CARNEGIE INSTITUTION FOR SCIENCE

Plate showing Senna Tora, also called Cassia tora.Credit;Flora De Filipinas by Francisco Manuel Blanco in U.S. public domain

CARNEGIE INSTITUTION FOR SCIENCE
"Senna tora is a legume with anthraquinone-based medicinal properties that have long been recognized in ancient Chinese and Ayurvedic traditions, including antimicrobial and antiparasitic benefits, as well as diabetes and neurodegenerative disease prevention," Rhee explained.
Despite its extensive practical applications, genomic studies of Senna have been limited. So, led by Sang-Ho Kang of the Korean National Institute of Agricultural Sciences and Ramesh Prasad Pandey of Sun Moon University and MIT, the research team used an array of sophisticated genetic and biochemical approaches to identify the first known anthranoid-forming enzyme in plants.
"Now that we've established the first step of the ladder, we can move quickly to elucidate the full suite of genes involved in the synthesis of anthraquinone," said lead author Kang.
Once the process by which plants make these important compounds is fully known, this knowledge can be used to engineer a plant to produce high concentrations of anthraquinones that can be used medicinally.
"The same techniques that we use to help improve the yields of agricultural or biofuel crops can also be applied to developing sustainable production methods for plant-based medicines," Rhee concluded.
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The researchers' work was published last week in Nature Communications.
This work was funded by the National Institute of Agricultural
Sciences and Cooperative Research Program for Agriculture Science and Technology Development, Rural Development Administration, Republic of Korea; the U.S. National Institutes of Health; and the U.S. National Science Foundation.
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