Zinc (Zn) biofortification through foliar Zn application is an attractive strategy to reduce human Zn deficiency. However, little is known about the biofortification efficiency and bioavailability of rice grain from different forms of foliar Zn fertilizers. were higher than Zn-EDTA and Zn-Citrate on improvement of Zn concentration, and reduction of phytic acid, as a results higher accumulation of bioavailable Zn in polished rice. Moreover, foliar Zn application could maintain grain yield, the protein and minerals (Fe and Ca) quality of the polished rice. are recommended as excellent foliar Zn forms to ongoing agronomic biofortification
Zinc (Zn) and iron (Fe) deficiencies are well-documented public health issue and an important soil c...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...
BACKGROUND: Zinc (Zn) biofortification through foliar Zn application is an attractive strategy to re...
Zinc biofortification in rice can be improved by altering Zn application timing and placement and cu...
Background Increasing zinc (Zn) concentration of rice seed has potential benefits for human nutritio...
Enriching grain Zn concentration in rice through Zn fertilization is one approach to Zn biofortifica...
This study examined the effect of foliar zinc (Zn) application on grain yield, Zn and phytate concen...
Zinc (Zn) is an essential element involved in human metabolism, which can be supplied by an appropri...
Zinc (Zn) deficiency is the most widespread micronutrient deficiency in crop plants and humans. Low ...
Rice (Oryza sativa L.), wheat (Triticum aestivum L.) and common bean (Phaseolus vulgaris L.) are maj...
Zinc (Zn) still represents an important health problem in developing countries, caused mainly by ina...
Zinc (Zn) still represents an important health problem in developing countries, caused mainly by ina...
Not AvailableIn this study, we evaluated the possibility of increasing Zn and Fe bioavailability in ...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...
Zinc (Zn) and iron (Fe) deficiencies are well-documented public health issue and an important soil c...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...
BACKGROUND: Zinc (Zn) biofortification through foliar Zn application is an attractive strategy to re...
Zinc biofortification in rice can be improved by altering Zn application timing and placement and cu...
Background Increasing zinc (Zn) concentration of rice seed has potential benefits for human nutritio...
Enriching grain Zn concentration in rice through Zn fertilization is one approach to Zn biofortifica...
This study examined the effect of foliar zinc (Zn) application on grain yield, Zn and phytate concen...
Zinc (Zn) is an essential element involved in human metabolism, which can be supplied by an appropri...
Zinc (Zn) deficiency is the most widespread micronutrient deficiency in crop plants and humans. Low ...
Rice (Oryza sativa L.), wheat (Triticum aestivum L.) and common bean (Phaseolus vulgaris L.) are maj...
Zinc (Zn) still represents an important health problem in developing countries, caused mainly by ina...
Zinc (Zn) still represents an important health problem in developing countries, caused mainly by ina...
Not AvailableIn this study, we evaluated the possibility of increasing Zn and Fe bioavailability in ...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...
Zinc (Zn) and iron (Fe) deficiencies are well-documented public health issue and an important soil c...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...
Background and purpose: Increasing zinc (Zn) concentration in rice grains can help improve Zn nutrit...