with low-phosphate stress conditions. Li, Lingyu,Yang, Haomeng,Liu, Bei,Cheng, Dongmei,Peng, Lianwei,Huang, Fang,Li, Lingyu,Liu, Bei,Cheng, Dongmei,Ren, Weibo,Wu, Xinhong,Gong, Jirui.

[10]Assembly Of Cdte Quantum Dots A.nd Photosystem Ii Multilayer F ilms With Enhanced Photocurrent. Cai, P, Jia, Y, Feng, XY, Li, J, Li, JB. 2017

[11]Ser/Thr Protein Kinase SpkI Affects Photosynthetic Efficiency in Synechocystis sp. PCC 6803 upon Salt Stress. Wang, Xiaoting,Ge, Haitao,Zhang, Ye,Wang, Yingchun,Zhang, Pengpeng. 2022

[12]A New Light On Photosystem II Maintenance In Oxygenic Photosynthesis. Liu, J, Lu, Y, Hua, W, Last, RL. 2019

[13]Psb28 protein is indispensable for stable accumulation of PSII core complexes in Arabidopsis. Zhao, Yuwei,Deng, Linbin,Last, Robert L.,Hua, Wei,Liu, Jun. 2024

[14]Phytohormonal regulation of photosynthesis in response to light stress. Zarbakhsh, Saeedeh,Aliniaeifard, Sasan,Azizi, Sahar,Zhang, Yuqi,Gruda, Nazim S.. 2025

[15]Preparation And Application Of Monoclonal A.ntibody To Sugarcane (Saccharum L . Spp. Hybrids) Sop5Cs Protein. Li, Y. R.,Wang, L. R.,Yang, L. T.,Xing, Y. X.,Huang, X.,Li, Y. R.,Huang, X.,Li, Y. R.,Li, J.,Huang, X.. 2019

[16]Establishing A Forecast Mathematical Model O.f Sugarcane Yield And B rix Reduction Based On The Extent Of Pokkah Boeng Disease. Zhang, Ge-min,Wang, Ze-ping,Lin, Shan-hai,He, Tie-guang,Li, Yi-jie,Wang, Ze-ping,Deng, Yu-chi,Zhang, Ge-min,Deng, Yu-chi,Wang, Ze-ping,Wang, Ze-ping,Liu, Lu,Lin, Shan-hai,Liu, Lu,Li, Yi-jie. 2017

[17]Comparative Transcriptome Profiling Of Resistant A.nd Susceptible Sugarcane Genotypes I n Response To The Airborne Pathogen Fusarium Verticillioides. Liang, Qiang,Li, Yijie,Li, Changning,Gao, Yijing,Lei, Jingchao,Song, Xiupeng,Wang, Zeping. 2019

[18]Isolation, Transformation And Overexpression Of S.ugarcane Sop5Cs Gene For D rought Tolerance Improvement. Li, Yang-Rui,Li, Jian,Yang, Li-Tao,Thi-Thu Phan,Xing, Yong-Xiu. 2018

[19]Atp-Citrate Lyase Gene (Soacla-1), A N.ovel Acla Gene In S ugarcane, And Its Overexpression Enhance Drought Tolerance Of Transgenic Tobacco. Thi-Thu Phan,Sun, Bo,Yang, Li-Tao,Zhao, Wen-Hui,Yang, Li-Tao,Li, Jian,Huang, Chan,Li, Yang-Rui,Liu, Jia-Yi,Li, Yang-Rui. 2017

[20]Effects Of Cold Stress On R.oot Growth And Physiological M etabolisms In Seedlings Of Different Sugarcane Varieties. Sun, Bo,Xing, Yong-Xiu,Yang, Li-Tao,Li, Yang-Rui,Liu, Guang-Ling,Phan, Thi Thu. 2017

作者其他论文 更多>>