An ortholog of LEAFY in Jatropha curcas regulates flowering time and floral organ development

Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus, identifying genes controlling flowering is critical for genetic improvement of seed yield. We isolated the JcLFY , a Jatropha ortholog of Arabidopsis th...

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Published inScientific reports Vol. 6; no. 1; p. 37306
Main Authors Tang, Mingyong, Tao, Yan-Bin, Fu, Qiantang, Song, Yaling, Niu, Longjian, Xu, Zeng-Fu
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 21.11.2016
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Abstract Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus, identifying genes controlling flowering is critical for genetic improvement of seed yield. We isolated the JcLFY , a Jatropha ortholog of Arabidopsis thaliana LEAFY ( LFY ), and identified JcLFY function by overexpressing it in Arabidopsis and Jatropha . JcLFY is expressed in Jatropha inflorescence buds, flower buds, and carpels, with highest expression in the early developmental stage of flower buds. JcLFY overexpression induced early flowering, solitary flowers, and terminal flowers in Arabidopsis , and also rescued the delayed flowering phenotype of lfy-15 , a LFY loss-of-function Arabidopsis mutant. Microarray and qPCR analysis revealed several flower identity and flower organ development genes were upregulated in JcLFY -overexpressing Arabidopsis. JcLFY overexpression in Jatropha also induced early flowering. Significant changes in inflorescence structure, floral organs, and fruit shape occurred in JcLFY co-suppressed plants in which expression of several flower identity and floral organ development genes were changed. This suggests JcLFY is involved in regulating flower identity, floral organ patterns, and fruit shape, although JcLFY function in Jatropha floral meristem determination is not as strong as that of Arabidopsis .
AbstractList Abstract Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus, identifying genes controlling flowering is critical for genetic improvement of seed yield. We isolated the JcLFY , a Jatropha ortholog of Arabidopsis thaliana LEAFY ( LFY ), and identified JcLFY function by overexpressing it in Arabidopsis and Jatropha . JcLFY is expressed in Jatropha inflorescence buds, flower buds, and carpels, with highest expression in the early developmental stage of flower buds. JcLFY overexpression induced early flowering, solitary flowers, and terminal flowers in Arabidopsis , and also rescued the delayed flowering phenotype of lfy-15 , a LFY loss-of-function Arabidopsis mutant. Microarray and qPCR analysis revealed several flower identity and flower organ development genes were upregulated in JcLFY -overexpressing Arabidopsis. JcLFY overexpression in Jatropha also induced early flowering. Significant changes in inflorescence structure, floral organs, and fruit shape occurred in JcLFY co-suppressed plants in which expression of several flower identity and floral organ development genes were changed. This suggests JcLFY is involved in regulating flower identity, floral organ patterns, and fruit shape, although JcLFY function in Jatropha floral meristem determination is not as strong as that of Arabidopsis .
Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus, identifying genes controlling flowering is critical for genetic improvement of seed yield. We isolated the JcLFY, a Jatropha ortholog of Arabidopsis thaliana LEAFY (LFY), and identified JcLFY function by overexpressing it in Arabidopsis and Jatropha. JcLFY is expressed in Jatropha inflorescence buds, flower buds, and carpels, with highest expression in the early developmental stage of flower buds. JcLFY overexpression induced early flowering, solitary flowers, and terminal flowers in Arabidopsis, and also rescued the delayed flowering phenotype of lfy-15, a LFY loss-of-function Arabidopsis mutant. Microarray and qPCR analysis revealed several flower identity and flower organ development genes were upregulated in JcLFY-overexpressing Arabidopsis. JcLFY overexpression in Jatropha also induced early flowering. Significant changes in inflorescence structure, floral organs, and fruit shape occurred in JcLFY co-suppressed plants in which expression of several flower identity and floral organ development genes were changed. This suggests JcLFY is involved in regulating flower identity, floral organ patterns, and fruit shape, although JcLFY function in Jatropha floral meristem determination is not as strong as that of Arabidopsis.
Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus, identifying genes controlling flowering is critical for genetic improvement of seed yield. We isolated the JcLFY , a Jatropha ortholog of Arabidopsis thaliana LEAFY ( LFY ), and identified JcLFY function by overexpressing it in Arabidopsis and Jatropha . JcLFY is expressed in Jatropha inflorescence buds, flower buds, and carpels, with highest expression in the early developmental stage of flower buds. JcLFY overexpression induced early flowering, solitary flowers, and terminal flowers in Arabidopsis , and also rescued the delayed flowering phenotype of lfy-15 , a LFY loss-of-function Arabidopsis mutant. Microarray and qPCR analysis revealed several flower identity and flower organ development genes were upregulated in JcLFY -overexpressing Arabidopsis. JcLFY overexpression in Jatropha also induced early flowering. Significant changes in inflorescence structure, floral organs, and fruit shape occurred in JcLFY co-suppressed plants in which expression of several flower identity and floral organ development genes were changed. This suggests JcLFY is involved in regulating flower identity, floral organ patterns, and fruit shape, although JcLFY function in Jatropha floral meristem determination is not as strong as that of Arabidopsis .
ArticleNumber 37306
Author Fu, Qiantang
Xu, Zeng-Fu
Song, Yaling
Tao, Yan-Bin
Tang, Mingyong
Niu, Longjian
Author_xml – sequence: 1
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  surname: Tang
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  givenname: Yan-Bin
  surname: Tao
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  fullname: Fu, Qiantang
  organization: Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun
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  givenname: Yaling
  surname: Song
  fullname: Song, Yaling
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  surname: Xu
  fullname: Xu, Zeng-Fu
  organization: Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Menglun
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Snippet Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus, identifying...
Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus, identifying...
Abstract Jatropha curcas seeds are an excellent biofuel feedstock, but seed yields of Jatropha are limited by its poor flowering and fruiting ability. Thus,...
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38/23
38/61
38/77
38/90
631/449/1659
631/449/2679/2681
96/44
96/63
Agricultural production
Biodiesel fuels
Biofuels
Buds
Carpels
Cell division
Cloning
Crop yield
Developmental stages
Flowering
Flowers
Flowers & plants
Fruits
Genes
Humanities and Social Sciences
multidisciplinary
Phenotypes
Science
Seeds
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Title An ortholog of LEAFY in Jatropha curcas regulates flowering time and floral organ development
URI https://link.springer.com/article/10.1038/srep37306
https://www.ncbi.nlm.nih.gov/pubmed/27869146
https://www.proquest.com/docview/1899364781
https://search.proquest.com/docview/1842555073
https://pubmed.ncbi.nlm.nih.gov/PMC5116762
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