Auxin-regulated OsRGP1 and OsSuS are involved in gravitropic bending of rice shoot bases.

Li Wei Hu, Da Yong Cui, Ai Ping Zang, Steven Neill, Wei Ming Cai
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Abstract

Gravitropic bending of horizontally-oriented rice shoots results from the differential elongation of cells in the upper and lower halves of the shoot bases. In this study, genes encoding a reversibly glycosylated polypeptide (OsRGP1) and a sucrose synthase (OsSuS) related to sugar metabolism were identified by suppressive subtractive hybridization (SSH) as being differentially expressed in gravibending lower and upper halves of rice shoot bases. RT-PCR was used to monitor OsRGP1 and OsSuS gene expression. The two genes were differentially induced in lower and upper halves of the shoot bases during gravitropism and their expression was regulated by auxin. Gene promoter sequence analysis demonstrated the existence of elements related to auxin. Treatment with the auxin transport inhibitor TIBA inhibited the asymmetric expression of OsRGP1 and OsSuS. In addition, an increase in hexose sugars was detected in the lower half of the shoot bases during gravitropism. Our data suggest that asymmetric redistribution of auxin following gravistimulation results in differentially localized OsRGP1 and OsSuS expression. While asymmetric expression of OsSuS may result in a disproportionate distribution of hexose, asymmetric expression of OsRGP1 could induce cell wall polysaccharide synthesis in the lower half of shoot bases. Therefore hexose and cell wall polysaccharide accumulation in the lower half of rice shoot bases might contribute to cell expansion and subsequent gravitropic bending.

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生长素调控的OsRGP1和OsSuS参与水稻茎基部向地弯曲。
水稻水平取向芽的向地弯曲是由于芽基部上下半部分细胞伸长的差异造成的。在本研究中,通过抑制减法杂交(SSH)鉴定了编码可逆糖基化多肽(OsRGP1)和与糖代谢相关的蔗糖合成酶(OsSuS)的基因在水稻茎基部重力弯曲的上下半部分差异表达。RT-PCR检测OsRGP1和OsSuS基因表达。这两个基因在匍匐生长过程中分别在茎基部的上下半部分被诱导,其表达受生长素的调控。基因启动子序列分析证实了生长素相关元件的存在。生长素转运抑制剂TIBA抑制OsRGP1和OsSuS的不对称表达。此外,在倾斜过程中,在茎基部的下半部分检测到己糖的增加。我们的数据表明,生长素在重力刺激后的不对称再分布导致OsRGP1和OsSuS表达的差异定位。OsSuS的不对称表达可能导致己糖分布不均,而OsRGP1的不对称表达可以诱导茎基部下半部分的细胞壁多糖合成。因此,水稻茎基部下半部的己糖和细胞壁多糖的积累可能有助于细胞的膨胀和随后的向地弯曲。
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