首页> 外文期刊>Development >CRABS CLAW, a gene that regulates carpel and nectary development in Arabidopsis, encodes a novel protein with zinc finger and helix-loop-helix domains.
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CRABS CLAW, a gene that regulates carpel and nectary development in Arabidopsis, encodes a novel protein with zinc finger and helix-loop-helix domains.

机译:CRABS CLAW是一个调节拟南芥心皮和蜜腺发育的基因,编码带有锌指和螺旋-环-螺旋结构域的新型蛋白质。

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Studies of plants with mutations in the CRABS CLAW gene indicate that it is involved in suppressing early radial growth of the gynoecium and in promoting its later elongation. It is also required for the initiation of nectary development. To gain further insight, the gene was cloned by chromosome walking. CRABS CLAW encodes a putative transcription factor containing a zinc finger and a helix-loop-helix domain. The latter resembles the first two helices of the HMG box, known to bind DNA. At least five other genes of Arabidopsis carry the same combination of domains, and we have named them the yabby family. The new helix-loop-helix domain itself we call the yabby domain. Consistent with the mutant phenotype, CRABS CLAW expression is mostly limited to carpels and nectaries. It is expressed in gynoecial primordia from their inception, firstly in lateral sectors where it may inhibit radial growth, and later in the epidermis and in four internal strips. The internal expression may be sufficient to support longitudinal growth, as carpels are longer in a crabs claw promoter mutant where expression is now confined to these regions. The patterns of expression of CRABS CLAW in ectopic carpels of floral homeotic mutants suggest that it is negatively regulated by the A and B organ identity functions, but largely independent of C function. CRABS CLAW expression occurs in nectaries throughout their growth and maturation. It is also expressed in their presumptive anlagen so it may specify cells that will later develop as nectaries. Nectaries arise from the floral receptacle at normal positions in all A, B and C organ identity mutants examined, and CRABS CLAW is always expressed within them. Thus CRABS CLAW expression is regulated independently in carpels and nectaries.
机译:对CRABS CLAW基因突变的植物进行的研究表明,该植物参与抑制妇幼的早期放射状生长并促进其后来的伸长。启动蜜腺发育也需要它。为了获得进一步的见解,通过染色体行走克隆了该基因。 CRABS CLAW编码一个推定的转录因子,该转录因子包含一个锌指和一个螺旋-环-螺旋结构域。后者类似于已知结合DNA的HMG盒的前两个螺旋。至少有五个其他的拟南芥基因携带相同的结构域组合,我们将其命名为“ yabby”家族。新的helix-loop-helix域本身称为yabby域。与突变表型一致,CRABS CLAW表达主要限于心皮和油桃。从一开始,它就在妇科原基中表达,首先在可能抑制放射状生长的外侧部分,然后在表皮和四个内部条带中表达。内部表达可能足以支持纵向生长,因为螃蟹爪启动子突变体中的心皮较长,现在该突变体的表达仅限于这些区域。 CRABS CLAW在花卉顺势突变体异位心皮中的表达模式表明,它受A和B器官身份功能的负调控,但在很大程度上与C功能无关。 CRABS CLAW表达在整个生长和成熟过程中都在蜜腺中发生。它也以其推测的胶原蛋白表达,因此可以指定以后会发育成蜜腺的细胞。在所有检查的A,B和C器官同一性突变体中,花蜜从正常位置的花托中产生,并且CRABS CLAW始终在其中表达。因此,CRABS CLAW表达在心皮和蜜腺中被独立调节。

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