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Knockdown of ghAlba_4 and ghAlba_5 Proteins in Cotton Inhibits Root Growth and Increases Sensitivity to Drought and Salt Stresses

机译:敲低棉花中的ghAlba_4和ghAlba_5蛋白可抑制根系生长并增加对干旱和盐胁迫的敏感性

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摘要

We found 33, 17, and 20 Alba genes in Gossypium hirsutum, Gossypium arboretum, and Gossypium raimondii, respectively. The Alba protein lengths ranged from 62 to 312 aa, the molecular weight (MW) from 7.003 to 34.55 kDa, grand average hydropathy values of −1.012 to 0.609 and isoelectric (pI) values of −3 to 11. Moreover, miRNAs such as gra-miR8770 targeted four genes, gra-miR8752 and gra-miR8666 targeted three genes, and each and gra-miR8657 a, b, c, d, e targeted 10 genes each, while the rests targeted 1 to 2 genes each. Similarly, various cis-regulatory elements were detected with significant roles in enhancing abiotic stress tolerance, such as CBFHV (RYCGAC) with a role in cold stress acclimation among others. Two genes, Gh_D01G0884 and Gh_D01G0922, were found to be highly induced under water deficit and salt stress conditions. Through virus-induced gene silencing (VIGS), the VIGS cotton plants were found to be highly susceptible to both water deficit and salt stresses; the VIGS plants exhibited a significant reduction in root growth, low cell membrane stability (CMS), saturated leaf weight (SLW), chlorophyll content levels, and higher excised leaf water loss (ELWL). Furthermore, the stress-responsive genes and ROS scavenging enzymes were significantly reduced in the VIGS plants compared to either the wild type (WT) and or the positively controlled plants. The VIGS plants registered higher concentration levels of hydrogen peroxide and malondialdehyde, with significantly lower levels of the various antioxidants evaluated an indication that the VIGS plants were highly affected by salt and drought stresses. This result provides a key foundation for future exploration of the Alba proteins in relation to abiotic stress.
机译:我们分别在陆地棉,植物棉和雷蒙德棉中发现了33、17和20个Alba基因。 Alba蛋白的长度范围为62至312aa,分子量(MW)为7.003至34.55 kDa,总平均亲水性值为-1.012至0.609,等电点(pI)值为-3至11。此外,诸如gra的miRNA -miR8770靶向四个基因,gra-miR8752和gra-miR8666靶向三个基因,而gra-miR8657 a,b,c,d,e分别靶向10个基因,其余分别靶向1-2个基因。同样,检测到各种顺式调节元件在增强非生物胁迫耐受性中也起着重要作用,例如CBFHV(RYCGAC)在冷胁迫适应中发挥作用。发现两个基因Gh_D01G0884和Gh_D01G0922在缺水和盐胁迫条件下被高度诱导。通过病毒诱导的基因沉默(VIGS),发现VIGS棉花对水分亏缺和盐分胁迫高度敏感。 VIGS植物的根生长,低细胞膜稳定性(CMS),饱和叶重(SLW),叶绿素含量水平和较高的切叶失水量(ELWL)显着降低。此外,与野生型(WT)和阳性对照植物相比,VIGS植物中的应激反应基因和ROS清除酶均显着降低。 VIGS植物的过氧化氢和丙二醛浓度较高,而各种抗氧化剂的含量明显较低,这表明VIGS植物受到盐和干旱胁迫的严重影响。该结果为与非生物胁迫有关的Alba蛋白的未来探索提供了关键基础。

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