Faculty of Agriculture, Kyushu University, Fukuoka, 819-0395, Japan.
Japan International Research Center for Agricultural Sciences, Tsukuba, 305-8686, Japan.
Commun Biol. 2024 Jun 21;7(1):755. doi: 10.1038/s42003-024-06443-8.
Pod is an important organ for seed production in soybean. Pod size varies among soybean cultivars, but the mechanism is largely unknown. Here we reveal one of the factors for pod size regulation. We investigate pod size differences between two cultivars. The longer pod of 'Tachinagaha' is due to more cell number than in the short pod of 'Iyodaizu'. POD SIZE OF SOYBEAN 8 (GmPSS8), a member of the heat shock protein 70 (HSP70) family, is identified as a candidate gene for determining pod length in a major QTL for pod length. Expression of GmPSS8 in pods is higher in 'Tachinagaha' than 'Iyodaizu' and is highest in early pod development. The difference in expression is the result of an in/del polymorphism which includes an enhancer motif. Treatment with an HSP70 inhibitor reduces pod length and cell number in the pod. Additionally, shorter pods in Arabidopsis hsp70-1/-4 double mutant are rescued by overexpression of GmPSS8. Our results identify GmPSS8 as a target gene for pod length, which regulates cell number during early pod development through regulation of transcription in soybean. Our findings provide the mechanisms of pod development and suggest possible strategies enhancing yield potential in soybean.
豆荚是大豆种子生产的重要器官。豆荚大小因大豆品种而异,但机制在很大程度上尚不清楚。在这里,我们揭示了调节豆荚大小的因素之一。我们研究了两个品种之间的豆荚大小差异。“Tachinagaha”较长的豆荚是由于细胞数量比短荚“Iyodaizu”多。热休克蛋白 70(HSP70)家族的一员 POD SIZE OF SOYBEAN 8(GmPSS8)被鉴定为决定长荚长度的主要 QTL 中决定荚长度的候选基因。GmPSS8 在“Tachinagaha”中的表达高于“Iyodaizu”,在早期荚发育中表达最高。表达差异是由于内含子/缺失多态性,其中包括增强子基序。用 HSP70 抑制剂处理会减少豆荚的长度和细胞数量。此外,拟南芥 hsp70-1/-4 双突变体中较短的豆荚通过过表达 GmPSS8 得到挽救。我们的研究结果确定 GmPSS8 是豆荚长度的靶基因,它通过调节转录在大豆的早期荚发育过程中调节细胞数量。我们的研究结果提供了豆荚发育的机制,并提出了可能增强大豆产量潜力的策略。