| 1 | Folate Biofortification of Potato by Tuber-Specific Expression of Four Folate Biosynthesis Genes显示文摘微量元素的不够的饮食的吸入,是隐藏饥饿知道,是破坏全球负担,影响 20 亿个人。folates (维生素 B9 ) 的缺乏,被知道在 C 1 新陈代谢起一个中央作用,每年在至少 1/4 百万个人引起出生缺点。在庄稼提高自然地发生的 folates 的水平的 Biofortification 种,证明是在战斗的一个有效、划算的工具叶酸的缺乏。以前,叶酸的生合成基因 GTPCHI 和模数转换器的介绍,证明是在米饭和西红柿的成功的 biofortification 策略,结果不够足够地在土豆 tubers 增加叶酸的层次。这里,我们提供概念的一个证明 HPPK/DHPS 或 FPGS 的那另外的介绍,在 mitochondrial 的下游的基因叶酸的生合成,启用 folates 的扩大到令人满意的层次(12 褶层) 并且在 tubers 的长期的存储之上保证叶酸的稳定性。在结论,这设计策略能在叶酸积累的土豆栽培变种的创造担任一个模型,在消费土豆的人口受不了容易地适用叶酸的缺乏。 | Jolien De Lepeleire Simon Strobbe Jana Verstraete Dieter Blancquaert Lars Ambach Richard G.F. Visser Christophe Stove Dominique Van Der Straeten | 2018 | Molecular Plant2018,11,1: | 12 |
| 2 | Regulation of Plant Vitamin Metabolism:Backbone of Biofortification for the Alleviation of Hidden Hunger显示文摘Micronutrient deficiencies include shortages of vitamins and minerals.They affect billions of people and are associated with long-range effects on health,learning ability,and huge economic losses.Biofortification of multiple micronutrients can play an important role in combating malnutrition.The challenge,however,is to balance plant growth with nutrient requirements for humans.Here,we summarize the major progress about vitamin biosynthesis and its response to the changing environment.We discuss the interactions among vitamins as well as possible strategies for vitamin biofortification.Finally,we propose to integrate new breeding technologies with metabolic pathway modification to facilitate the biofortification of crops,thereby alleviating the hidden hunger of target populations. | Ling Jiang Simon Strobbe Dominique Van Der Straeten Chunyi Zhang | 2021 | Molecular Plant2021,14,1: | 2 |
| 3 | Regulation of plant vitamin metabolism:backbone of biofortification for the alleviation of hidden hunger显示文摘(Molecular Plant 14(1):40–60;January 2021;http://gffzzd3cc09b8251d45dfs9xbo0065qobq6kub.ffgz.tsg.suse.edu.cn/10.1016/j.molp.2020.11.019)In the'Molecular Marker-Assisted Breeding'section of this article(page 49),the surname of one reference was wrongly provided.'citrus(Hou et al.,2019)'should be corrected as'citrus(Zheng et al.,2019)'.In the'REFERENCES'section of this article(page 55),the same reference should be corrected from'Hou,X.,Tang,Y.,Ye,J.,Pan,Z,Tan,M.,Xie,M.,Xie,Z.,Chia,L.,Xu,Q.,Fraser,P.D.,and Deng,X.(2019).SLAF-based construction of a high-density genetic map and its application in QTL mapping of carotenoids content in Citrus fruit.J.Agric.Food Chem.,67,994-1002.'to'Zheng,X.,Tang,Y.,Ye,J.,Pan,Z,Tan,M.,Xie,Z.,Chai,L.,Xu,Q.,Fraser,P.D.,and Deng,X.(2019).SLAF-based construction of a high-density genetic map and its application in QTL mapping of carotenoids content in Citrus fruit.J.Agric.Food Chem.,67,994-1002.'. | Ling Jiang Simon Strobbe Dominique Van Der Straeten Chunyi Zhang | 2021 | Molecular Plant2021,14,3: | 0 |