Verma Subodh, Švihlová Lenka, Robert Hélène S
Hormonal Crosstalk in Plant Development, Mendel Center for Plant Genomics and Proteomics, CEITEC MU-Central European Institute of Technology, Masaryk University, 625 00, Brno, Czech Republic.
Plant Reprod. 2025 Jan 10;38(1):6. doi: 10.1007/s00497-024-00518-6.
SHATTERPROOF 2 regulates TAA1 expression for the establishment of the gynoecium valve margins. Gynoecium development and patterning play a crucial role in determining the ultimate structure of the fruit and, thus, seed production. The MADS-box transcription factor SHATTERPROOF 2 (SHP2) contributes to valve margin differentiation and plays a major role in fruit dehiscence and seed dispersal. Despite the acknowledged contribution of auxin to gynoecium development, its precise role in valve margin establishment remains somewhat enigmatic. Our study addresses this gap by uncovering the role of SHP2 as a positive regulator of key auxin biosynthetic genes, TAA1 and YUCCA 4. Genetic and molecular analyses revealed that SHP2 directly regulates the expression of TAA1 in the valve margins of a stage 12 gynoecium with known regulators of flower and ovule development, such as AGAMOUS, SEEDSTICK, and SEPATALA 3. Collectively, our findings define a previously unrecognized function of SHP2 in the regulation of auxin biosynthetic genes during gynoecium development and raise the possibility that the auxin produced under SHP2 regulation may contribute significantly to the valve margin establishment.
抗裂蛋白2调控TAA1的表达以建立雌蕊瓣边缘。雌蕊发育和模式形成在决定果实的最终结构以及种子产量方面起着关键作用。MADS盒转录因子抗裂蛋白2(SHP2)有助于瓣边缘分化,并在果实开裂和种子传播中起主要作用。尽管生长素对雌蕊发育的作用已得到认可,但其在瓣边缘建立中的精确作用仍有些神秘。我们的研究通过揭示SHP2作为关键生长素生物合成基因TAA1和YUCCA 4的正向调节因子的作用来填补这一空白。遗传和分子分析表明,SHP2直接调控TAA1在12期雌蕊瓣边缘的表达,同时还涉及花和胚珠发育的已知调节因子,如AGAMOUS、SEEDSTICK和SEPATALA 3。总的来说,我们的研究结果定义了SHP2在雌蕊发育过程中调控生长素生物合成基因的一个以前未被认识的功能,并提出了在SHP2调控下产生的生长素可能对瓣边缘建立有显著贡献的可能性。