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Sina and Sinb genes in triticale do not determine grain hardness contrary to their orthologs Pina and Pinb in wheat

机译:小黑麦中的Sina和Sinb基因不能确定小麦的籽粒硬度,与直系同源物Pina和Pinb相反

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Background Secaloindoline a (Sina) and secaloindoline b (Sinb) genes of hexaploid triticale (x Triticosecale Wittmack) are orthologs of puroindoline a (Pina) and puroindoline b (Pinb) in hexaploid wheat (Triticum aestivum L.). It has already been proven that RNA interference (RNAi)-based silencing of Pina and Pinb genes significantly decreased the puroindoline a and puroindoline b proteins in wheat and essentially increased grain hardness (J Exp Bot 62:4025-4036, 2011). The function of Sina and Sinb in triticale was tested by means of RNAi silencing and compared to wheat. Results Novel Sina and Sinb alleles in wild-type plants of cv. Wanad were identified and their expression profiles characterized. Alignment with wheat Pina-D1a and Pinb-D1a alleles showed 95% and 93.3% homology with Sina and Sinb coding sequences. Twenty transgenic lines transformed with two hpRNA silencing cassettes directed to silence Sina or Sinb were obtained by the Agrobacterium-mediated method. A significant decrease of expression of both Sin genes in segregating progeny of tested T1 lines was observed independent of the silencing cassette used. The silencing was transmitted to the T4 kernel generation. The relative transcript level was reduced by up to 99% in T3 progeny with the mean for the sublines being around 90%. Silencing of the Sin genes resulted in a substantial decrease of secaloindoline a and secaloindoline b content. The identity of SIN peptides was confirmed by mass spectrometry. The hardness index, measured by the SKCS (Single Kernel Characterization System) method, ranged from 22 to 56 in silent lines and from 37 to 49 in the control, and the mean values were insignificantly lower in the silent ones, proving increased softness. Additionally, the mean total seed protein content of silenced lines was about 6% lower compared with control lines. Correlation coefficients between hardness and transcript level were weakly positive. Conclusions We documented that RNAi-based silencing of Sin genes resulted in significant decrease of their transcripts and the level of both secaloindoline proteins, however did not affect grain hardness. The unexpected, functional differences of Sin genes from triticale compared with their orthologs, Pin of wheat, are discussed.
机译:背景六倍体小黑麦(x Triticosecale Wittmack)的Secaloindoline a(Sina)和secaloindoline b(Sinb)基因是六倍体小麦(Triticum aestivum L.)中puroindoline a(Pina)和puroindoline b(Pinb)的直系同源物。业已证明,基于Pna和Pinb基因的RNA干扰(RNAi)沉默显着降低了小麦中的嘌呤吲哚a和puroindoline b蛋白,并显着提高了谷物的硬度(J Exp Bot 62:4025-4036,2011)。通过RNAi沉默测试了Sina和Sinb在黑小麦中的功能,并与小麦进行了比较。结果野生型cv植物中有新的Sina和Sinb等位基因。鉴定了Wanad并表征了它们的表达谱。与小麦Pina-D1a和Pinb-D1a等位基因的比对显示与Sina和Sinb编码序列的95%和93.3%同源性。通过农杆菌介导的方法获得了用两个hpRNA沉默盒转化的20个转基因品系,它们沉默了Sina或Sinb。观察到独立于所使用的沉默盒,在测试的T 1 品系的分离后代中两个Sin基因的表达显着降低。沉默被传给了T 4 内核。 T 3 后代的相对转录水平降低了多达99%,其中亚系的平均值约为90%。 Sin基因的沉默导致secaloindoline a和secaloindoline b含量大大降低。通过质谱法确认了SIN肽的身份。通过SKCS(单核表征系统)方法测得的硬度指数在无声线中为22到56,在对照中为37到49,并且无声线中的平均值低得可观,证明增加了柔软度。另外,沉默株系的平均总种子蛋白含量比对照株系低约6%。硬度与成绩单水平之间的相关系数呈弱正相关。结论我们记录了基于RNAi的Sin基因沉默导致其转录本和两种secaloindoline蛋白水平显着降低,但不影响籽粒硬度。讨论了黑小麦中Sin基因与其直系同源物Pin of Wheat相比意想不到的功能差异。

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