Publications by authors named "Ke-lin Huang"

Numerous herbivore-induced plant volatiles (HIPVs) play important roles in plant defense. In tea plants (Camellia sinensis), (Z)-3-hexenyl acetate (3-HAC) has been characterized as associated with resistance to herbivores. To date, how tea plants biosynthesize and regulate 3-HAC to resist herbivores remain unclear.

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Article Synopsis
  • Tea contains high levels of catechins, particularly (-)-epigallocatechin gallate (EGCG), which may help with cancer and inflammation, but its health benefits are limited by poor absorption in the gut.
  • O-methylated EGCG derivatives, which have better bioavailability, are present in low amounts in some tea varieties and are the focus of ongoing research.
  • Two specific enzymes, CsFAOMT1 and CsFAOMT2, were identified as responsible for producing the O-methylated versions of EGCG, with their activity being linked to the content of these beneficial compounds in different tea plants.
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Sugar is considered as the primary regulator of plant apical dominance, whereby the outgrowth of axillary buds is inhibited by the shoot tip. However, there are some deficiencies in this theory. Here, we reveal that Fatty Acid Export 6 (BnFAX6) functions in FA transport, and linoleic acid or its derivatives acts as a signaling molecule in regulating apical dominance of Brassica napus.

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Background: Seed germination and seedling establishment are two of the most critical phases in plant development. However, the molecular mechanisms underlying the effect of phosphorus on seed germination and post-germinated growth of oilseed rape are unclear so far. Here, we report the role of BnPHT1;4 in seed germination and early seedling development of Brassica napus.

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PHOSPHATE STARVATION RESPONSE1 (PHR1) is a key regulatory component of the response to phosphate (Pi) starvation. However, the regulation of in this response remains poorly understood. Here, we report that is a target of the transcription factors AUXIN RESPONSE FACTOR7 (ARF7) and ARF19 and is positively regulated by auxin signaling in Arabidopsis () roots.

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Seed oil content is an important agronomic trait in oilseed rape. However, the molecular mechanism of oil accumulation in rapeseeds is unclear so far. In this report, RNA sequencing technique (RNA-Seq) was performed to explore differentially expressed genes in siliques of two Brassica napus lines (HFA and LFA which contain high and low oil contents in seeds, respectively) at 15 and 25 days after pollination (DAP).

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Phosphorus (P) is one of the essential nutrient elements for plant development. In this work, BnPht1;4 gene, encoding a phosphate transporter of PHT1 family, was isolated from Brassica napus. BnPht1;4 possesses the major characteristic of PHT1 high-affinity Pi transporters in plants, such as plasma-membrane localization and 12 transmembrane-spanning domains.

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Objective: A hepatitis B immunogenic complex therapeutic vaccine, yeast-derived recombinant HBsAg combined with human anti-HBs immunoglobulin (YIC), was evaluated for safety and immune response in phase I clinical trial.

Methods: The subtypes IgG1, IgG2, IgG3 and IgG4 of serum anti-HBs collected from 20 immunized subjects were analyzed by ELISA. The lymphocyte proliferation assay was carried out in five subjects and was analyzed by 3H-thymidine incorporation.

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A therapeutic vaccine for viral hepatitis B composed of yeast-derived recombinant HBsAg complexed to human anti-HBs immunoglobulin (yeast-derived-immunogenic complex, YIC) with alum as the adjuvant was evaluated for safety. In stage 1, 22 healthy Chinese adult volunteers were vaccinated with three doses of 30 microg, 60 microg or 90 microg of HBsAg in YIC at 4-week intervals. In stage 2, nine volunteers received 90 microg of HBsAg in YIC for six injections.

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