Sharma Isha, Malathi Pinninti, Srinivasan Ramamurthy, Bhat Shripad Ramachandra, Sreenivasulu Yelam
CSIR-Institute of Himalayan Bioresource Technology, Palampur 176061, Himachal Pradesh, India.
CSIR-Centre for Cellular and Molecular Biology, Hyderabad 500007, Telangana, India.
iScience. 2024 May 3;27(6):109890. doi: 10.1016/j.isci.2024.109890. eCollection 2024 Jun 21.
lines with loss-of-function mutation in () gene showed seed sterility with embryo sac cellularization defects. Examination of tissue-cleared mature ovules revealed irregularly positioned nuclei/embryos within the embryo sacs. Egg cell-specific marker (DD45) expression analysis confirmed the presence of multiple egg cells in the mutant embryo sacs. These supernumerary egg cells were functional as evident from the production of twin embryos when supernumerary sperm cells were provided. The results of ruthenium red and tannic acid-ferric chloride staining of developing mutant ovules showed that cell wall formation and maintenance were altered around embryo sac nuclei, which also coincided with change in the gamete specification. This report implicates the role of cell walls in gamete cell fate determination by altering cell-cell communication. Our analysis of the twin-embryo phenotype of mutants also sheds light on the boundary conditions for double fertilization in plant reproduction.
()基因功能丧失突变的株系表现出种子不育,伴有胚囊细胞化缺陷。对组织透明的成熟胚珠进行检查发现,胚囊内细胞核/胚胎位置不规则。卵细胞特异性标记(DD45)表达分析证实,突变胚囊中存在多个卵细胞。当提供多余的精子细胞时,产生了双胚,这表明这些多余的卵细胞是有功能的。对发育中的突变胚珠进行钌红和单宁酸 - 氯化铁染色的结果表明,胚囊细胞核周围的细胞壁形成和维持发生了改变,这也与配子规格的变化相一致。本报告表明细胞壁通过改变细胞间通讯在配子细胞命运决定中所起的作用。我们对突变体双胚表型的分析也揭示了植物繁殖中双受精的边界条件。