Sangwongchai Wichian, Tananuwong Kanitha, Krusong Kuakarun, Thitisaksakul Maysaya
Biological Science Program, Faculty of Science, Khon Kaen University, Khon Kaen 40002, Thailand.
Department of Food Technology, Faculty of Science, Chulalongkorn University, Bangkok 10330, Thailand.
Foods. 2021 Oct 27;10(11):2601. doi: 10.3390/foods10112601.
Rice production systems and soil characteristics play a crucial role in determining its yield and grain quality. Two elite Thai rice cultivars, namely, KDML105 and RD6, were cultivated in two production systems with distinct soil characteristics, including net-house pot production and open-field production. Under open-field system, KDML105 and RD6 had greater panicle number, total grain weight, 100-grain weight, grain size, and dimension than those grown in the net-house. The amounts of reducing sugar and long amylopectin branch chains (DP 25-36) of the RD6 grains along with the amounts of long branch chains (DP 25-36 and DP ≥ 37), C-type starch granules, and average chain length of the KDML105 were substantially enhanced by the open-field cultivation. Contrastingly, the relative crystallinity of RD6 starch and the amounts of short branch chains (DP 6-12 and DP 13-24), B- and A-type granules, and median granule size of KDML105 starch were significantly suppressed. Consequently, the open-field-grown RD6 starch displayed significant changes in its gelatinization and retrogradation properties, whereas, certain retrogradation parameters and peak viscosity (PV) of KDML105 starches were differentially affected by the distinct cultivating conditions. This study demonstrated the influences of production systems and soil characteristics on the physicochemical properties of rice starches.
水稻生产系统和土壤特性在决定其产量和籽粒品质方面起着至关重要的作用。两个泰国优良水稻品种,即KDML105和RD6,在两种具有不同土壤特性的生产系统中种植,包括温室盆栽生产和大田生产。在大田系统下,KDML105和RD6的穗数、总粒重、百粒重、籽粒大小和尺寸均高于温室种植的。大田栽培显著提高了RD6籽粒的还原糖和长支链淀粉(聚合度25 - 36)含量,以及KDML105的长支链(聚合度25 - 36和聚合度≥37)、C型淀粉颗粒和平均链长含量。相反,RD6淀粉的相对结晶度以及KDML105淀粉的短支链(聚合度6 - 12和聚合度13 - 24)、B型和A型颗粒含量以及中值颗粒大小均受到显著抑制。因此,大田种植的RD6淀粉在糊化和回生特性方面表现出显著变化,而KDML105淀粉的某些回生参数和峰值粘度(PV)受不同种植条件的影响存在差异。本研究证明了生产系统和土壤特性对水稻淀粉理化性质的影响。