Chan John, Peter Pauls K
Department of Plant Agriculture, University of Guelph, Guelph, ON, Canada.
Planta. 2007 Jan;225(2):469-84. doi: 10.1007/s00425-006-0362-5. Epub 2006 Aug 9.
Androgenesis in plants involves a shift in development that causes cultured microspore cells to form embryos rather than continue to develop pollen. In Brassica napus microspore culture a mild heat stress is used to switch on embryo development. An early hallmark of embryogenesis in this system is a symmetrical division of the nucleus instead of the asymmetric division that occurs during pollen formation. ROP GTPases act as molecular switches in a variety of developmental processes; therefore, the current study was initiated to examine whether they might be involved in androgenesis. Five distinct Rop genes with nucleic acid similarities ranging from 82 to 93% to Arabidopsis Rop1 were isolated from B. napus cv Topas. A Southern blot hybridization with a BnRop sequence probe suggested that there are 11-15 ROP gene family members in B. napus. RT-PCR reactions with PCR primers specific to BnRop5, BnRop6, BnRop9 and BnRop10 showed that expression of the BnRop5 was restricted to pollen but the others were detected in leaf, root, stem and pollen tissue. Pollen-like cells obtained from 3-day-old cultures by flow cytometric sorting had BnRop5 transcript levels that were 2.8 times higher than in flow sorted embryogenic microspores. Conversely, the BnRop9 transcript levels were 2.5-fold higher in the embryogenic cells than in the pollen-like cells. The potential involvement of specific ROPs in early stage microspore culture responses is discussed.
植物中的雄核发育涉及发育过程的转变,使培养的小孢子细胞形成胚胎,而不是继续发育成花粉。在甘蓝型油菜小孢子培养中,采用温和的热胁迫来启动胚胎发育。该系统中胚胎发生的一个早期标志是细胞核的对称分裂,而不是花粉形成过程中发生的不对称分裂。ROP GTP酶在多种发育过程中起分子开关的作用;因此,开展了本研究以检验它们是否可能参与雄核发育。从甘蓝型油菜品种Topas中分离出5个不同的Rop基因,其核酸与拟南芥Rop1的相似性在82%至93%之间。用BnRop序列探针进行的Southern印迹杂交表明,甘蓝型油菜中有11 - 15个ROP基因家族成员。用特异于BnRop5、BnRop6、BnRop9和BnRop10的PCR引物进行RT-PCR反应,结果显示BnRop5的表达仅限于花粉,但其他基因在叶、根、茎和花粉组织中均有检测到。通过流式细胞术分选从3日龄培养物中获得的花粉样细胞,其BnRop5转录水平比流式分选的胚性小孢子高2.8倍。相反,BnRop9转录水平在胚性细胞中比在花粉样细胞中高2.5倍。文中讨论了特定ROP在小孢子培养早期反应中的潜在作用。