Crop Improvement Division, ICAR-National Rice Research Institute (NRRI), Cuttack, Odisha, 753006, India.
Institute of Life Sciences, Bhubaneswar, Odisha, 751023, India.
Sci Rep. 2021 Jun 30;11(1):13617. doi: 10.1038/s41598-021-93134-7.
High grain number is positively correlated with grain yield in rice, but it is compromised because of poor filling of basal spikelets in dense panicle bearing numerous spikelets. The phenomenon that turns the basal spikelets of compact panicle sterile in rice is largely unknown. In order to understand the factor(s) that possibly determines such spikelet sterility in compact panicle cultivars, QTLs and candidate genes were identified for spikelet fertility and associated traits like panicle compactness, and ethylene production that significantly influences the grain filling using recombinant inbred lines developed from a cross between indica rice cultivars, PDK Shriram (compact, high spikelet number) and Heera (lax, low spikelet number). Novel QTLs, qSFP1.1, qSFP3.1, and qSFP6.1 for spikelet fertility percentage; qIGS3.2 and qIGS4.1 for panicle compactness; and qETH1.2, qETH3.1, and qETH4.1 for ethylene production were consistently identified in both kharif seasons of 2017 and 2018. The comparative expression analysis of candidate genes like ERF3, AP2-like ethylene-responsive transcription factor, EREBP, GBSS1, E3 ubiquitin-protein ligase GW2, and LRR receptor-like serine/threonine-protein kinase ERL1 associated with identified QTLs revealed their role in poor grain filling of basal spikelets in a dense panicle. These candidate genes thus could be important for improving grain filling in compact-panicle rice cultivars through biotechnological interventions.
高粒数与水稻产量呈正相关,但由于密集穗中基部小穗的灌浆不良,粒数会受到影响。在水稻中,密集穗基部小穗不育的现象很大程度上是未知的。为了了解可能决定紧凑穗品种小穗不育的因素,利用 PDK Shriram(紧凑,小穗数多)和 Heera(松散,小穗数少)两个籼稻品种杂交后构建的重组自交系,鉴定了小穗育性和相关性状(如穗型紧凑和乙烯生成)的 QTL 和候选基因,这些性状显著影响灌浆。鉴定到了一些新的 QTL,包括 qSFP1.1、qSFP3.1 和 qSFP6.1,它们与小穗育性百分比有关;qIGS3.2 和 qIGS4.1 与穗型紧凑有关;qETH1.2、qETH3.1 和 qETH4.1 与乙烯生成有关。在 2017 年和 2018 年的雨季,这些 QTL 都能稳定地被鉴定出来。与鉴定的 QTL 相关的候选基因(如 ERF3、AP2 样乙烯响应转录因子、EREBP、GBSS1、E3 泛素蛋白连接酶 GW2 和 LRR 受体样丝氨酸/苏氨酸蛋白激酶 ERL1)的比较表达分析表明,它们在密集穗中基部小穗灌浆不良中起作用。这些候选基因可能对通过生物技术干预提高紧凑穗水稻品种的灌浆能力具有重要意义。