Muschietti J, Dircks L, Vancanneyt G, McCormick S
Plant Gene Expression Center, USDA/ARS-UC-Berkeley, St, Albany 94710.
Plant J. 1994 Sep;6(3):321-38. doi: 10.1046/j.1365-313x.1994.06030321.x.
The LAT52 gene of tomato is expressed in a pollen-specific manner. It is shown that LAT52 encodes a heat-stable, glycosylated protein that traverses the secretory pathway when expressed in a baculovirus expression system. The LAT52 protein shows some similarity with Kunitz trypsin inhibitors and with pollen proteins from maize, rice and olive, but the biological function of these pollen proteins is unknown. To test whether the LAT52 protein plays an important role during pollen development, tomato plants were transformed with an antisense LAT52 gene driven by the LAT52 promoter. Because the LAT52 gene is expressed gametophytically, only 50% of the pollen of the primary transformants would be expected to express the antisense construct. Selfprogeny of 19 of the primary transformants showed the predicted 3:1 segregation for a single locus insertion of the linked kanamycin-resistance gene. However, the self-progeny of the other 32 primary transformants showed a 1:1 segregation pattern and could not transmit the linked kanamycin-resistance gene through the male. A subset of these 1:1 segregation class plants was examined in detail. The pollen showed lower levels of LAT52 mRNA and LAT52 protein when compared with wild-type. In vitro, approximately 50% of the pollen grains appear to hydrate abnormally; this anomaly is not present when the same pollen grains are incubated in a medium with higher water potential. In vivo pollination experiments showed that the growth of around 50% of the pollen tubes is arrested in the style. The 3:1 segregation class plants showed no significant differences from untransformed control plants. Taken together, the results show a direct correlation between the reduced expression of LAT52 protein and abnormal pollen function, and suggest that the LAT52 protein plays a role in pollen hydration and/or pollen germination.
番茄的LAT52基因以花粉特异性方式表达。研究表明,LAT52编码一种热稳定的糖基化蛋白,当在杆状病毒表达系统中表达时,该蛋白会穿过分泌途径。LAT52蛋白与库尼茨胰蛋白酶抑制剂以及玉米、水稻和橄榄的花粉蛋白有一些相似之处,但这些花粉蛋白的生物学功能尚不清楚。为了测试LAT52蛋白在花粉发育过程中是否起重要作用,用由LAT52启动子驱动的反义LAT52基因转化番茄植株。由于LAT52基因是通过配子体表达的,因此预计初级转化体中只有50%的花粉会表达反义构建体。19个初级转化体的自交后代显示,对于连锁卡那霉素抗性基因的单一位点插入,预期的分离比例为3:1。然而,其他32个初级转化体的自交后代显示出1:1的分离模式,并且不能通过雄性传递连锁的卡那霉素抗性基因。对这些1:1分离类植株的一个子集进行了详细检查。与野生型相比,花粉中LAT52 mRNA和LAT52蛋白的水平较低。在体外,大约50%的花粉粒似乎水合异常;当相同的花粉粒在水势较高的培养基中培养时,这种异常不存在。体内授粉实验表明,大约50%的花粉管在花柱中生长受阻。3:1分离类植株与未转化的对照植株没有显著差异。综上所述,结果表明LAT52蛋白表达降低与花粉功能异常之间存在直接相关性,并表明LAT52蛋白在花粉水合和/或花粉萌发中起作用。