数字农科院2.0

Cold Stress Resistance of Tomato (Solanum lycopersicum) Seedlings Is Enhanced by Light Supplementation From Underneath the Canopy

文献类型: 外文期刊

作者: Tao Lu;Yangfan Song;Hongjun Yu;Qiang Li;Jingcheng Xu;Yong Qin;Guanhua Zhang;Yuhong Liu;Weijie Jiang

作者机构:

关键词: abiotic stress;antioxidant enzyme;light responsiveness;photosynthetic efficiency;stomatal traits

期刊名称: Frontiers in Plant Science

ISSN: 1664-462X

年卷期: 2022 年 13 卷

页码:

收录情况: SCIE(2022版)

摘要: Adverse environmental conditions, such as low temperature (LT), greatly limit the growth and production of tomato. Recently, light-emitting diodes (LEDs) with specific spectra have been increasingly used in horticultural production facilities. The chosen spectrum can affect plant growth, development, and resistance, but the physiological regulatory mechanisms are largely unknown. In this study, we investigated the effects of LED light supplementation (W:B = 2:1, light intensity of 100 μmol⋅m–2⋅s–1, for 4 h/day from 9:00 to 13:00) from above and below the canopy on tomato resistance under sub-LT stress (15/8°C). The results showed that supplemental lighting from underneath the canopy (USL) promoted the growth of tomato seedlings, as the plant height, stem diameter, root activity, and plant biomass were significantly higher than those under LT. The activity of the photochemical reaction center was enhanced because of the increase in the maximal photochemical efficiency (Fv/Fm) and photochemical quenching (qP), which distributed more photosynthetic energy to the photochemical reactions and promoted photosynthetic performance [the maximum net photosynthetic rate (Pmax) was improved]. USL also advanced the degree of stomatal opening, thus facilitating carbon assimilation under LT. Additionally, the relative conductivity (RC) and malondialdehyde (MDA) content were decreased, while the soluble protein content and superoxide dismutase (SOD) activity were increased with the application of USL under LT, thereby causing a reduction in membrane lipid peroxidation and alleviation of stress damage. These results suggest that light supplementation from underneath the canopy improves the cold resistance of tomato seedlings mainly by alleviating the degree of photoinhibition on photosystems, improving the activity of the photochemical reaction center, and enhancing the activities of antioxidant enzymes, thereby promoting the growth and stress resistance of tomato plants.

分类号:

  • 相关文献

[1]Comparison of drought resistance of rootstocks 'M9-T337' and 'M26' grafted with 'Huashuo' apple. Shi, Cai-Yun,Liu, Li,Li, Qiu-Li,Wei, Zhi-Feng,Gao, Deng-Tao. 2022

[2]Systematic analysis of the G-box Factor 14-3-3 gene family and functional characterization of GF14a in Brachypodium distachyon. Yang, Li,Li, Jinzhu,Yin, Mingzhu,Wang, Qingfeng,Yang, Li,Li, Jinzhu,Yin, Mingzhu,You, Jun,Wang, Yanping,Chan, Zhulong,Quan, Wenli,Chan, Zhulong.

[3]Biochemical Genetics of Short-Season Cotton Cultivars that Express Early Maturity Without Senescence. Shuxun Yu,Meizhen Song,Shuli Fan,Wu Wang,Rihong Yuan. 2005

[4]Effect of Low Light on the Characteristics of Photosynthesis and Chlorophyll a Fluorescence During Leaf Development of Sweet Pepper. Mao Sheng-li,Wang Li-hao,Zhang Bao-xi,Sui Xiao-lei,Zhang Zhen-xian. 2012

[5]Quantitative Trait Loci Mapping of Dark-Induced Senescence in Winter Wheat (Triticum aestivum). Li, Hongwei,Lin, Fanyun,Wang, Gui,Zheng, Qi,Li, Bin,Li, Zhensheng,Jing, Ruffian. 2012

[6]Characterization and fine mapping of the rice gene OsARVL4 regulating leaf morphology and leaf vein development. Wang, Li,Xu, Jing,Nian, Jinqiang,Shen, Nianwei,Lai, Kaikai,Hu, Jiang,Zeng, Dali,Ge, Changwei,Fang, Yunxia,Zhu, Li,Qian, Qian,Zhang, Guangheng,Lai, Kaikai,Ge, Changwei,Xu, Jing.

[7]Decreasing photosystem antenna size by inhibiting chlorophyll synthesis: A double-edged sword for photosynthetic efficiency. Linxiong Mao,Qingfeng Song,Ming Li,Xinyu Liu,Zai Shi,Faming Chen,Gen yun Chen,Huiqiong Zheng,Xin Guang Zhu. 2023

[8]Photosynthesis Mediated by RBOH-Dependent Signaling Is Essential for Cold Stress Memory. Di, Qinghua,Li, Yansu,Li, Shuzhen,Shi, Aokun,Zhou, Mengdi,Ren, Huazhong,Yan, Yan,He, Chaoxing,Wang, Jun,Sun, Mintao,Yu, Xianchang. 2022

[9]Silencing the novel gene CsARR-9 increases photosynthetic efficiency and alleviates autotoxicity in cucumber. Ruifang Bu,Qiang Long,Haiyan Hu、王磊、Haoran Zhang,Haili Sun,Puwen Song,Yongang Yu,Qili Liu,Feng Zhou,Chengwei Li. 2023

[10]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

[11]Synergistic Effects of Combined Foliar Fertilizers on Growth, Stress Tolerance, and Yield of High-quality Japonica Rice. Song, Yunsheng,Dong, Minghui,Gu, Junrong,Jin, Xiuliang,Hu, Yajie,Chen, Fei,Qiao, Zhongying,Zhang, Tianzhi. 2025

[12]Effect of blue light treatment on fruit quality, antioxidant enzymes and radical-scavenging activity in strawberry fruit. Xu, Feng,Shi, Liyu,Chen, Wei,Yang, Zhenfeng,Cao, Shifeng,Su, Xinguo.

[13]gamma-Aminobutyric acid treatment reduces chilling injury and activates the defence response of peach fruit. Cai, Yuting,Zheng, Yonghua,Yang, Aiping,Cao, Shifeng,Yang, Zhenfeng. 2011

[14]Effects of nitric oxide on some physiological characteristics of maize seedlings under waterlogging. Wang, Ben,Li, Cuihua,Zhu, Yong,Tian, Xiaohai,Zou, Huawen,Liu, Hongfang,Ma, Guohui. 2011

[15]Responses of Detoxifying, Antioxidant and Digestive Enzyme Activities to Host Shift of Bemisia tabaci (Hemiptera: Aleyrodidae). Chen Long-jia,Zhang Zong-lei,Ma Wei-hua,Deng Pan,Lin Ke-jian. 2013

[16]Molecular characterization of a phospholipid-hydroperoxide glutathione peroxidase from the bumblebee Bombus ignitus. Hu, Zhigang,Lee, Kwang Sik,Choo, Young Moo,Sohn, Hung Dae,Jin, Byung Rae,Yoon, Hyung Joo,Kim, Iksoo,Wei, Ya Dong,Gui, Zhong Zheng,Zhang, Guo Zheng.

[17]Antioxidant Activity of Tartary Buckwheat Bran Extract and Its Effect on the Lipid Profile of Hyperlipidemic Rats. Wei, Yi-Min,Wang, Min,Liu, Jia-Ren,Gao, Jin-Ming,Parry, John W..

[18]Identification and functional study of a novel 2-cys peroxiredoxin (BmTPx-1) of Babesia microti. Zhang, Houshuang,Wang, Zhonghua,Gong, Haiyan,Cao, Jie,Zhou, Yongzhi,Zhou, Jinlin,Zhou, Jinlin.

[19]Mycorrhizal efficacy of trifoliate orange seedlings on alleviating temperature stress. Wu, Q. S.,Wu, Q. S.. 2011

[20]Enhanced photosynthetic capacity and antioxidant potential mediate brassinosteriod-induced phenanthrene stress tolerance in tomato. Ahammed, Golam Jalal,Li, Xin,Xia, Xiao-Jian,Shi, Kai,Zhou, Yan-Hong,Yu, Jing-Quan,Li, Xin,Yu, Jing-Quan.

作者其他论文 更多>>