Song Tao, Das Debatosh, Zhu Fuyuan, Chen Xiaofeng, Chen Moxian, Yang Feng, Zhang Jianhua
Co-Innovation Center for Sustainable Forestry in Southern China, College of Biology and the Environment, Nanjing Forestry University, Nanjing, China.
Shenzhen Research Institute, The Chinese University of Hong Kong, Shenzhen, China.
Front Plant Sci. 2021 Sep 9;12:721160. doi: 10.3389/fpls.2021.721160. eCollection 2021.
Alternate wetting and drying (AWD) irrigation has been widely used to save irrigation water during rice production when compared to the traditionally continuous flooding (CF). Although the influence of AWD on water-saving potential and grain yield has been studied before, its detailed effect on grain nutritional quality in milled rice remains relatively unexplored. In this study, AWD could maintain grain yield as compared with CF. Thus, we undertook efforts to compare the nutritional traits of milled rice irrigated with AWD and CF regimes. A targeted metabolome assay on milled rice identified 74 differentially accumulated metabolites (DAMs) with 22 up- and 52 down-accumulated metabolites under AWD vs. CF. Clustering of the metabolite content obtained in this assay suggested that most of the metabolites showing significant changes belonged to "lipids," "alkaloids," and "phenolic acids." In addition, total protein, starch, lipid, and amino acids content were measured to correlate it with the differential accumulation of specific metabolites detected in the metabolome. Overall, the data suggested that AWD may improve the nutritional performance of milled rice by increasing amino acids and phenolic acids and decreasing lipids and alkaloids. Our study provides research proof for the need for the optimization of irrigation to optimize rice nutritional qualities.
与传统的持续淹灌(CF)相比,干湿交替灌溉(AWD)已被广泛应用于水稻生产中以节约灌溉用水。尽管之前已经研究了AWD对节水潜力和谷物产量的影响,但其对糙米营养品质的详细影响仍相对未被探索。在本研究中,与CF相比,AWD能够维持谷物产量。因此,我们努力比较了采用AWD和CF灌溉方式的糙米的营养特性。对糙米进行的靶向代谢组分析确定了74种差异积累代谢物(DAM),在AWD与CF条件下,其中22种代谢物积累增加,52种代谢物积累减少。该分析中获得的代谢物含量聚类表明,大多数显示出显著变化的代谢物属于“脂质”、“生物碱”和“酚酸”。此外,还测量了总蛋白、淀粉、脂质和氨基酸含量,以将其与代谢组中检测到的特定代谢物的差异积累相关联。总体而言,数据表明AWD可能通过增加氨基酸和酚酸含量以及降低脂质和生物碱含量来改善糙米的营养性能。我们的研究为优化灌溉以优化水稻营养品质的必要性提供了研究证据。