Engineering Crops to Optimize Delivery of Bioactive Products Postcooking.

ACS Synth Biol

Department of Plant and Microbial Biology, University of California, Berkeley, Berkeley, California 94270, United States.

Published: March 2024


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Glucosinolates are plant-specialized metabolites that can be hydrolyzed by glycosyl hydrolases, called myrosinases, creating a variety of hydrolysis products that benefit human health. While cruciferous vegetables are a rich source of glucosinolates, they are often cooked before consumption, limiting the conversion of glucosinolates to hydrolysis products due to the denaturation of myrosinases. Here we screen a panel of glycosyl hydrolases for high thermostability and engineer the crop, broccoli ( L.), for the improved conversion of glucosinolates to chemopreventive hydrolysis products. Our transgenic broccoli lines enabled glucosinolate hydrolysis to occur at higher cooking temperatures, 20 °C higher than in wild-type broccoli. The process of cooking fundamentally transforms the bioavailability of many health-relevant bioactive compounds in our diet. Our findings demonstrate the promise of leveraging genetic engineering to tailor crops with novel traits that cannot be achieved through conventional breeding and improve the nutritional properties of the plants we consume.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10949231PMC
http://dx.doi.org/10.1021/acssynbio.3c00676DOI Listing

Publication Analysis

Top Keywords

hydrolysis products
12
glycosyl hydrolases
8
conversion glucosinolates
8
engineering crops
4
crops optimize
4
optimize delivery
4
delivery bioactive
4
products
4
bioactive products
4
products postcooking
4

Similar Publications

Degradation and ecological risk of a novel neonicotinoid insecticide imidaclothiz in aquatic environments: Kinetics, photodegradation and hydrolysis pathways, mechanism and metabolites toxicity evaluation.

Pestic Biochem Physiol

November 2025

Anhui Provincial Key Laboratory of Hazardous Factors and Risk Control of Agri-food Quality Safety, School of Resource & Environment, Anhui Agricultural University, Hefei, Anhui 230036, China; Institute of Ecological Environmental Protection and Pollution Remediation Engineering, Anhui Agricultural U

Neonicotinoid insecticides residuals pose a threat to aquatic ecosystems and human health. Imidaclothiz, as a novel neonicotinoid pesticide, the metabolic mechanisms in aquatic environments was unclear. This study investigated the degradation characteristics of imidaclothiz in both pure and actual water, and analyzed the photodegradation and hydrolysis metabolites of imidaclothiz in aquatic environments and assessed their toxicity.

View Article and Find Full Text PDF

Background: Daminozide is a commonly utilized plant growth regulator. Both daminozide and its hydrolysis product, 1,1-dimethyl hydrazine ((CH)NNH), exhibit carcinogenic and teratogenic toxicity. Accurate detection of daminozide in food is of great significance to human health.

View Article and Find Full Text PDF

Dual-functional phthalamide modulation of aging-resistant PbI for efficient perovskite solar cells.

J Colloid Interface Sci

September 2025

School of Materials Science and Engineering, Taizhou University, Taizhou 318000, China. Electronic address:

The sequential preparation of perovskite solar cells (PSCs) has received widespread concern for its use in large-scale perovskite modules and perovskite/silicon tandem solar cells. However, the instability of the PbI precursor solution and the incomplete reaction of ammonium salts hinder the industrialization of PSCs. Here, by introducing phthalamide (PA) into PbI solution, the carbonyl oxygen of PA molecules undergoes a bidentate coordination reaction with Pb to form an octahedral coordination structure, and the nitrogen atom in the -NH group exhibits weakly acidic properties due to the conjugation effect.

View Article and Find Full Text PDF

Recyclable biphasic enzymatic hydrolysis of extracts to produce Rhamnosyl Icariside II.

Nat Prod Res

September 2025

Shaanxi Jinhuifang Traditional Chinese Medicine Technology Co., Ltd., Zhenba, China.

Rhamnosyl Icariside II, a rare secondary flavonoid glycoside in , exhibits superior stability and bioactivity than the primary flavonoid glycosides. Converting primary flavonoid glycoside into Rhamnosyl Icariside II is desirable due to separate extraction methods are inefficient. In this study, a recyclable biphasic enzymatic hydrolysis process of extracts to produce high purity RIc was established and optimised.

View Article and Find Full Text PDF

Cotton stalk (CTS) and corn stover (CRS) were pretreated using solid alkali (NaOH or Ca(OH)) assisted ball milling (BM). The physicochemical properties of the pretreated materials and their high-solid enzymatic hydrolysis performance were systematically investigated. The interaction between alkali and straw was synergistically enhanced by mechanical force generated during BM, achieving effective lignin removal.

View Article and Find Full Text PDF