数字农科院2.0

High-throughput phenotyping discovers new stable loci controlling senescence rate in bread wheat

文献类型: 外文期刊

作者: Li, Lei;Liu, Jindong;Hassan, Muhammad Adeel;Wang, Duoxia;Wang, Keyi;Fei, Shuaipeng;Zeng, Jianqi;Rasheed, Awais;Xia, Xianchun;He, Zhonghu;He, Yong;Zhang, Yong;Xiao, Yonggui

作者机构:

关键词: Aerial digital imaging;Active accumulated temperature;Chlorophyll;QTL;Senescence rate;Common wheat

期刊名称: CROP JOURNAL

ISSN: 2095-5421

年卷期: 2025 年 13 卷 4 期

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版) ; ; 农林核心(2024版)

摘要: Non-destructive time-series assessment of chlorophyll content in flag-leaf (FLC) accurately mimics the senescence rate and the identification of genetic loci associated with senescence provides valuable knowledge to improve yield stability under stressed environments. In this study, we employed both unmanned aerial vehicles (UAVs) equipped with red-green-blue (RGB) camera and ground-based SPAD-502 instrument to conduct temporal phenotyping of senescence. A total of 262 recombinant inbred lines derived from the cross of Zhongmai 578/ Jimai 22 were evaluated for senescence-related traits across three environments, spanning from heading to 35 d post-anthesis. The manual senescence rate (MSR) was quantified using the FLC and the active accumulated temperature, and UAV derived vegetation index were utilized to assess the stay-green rate (USG) facilitating the identification of senescent and stay-green lines. Results indicated that higher senescence rates significantly impacted grain yield, primarily by influencing thousand-kernel weight, and plant height. Quantitative trait loci (QTL) mapping for FLC, USG, and MSR using the 50K SNP array identified 38 stable loci associated with RGB-based vegetation indices and senescence-related traits: among which 19 loci related to senescence traits from UAV and FLC were consistently detected across at least two growth stages, with nine loci likely representing novel QTL. This study highlights the potential of UAV-based high-throughput phenotyping and phenology in identifying critical loci associated with senescence rates in wheat, validating the relationship between senescence rates and yield-related traits in wheat, offering valuable opportunities for gene discovery and significant applications in breeding programs. (c) 2025 Crop Science Society of China and Institute of Crop Science, CAAS. Production and hosting by Elsevier B.V. on behalf of KeAi Communications Co., Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

分类号:

  • 相关文献

[1]Quantitative trait loci mapping of adult-plant resistance to powdery mildew in Chinese wheat cultivar Lumai 21. Caixia Lan,Xiaowen Ni,Jun Yan,Yong Zhang,Xianchun Xia,Xinmin Chen,Zhonghu He.

[2]Genetic analysis of salt tolerance in a recombinant inbred population of wheat (Triticum aestivum L.). Ma, Liqing,Zhou, Erfeng,Huo, Naxing,Zhou, Ronghua,Wang, Guoying,Jia, Jizeng. 2007

[3]Agronomic Trait Analysis and Genetic Mapping of a New Wheat Semidwarf Gene Rht-SN33d. Chaojie Wang,Lili Zhang,Yongdun Xie,Ahsan Irshad,Huijun Guo,Jiayu Gu,Linshu Zhao,Hongchun Xiong,Shirong Zhao,Chengshe Wang,Luxiang Liu. 2023

[4]Mapping and identification of QTLs for low light tolerance traits in grapevine. Xiaohao Ji,Meng Shi,Fengzhi Liu,Xiaodi Wang,Zhiqiang Wang,Haibo Wang. 2025

[5]Influencesof5-aminolevulinicacidonthegrowthandphysiologicalpropertiesofwinteroilseedrape(Brassicanapus)responsestocold. 张树杰,李玲,张春雷,李光明,肖生元. 2010

[6]小麦一十倍体长穗偃麦草广谱抗锈易位系的鉴定及分析. 郝薇薇,汤才国,李葆春,郝晨阳,张学勇. 2012

[7]QTL mapping of adult-plant resistance to stripe rust in a "Lumai 21xJingshuang 16' wheat population. He, Zhong H.,Xia, Xian C.,Ren, Yan,Liu, Li S.,He, Zhong H.,Wu, Ling,Bai, Bin.

[8]Determination of phenolic acid concentrations in wheat flours produced at different extraction rates. Wang, Lan,Yao, Yang,He, Zhonghu,Wang, Desen,Zhang, Yong,He, Zhonghu,Liu, Aihua. 2013

[9]An R2R3 MYB transcription factor in wheat, TaPIMP1, mediates host resistance to Bipolaris sorokiniana and drought stresses through regulation of defense- and stress-related genes. Liu, Xin,Wang, Xindong,Zhou, Xianyao,Ye, Xingguo,Wei, Xuening,Zhou, Miaoping. 2012

[10]Genetic diversity trend of common wheat (Triticum aestivum L.) in China revealed with AFLP markers. Tian, QZ,Zhou, RH,Jia, JZ. 2005

[11]Allelic variants of phytoene synthase 1 (Psy1) genes in Chinese and CIMMYT wheat cultivars and development of functional markers for flour colour. He, X. Y.,He, Z. H.,Xia, X. C.,He, Z. H.,Ma, W.,Appels, R.. 2009

[12]Variation in two PPO genes associated with polyphenol oxidase activity in seeds of common wheat. Chang, Cheng,Zhang, Hai-Ping,Xu, Jie,You, Ming-Shan,Li, Bao-Yun,Liu, Guang-Tian. 2007

[13]Cytological and molecular analysis of wheat - Agropyron cristatum translocation lines with 6P chromosome fragments conferring superior agronomic traits in common wheat. Song, Liqiang,Lu, Yuqing,Zhang, Jinpeng,Pan, Cuili,Yang, Xinming,Li, Xiuquan,Liu, Weihua,Li, Lihui.

[14]Allelic variation at the Glu-1 and Glu-3 loci, presence of the 1B.1R translocation, and their effects on mixographic properties in Chinese bread wheats. Liu, L,He, ZH,Yan, J,Zhang, Y,Xia, XC,Pena, RJ. 2005

[15]Genetic variation for waxy proteins and starch properties in Chinese winter wheats. He, Zhonghu,Xu, Zhaohua,Xia, Lanqin,Xia, Xianchun,Yan, Jun,Zhang, Yan,Chen, Xinmin. 2006

[16]Identification of allelic variations of puroindoline genes controlling grain hardness in wheat using a modified denaturing PAGE. Chang, Cheng,Zhang, Haiping,Xu, Jie,Li, Weihua,Liu, Guangtian,You, Mingshan,Li, Baoyun. 2006

[17]Mineral element distributions in milling fractions of Chinese wheats. Tang, Jianwei,He, Zhonghu,Zhang, Yong,Tang, Jianwei,Qu, Yanying,Zou, Chunqin,Shi, Rongli,He, Zhonghu,Ortiz-Monasterio, Ivan. 2008

[18]The wheat NB-LRR gene TaRCR1 is required for host defence response to the necrotrophic fungal pathogen Rhizoctonia cerealis. Zhu, Xiuliang,Du, Lipu,Ye, Xingguo,Liu, Xin,Zhang, Zengyan,Lu, Chungui,Coules, Anne.

[19]The adult plant rust resistance loci Lr34/Yr18 and Lr46/Yr29 are important determinants of partial resistance to powdery mildew in bread wheat line Saar. Lillemo, M.,Asalf, B.,Bjornstad, A.,Singh, R. P.,Huerta-Espino, J.,Chen, X. M.,He, Z. H..

[20]Cloning and Characterization of TaTGW-7A Gene Associated with Grain Weight in Wheat via SLAF-seq-BSA. Hu, Ming-Jian,Zhang, Hai-Ping,Liu, Kai,Cao, Jia-Jia,Wang, Sheng-Xing,Jiang, Hao,Wu, Zeng-Yun,Lu, Jie,Zhu, Xiao F.,Xia, Xian-Chun,Sun, Gen-Lou,Ma, Chuan-Xi,Chang, Cheng,Xia, Xian-Chun,Sun, Gen-Lou. 2016

作者其他论文 更多>>