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1.
Effect of exogenous GA
3
on flowering quality, endogenous hormones, and hormone- and flowering-associated gene expression in forcingcultured tree peony (
Paeonia suffruticosa
)
GUAN Yan-ren, XUE Jing-qi, XUE Yu-qian, YANG Ruo-wen, WANG Shun-li, ZHANG Xiu-xin
Journal of Integrative Agriculture 2019, 18 (
6
): 1295-1311. DOI:
10.1016/S2095-3119(18)62131-8
摘要
(
212
)
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Gibberellins (GAs) promote flowering in the forcing-cultured tree peony (
Paeonia suffruticosa
), however, the mechanism of regulating flowering is not fully understood. In this study, exogenous GA
3
was applied to five-year-old Luoyang Hong plants to explore responses in terms of endogenous hormones, flowering quality, and the hormone- and flowering-associated gene expression. Exogenous GA
3
application significantly promoted flower bud development and new branch growth, as well as improved flowering quality. Exogenous GA
3
application also stimulated the synthesis of endogenous GA
3
and indole-3-acetic acid (IAA) but reduced abscisic acid (ABA) levels. To further elucidate the regulatory mechanism, eight genes for GA biosynthesis and signaling, including PsCPS,
PsKS
,
PsGA3ox
,
PsGA2ox
,
PsGID1b
,
PsGID1c
,
PsDELLA
, and
PsGID2
were cloned for the first time, and sequence analysis was also performed. The results suggested that all the cloned genes have conserved structure as each homologous gene reported in the other species. Phylogenetic trees constructed by the each cloned gene showed that the phylogenetic evolutionary relationship of
P. suffruticosa
was closely related to Vitis vinifera. The expression patterns of the above genes, and genes for ABA and IAA biosynthetic and signaling, and the flowering time were also investigated. Most of the above genes showed higher expression in the control buds than those in the GA
3
treated buds at six developmental stages, whereas the expression levels of PsSOC1 and PsSPL9 were up-regulated by GA
3
treatment. The results also showed that the GA-biosynthetic and signaling pathways are conserved in tree peony, and the
PsCPS
,
PsGA3ox
,
PsGA2ox
,
PsGID1
,
PsDELLA
, and
PsGID2
genes are necessary for feedback regulation of GAs. Furthermore, hormone changes promoted PsSOC1 and
PsSPL9
expression, and repressed PsSVP expression, which contributed to the improvement flowering quality in tree peony of forcing culture.
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2.
Fatty acid analysis in the seeds of 50
Paeonia ostii
individuals from the same population
WEI Xiao-bao, XUE Jing-qi, WANG Shun-li, XUE Yu-qian, LIN Huan, SHAO Xing-feng, XU Dong-hui, ZHANG Xiu-xin
Journal of Integrative Agriculture 2018, 17 (
08
): 1758-1768. DOI:
10.1016/S2095-3119(18)61999-9
摘要
(
366
)
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Tree peony seeds are rich in α-linolenic acid (ALA), and the peony seed oil is now being produced in China.
Paeonia ostii
is the most widely used tree peony species for oil extraction, which is commercially called Fengdan and treated as a single cultivar. Here, 50 P
. ostii
individuals from the same population in northern China were randomly selected for fatty acids (FAs) analysis. Thirteen FAs were isolated, and the most abundant five were palmitic acid (5.31–6.99%), stearic acid (1.22–2.76%), oleic acid (18.78–28.15%), linoleic acid (11.86–26.10%), and ALA (41.11–57.51%). There were significant individual differences of plants in FA quality and quantity and the linoleic acid content in Plant No. 48 even exceeded the scope of 1–99%. Further statistical analysis indicated that most of the individual FAs, saturated FAs, unsaturated FAs, and total FAs levels showed significant positive correlations to each other, whereas the seed yield per plant was independent and not correlated to the factors mentioned above. Ward’s hierarchical clustering results grouped the 50 plants into four clusters based on FA contents and seed yield, and the seven plants in Cluster IV were identified as good candidates for oil production. Our results confirmed that the individual differences did occur in
P. ostii
and Fengdan cannot be simply treated as one uniform cultivar. Also, these results may help simplify the selection of plants for oil peony breeding and accelerate the development of the oil peony industry.
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3.
Current status of genetic transformation technology developed in cucumber (Cucumis sativus L.)
WANG Shun-li, Seong Sub Ku, YE Xing-guo, HE Cong-fen, Suk Yoon Kwon, Pil Son Choi
Journal of Integrative Agriculture 2015, 14 (
3
): 469-482. DOI:
10.1016/S2095-3119(14)60899-6
摘要
(
2044
)
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Genetic transformation is an important technique for functional genomics study and genetic improvement of plants. Until now, Agrobacterium-mediated transformation methods using cotyledon as explants has been the major approach for cucumber, and its frequency has been up to 23%. For example, significantly enhancement of the transformation efficiency of this plant species was achieved from the cotyledon explants of the cultivar Poinsett 76 infected by Agrobacterium strains EHA105 with efficient positive selection system in lots of experiments. This review is to summarize some key factors influencing cucumber regeneration and genetic transformation, including target genes, selection systems and the ways of transgene introduction, and then to put forward some strategies for the increasing of cucumber transformation efficiency. In the future, it is high possible for cucumber to be potential bioreactor to produce vaccine and biomaterials for human beings.
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