4.7 Article

Improving rice eating and cooking quality by coordinated expression of the major starch synthesis-related genes, SSII and Wx, in endosperm

Journal

PLANT MOLECULAR BIOLOGY
Volume 106, Issue 4-5, Pages 419-432

Publisher

SPRINGER
DOI: 10.1007/s11103-021-01162-8

Keywords

Oryza sativa L; Eating and cooking quality; Amylose content; SSII; Wx; CRISPR; Cas9

Funding

  1. National Natural Science Foundation of China [31825019, 31901517]
  2. Ministry of Agriculture of China [2016ZX08001006-005]
  3. Jiangsu Province Government [CX(20)3004]
  4. Young Elite Scientists Sponsorship Program by China Association for Science and Technology [2018QNRC001]

Ask authors/readers for more resources

Coordinated regulation of amylose and amylopectin synthesis via manipulation of SSII-2, SSII-3 and Wx expression in endosperm can improve rice eating and cooking quality. SSII-2 plays a crucial role in regulating amylopectin biosynthesis and amylose content in rice endosperm, particularly when the activity of SSII-3 is low or lacking.
Key Message Coordinated regulation of amylose and amylopectin synthesis via manipulation of SSII-2, SSII-3 and Wx expression in endosperm can improve rice eating and cooking quality. With increasing rice consumption worldwide, many researchers are working to increase the yield and improve grain quality, especially eating and cooking quality (ECQ). The rice ECQ is mainly controlled by the expression of starch synthesis-related genes (SSRGs) in endosperm. Although the Wx and SSII-3/SSIIa/ALK genes, two major SSRGs, have been manipulated to improve rice ECQ via various breeding approaches, new methods to further improve ECQ are desired. In our previous study, we enhanced rice ECQ by knocking down SSII-2 expression in the japonica Nipponbare cultivar (carrying the Wx(b) allele) via RNA interference. Herein, the SSII-2 RNAi was introduced into two Nipponbare-derived near-isogenic lines (NILs), Nip(Wx(a)) and Nip(wx), carrying Wx(a) and wx alleles respond for high and no amylose levels, respectively. Analysis of physicochemical properties revealed that the improved grain quality of SSII-2 RNAi transgenic lines was achieved by coordinated downregulating the expression of SSII-2, SSII-3 and Wx. To further confirm this conclusion, we generated ssii-2, ssii-3 and ssii-2ssii-3 mutants via CRISPR/Cas9 technique. The amylopectin structure of the resulting ssii-2sii-3 mutants was similar to that in SSII-2 RNAi transgenic lines, and the absence of SSII-2 decreased the amylose content, gelatinisation temperature and rapid visco-analyser profile, indicating essential roles for SSII-2 in the regulation of amylopectin biosynthesis and amylose content in rice endosperm. The effect of SSII-2 was seen only when the activity of SSII-3 was very low or lacking. Our study provides novel approaches and valuable germplasm resources for improving ECQ via plant breeding.

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