Bioscience and Biotechnology Center, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, 464-8601, Japan.
RIKEN Center for Advanced Intelligence Project, Nihonbashi, Chuo-ku, Tokyo, 103-0027, Japan.
Plant J. 2020 Jul;103(1):266-278. doi: 10.1111/tpj.14726. Epub 2020 Mar 23.
The morphology of rice (Oryza sativa L.) panicles is an important determinant of grain yield, and elucidation of the genetic control of panicle structure is very important for fulfilling the demand for high yield in breeding programs. In a quantitative trait locus (QTL) study using 82 backcross inbred lines (BILs) derived from Koshihikari and Habataki, 68 QTLs for 25 panicle morphological traits were identified. Gene expression profiling from inflorescence meristems of BILs was obtained. A combination of phenotypic QTL (pQTL) and expression QTL (eQTL) analysis revealed co-localization between pQTLs and eQTLs, consistent with significant correlations between phenotypic traits and gene expression levels. By combining pQTL and eQTL data, two genes were identified as controlling panicle structure: OsMADS18 modulates the average length of the primary rachis and OsFTL1 has pleiotropic effects on the total number of secondary rachides, number of grains per panicle, plant height and the length of flag leaves. Phenotypes were confirmed in RNA interference knocked-down plants and overexpressor lines. The combination of pQTL and eQTL analysis could facilitate identification of genes involved in rice panicle formation.
水稻(Oryza sativa L.)穗型是产量的重要决定因素,阐明穗结构的遗传控制对于满足育种计划高产的需求非常重要。利用源自越光和早生的 82 个回交自交系(BIL)进行数量性状位点(QTL)研究,鉴定出 25 个穗部形态性状的 68 个 QTL。从 BILs 的花序分生组织获得基因表达谱。表型 QTL(pQTL)和表达 QTL(eQTL)分析的组合揭示了 pQTL 和 eQTL 之间的共定位,与表型性状和基因表达水平之间的显著相关性一致。通过结合 pQTL 和 eQTL 数据,鉴定出两个控制穗结构的基因:OsMADS18 调节主穗轴的平均长度,OsFTL1 对二次穗轴总数、每穗粒数、株高和旗叶长度具有多效性影响。在 RNAi 敲低植物和过表达系中证实了表型。pQTL 和 eQTL 分析的结合可以促进参与水稻穗形成基因的鉴定。