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The anthocyanin formation of purple leaf is associated with the activation of LfiHY5 and LfiMYB75 in crape myrtle
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作者 Lu Feng Ping Shen +7 位作者 Xiufeng Chi Yang Zhou Jieru Liu Tangren Cheng Jia Wang Qixiang Zhang Ming Cai Huitang Pan 《Horticultural Plant Journal》 SCIE CAS CSCD 2024年第5期1230-1246,共17页
Purple-leafed plants not only have a higher resistance to biotic and abiotic stresses,but also have higher ornamental value.Anthocyanins are vital for leaf color formation,growth and development of purple leaves.Howev... Purple-leafed plants not only have a higher resistance to biotic and abiotic stresses,but also have higher ornamental value.Anthocyanins are vital for leaf color formation,growth and development of purple leaves.However,the molecular mechanism underlying purple leaf formation in Lagerstroemia indica remains unclear.Metabolomic and transcriptomic analysis of purple-leafed cultivar‘Ebony Embers’and greenleafed cultivar‘Arapahoe’showed that the high expression of anthocyanin structure genes induced hyperaccumulation of cyanidin and pelargonidin derivatives,making the leaves purple.LfiHY5,LfiMYB75 and LfibHLH1 were identified using correlation analysis and weighted gene co-expression network analysis.In‘Arapahoe’‘Ebony Embers’population,LfiHY5 and LfiMYB75 showed significant positive correlation with leaf anthocyanin content.Transient expression of LfiMYB75 and LfiHY5 in tobacco and purple-leafed crape myrtle indicated that the two genes activated anthocyanin synthesis.Yeast two-hybrid analysis showed that LfiMYB75 and LfibHLH1 could form a complex that enhanced anthocyanin synthesis.Yeast monohybrid and dual-luciferase assays confirmed that LfiHY5 activated the expression of LfiMYB75,to activate the transcription of anthocyanin structural genes LfiCHS and LfiANS.Moreover,there were three alleles of LfiHY5 in crape myrtle,and the different sequences had different activation effects on LfiMYB75.In conclusion,the results showed that LfiHY5 led to upregulate the transcription of LfiMYB75,and LfiMYB75 formed a complex with LfibHLH1,which increased the transcription level of LfiCHS and LfiANS to affect anthocyanin synthesis in crape myrtle. 展开更多
关键词 Lagerstroemia indica leaf color ANTHOCYANIN HY5 MYB BHLH
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Causes of Leaf Color and Its Application in Garden Landscaping 被引量:2
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作者 史继术 马斌 罗言云 《Journal of Landscape Research》 2010年第2期47-50,共4页
Formation of leaf color and classification of foliage trees were briefly described. The species of different leaf colors were enumerated by genus and family, suggestions for garden plant furnishing were put forward ac... Formation of leaf color and classification of foliage trees were briefly described. The species of different leaf colors were enumerated by genus and family, suggestions for garden plant furnishing were put forward according to the psychological and visual characteristics of people while they are presented with different colors of trees. 展开更多
关键词 leaf color Landscape plant Ornamental plant
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Modeling Dynamics of Leaf Color Based on RGB Value in Rice 被引量:7
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作者 ZHANG Yong-hui TANG Liang +3 位作者 LIU Xiao-jun LIU Lei-lei CAO Wei-xing ZHU Yan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第4期749-759,共11页
This paper was to develop a model for simulating the leaf color changes in rice (Oryza sativa L.) based on RGB (red, green, and blue) values. Based on rice experiment data with different cultivars and nitrogen (N... This paper was to develop a model for simulating the leaf color changes in rice (Oryza sativa L.) based on RGB (red, green, and blue) values. Based on rice experiment data with different cultivars and nitrogen (N) rates, the time-course RGB values of each leaf on main stem were collected during the growth period in rice, and a model for simulating the dynamics of leaf color in rice was then developed using quantitative modeling technology. The results showed that the RGB values of leaf color gradually decreased from the initial values (light green) to the steady values (green) during the first stage, remained the steady values (green) during the second stage, then gradually increased to the final values (from green to yellow) during the third stage. The decreasing linear functions, constant functions and increasing linear functions were used to simulate the changes in RGB values of leaf color at the first, second and third stages with growing degree days (GDD), respectively; two cultivar parameters, MatRGB (leaf color matrix) and AR (a vector composed of the ratio of the cumulative GDD of each stage during color change process of leaf n to that during leaf n drawn under adequate N status), were introduced to quantify the genetic characters in RGB values of leaf color and in durations of different stages during leaf color change, respectively; FN (N impact factor) was used to quantify the effects of N levels on RGB values of leaf color and on durations of different stages during leaf color change; linear functions were applied to simulate the changes in leaf color along the leaf midvein direction during leaf development process. Validation of the models with the independent experiment dataset exhibited that the root mean square errors (RMSE) between the observed and simulated RGB values were among 8 to 13, the relative RMSE (RRMSE) were among 8 to 10%, the mean absolute differences (da) were among 3.85 to 6.90, and the ratio of da to the mean observation values (Clap) were among 3.04 to 4.90%. In addition, the leaf color model was used to render the leaf color change over growth progress using the technology of visualization, with a good performance on predicting dynamic changes in rice leaf color. These results would provide a technical support for further developing virtual plant during rice growth and development. 展开更多
关键词 RICE leaf color RGB dynamic simulation VISUALIZATION
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Distribution of Leaf Color and Nitrogen Nutrition Diagnosis in Rice Plant 被引量:4
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作者 WANG Shao-hua, CAO Wei-xing, WANG Qiang-sheng, DING Yan-feng, HUANG Pi-sheng and LING Qi-hong(Key Laboratory of Crop Growth Regulation , Ministry of Agriculture /Nanjing Agricultural University ,Nanjing 210095 , P. R. China) 《Agricultural Sciences in China》 CAS CSCD 2002年第12期1321-1328,共8页
Greenness and nitrogen content of each leaf on main stem of different japonica and indica rice varieties under different nitrogen levels were investigated. Results showed that the fourth leaf from the top exhibited ac... Greenness and nitrogen content of each leaf on main stem of different japonica and indica rice varieties under different nitrogen levels were investigated. Results showed that the fourth leaf from the top exhibited active changes with the change of plant nitrogen status. When the plant nitrogen content was low, its color and nitrogen content were obviously lower than those of the three top leaves. With the increase of plant nitrogen content, the color and nitrogen content of the fourth leaf increased quickly, and the differences of color and nitrogen content between the fourth leaf and the three top leaves decreased. So, the fourth leaf was an ideal indication of plant nutrition status. In addition, color difference between the fourth and the third leaf from the top was highly related to the plant nitrogen content regardless of the variety and development stage. Therefore, color difference between the fourth and the third leaf could be widely used for diagnosis of plant nutrition. Results also indicated that the minimized color difference between the fourth and the third leaf at the critical effective tillering, the emergence of the second leaf from the top, and the heading was the symbol of high yield. Plant nitrogen content of 27 g kg-1 DW for japonica rice and 25 g kg-1 DW for indica were the critical nitrogen concentrations. 展开更多
关键词 RICE Nitrogen nutrition leaf color difference Nutrition diagnosis
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Physiology and Biochemistry Changes of Euphorbia pulcherrima During Leaf Color Transformation 被引量:2
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作者 WANG Lijuan,SUN Meiqing,and NIU De College of Life Sciences,Northeast Agricultural University,Harbin 150030,China 《Journal of Northeast Agricultural University(English Edition)》 CAS 2010年第2期48-54,共7页
Reasons for the color change of E.pulcherrima were studied with physiological and biochemical paraments such as: chlorophyll,carotenoids,anthocyanin,Phenylalanine ammonia-lyase (PAL),pH of cell sap in leaves and solub... Reasons for the color change of E.pulcherrima were studied with physiological and biochemical paraments such as: chlorophyll,carotenoids,anthocyanin,Phenylalanine ammonia-lyase (PAL),pH of cell sap in leaves and soluble sugar content etc.The results showed that during the period of the leaf color transmittion of E.pulcherrima,the contents of plastid pigment,soluble sugar and pH of cells sap in leaves showed a high-low-high dynamic change,while the contents of anthocyanin and PAL activity showed the low-high... 展开更多
关键词 Euphorbia pulcherrim Willd CHLOROPHYLL ANTHOCYANIN soluble sugar PAL leaf color
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Relationships between leaf color changes,pigment levels,enzyme activity,photosynthetic fluorescence characteristics and chloroplast ultrastructure of Liquidambar formosana Hance 被引量:2
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作者 Guoping Yin Yong Wang +6 位作者 Yufei Xiao Jisheng Yang Renjie Wang Ying Jiang Ronglin Huang Xiongsheng Liu Yi Jiang 《Journal of Forestry Research》 SCIE CAS CSCD 2022年第5期1559-1572,共14页
Liquidambar formosana Hance is an attractive landscape tree species because its leaves gradually change from green to red,purple or orange in autumn.In this study,the red variety of L.formosana was used to establish a... Liquidambar formosana Hance is an attractive landscape tree species because its leaves gradually change from green to red,purple or orange in autumn.In this study,the red variety of L.formosana was used to establish a quantitative model of leaf color.Physiological changes in leaf color,pigment levels,enzyme activity,photosynthetic fluorescence characteristics and chloroplast ultrastructure were monitored.The relationship between leaf color and physiological structure indices was quantitatively analyzed to systematically explore the mechanisms behind leaf color.Our data showed that with a decrease in external temperatures,chloroplast numbers and sizes gradually decreased,thylakoid membranes became distorted,and chlorophyll synthesis was blocked and gradually decreased.As a result,chloroplast membranes could not be biosynthesized normally;net photosynthesis,maximum and actual photochemical efficiency,and rate of electron transfer decreased rapidly.Excess light energy caused leaf photoinhibition.With intensification of photoinhibition,leaves protected themselves using two mechanisms.In the first,anthocyanin synthesis was promoted by increasing chalcone isomerase and flavonoid glycosyltransferase activities and soluble sugar content so as to increase anthocyanin to filter light and eliminate reactive oxygen species to reduce photoinhibition.In the second,excessive light energy was consumed in the form of heat energy by increasing the non-photochemical quenching coefficient.These processes tuned the leaves red. 展开更多
关键词 Anthocyanins leaf color parameter Enzymatic activities Chlorophyll fluorescence characteristics Liquidambar formosana
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Characterization and Candidate Gene Analysis of the Yellow-Green Leaf Mutant ygl16 in Rice(Oryza sativa L.) 被引量:1
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作者 Linjun Cai Junhua Liu +5 位作者 Han Yun Dan Du Xiaolong Zhong Zhenlin Yang Xianchun Sang Changwei Zhang 《Phyton-International Journal of Experimental Botany》 SCIE 2021年第4期1103-1117,共15页
Leaf color mutants are ideal materials for studying many plant physiological and metabolic processes such as photosynthesis,photomorphogenesis,hormone physiology and disease resistance.In this study,the genetically st... Leaf color mutants are ideal materials for studying many plant physiological and metabolic processes such as photosynthesis,photomorphogenesis,hormone physiology and disease resistance.In this study,the genetically stable yellow-green leaf mutant ygl16 was identified from mutated“Xinong 1B”.Compared with the wild type,the pigment concentration and photosynthetic capacity of the ygl16 decreased significantly.The ultrastructural observation showed that the distribution of thylakoid lamellae was irregular in ygl16 chloroplasts,and the grana and matrix lamellae were blurred and loose in varied degrees,and the chloroplast structure was disordered,while the osmiophilic corpuscles increased.The results of the genetic analysis and mapping showed that the phenotype of ygl16 was controlled by a pair of recessive nuclear gene.The gene located in the 56Kb interval between RM25654 and R3 on the long arm of chromosome 10.The sequencing results showed that the 121st base of the first intron of the candidate gene OsPORB/FGL changed from A to T in the interval.qRT-PCR results showed that the expression of chlorophyll synthase-related genes in the mutant decreased. 展开更多
关键词 RICE yellow-green leaf mutant ygl16 gene mapping candidate gene analysis
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A valine residue deletion in ZmSig2A, a sigma factor, accounts for a revertible leaf-color mutation in maize 被引量:1
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作者 Chuan Li Jingwen Wang +7 位作者 Zhaoyong Hu Yuanyan Xia Qiang Huang Tao Yu Hongyang Yi Yanli Lu Jing Wang Moju Cao 《The Crop Journal》 SCIE CSCD 2021年第6期1330-1343,共14页
A nuclear-encoded sigma(σ) factor is essential for the transcriptional regulation of plant chloroplastencoded genes. Five putative maize r factors have been identified by database searches, but their functions are un... A nuclear-encoded sigma(σ) factor is essential for the transcriptional regulation of plant chloroplastencoded genes. Five putative maize r factors have been identified by database searches, but their functions are unknown. We report a maize leaf color mutant etiolated/albino leaf 1(eal1) that was derived from space mutation breeding. The eal1 mutant displays etiolated or albino leaves that then gradually turn to normal green at the seedling stage. The changes in eal1 leaf color are associated with changes in photosynthetic pigment content and chloroplast development. Map-based cloning revealed that a single amino-acid deletion changing Val_(480)-Val_(481)-Val_(482) to Val_(480)-Val_(481), in the C-terminal domain σ_(4) of the putative σ factor ZmSig2A, is responsible for the eal1 mutation. In comparison with the expression level of the wild-type(WT) allele ZmSig2A^(+) in WT plants, much higher expression of the mutant allele ZmSig2A^(⊿V) in eal1 plants was detected before the eal1 plants turned to normal green. ZmSig2A shows the highest similarity to rice OsSig2A and Arabidopsis SIG2. Ectopic expression of ZmSig2A^(+) or ZmSig2A^(⊿V) driven by the cauliflower mosaic virus 35 S promoter rescued the pale green leaf of the sig2 mutant, but ectopic expression of ZmSig2A^(⊿V) driven by the SIG2 promoter did not. We propose that the Val deletion generated a new weak allele of ZmSig2A that cannot completely abolish the ZmSig2A function. Some genes involved in chloroplast development and photosynthesis-associated nuclear genes showed significant expression differences between eal1 and WT plants. We conclude that ZmSig2A encoding a r factor is essential for maize chloroplast development. The eal1 mutant with a weak allele of ZmSig2A represents a valuable genetic resource for investigating the regulation of ZmSig2A-mediated chloroplast development in maize.The eal1 mutation may be useful as a marker for early identification and elimination of false hybrids or transgene transmission in the application of genetic male sterility to commercial hybrid seed production. 展开更多
关键词 leaf color mutant Map-based cloning Sigma factor Chloroplast development MAIZE
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Morphological Structure and Genetic Mapping of New Leaf-Color Mutant Gene in Rice (Oryza sativa) 被引量:7
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作者 LI Yu-hong WANG Bao-he +5 位作者 DAI Zheng-yuan LI Ai-hong LIu Guang-qing Zuo Shi-min ZHANG Hong-xi PAN Xue-biao 《Rice science》 SCIE 2012年第2期79-85,共7页
Leaf-color mutations are a widely-observed class of mutations, playing an important role in the study of chlorophyll biosynthesis and plant chloroplast structure, function, genetics and development. A naturally-occurr... Leaf-color mutations are a widely-observed class of mutations, playing an important role in the study of chlorophyll biosynthesis and plant chloroplast structure, function, genetics and development. A naturally-occurring leaf-color rice mutant, Baihuaidao 7, was analyzed. Mutant plants typically exhibited a green-white-green leaf-color progression, but this phenotype was only expressed in the presence of a stress signal induced by mechanical scarification such as transplantation. Prior to the appearance of white ~eaves, mutant plant growth, leaf color, chlorophyll content, and chloroplast ultrastructure appeared to be identical to those of the wild type. After the changeover to white leaf color, an examination of the mutated leaves revealed a decrease in total chlorophyll, chlorophyll a, chlorophyll b, and carotenoid content, a reduction in the number of chloroplast grana lamella and grana, and a gradual degradation of the thylakoid lamellas. At maturity, the mutant plant was etiolated and dwarfed compared with wild-type plants. Genetic analysis indicated that the leaf mutant character is controlled by a recessive nuclear gene. Genetic mapping of the mutant gene was performed using an F2 population derived from a Baihuaidao 7 ~ Jiangxi 1587 cross. The mutant gene was mapped to rice chromosome 11, positioned between InDel markers L59.2-7 and L64.8-11, which are separated by approximately 740.5 kb. The mutant gene is believed to be a new leaf-color mutant gene in rice, and is tentatively designated as gwgl. 展开更多
关键词 Oryza sativa leaf-color mutant morphological structure genetic analysis gene mapping
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Resources of Colored-leaf Trees and Their Phenological Ornamental Characteristics in Lhasa City 被引量:2
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作者 LIU Zhineng ZHOU Peng XU Jin 《Journal of Landscape Research》 2017年第1期30-36,共7页
By using biological five points,expert consultation and fuzzy comprehensive evaluation,the species,phenological ornamental characteristics,and landscape application of colored-leaf trees in Lhasa City were surveyed sy... By using biological five points,expert consultation and fuzzy comprehensive evaluation,the species,phenological ornamental characteristics,and landscape application of colored-leaf trees in Lhasa City were surveyed systematically. The results show that there are 42 species of colored-leaf trees in Lhasa City,belonging to 31 genera and 18 families,of which there are 5,19,and 18 species of spring,autumn,and common colored-leaf trees,accounting for 11.90%,45.24% and 42.86% of total number of the investigated tree species respectively. It is clearly seen that there are too few species of spring colored-leaf trees in the city. There are 19 and 17 species of trees possessing red and yellow leaves,while the leaves of other 6 species of colored-leaf trees are shown in other colors,and the number of their species accounts for 45.24%,40.48% and 14.28% of total number of the investigated tree species respectively. The best ornamental periods of spring,autumn and common colored-leaf trees in Lhasa City average 38.4,41.8 and 251.8 d respectively. Prunus cerasifera Ehrhar f. atropurpurea Rehd.,Ulmus pumila L.,Populus × beijingensis W. Y. Hsu,and Salix alba are applied most frequently in Lhasa City,and their relative frequency is 18.67%,10.29%,9.91% and 8.95% respectively. According to the comprehensive assessment value of their ornamental characteristics,the ornamental characteristics of 15 species of colored-leaf trees in Lhasa City are good or very good,and there is a positive correlation between the comprehensive assessment value and relative frequency. Based on the investigation,the current application situation and problems of colored-leaf trees in Lhasa City were analyzed,and solutions to the problems were proposed. 展开更多
关键词 TIBET Lhasa City colored-leaf trees PHENOLOGY Ornamental period Comprehensive assessment value Frequency
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Modeling leaf color dynamics of winter wheat in relation to growth stages and nitrogen rates
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作者 ZHANG Yong-hui YANG Yu-bin +4 位作者 CHEN Chun-lei ZHANG Kui-ting JIANG Hai-yan CAO Wei-xing ZHU Yan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2022年第1期60-69,共10页
The objective of this work was to develop a model for simulating the leaf color dynamics of winter wheat in relation to crop growth stages and leaf positions under different nitrogen(N) rates. RGB(red, green and blue)... The objective of this work was to develop a model for simulating the leaf color dynamics of winter wheat in relation to crop growth stages and leaf positions under different nitrogen(N) rates. RGB(red, green and blue) data of each main stem leaf were collected throughout two crop growing seasons for two winter wheat cultivars under different N rates. A color model for simulating the leaf color dynamics of winter wheat was developed using the collected RGB values. The results indicated that leaf color changes went through three distinct stages, including early development stage(ES), early maturity stage(MS) and early senescence stage(SS), with respective color characteristics of light green, dark green and yellow for the three stages. In the ES stage, the R and G colors gradually decreased from their initial values to steady values, but the B value generally remained unchanged. RGB values remained steady in the MS, but all three gradually increased to steady values in the SS. Different linear functions were used to simulate the dynamics of RGB values in time and space.A cultivar parameter of leaf color matrix(MRGB) and a nitrogen impact factor(FN) were added to the color model to quantify their respective effects. The model was validated with an independent experimental dataset. RMSEs(root mean square errors) between the observed and simulated RGB values ranged between 7.0 and 10.0, and relative RMSEs(RRMSEs)ranged between 7 and 9%. In addition, the model was used to render wheat leaves in three-dimensional space(3 D). The 3 D visualizations of leaves were in good agreement with the observed leaf color dynamics in winter wheat. The developed color model could provide a solid foundation for simulating dynamic crop growth and development in space and time. 展开更多
关键词 winter wheat crop model virtual crop leaf color crop phenotype RGB Model
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A Review on Resistance to Biotic Stress in Leaf-Colored Plant
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作者 Haizhe Su Yu Song +1 位作者 Yi Hou Guoxin Cheng 《Advances in Bioscience and Biotechnology》 2022年第5期226-241,共16页
As sessile organisms, plants have to be subjected to insect attack. Over the long course of evolution, plants have produced many mechanisms to resist this biotic stress such as pigment accumulation. Pigment levels det... As sessile organisms, plants have to be subjected to insect attack. Over the long course of evolution, plants have produced many mechanisms to resist this biotic stress such as pigment accumulation. Pigment levels determined depth and distribution of leaf color, thereby indirectly or directly affecting the behavior of insect attack. Therefore, understanding the mechanism of mutual recognition between leaf color and insect will provide important theoretical insight for the cultivation and improvement of new cultivars. This paper outlines leaf-color formation and the effect of pigment on the behavior of insect attack, and explores the challenge of research in the interaction between leaf color and insect, as soon as the potential direction for future development. This will give a broad background for improvements of colored plants with resistance to insect attack. 展开更多
关键词 leaf coloration Pathogen Infection PIGMENT
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Investigation and Application of Colored-leaf Plants in Tibet
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作者 Peng ZHOU Hongfeng ZHANG +1 位作者 Gang PAN Zhineng LIU 《Asian Agricultural Research》 2017年第2期47-56,共10页
For the quantitative analysis of colored-leaf plants in Tibet,the five-point sampling method is used for stratified investigation of garden plant communities in Tibet.(i)There are a total of 46 families,76 genera and ... For the quantitative analysis of colored-leaf plants in Tibet,the five-point sampling method is used for stratified investigation of garden plant communities in Tibet.(i)There are a total of 46 families,76 genera and 110 species of garden colored-leaf plants in Tibet,including 56 kinds of trees,40 kinds of bushes,9 kinds of herbs,4 kinds of vines and 1 kind of bamboo.There are too few colored-leaf herbs and bamboos,and there is a serious imbalance between evergreen and deciduous trees,between coniferous and broad leaved forests.(ii)The most widely applied families include Rosaceae(26),Salicaceae(12),Fabaceae(6),Aceraceae(5),Oleaceae(4)and Elaeagnaceae(4),accounting for 23.64%,10.91%,5.46%,4.55%,3.64% and 3.64% of the investigated colored-leaf plants,respectively.(iii)In terms of color,there are 55 kinds of red plants,43 kinds of yellow plants and 12 kinds of plants with other colors,accounting for 50.00%,39.09%and 10.91% of colored-leaf plants,respectively.There are 9 kinds of spring color leaf plants,63 kinds of autumn color leaf plants,29 kinds of constant color leaf plants,7 kinds of double color leaf plants and 2 kinds of spot color leaf plants,accounting for 8.18%,57.27%,26.36%,6.36% and 1.82% of colored-leaf plants,respectively,indicating that it is dominated by autumn color leaf and constant color leaf plants.(iv)In terms of importance value of trees,the top two are Salix alba(37.623)and Prunus cerasifera f.atropurpurea(26.063); in terms of importance value of bushes,the top three are Ligustrum × vicaryi Hort(22.577),Berberis thunbergii‘atropurpurea Nana'(18.987)and Platycladus orientalis Franco cv.Sieboldii(10.529); in terms of importance value of herbs,the top two are Taraxacum sherriffii(0.915)and Oxalis triangu laris cv.purpurea(0.326).(v)In terms of species abundance of colored-leaf plants,it is in the order of Nyingchi(94)> Lhasa(47)> Qamdo(43)> Shannan(34)> Xigaze(21)> Ali(7)> Nagqu(5).There are great differences between regions: it is highest in Nyingchi while it is lowest in Nagqu.Based on the main problems in the application of colored-leaf plants in Tibet,this paper makes the corresponding recommendations. 展开更多
关键词 TIBET GARDEN colored-leaf plants Importance value
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Colored-leaf Species Resources and Their Landscaping Application in Guang'an City
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作者 QIE Yawei 《Journal of Landscape Research》 2015年第6期97-98,共2页
By investigating species, characteristics and landscaping application of colored-leaf species in Guang'an City, this paper proposed suggestions for the application of colored-leaf species in the local area.
关键词 Guang’an City colored-leaf species Landscaping application
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Application of Colored-leaf Plants in Landscape Construction
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作者 YI Yongqing 《Journal of Landscape Research》 2015年第6期89-90,共2页
With the gradual improvement of living standard, the public demands on landscaping have focused more on quality than on quantity, and plant furnishing has grown from singular green plants to colored-leaf plants with m... With the gradual improvement of living standard, the public demands on landscaping have focused more on quality than on quantity, and plant furnishing has grown from singular green plants to colored-leaf plants with multiple layers. Confi guration of colored-leaf plants follows certain principles and patterns to enrich the beauty of plant landscaping, construct colorful urban green spaces, satisfy increasing application and aesthetic needs of the public, and reflect value of plant landscaping. 展开更多
关键词 colored-leaf plants Landscape confi guration Landscape design
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Analysis of variation in temperature-responsive leaf color mutant lines induced from Gamma irradiation in rice(Oryza sativa L.)
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作者 WU Dianxing SHU Qingyao XIA Yingwu LIU Guifu Inst of Nuclear Agri Sci,Zhejiang Agri Univ,Hangzhou 310029,China 《Chinese Rice Research Newsletter》 1997年第2期2-3,共2页
Eight lines of temperature-responsive leaf colormutants induced by applying 300 Gy Gamma-ray irradiation to Thermo-sensitive genic malesterile line 2177s,were obtained through con-tinuous selection in seven generation... Eight lines of temperature-responsive leaf colormutants induced by applying 300 Gy Gamma-ray irradiation to Thermo-sensitive genic malesterile line 2177s,were obtained through con-tinuous selection in seven generations..Theleaves of these lines started to become greenafter the fourth leaf extension,and except 展开更多
关键词 LCM Analysis of variation in temperature-responsive leaf color mutant lines induced from Gamma irradiation in rice Oryza sativa L
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UV-B对不同品种生菜生长和品质的影响 被引量:1
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作者 刘淑娟 刘腾云 +3 位作者 杨爱红 朱安繁 徐帅 周华 《北方园艺》 CAS 北大核心 2024年第2期23-30,共8页
以生菜为试材,以荧光灯为对照,采用相同功率的红∶蓝=4∶1组合光(RB)和红∶蓝∶UV-B=20∶5∶1(RBU)对绿叶、红叶、紫叶和深紫叶4个品种生菜进行全光照处理,比较不同光质处理对不同品种生菜生长、产量和品质的影响,以期探索UV-B对不同品... 以生菜为试材,以荧光灯为对照,采用相同功率的红∶蓝=4∶1组合光(RB)和红∶蓝∶UV-B=20∶5∶1(RBU)对绿叶、红叶、紫叶和深紫叶4个品种生菜进行全光照处理,比较不同光质处理对不同品种生菜生长、产量和品质的影响,以期探索UV-B对不同品种生菜(Lactuca sativa L.)生产的影响。结果表明:4个品种生菜均在荧光灯处理下表现最差,RBU处理下绿叶生菜在茎粗和地上鲜质量上显著低于RB处理,但绿叶生菜维生素C含量在RBU处理下显著高于RB处理,紫叶和深紫叶生菜在RBU处理下各生长指标和生物量与RB处理无显著差异,但RBU处理下二者花青素含量比RB处理显著提高。 展开更多
关键词 LEDS 生菜 叶色 产量 营养品质
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代谢组与转录组联合解析赤皮青冈叶片黄化变异机制
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作者 林立 何月秋 +3 位作者 王豪 陆云峰 王建军 黄华宏 《广西植物》 CAS CSCD 北大核心 2024年第7期1319-1336,共18页
为揭示赤皮青冈叶色黄化变异机制,该研究以赤皮青冈叶色变异植株和正常植株的叶片为试验材料,采用超高效液相色谱串联质谱法和高通量RNA测序技术分别进行代谢组和转录组分析。结果表明:(1)代谢组在正离子(POS)、负离子(NEG)模式下分别... 为揭示赤皮青冈叶色黄化变异机制,该研究以赤皮青冈叶色变异植株和正常植株的叶片为试验材料,采用超高效液相色谱串联质谱法和高通量RNA测序技术分别进行代谢组和转录组分析。结果表明:(1)代谢组在正离子(POS)、负离子(NEG)模式下分别检测出正常植株和突变体之间存在257个和357个显著差异代谢物(SCMs),其中槲皮素、白矢车菊素、杨梅素等多种黄酮类化合物及其糖苷衍生物(吡喃酮啡肽A、异鼠李素3-葡糖苷酸等)在突变体中显著上调,而叶绿素a、叶绿素b、类胡萝卜素等色素含量则显著下降。(2)转录组测序检测出4146个差异表达基因(DEGs),其中1711个基因上调表达,2435个基因下调表达。(3)KEGG富集分析表明,SCMs和DEGs显著富集到光合作用、卟啉与叶绿素代谢、类黄酮生物合成等途径。综上表明,突变体叶色黄化可能是受到叶绿素合成受阻、叶绿体发育异常及黄酮物质合成增加等因素的综合影响。此外,MYB和bHLH家族基因在突变体中显著上调,证实该两类转录因子参与调控类黄酮生物合成。该研究结果为植物黄化突变的分子机制研究提供了新的见解,也为叶色功能基因挖掘与园林植物育种工作提供了参考。 展开更多
关键词 赤皮青冈 叶色突变体 黄化 代谢组 转录组
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应用靶向代谢组学技术分析白牛槭叶片不同呈色期类黄酮化合物的差异
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作者 李虹 魏丹 +1 位作者 曲彦婷 杨轶华 《东北林业大学学报》 CAS CSCD 北大核心 2024年第10期66-72,共7页
为深入研究白牛槭(Acer mandshuricum Maxim.)5个呈色期(绿叶期、黄绿叶期、黄叶期、黄红叶期、红叶期)类黄酮化合物积累的变化,利用靶向代谢组学技术分析了白牛槭叶片呈色期类黄酮化合物的差异代谢物种类及质量分数。结果表明:绿叶期... 为深入研究白牛槭(Acer mandshuricum Maxim.)5个呈色期(绿叶期、黄绿叶期、黄叶期、黄红叶期、红叶期)类黄酮化合物积累的变化,利用靶向代谢组学技术分析了白牛槭叶片呈色期类黄酮化合物的差异代谢物种类及质量分数。结果表明:绿叶期、黄绿叶期、黄叶期、黄红叶期、红叶期5个时期叶片中分别检测出36、41、40、48、46种代谢物,囊括了黄酮类及花青素类两大类。质量分数大于1μg·g^(-1)的代谢物包含黄酮类化合物6种、矢车菊素6种、原花青素4种、飞燕草素2种、天竺葵色素1种、芍药花色素1种。随着叶色变红,矢车菊素-3-O-葡萄糖苷质量分数显著升高,其他矢车菊素、天竺葵色素、芍药色素、飞燕草色素也逐渐升高。矢车菊素、天竺葵色素、芍药色素、飞燕草色素在白牛槭叶色变红过程中起到重要作用,其中,矢车菊素是白牛槭叶色变红的决定性因素。 展开更多
关键词 白牛槭 类黄酮化合物 代谢组 差异代谢物 叶色
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茶树品种‘白鸡冠’与‘福云6号’遗传连锁图谱构建
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作者 陈志辉 张亚真 +6 位作者 孔祥瑞 游小妹 林郑和 单睿阳 郑士琴 李鑫磊 陈常颂 《茶叶学报》 2024年第4期8-20,共13页
【目的】近年来对茶树白化性状调控机理的研究逐渐增多,但到目前为止白化性状的基因调控机制仍然未知。通过构建‘白鸡冠’与‘福云6号’高密度遗传连锁图谱,为后续白鸡冠叶色基因定位奠定基础。【方法】创建白鸡冠(♀)与福云6号(♂)F1... 【目的】近年来对茶树白化性状调控机理的研究逐渐增多,但到目前为止白化性状的基因调控机制仍然未知。通过构建‘白鸡冠’与‘福云6号’高密度遗传连锁图谱,为后续白鸡冠叶色基因定位奠定基础。【方法】创建白鸡冠(♀)与福云6号(♂)F1代遗传分离群体,采用SLAF-seq技术和HighMap软件开发SNP分子标记,构建高密度遗传连锁图。【结果】用茶树参考基因组作电子酶切预测,选用HaeIII酶切方案。SLAF标签长度选择314~364 bp,预测到230000个SLAF标签。SLAF标签在基因组各染色体上分布基本均匀,酶切方案可行。建库准确性评估发现,对照样数据的双端比对效率为85.98%,酶切效率为91.82%,说明SLAF建库正常。本实验共获得828 448 417条reads(165.67 Gb)测序数据,测序平均Q30为93.94%,平均GC含量为43.67%,样本GC分布正常。获得SNP标记5 975 507个,成功分型的有643 601个,用于遗传图谱构建的标记有500 988个,最终上图标记有7 967个,总图距为2 754.59 cM,上图标记完整度为99.84%,共构建出15个高密度遗传连锁群。【结论】利用白鸡冠与福云6号F1代遗传分离群体构建出含15个连锁群的高密度遗传连锁图谱。 展开更多
关键词 茶树 黄化 白化 遗传图谱 叶色突变
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