Sitoe Hélder Manuel, Zhang Yuanqing, Chen Siqi, Li Yulong, Ali Mehtab, Sowadan Ognigamal, Karikari Benjamin, Liu Erbao, Dang Xiaojing, Qian Hujun, Hong Delin
State Key Laboratory of Crop Genetics and Germplasm Enhancement, Nanjing Agricultural University, Nanjing 210095, China.
Faculty of Agronomy and Biological Sciences, Púnguè University, P.O. Box 323, Manica 2202, Mozambique.
Plants (Basel). 2022 Apr 6;11(7):999. doi: 10.3390/plants11070999.
Plant height (PH) and its component traits are critical determinants of lodging resistance and strongly influence yield in rice. The genetic architecture of PH and its component traits were mined in two mapping populations. In the natural population composed of 504 accessions, a total of forty simple sequence repeat (SSR) markers associated with PH and its component traits were detected across two environments via association mapping. Allele RM305-210 bp on chromosome 5 for PH had the largest phenotypic effect value (PEV) (-51.42 cm) with a reducing effect. Allele RM3533-220 bp on chromosome 9 for panicle length and allele RM264-120 bp on chromosome 8 for the length of upper first elongated internode (1IN) showed the highest positive PEV. Among the elongated internodes with negative effects being desirable, the allele RM348-130 bp showed the largest PEV (-7.48 cm) for the length of upper second elongated internode. In the chromosome segment substitution line population consisting of 53 lines, a total of nine QTLs were detected across two environments, with the phenotypic variance explained (PVE) ranging 10.07-28.42%. Among the detected QTLs, explained the largest PVE (28.42%) for the 1IN, with an additive of 5.31 cm. The favorable allele RM257-125 bp on chromosome 9 for the 1IN increasing was detected in both populations. The favorable alleles provided here could be used to shape PH architecture against lodging.
株高(PH)及其构成性状是水稻抗倒伏性的关键决定因素,对水稻产量有重要影响。在两个作图群体中挖掘了株高及其构成性状的遗传结构。在由504份种质组成的自然群体中,通过关联分析在两种环境下共检测到40个与株高及其构成性状相关的简单序列重复(SSR)标记。第5染色体上PH的等位基因RM305 - 210 bp的表型效应值(PEV)最大(-51.42 cm),具有降低作用。第9染色体上穗长的等位基因RM3533 - 220 bp和第8染色体上第一节间伸长节间长度(1IN)的等位基因RM264 - 120 bp表现出最高的正向PEV。在具有负向效应的伸长节间中,第2节间伸长节间长度的等位基因RM348 - 130 bp的PEV最大(-7.48 cm)。在由53个株系组成的染色体片段代换系群体中,在两种环境下共检测到9个QTL,表型变异解释率(PVE)为10.07 - 28.42%。在检测到的QTL中, 对1IN的PVE最大(28.42%),加性效应为5.31 cm。在两个群体中均检测到第9染色体上对1IN增加有利的等位基因RM257 - 125 bp。这里提供的有利等位基因可用于塑造抗倒伏的株高结构。