Key Laboratory of Crop Epigenetic Regulation and Development in Hunan Province, Hunan Agricultural University, Changsha, 410128, China.
Department of Plant Biology, Uppsala BioCenter, Linnean Centre for Plant Biology, Swedish University of Agricultural Sciences (SLU), P.O. Box 7080, 750 07, Uppsala, Sweden.
Sci Rep. 2022 Nov 9;12(1):19151. doi: 10.1038/s41598-022-21955-1.
High fructan content in the grain of cereals is an important trait in agriculture such as environmental resilience and dietary fiber food production. To understand the mechanism in determining final grain fructan content and achieve high fructan cereal, a cross breeding strategy based on fructan synthesis and hydrolysis activities was set up and have achieved barley lines with 11.8% storage fructan in the harvested grain. Our study discovered that high activity of fructan hydrolysis at later grain developmental stage leads to the low fructan content in mature seeds, simultaneously increasing fructan synthesis at early stage and decreasing fructan hydrolysis at later stage through crossing breeding is an efficient way to elevate grain diet-fiber content. A good correlation between fructan and beta glucans was also discovered with obvious interest. Field trials showed that the achieved high fructan barley produced over seven folds higher fructan content than control barley and pull carbon-flux to fructan through decreasing fructan hydrolysis without disruption starch synthesis will probably not bring yield deficiency.
谷物中高果聚糖含量是农业中的一个重要特性,如环境弹性和膳食纤维食品生产。为了了解决定最终谷物果聚糖含量的机制并实现高果聚糖谷物,我们制定了基于果聚糖合成和水解活性的杂交育种策略,并在收获的谷物中获得了 11.8%储存果聚糖的大麦品系。我们的研究发现,后期籽粒发育阶段果聚糖水解活性高会导致成熟种子中果聚糖含量低,通过杂交育种增加早期果聚糖合成和减少后期果聚糖水解是提高籽粒膳食纤维含量的有效途径。我们还发现果聚糖与β-葡聚糖之间存在很好的相关性,具有明显的研究意义。田间试验表明,所获得的高果聚糖大麦产生的果聚糖含量比对照大麦高出 7 倍以上,通过减少果聚糖水解而不破坏淀粉合成将碳通量拉向果聚糖,可能不会带来产量不足。