Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo, 113-8657, Japan.
Research Center for Agricultural Information Technology, National Agriculture and Food Research Organization, Chiyoda-ku, Tokyo, 100-0013, Japan.
Sci Rep. 2021 Apr 30;11(1):9398. doi: 10.1038/s41598-021-88917-x.
Although spikelet-related traits such as size of anther, spikelet, style, and stigma are associated with sexual reproduction in grasses, no QTLs have been reported in sorghum. Additionally, there are only a few reports on sorghum QTLs related to grain size, such as grain length, width, and thickness. In this study, we performed QTL analyses of nine spikelet-related traits (length of sessile spikelet, pedicellate spikelet, pedicel, anther, style, and stigma; width of sessile spikelet and stigma; and stigma pigmentation) and six grain-related traits (length, width, thickness, length/width ratio, length/thickness ratio, and width/thickness ratio) using sorghum recombinant inbred lines. We identified 36 and 7 QTLs for spikelet-related traits and grain-related traits, respectively, and found that most sorghum spikelet organ length- and width-related traits were partially controlled by the dwarf genes Dw1 and Dw3. Conversely, we found that these Dw genes were not strongly involved in the regulation of grain size. The QTLs identified in this study aid in understanding the genetic basis of spikelet- and grain-related traits in sorghum.
虽然小穗相关性状,如花药、小穗、穗柄和柱头大小与禾本科植物的有性繁殖有关,但在高粱中尚未报道任何 QTL。此外,关于与粒大小相关的高粱 QTL 仅有少数报道,例如粒长、粒宽和粒厚。在本研究中,我们使用高粱重组自交系对 9 个小穗相关性状(无柄小穗、花梗小穗、花梗、花药、花柱和柱头的长度;无柄小穗和柱头的宽度;柱头色素沉着)和 6 个粒相关性状(长度、宽度、厚度、长度/宽度比、长度/厚度比和宽度/厚度比)进行了 QTL 分析。我们分别鉴定到了 36 个和 7 个与小穗相关性状和粒相关性状相关的 QTL,并发现高粱小穗器官长度和宽度相关性状主要受矮秆基因 Dw1 和 Dw3 部分控制。相反,我们发现这些 Dw 基因在调节粒大小方面的作用并不强。本研究中鉴定到的 QTL 有助于理解高粱中小穗和粒相关性状的遗传基础。