数字农科院2.0

Genetics of biochemical attributes regulating morpho-physiology of upland cotton under high temperature conditions

文献类型: 外文期刊

作者: Majeed S.;Chaudhary M.T.;Mubarik M.S.;Rana I.A.;Shaban M.;Tan D.K.;Jia Y.;Du X.;Hinze L.;Azhar M.T.

作者机构:

关键词: Accessions;Biochemical;Breeding;Cotton;Generation mean analysis;Heat stress

期刊名称: Journal of Cotton Research

ISSN: 2096-5044

年卷期: 2024 年 7 卷 1 期

页码:

收录情况: 农林核心(2020版)

摘要: Background: Cotton is a strategically important fibre crop for global textile industry. It profoundly impacts several countries' industrial and agricultural sectors. Sustainable cotton production is continuously threatened by the unpredictable changes in climate, specifically high temperatures. Breeding heat-tolerant, high-yielding cotton cultivars with wide adaptability to be grown in the regions with rising temperatures is one of the primary objectives of modern cotton breeding programmes. Therefore, the main objective of the current study is to figure out the effective breeding approach to imparting heat tolerance as well as the judicious utilization of commercially significant and stress-tolerant attributes in cotton breeding. Initially, the two most notable heat-susceptible (FH-115 and NIAB Kiran) and tolerant (IUB-13 and GH-Mubarak) cotton cultivars were spotted to develop filial and backcross populations to accomplish the preceding study objectives. The heat tolerant cultivars were screened on the basis of various morphological (seed cotton yield per plant, ginning turnout percentage), physiological (pollen viability, cell membrane thermostability) and biochemical (peroxidase activity, proline content, hydrogen peroxide content) parameters. Results: The results clearly exhibited that heat stress consequently had a detrimental impact on every studied plant trait, as revealed by the ability of crossing and their backcross populations to tolerate high temperatures. However, when considering overall yield, biochemical, and physiological traits, the IUB-13 × FH-115 cross went over particularly well at both normal and high temperature conditions. Moreover, overall seed cotton yield per plant exhibited a positive correlation with both pollen viability and antioxidant levels (POD activity and proline content). Conclusions: Selection from segregation population and criteria involving pollen viability and antioxidant levels concluded to be an effective strategy for the screening of heat-tolerant cotton germplasms. Therefore, understanding acquired from this study can assist breeders identifying traits that should be prioritized in order to develop climate resilient cotton cultivars. © 2024, The Author(s).

分类号:

  • 相关文献

[1]An overview of heat stress in Chickpea (Cicer arietinum L.): effects, mechanisms and diverse molecular breeding approaches for enhancing resilience and productivity. Naveed, Mahak,Aslam, Mariyah,Ahmed, Syed Riaz,Tan, Daniel K. Y.,De Mastro, Francesco,Tariq, Muhammad Sayyam,Sakhawat, Ammara,Asad, Muhammad Azeem,Liu, Yongming. 2025

[2]PlantcellwallpolysaccharidesdeconstructionbyCaldicellulosiruptorbescii. 苏小运. 2015

[3]Cloning and Expression of the Chloroplast Copper/Zinc-Superoxide Dismutase Gene in Upland Cotton (Gossypium hirsutum L.). Yu Shuxun,Fan Shuli,Song Meizhen. 2007

[4]2015年全国棉花种植品种监测报告——播种品种(系)344个;数量减少83个;减幅19.4%. 毛树春,冯璐,芦建华. 2016

[5]2015年中国与美国棉花种植品种比较. 冯璐,毛树春. 2016

[6]兰州百合病毒病原的DAS-ELISA检测. 王发林,古勤生,刘芬,彭斌,刘丽锋. 2003

[7]Development and identification of molecular markers of GhHSP70-26 related to heat tolerance in cotton. Yaping Guo,Qin Chen,Yanying Qu,Xiaojuan Deng,Kai Zheng,Ning Wang,Jianbin Shi,Yinbin Zhang,Quanjia Chen,Gentu Yan. 2023

[8]Temperature impacts on cotton yield superposed by effects on plant growth and verticillium wilt infection in China. Tianyi Zhang,Zongming Xie,Jinglong Zhou,Hongjie Feng,Tao Zhang. 2024

[9]Effects of High Temperatures on Pollen Germination and Physio-Morphological Traits in Upland Cotton (Gossypium hirsutum L.). Washu Dev,Fahmida Sultana,Shoupu He,Daowu Hu,Xiaoli Geng,Xiongming Du,Babar Iqbal. 2025

[10]Impact of elevated temperatures on the genetic and morpho-physiological traits of cotton genotypes cultivation. Abro, Aamir Ali,Qasim, Muhammad,Younas, Muhammad Usama,Ali, Ijaz,Abbas, Mubashir,Muhammad, Noor,Khalid, Shiguftah,Ahmed, Junaid,Bibi, Umbreen,Waqas, Muhammad,Ercisli, Sezai,Al-Asmari, Fahad,Ahmed, Temoor,Iqbal, Rashid,Liu, Fang. 2024

[11]Cotton under heat stress: a comprehensive review of molecular breeding, genomics, and multi-omics strategies. Tahira Luqman,Manzoor Hussain,Syed Riaz Ahmed,Iram Ijaz,Zahra Maryum,Sahar Nadeem,Zafran Khan,Sana Muhy Ud Din Khan,Mohammad Aslam,Yongming Liu,Muhammad Kashif Riaz Khan. 2025

[12]早熟西瓜新品种锦辉的选育. 谭慧明,杜晓莉,孙德玺,焦书升. 2009

[13]蔬菜育种的基因组学. 黄三文. 2012

[14]DissectingthemaizedirectandindirectdefenseresponseagainstAsianCornBorer. 汪海,李圣彦,查象敏,朱莉,黄大昉,郎志宏. 2015

[15]GeneticAnalysisofNotchedGraininRice水稻腹缺米的遗传分析. 熊振民,闵绍楷,孔繁林,朱旭东. 1986

[16]中国农业的植物突变育种与同位素示踪应用(英文). 梁劬. 1993

[17]The Biochemical And Metabolic Profiles Of Dairy Cows With Mycotoxins-Contaminated Diets. Wang, Q, Zhang, YD, Zheng, N, Zhao, SG, Li, SL, Wang, JQ. 2020

[18]Seed tocopherol assessment and geographical distribution of 1151 Chinese soybean accessions from diverse ecoregions. Ghosh S.,Zhang S.,Azam M.,Qi J.,Abdelghany A.M.,Shaibu A.S.,Gebregziabher B.S.,Feng Y.,Huai Y.,Htway H.T.P.,Agyenim-Boateng K.G.,Liu Y.,Feng H.,Li J.,Song W.,Li B.,Sun J.. 2021

[19]Natural Variation of Seed Tocopherol Composition in Diverse World Soybean Accessions from Maturity Group 0 to VI Grown in China. Suprio Ghosh,Shengrui Zhang,Muhammad Azam,Berhane S. Gebregziabher,Ahmed M. Abdelghany,Abdulwahab S. Shaibu,Jie Qi,Yue Feng,Kwadwo Gyapong Agyenim-Boateng,Yitian Liu,Huoyi Feng,Yecheng Li,Jing Li,Bin Li,Junming Sun. 2022

[20]NPR1-dependent salicylic acid signaling is not involved in elevated CO2-induced heat stress tolerance in Arabidopsis thaliana. Li, Xin,Ahammed, Golam Jalal,Li, Xin,Yu, Jingquan,Shi, Kai. 2015

作者其他论文 更多>>