Lin Huawen, Goodenough Ursula W
Department of Biology, Washington University, St. Louis, Missouri 63130, USA.
Genetics. 2007 Jun;176(2):913-25. doi: 10.1534/genetics.106.066167. Epub 2007 Apr 15.
In the unicellular algae Chlamydomonas reinhardtii, the plus and minus mating types are controlled by a complex locus, MT, where the dominant MID gene in the MT(-) locus has been shown to be necessary for expression of minus-specific gamete-specific genes in response to nitrogen depletion. We report studies on MID expression patterns during gametogenesis and on a second gene unique to the MT(-) locus, MTD1. Vegetative cells express basal levels of MID. An early activation of MID transcription after nitrogen removal, and its sequence similarity to plant RWP-RK proteins involved in nitrogen-responsive processes, suggest that Mid conformation/activity may be nitrogen sensitive. A second stage of MID upregulation correlates with the acquisition of mating ability in minus gametes. Knockdown of MTD1 by RNAi in minus strains results in a failure to differentiate into gametes of either mating type after nitrogen deprivation. We propose that intermediate Mid levels are sufficient to activate MTD1 transcription and to repress plus gamete-specific genes and that MTD1 expression in turn allows the threshold-level MID expression needed to turn on minus gamete-specific genes. We further propose that an MTD1-equivalent system, utilizing at least one gene product encoded in the MT(+) locus, is operant during plus gametogenesis.
在单细胞藻类莱茵衣藻中,正交配型和负交配型由一个复杂的基因座MT控制,其中MT(-)基因座中的显性MID基因已被证明是响应氮耗竭时负特异性配子特异性基因表达所必需的。我们报告了关于配子发生过程中MID表达模式以及MT(-)基因座特有的第二个基因MTD1的研究。营养细胞表达基础水平的MID。氮去除后MID转录的早期激活,以及其与参与氮响应过程的植物RWP-RK蛋白的序列相似性,表明Mid构象/活性可能对氮敏感。MID上调的第二阶段与负配子中交配能力的获得相关。在负菌株中通过RNAi敲低MTD1会导致氮剥夺后无法分化为任何一种交配型的配子。我们提出,中等水平的Mid足以激活MTD1转录并抑制正配子特异性基因,并且MTD1的表达反过来允许开启负配子特异性基因所需的阈值水平的MID表达。我们进一步提出,一个利用MT(+)基因座中至少一种编码基因产物的等效于MTD1的系统在正配子发生过程中起作用。