Zhengzhou Research Base, State Key Laboratory of Cotton Biology, Zhengzhou University, Zhengzhou, 450001, Henan, China.
State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, 455000, Anyang, China.
BMC Plant Biol. 2021 Oct 6;21(1):448. doi: 10.1186/s12870-021-03230-z.
Cotton is an important cash crop. The fiber length has always been a hot spot, but multi-factor control of fiber quality makes it complex to understand its genetic basis. Previous reports suggested that OsGASR9 promotes germination, width, and thickness by GAs in rice, while the overexpression of AtGASA10 leads to reduced silique length, which is likely to reduce cell wall expansion. Therefore, this study aimed to explore the function of GhGASA10 in cotton fibers development.
To explore the molecular mechanisms underlying fiber elongation regulation concerning GhGASA10-1, we revealed an evolutionary basis, gene structure, and expression. Our results emphasized the conservative nature of GASA family with its origin in lower fern plants S. moellendorffii. GhGASA10-1 was localized in the cell membrane, which may synthesize and transport secreted proteins to the cell wall. Besides, GhGASA10-1 promoted seedling germination and root extension in transgenic Arabidopsis, indicating that GhGASA10-1 promotes cell elongation. Interestingly, GhGASA10-1 was upregulated by IAA at fiber elongation stages.
We propose that GhGASA10-1 may promote fiber elongation by regulating the synthesis of cellulose induced by IAA, to lay the foundation for future research on the regulation networks of GASA10-1 in cotton fiber development.
棉花是一种重要的经济作物。纤维长度一直是热点,但纤维品质的多因素控制使其遗传基础复杂。先前的报告表明,OsGASR9 通过 GAs 在水稻中促进发芽、宽度和厚度,而过表达 AtGASA10 导致长角果长度降低,这可能会减少细胞壁扩张。因此,本研究旨在探索 GhGASA10 在棉花纤维发育中的功能。
为了探索 GhGASA10-1 调控纤维伸长的分子机制,我们揭示了它的进化基础、基因结构和表达。我们的结果强调了 GASA 家族的保守性,其起源于低蕨类植物 S. moellendorffii。GhGASA10-1 定位于细胞膜上,可能合成并将分泌蛋白运输到细胞壁。此外,GhGASA10-1 在转基因拟南芥中促进幼苗发芽和根伸长,表明 GhGASA10-1 促进细胞伸长。有趣的是,GhGASA10-1 在纤维伸长阶段被 IAA 上调。
我们提出 GhGASA10-1 可能通过调节 IAA 诱导的纤维素合成来促进纤维伸长,为未来研究 GASA10-1 在棉花纤维发育中的调控网络奠定基础。