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Loss of function at RAE2 , a previously unidentified EPFL, is required for awnlessness in cultivated Asian rice

驯化 拟南芥 生物 功能(生物学) 拟南芥 延伸率 植物 细胞生物学 遗传学 基因 突变体 极限抗拉强度 冶金 材料科学
作者
Kanako Bessho‐Uehara,Diane Wang,Tomoyuki Furuta,Anzu Minami,Keisuke Nagai,Rico Gamuyao,Kenji Asano,Rosalyn B. Angeles‐Shim,Yoshihiro Shimizu,Madoka Ayano,Norio Komeda,Kazuyuki Doi,Kotaro Miura,Yosuke Toda,Toshinori Kinoshita,Satohiro Okuda,Tetsuya Higashiyama,Mika Nomoto,Yasuomi Tada,Hidefumi Shinohara
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:113 (32): 8969-8974 被引量:139
标识
DOI:10.1073/pnas.1604849113
摘要

Domestication of crops based on artificial selection has contributed numerous beneficial traits for agriculture. Wild characteristics such as red pericarp and seed shattering were lost in both Asian (Oryza sativa) and African (Oryza glaberrima) cultivated rice species as a result of human selection on common genes. Awnedness, in contrast, is a trait that has been lost in both cultivated species due to selection on different sets of genes. In a previous report, we revealed that at least three loci regulate awn development in rice; however, the molecular mechanism underlying awnlessness remains unknown. Here we isolate and characterize a previously unidentified EPIDERMAL PATTERNING FACTOR-LIKE (EPFL) family member named REGULATOR OF AWN ELONGATION 2 (RAE2) and identify one of its requisite processing enzymes, SUBTILISIN-LIKE PROTEASE 1 (SLP1). The RAE2 precursor is specifically cleaved by SLP1 in the rice spikelet, where the mature RAE2 peptide subsequently induces awn elongation. Analysis of RAE2 sequence diversity identified a highly variable GC-rich region harboring multiple independent mutations underlying protein-length variation that disrupt the function of the RAE2 protein and condition the awnless phenotype in Asian rice. Cultivated African rice, on the other hand, retained the functional RAE2 allele despite its awnless phenotype. Our findings illuminate the molecular function of RAE2 in awn development and shed light on the independent domestication histories of Asian and African cultivated rice.
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